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중국의 지능형 콕핏 특허 분석 보고서(2026년)

China Intelligent Cockpit Patent Analysis Report, 2026

발행일: | 리서치사: 구분자 ResearchInChina | 페이지 정보: 영문 600 Pages | 배송안내 : 1-2일 (영업일 기준)

    
    
    



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※ 본 상품은 영문 자료로 한글과 영문 목차에 불일치하는 내용이 있을 경우 영문을 우선합니다. 정확한 검토를 위해 영문 목차를 참고해주시기 바랍니다.

지능형 콕핏 관련 특허 조사: 콕핏 AI, 차량 내 건강 관리, 인포테인먼트가 시나리오 기반의 선제적 기능으로 진화하고 있습니다.

본 보고서에서는 특허 관점에서 지능형 콕핏의 최첨단 개발 동향에 대해 고찰합니다. 조사 범위는 새로운 콕핏 디스플레이, 콕핏 상호작용, 차량 내 모니터링, 인포테인먼트, 디지털 키, 스마트 시트, 스마트 오디오, 파노라마 선루프 및 차량 내 건강 관련 특허를 포함한 8가지 제품 카테고리를 포괄합니다.

각 부문별로 키워드 추출, 데이터 정제, 중복 제거를 수행하여 비교적 신뢰도가 높은 특허 데이터 세트를 확보하고, 교차 분석을 통해 현재 지능형 콕핏 분야의 기술적 특징을 제시합니다. 여기에는 특허 분포 현황, 출원인 순위, 주목할 만한 특허 추적, 그리고 각 부문의 동향이 포함됩니다.

서문

2026년 1월부터 7월까지 중국에서는 3,054건의 지능형 콕핏 관련 특허가 공개되었습니다. 이는 2025년 연간 4,597건과 비교됩니다. 2026년 1월부터 7월까지의 데이터를 기준으로 할 때, 연간 환산 건수는 약 5,232건에 달하여 2025년을 상회하고 있습니다.

누적 구성과 비교했을 때, 2026년에는 두 가지 변화가 나타납니다. 첫째, 인포테인먼트의 비중이 누적 점유율(43.7%)에 비해 현저히 감소했습니다. 2026년 1월부터 7월까지 공개된 인포테인먼트 관련 특허는 총 543건으로, 전년 동기 994건보다 감소했습니다. 둘째, 공개된 차량 내 모니터링 관련 특허(262건)가 신형 콕핏 디스플레이 관련 특허(257건)를 상회했으며, 2025년 연간 수준(141건)도 넘어섰습니다. 차량 내 모니터링 관련 특허 증가는 주로 운전자 모니터링 시스템에 대한 국내 의무화 기준과 유럽, 미국 및 기타 지역의 규제 강화가 요인으로 작용했습니다.

콕핏 특허 동향 1: 콕핏 AI - 수동적인 응답에서 능동적인 서비스로의 전환

자동차용 음성 기술의 초기 단계에서 제품 로직은 ‘명령-응답’이었습니다. 사용자가 명확한 명령을 내리면 시스템은 단일 동작을 실행했습니다.

2025년부터 2026년에 걸쳐 출원된 특허는 다른 사고방식을 반영하고 있습니다. AI 어시스턴트는 단순한 명령 실행에서 시나리오 판단 및 기능 조정으로 진화하고 있습니다. 먼저 시나리오를 파악한 뒤, 행동을 유발할지 여부, 어떤 기능을 호출할지, 그리고 실행 순서를 결정합니다. 트리거 조건은 단일 음성 명령에서 일정, 환경, 차량 상태를 포함하는 3가지 입력 범주로 확대되고 있습니다.

이러한 변화에 따라 오작동 방지에 대한 수요도 발생하고 있습니다. 트리거 임계값은 신뢰성 점수 산정을 통해 설정되며, 운전자의 주의가 필요한 기능에 대해서는 사전에 안전성 검증이 이루어집니다. 이는 제조업체가 선제적 서비스에 수반되는 경험상의 위험을 솔루션 설계에 반영하고 있음을 보여줍니다.

사례 1: 명시적인 명령이 아닌 이동 일정이나 환경 인식을 기반으로 이루어지는 콕핏 사전 조정 - 샤오미 오토(Xiaomi Auto) : 차량 콕핏 제어 방법

사례 2: 2계층 에이전트 아키텍처에서의 도메인 간 기능 연계 - Junchu Technology: 지능형 콕핏·멀티 AI 에이전트·도메인 간 연계 슈퍼브레인

사례 3: 시나리오 신뢰도 점수를 통한 잘못된 능동적 상호작용 트리거 억제 - Dilu Technology: 지능형 콕핏 적응형 상호작용 기법 및 시스템

사례 4: 안전 사전 검증 하에서의 멀티 에이전트 태스크 폐쇄 루프 - GAC 혼다: 운전 시나리오에서 AI 에이전트를 기반으로 한 자동 풍경 촬영

사례 5: 성격 벡터를 기반으로 한 자동차 어시스턴트의 대화 스타일 진화 - FAW: 자동차 AI와 사용자를 위한 양방향 육성법

콕핏 특허 동향 2: 차량 내 헬스케어 - 대상층에 따른 모니터링 및 개입

2025년부터 2026년에 걸쳐 출원된 건강 관련 특허의 주목할 만한 특징은 대상 인구층의 구분입니다. 탑승객의 3가지 범주에 맞추어 각각 다른 센서 구성과 기술적 접근 방식이 채택되고 있습니다.

고령 승객을 위한 기술 경로는 자동 식별, 간소화된 인터페이스, 비상 시 접근 경로 단축과 같은 상호작용 계층의 개선에 중점을 두고 있어, 엔지니어링 작업 부하를 비교적 줄일 수 있습니다.

어린이 및 탑승 감지·돌봄을 위한 접근 방식은 비접촉식 감지와 저전력 지속 모니터링에 중점을 두고 있으며, 전력 소비와 정확도에 따라 차량 측과 클라우드 측의 연산 능력을 계층적으로 할당하고 있습니다.

성인 승객을 위한 기술 경로는 상태 표시에서 개입으로 전환되며, 검증 창을 통해 폐쇄 루프를 형성합니다.

1. 고령 승객: 상호작용의 장벽을 낮추고, 긴급 대응 경로를 단축

사례 1: 손바닥 지문을 통한 연령대 식별을 트리거로 한, 고령자용 상호작용 모드로의 자동 전환 - GAC 혼다: AI 기반 조종석 상호작용 기법

2. 어린이 동승: 비접촉식 모니터링 및 주차 중인 차량 내 탑승 감지 및 돌봄

사례 2: 4계층 아키텍처를 통한 탑승자의 건강 상태에 대한 비침습적 모니터링 및 서비스의 폐쇄 루프 - 동풍자동차: 다중 모달 비침습적 모니터링 기능을 갖춘 시나리오 기반 지능형 헬스 콕핏 시스템

사례 3: 주차 차량의 보안 감시 및 클라우드 계층형 대응을 위한 레이더·비전 기반 2단계 트리거 - BICV: 다중 모달 지각 및 분산 AI에 기반한 자동차 보안 기법

3. 성인 탑승자: 생리적 상태 인식 및 개입 효과 검증

사례 4: 다중 생리 신호 융합을 통한 멀미 수준 평가 및 여러 액추에이터를 연동한 개입 - 동풍자동차: 차량 조종석 내 멀미 완화 방법

사례 5: 체압 분포와 심박 변동을 기반으로 한 적응형 시트 마사지 전략 - 치레이(Chery) : 자동차용 마사지 모드를 위한 AI 기반 지능형 조정 시스템 및 방법

사례 6: 다중 모달 감정 추론에 기반한 차내 환경의 협업 조정 - Kwung's Aroma: 다중 모달 지각 및 AI 대규모 모델을 기반으로 한 자동차용 아로마테라피·힐링 시스템

콕핏 특허 동향 3: 인포테인먼트 - 컨텐츠 이식에서 차량 내 시나리오 지향으로의 전환

2025년부터 2026년에 걸쳐 신규 특허의 중점은 컨텐츠 제공이 아니라, 기존의 엔터테인먼트 형식을 차량 내부 공간 및 이용 시간대에 적응시키는 데 있습니다. 게임 조작에는 기존의 차량 하드웨어가 재사용됩니다. 음악 조절은 고정된 음향 효과 설정에서 음악 장르, 차량의 음향 특성, 그리고 개별 사용자의 취향을 고려한 통합적인 솔루션으로 진화합니다. 오디오·비디오 재생은 고정된 화면에서 탑승자의 시선 각도에 따른 적응형 렌더링으로 전환되며, 파노라마 선루프 등 기존과는 다른 투영 면으로도 확대됩니다. 매니큐어 등의 라이프스타일 서비스가 콕핏에 통합되어 인포테인먼트 시스템과 연동됩니다.

사례 1: 자동차의 물리적 버튼과 다차원 센서의 재사용을 통한 게임 조작 - Voyah: ‘차량용 게임 제어 방법 및 관련 장치’

사례 2: 음악 장르와 차량의 음향 특성에 대한 연동 분석을 통한 자동 튜닝 - 충칭 화웨이 쑤 전자: AI 모델을 기반으로 한 자동 음악 스타일 튜닝 기법

사례 3: 투영면 역할을 하는 조광식 선루프를 갖춘 차량 내 시네마 모드 - BYD: 차량 및 제어 방법, 시스템, 그리고 차량용 조광식 선루프용 컨트롤러

목차

제1장 지능형 콕핏 특허 특징 개요

제2장 혁신적인 콕핏 디스플레이에 관한 특허

제3장 콕핏 인터랙션에 관한 특허

제4장 인포테인먼트 관련 특허

제5장 차량내 모니터링에 관한 특허

제6장 기타 콕핏 기능에 관한 특허

제7장 OEM별 지능형 콕핏에 관한 특허 동향

제8장 공급업체의 지능형 콕핏 특허 동향

LSH 26.10.08

Intelligent Cockpit Patent Research: Cockpit AI, In-vehicle Health, and Infotainment Are Upgrade to Scenario-based and Proactive Functions

From a patent perspective, this report explores the cutting-edge development trends of intelligent cockpits. The research scope covers eight product categories including new cockpit displays, cockpit interaction, in-cabin monitoring, infotainment, digital key, smart seat, smart audio, panoramic sunroof, as well as patents related to in-vehicle health.

Through keyword retrieval, cleansing and duplicate removal for different segments, a relatively valid patent dataset is obtained for cross-analysis to present the technical features of the intelligent cockpit sector in current stage, including patent distribution, applicant rankings, tracking of featured patents and development trends of each segment.

Preface

In from January to July 2026, 3,054 intelligent cockpit patents were published in China, compared with 4,597 for the full year of 2025. Based on data from January to July 2026, the annualized number reaches about 5,232, higher than that of 2025.

Compared with the cumulative structure, two changes emerge in 2026. First, the proportion of infotainment dropped noticeably against its cumulative share (43.7%). A total of 543 infotainment patents were published during January-July 2026, lower than 994 in the same period of the prior year. Second, published in-cabin monitoring patents (262) has outnumbered new cockpit displays (257), and exceeded its level in full-year 2025 (141). The growth in in-cabin monitoring patents is mainly driven by domestic mandatory standards for driver monitoring systems and increasingly tight regulations in Europe, America and other regions.

Cockpit Patent Trend 1: Cockpit AI - Shift from Passive Response to Proactive Service

The product logic of early-stage automotive voice was "command-response". Users issued explicit commands and the system executed single actions.

Patents filed from 2025 to 2026 reflect a different mindset. AI assistants evolve from command execution toward scenario judgment and function orchestration. They first identify scenarios, then decide whether to trigger actions, which functions to invoke and the execution sequence. Trigger conditions expand from single voice commands to three input categories including schedule, environment and vehicle status.

This transition also generates demand for mis-trigger prevention. Trigger thresholds are set via credibility scoring, and safety pre-verification is performed for functions that draw driver attention. It shows manufacturers have incorporated experience risks of proactive services into solution design.

Case 1: Cockpit pre-adjustment driven by travel schedule and environmental perception instead of explicit commands - Xiaomi Auto: Vehicle Cockpit Control Method

In March 2026, Xiaomi Auto published a patent: Vehicle Cockpit Control Method, Apparatus, Vehicle and Storage Medium.

Patent No.: CN122211318A

Problem Addressed: Cockpit pre-adjustment relies on user-initiated operations. Pre-information such as number of passengers and luggage specifications requires manual judgment and input by users.

Solution Highlights: Determine scenario type and departure time based on travel schedules. Before departure, collect mobility characteristics including passenger count and suitcase size and quantity via IoT devices. Pre-set seat positions and tailgate opening angles accordingly. Trigger conditions change from user commands to "schedule time + environmental collection", reducing explicit user operations.

Case 2: Cross-domain function collaboration under two-tier Agent architecture - Junchu Technology: Intelligent Cockpit Multi-AI Agent Cross-domain Collaboration Super Brain

In July 2025, Junchu Technology published a patent: Intelligent Cockpit Multi-AI Agent Cross-domain Collaboration Super Brain System and Method.

Patent No.: CN120743112A

Problem Addressed: Individual functional domains of the cockpit operate independently. Cross-domain scenarios, e.g., rest mode require concurrent adjustments to seats, air conditioning and lighting, require separate user operations. No unified scheduling exists at the system level.

Solution Highlights: Adopt a two-tier AI Agent structure. The central Agent undertakes scenario understanding and priority arbitration (sorted by safety, health and comfort). Five sub-agents manage cockpit, powertrain, body, chassis and autonomous driving respectively. Information is exchanged through MCP and A2A communication standards, with access to more than 200 sensor channels. All systems maintain a synchronization cycle of 200 milliseconds, close to the human perceptual threshold for system latency.

Case 3: Suppression of false proactive interaction triggers via scenario credibility scoring - Dilu Technology: Intelligent Cockpit Adaptive Interaction Method and System

In December 2025, Dilu Technology published a patent: Intelligent Cockpit Adaptive Interaction Method and System.

Patent No.: CN121734433A

Problem Addressed: Trigger modes based on fixed thresholds and single dimensions tend to produce misoperations, which significantly undermine user trust and willingness to use proactive service functions.

Solution Highlights: Align occupant, environment and vehicle information in time to build unified scenario representation. The end-side small model outputs scenario labels with credibility scores. Only scenarios scoring above the threshold are retained. Then atomic service invocation chains are dynamically orchestrated through SOA, and cross-system execution is completed via Hypervisor and automotive Ethernet. Compared with fixed-rule solutions, this solution features confidence thresholds to avoid triggering for low-confidence scenarios.

Case 4: Multi-Agent task closed loop under safety pre-verification - GAC Honda: Automatic Landscape Shooting Based on AI Agent in Driving Scenarios

In June 2026, GAC Honda published a patent: Automatic Landscape Shooting Method, Apparatus, Device and Medium Based on AI Agent in Driving Scenarios.

Patent No.: CN122513650A

Problem Addressed: Shooting actions during driving carry safety risks, and existing functions mostly support one-off triggering without a complete closed loop from recognition to output.

Solution Highlights: Upon triggering, calculate safety risk values based on driver status and vehicle operating data. Shooting is executed only after verification passes. Three Agents including intent recognition, shooting control and copywriting generation collaborate to finish shooting, landscape type identification and personalized copy creation, followed by automatic storage or sharing. Safety pre-verification represents a common design pattern for functions involving vehicle control or driver attention occupation.

Case 5: Interactive style evolution of automotive assistants based on personality vectors - FAW: Bidirectional Cultivation Method for Automotive AI and Users

In September 2025, FAW published a patent: Bidirectional Cultivation Method for Automotive AI and Users.

Patent No.: CN121387063A

Problem Addressed: The interactive style of automotive assistants is statically set upon delivery and does not evolve with usage, failing to sustain user engagement.

Solution Highlights: Initialize multi-dimensional personality vectors. Trigger evolution algorithms to adjust vectors according to update cycles or behavioral events, which in turn modify linguistic styles, recommendation strategies and interaction modes. Supporting components include personality development trees, medals, social leaderboards and certification labels. Essentially, interaction styles are parameterized, and operational design is deployed to extend user usage duration.

Cockpit Patent Trend 2: In-vehicle Health - Monitoring and Intervention Differentiated by Population

A notable feature of health-related patents filed from 2025 to 2026 is population differentiation. Three categories of occupants correspond to distinct sensor configurations and technical paths.

Path for elderly occupants focuses on interactive-layer modifications including automatic identification, simplified interfaces and compressed emergency access routes with, relatively controllable engineering workload.

Path for children and presence detection and care centers on contact-free perception and low-power continuous monitoring, with layered allocation of vehicle-end and cloud computing power based on power consumption and accuracy;

Path for adult occupants shift from status display to intervention, and forms closed loops through verification windows.

1. Elderly Occupants: Lower Interaction Barriers and Shorter Emergency Response Paths

Case 1: Automatic switch to elderly-friendly interaction mode driven by palmprint age group identification - GAC Honda: AI-based Cockpit Interaction Method

In February 2026, GAC Honda published a patent: AI-based Cockpit Interaction Method.

Patent No.: CN122133070A

Problem Addressed: General HMIs feature deep functional hierarchies and high information density. Support for dialect and slow-speed voice recognition is insufficient. Emergency assistance requires multi-step operations.

Solution Highlights: Collect palm-print data at door handles. Adopt a CNN-Transformer age-group recognition model to identify elderly occupants and automatically activate elderly-friendly mode with simplified interfaces and enlarged fonts. Integrate voice, face, physical movement and age-group inputs into a dedicated intent recognition model for elderly-adapted interaction and rapid emergency assistance. Identification is triggered upon door opening without manual menu-based setup by users.

2. Child Occupants: Contact-free Monitoring, and Presence Detection and Care in Parked Vehicles

Case 2: Imperceptible occupant health monitoring and service closed loop in four-layer architecture - Dongfeng Motor: Scenario-based Intelligent Health Cockpit System with Multimodal Imperceptible Monitoring

In May 2026, Dongfeng Motor published a patent: A Scenario-based Intelligent Health Cockpit System with Multimodal Imperceptible Monitoring.

Patent No.: CN122494091A

Problem Addressed: Existing health functions operate in isolation with separated monitoring and execution links, lacking service closed loops and medical sector connectivity. Rear-seat occupants such as children and elderly passengers often cannot actively report physical discomfort.

Solution Highlights: Implementation across four layers. The perception layer conducts periodic imperceptible data collection and invalid frame filtering via RGB-NIR cameras for drivers, RGB-IR cameras for occupants as well as environmental and seat sensors. The health AI analysis layer fuses data to output risk levels and service strategy codes. The scenario decision layer converts strategy codes into control instructions. The service execution layer adjusts environment or interaction. Data encryption transmission and medical linkage designs are incorporated.

Case 3: Radar-vision two-stage trigger for parked-vehicle security monitoring and cloud hierarchical response - BICV: Automotive Security Method Based on Multimodal Perception and Distributed AI

In September 2025, BICV published a patent: Automotive Security Method Based on Multimodal Perception and Distributed AI.

Patent No.: CN120902673B

Problem Addressed: Conventional sentry mode is constrained by vehicle computing power and power consumption, making it difficult to balance false-alarm and missed-alarm rates. For scenarios where occupants are left inside parked vehicles, both false and missed alarms carry severe consequences.

Solution Highlights: Two-tier monitoring is activated after engine shutdown. Radar and IMU perform primary low-power monitoring. Upon triggering, panoramic cameras and microphones are waked up for secondary data collection. Extracted features are uploaded to cloud AI for threat identification, and corresponding alerts are executed according to risk grades. Essentially, computing power is allocated hierarchically between vehicle and cloud from the dimensions of power consumption and accuracy.

3. Adult Occupants: Physiological Status Recognition and Intervention Effect Verification

Case 4: Multi-physiological-signal-fusion motion-sickness level assessment and multi-actuator linked intervention - Dongfeng Motor: Vehicle Cockpit Motion-sickness Alleviation Method

In November 2025, Dongfeng Motor published a patent: Vehicle Cockpit Motion-sickness Alleviation Method.

Patent No.: CN121716630A

Problem Addressed: Motion-sickness intervention mostly relies on medication with side effects. Existing automotive countermeasures are unitary without post-execution effect assessment, operating as open-loop control.

Solution Highlights: Fuse multiple signals including electrodermal activity, heart-rate variability, skin temperature, head shaking amplitude, eye-movement disorder and vehicle acceleration fluctuation. An AI model dynamically weights these inputs to map four-tier motion-sickness severity levels. Link four categories of actuators including air conditioning (with directional or omnidirectional air supply and menthol delivery), seats (with low-frequency massage and synchronous vibration), acoustic systems (generating white noise and co-frequency sound waves), and displays (adjusting AR-HUD image positions and horizon anchor points). A 10-minute verification window is set. Alternative strategies are automatically switched if severity levels show no improvement, transforming open-loop regulation into closed-loop regulation.

Case 5: Adaptive seat massage strategy based on body-pressure distribution and heart-rate variability - Chery: AI-based Intelligent Adjustment System and Method for Automotive Massage Modes

In March 2026, Chery published a patent: AI-based Intelligent Adjustment System and Method for Automotive Massage Modes.

Patent No.: CN122354326A

Problem Addressed: Massage points are factory-set and fixed, failing to adapt to occupants of different body types or adjust according to real-time occupant status.

Solution Highlights: Upon occupant seating, pressure arrays and resting heart-rate data are compared with an ergonomic library to compute matching scores to identify key body regions and initial working points. During driving, dynamic fatigue indices are calculated based on heart-rate variability (HRV) and pressure variations to adjust massage modes across intervals. Manual adjustments feed back into the personalization library, and occupant identities are recognized via pressure distribution to automatically load user preferences.

Case 6: Coordinated in-cabin environment adjustment driven by multimodal emotion inference - Kwung's Aroma: Automotive Aromatherapy Healing System Based on Multimodal Perception and AI Large Model

In December 2025, Kwung's Aroma Published a patent: Automotive Aromatherapy Healing System Based on Multimodal Perception and AI Large Model.

Patent No.: CN121734277A

Problem Addressed: Automotive fragrance is released following fixed rhythms. Fragrance modules operate independently from lighting, audio and display modules without coordination, and cannot adapt to occupant status.

Solution Highlights: Temporally align visual inputs, physiological signals including EEG, HRV and GSR, environmental and behavioral data. A lightweight multimodal large model infers emotions and risks, driving coordinated outputs of micro-dose continuously-adjustable fragrance, lighting color temperature and brightness, music and visual images. Continuous iteration is supported via dynamic knowledge graphs and OTA updates.

Cockpit Patent Trend 3: Infotainment - Transition from Content Porting to In-vehicle Scenario Orientation

The priority of new patents between 2025 and 2026 lies not in content supply, but in adapting existing entertainment forms to vehicle interior space and usage time windows. Game controls reuse existing vehicle hardware. Music tuning evolves from fixed sound-effect settings toward joint solution considering song genres, vehicle acoustic characteristics and individual user preferences. Audio-video playback migrates from fixed screens to adaptive rendering following occupant viewing angles and extends to non-conventional projection surfaces such as panoramic sunroofs. Lifestyle services such as manicure are integrated into cockpits and interconnected with infotainment systems.

Case 1: Game control via reuse of automotive physical buttons and multi-dimensional sensors - Voyah: In-vehicle Game Control Method and Related Devices

In 2026, Voyah Published a patent: In-vehicle Game Control Method and Related Devices.

Patent No.: CN122424566A

Problem Addressed: In-vehicle games rely on external gamepads or touch operations. Native game-adapted input devices are absent inside vehicles, and additional gamepad deployment is constrained by seat layout and device quantity.

Solution Highlights: Switch automotive control buttons into game mode. Activate multi-dimensional sensors for gyroscope readings, pressure detection, operation duration and knob rotation, and enable low-latency communication protocols. Map posture, force magnitude, operation duration and knob rotation actions into game instructions via mapping tables, realizing gamified reuse of native buttons. The value is that multi-dimensional input controllers are realized without adding dedicated peripherals.

Case 2: Automatic tuning via joint solution of song genres and vehicle acoustic characteristics - Chongqing Huaweixu Electronics: An AI Model-based Automatic Song-style Tuning Method

In 2026, Chongqing Huaweixu Electronics published a patent: An AI Model-based Automatic Song-style Tuning Method.

Patent No.: CN122454939A

Problem Addressed: Automotive audio effects mostly adopt fixed sound modes and static EQ settings. They cannot simultaneously accommodate differences in song genres, acoustic characteristics across vehicle models and long-term user preferences. Historical listening preferences cannot be migrated after switching vehicles.

Solution Highlights: A music representation model extracts song style vectors. An acoustic encoding model extracts vehicle acoustic vectors. A preference reconstruction network generates acoustic correction to derive target preference memory. Frequency-band residuals are calculated between target frequency-band responses and cockpit frequency-band responses to output target tuning parameters. Tuning is transformed from fixed-gear selection to joint solution integrating songs, vehicles and user profiles.

Case 3: In-vehicle cinema mode with dimmable sunroof serving as projection surface - BYD: Vehicle and Control Method, System and Controller for Vehicle Dimmable Sunroof

In 2026, BYD published a patent: Vehicle and Control Method, System and Controller for Vehicle Dimmable Sunroof.

Patent No.: CN121822085A

Problem Addressed: In-vehicle content viewing is limited by the physical dimensions and installation positions of center console or rear-seat screens, making it difficult to achieve cinema-style viewing atmosphere.

Solution Highlights: Under projection mode, the dimmable sunroof switches to opaque status to act as a projection canvas. It links with projection device and seat posture to build cinema-style ambiance. Linkage with drones and telescopes is supported alongside multi-projector 3D imaging modes. Essentially, sunroofs originally designed for daylighting and sun shading are repurposed as display carriers.

Table of Contents

Report Introduction

Report Introduction: Research Scope and Analytical Framework

Patent Panorama: Structural Profiling

Competitive Landscape: Rankings of OEMs and Suppliers by Number of Patents

Research Direction 1: Cockpit Interaction

Research Direction 2: Infotainment

Research Direction 3: Intelligent Seats

Research Direction 4: Novel Cockpit Displays

Research Direction 5: Digital Keys

Research Direction 6: In-cabin Monitoring

Research Direction 7: Panoramic Sunroofs

Research Direction 8: Intelligent Audio Systems

Research Direction 9: In-vehicle Health: From Air Purification to Health Assistant

Extended Research: Cockpit AI - Technology Evolution

Research Direction: Cockpit AI -Layout of Providers

Report Summary 1: Main Evolution Line of Intelligent Cockpits

Report Summary 2: Evolution Characteristics and Common Problems

Report Summary 3: Future Outlook

Report Summary 4: Core Conclusions

1 Overview of Intelligent Cockpit Patent Features

  • 1.1 Overview of Intelligent Cockpits
  • 1.2 Number of Intelligent Cockpit Patents
  • 1.3 Intelligent Cockpit Patent Rankings - Overall Ranking
  • Intelligent Cockpit Patent Rankings - Ranking by Number of Patents in 2025
  • Intelligent Cockpit Patent Rankings - Ranking by Number of Patents in 2026
  • 1.4 Distribution of Intelligent Cockpit Patents of OEMs
  • 1.5 Distribution of Intelligent Cockpit Patents of Suppliers
  • 1.6 Cockpit AI Deployment
  • Evolution of Cockpit AI Technologies
  • Layout of Cockpit AI Technology Providers (1)
  • Layout of Cockpit AI Technology Providers (2): OEMs
  • Layout of Cockpit AI Technology Providers (3): Tier1s and Component Suppliers
  • Layout of Cockpit AI Technology Providers (4): Technology, Software and AI Companies
  • 1.7 Summary of Future Development Trends of Intelligent Cockpits
  • Overall Trends of Intelligent Cockpits (1)
  • Overall Trends of Intelligent Cockpits (2)
  • Overall Trends of Intelligent Cockpits (3)
  • Overall Trends of Intelligent Cockpits (4)
  • Overall Trends of Intelligent Cockpits (5)
  • Summary of Intelligent Cockpits and Outlook

2 Novel Cockpit Display Patents

  • 2.1 Overview of Novel Cockpit Display Patents
  • Definition of Novel Cockpit Displays
  • Number of Novel Cockpit Display Patents
  • Rankings of Novel Cockpit Display Patents
  • Novel Display Technology Composition
  • Hot Novel Display Technologies
  • Comparison of Novel Cockpit Display Patents between OEMs
  • Comparison of Novel Cockpit Display Patents between Suppliers
  • 2.2 AR HUD
  • Definition of AR HUD
  • Key AR HUD Technologies
  • Number of AR HUD Patents
  • Rankings of AR HUD Patents
  • Vehicle Models Equipped with AR HUD and Comparison of Parameters (1)
  • Vehicle Models Equipped with AR HUD and Comparison of Parameters (2)
  • Vehicle Models Equipped with AR HUD and Comparison of Parameters (3)
  • Vehicle Models Equipped with AR HUD and Comparison of Parameters (4)
  • Comparison of AR HUD Indicators and Supported Vehicle Models between Suppliers (1)
  • Comparison of AR HUD Indicators and Supported Vehicle Models between Suppliers (2)
  • Comparison of AR HUD Indicators and Supported Vehicle Models between Suppliers (3)
  • Comparison of AR HUD Indicators and Supported Vehicle Models between Suppliers (4)
  • 2.3 Transparent Displays
  • Definition of Transparent Displays
  • Categories of Transparent Display Technologies (1)
  • Categories of Transparent Display Technologies (2)
  • Categories of Transparent Display Technologies (3)
  • Rankings of Transparent Display Patents
  • Installation of Transparent Displays in Vehicles
  • 2.4 Holographic Projection
  • Definition of Holographic Projection
  • Number of Holographic Projection Patents
  • Rankings of Holographic Projection Patents
  • 2.5 Rear Row Entertainment Screens and Roof-mounted Screens
  • Definition of Rear Row Entertainment Screens
  • Rear Row Entertainment Screen Layout Scheme 1
  • Rear Row Entertainment Screen Layout Scheme 2
  • Rear Row Entertainment Screen Layout Scheme 3
  • Layout Trends for Rear Row Entertainment Screens
  • Summary of Vehicle Models Equipped with Rear Row Entertainment Screens (1)
  • Summary of Vehicle Models Equipped with Rear Row Entertainment Screens (2)
  • Definition of Roof-mounted Screens
  • Features of Roof-mounted Screens
  • Summary of Vehicle Models Equipped with Roof-mounted Screens
  • Number of Rear Row Entertainment Screen and Roof-mounted Screen Patents
  • Rankings of Rear Row Entertainment Screen and Roof-mounted Screen Patents
  • Application Cases of Rear Row Entertainment Screens and Roof-mounted Screens (1)
  • Application Cases of Rear Row Entertainment Screens and Roof-mounted Screens (2)
  • Application Cases of Rear Row Entertainment Screens and Roof-mounted Screens (4)
  • Application Cases of Rear Row Entertainment Screens and Roof-mounted Screens (5)
  • 2.6 Camera Monitor System (CMS)
  • Definition of CMS
  • Number of CMS Patents
  • Rankings of CMS Patents
  • 2.7 Intelligent Displays Technology Trends
  • Intelligent Displays Technology Trends (1)
  • Intelligent Displays Technology Trends (2)
  • Intelligent Displays Technology Trends (6)
  • Intelligent Displays Technology Trends (7)

3 Cockpit Interaction Patents

  • 3.1 Overview of Cockpit Interaction Patents
  • Definition of Cockpit Interaction
  • Number of Cockpit Interaction Patents
  • Rankings of Cockpit Interaction Patents
  • Cockpit Interaction Technology Composition
  • Hot Cockpit Interaction Technologies
  • Comparison of Cockpit Interaction Patents between OEMs
  • Characteristics of Cockpit Interaction Patents of OEMs
  • Comparison of Cockpit Interaction Patents between Suppliers
  • Characteristics of Cockpit Interaction Patents of Suppliers
  • 3.2 Multimodal Interaction
  • Number of Multimodal Interaction Patents
  • Rankings of Multimodal Interaction Patents
  • Types of Multimodal Interaction Patents
  • Human-vehicle Interaction Functions Based on Multimodal AI Large Model
  • Summary of Application Cases of Multimodal Interaction Solutions in Representative Vehicle Models (1)
  • Summary of Application Cases of Multimodal Interaction Solutions in Representative Vehicle Models (2)
  • Summary of Application Cases of Multimodal Interaction Solutions in Representative Vehicle Models (3)
  • Summary of Application Cases of Multimodal Interaction Solutions in Representative Vehicle Models (4)
  • Summary of Application Cases of Multimodal Interaction Solutions in Representative Vehicle Models (5)
  • 3.3 Voice Interaction
  • Number of Voice Interaction Patents
  • Rankings of Voice Interaction Patents
  • Core Application Scenarios of Automotive Voice Interaction
  • Featured Automotive Voice Interaction Technologies (1)
  • Featured Automotive Voice Interaction Technologies (2)
  • 3.4 Face Recognition
  • Number of Face Recognition Patents
  • Rankings of Face Recognition Patents
  • 3.5 Fingerprint Recognition
  • Number of Fingerprint Recognition Patents
  • Rankings of Fingerprint Recognition Patents
  • 3.6 Gesture Interaction
  • Number of Gesture Interaction Patents
  • Rankings of Gesture Interaction Patents
  • 3.7 Action Recognition
  • Number of Action Recognition Patents
  • Rankings of Action Recognition Patents
  • 3.8 Iris Recognition
  • Number of Iris Recognition Patents
  • Rankings of Iris Recognition Patents
  • 3.9 Electromyography
  • Number of Electromyography Patents
  • Rankings of Electromyography Patents
  • 3.10 Vein Recognition
  • Number of Vein Recognition Patents
  • Rankings of Vein Recognition Patents
  • 3.11 Palmprint Recognition
  • Number of Palmprint Recognition Patents
  • Rankings of Palmprint Recognition Patents
  • 3.12 Emotion Recognition
  • Number of Emotion Recognition Patents
  • Rankings of Emotion Recognition Patents
  • 3.13 Cockpit Interaction Technology Trends
  • Cockpit Interaction Technology Trends (1)
  • Cockpit Interaction Technology Trends (2)
  • Cockpit Interaction Technology Trends (5)
  • Cockpit Interaction Technology Trends (6)

4 Infotainment Patents

  • 4.1 Overview of Infotainment Patents
  • Definition of Infotainment
  • Infotainment Service Feature 1
  • Infotainment Service Feature 2
  • Infotainment Service Feature 3
  • In-vehicle Infotainment Feature 4
  • In-vehicle Infotainment Feature 5
  • Number of Infotainment Patents
  • Rankings of Infotainment Patents
  • Infotainment Technology Composition
  • Hot Infotainment Technologies
  • Comparison of Infotainment Patents between OEMs
  • Comparison of Infotainment Patents between Suppliers
  • Characteristics of Infotainment Layout of OEMs (1)
  • Characteristics of Infotainment Layout of OEMs (2)
  • Characteristics of Infotainment Layout of OEMs (6)
  • Characteristics of Infotainment Layout of OEMs (7)
  • 4.2 SD Maps
  • Introduction to Navigation and Mobility Services
  • Navigation and Mobility Feature 1
  • Navigation and Mobility Feature 2
  • Number of SD Map Patents
  • Rankings of SD Map Patents
  • Summary of SD Map Patent Characteristics (1)
  • Summary of SD Map Patent Characteristics (2)
  • 4.3 Automotive Music
  • Number of Automotive Music Patents
  • Rankings of Automotive Music Patents
  • Summary of Automotive Music Patent Characteristics
  • 4.4 Automotive Audio & Video
  • Number of Automotive Audio & Video Patents
  • Rankings of Automotive Audio & Video Patents
  • Summary of Automotive Audio & Video Patent Characteristics
  • 4.5 Automotive Games
  • Number of Automotive Game Patents
  • Rankings of Automotive Game Patents
  • Summary of Automotive Game Patent Characteristics
  • Automotive Game Feature 1: Deployment Modes
  • Automotive Game Feature 1: Deployment Modes
  • Automotive Game Feature 2: Discussion on Challenges
  • Automotive Game Feature 3: Development toward Four Directions
  • 4.6 Cockpit News
  • Number of Cockpit News Patents
  • Rankings of Cockpit News Patents
  • Summary of Cockpit News Patent Characteristics
  • 4.7 Infotainment Technology Trends
  • Infotainment Technology Trends (1)
  • Infotainment Technology Trends (2)
  • Infotainment Technology Trends (3)
  • Infotainment Technology Trends (4)

5 In-cabin Monitoring Patents

  • 5.1 Overview of In-cabin Monitoring Patents
  • Introduction to In-cabin Monitoring Systems
  • Number of In-cabin Monitoring Patents
  • Rankings of In-cabin Monitoring Patents
  • In-cabin Monitoring Technology Composition
  • Hot In-cabin Monitoring Technologies
  • Summary of In-cabin Monitoring System Applications in Representative Vehicle Models (1)
  • Summary of In-cabin Monitoring System Applications in Representative Vehicle Models (2)
  • Summary of In-cabin Monitoring System Applications in Representative Vehicle Models (6)
  • Summary of In-cabin Monitoring System Applications in Representative Vehicle Models (7)
  • Summary of Solutions of Chinese In-cabin Monitoring System Suppliers (1)
  • Summary of Solutions of Chinese In-cabin Monitoring System Suppliers (2)
  • Summary of Solutions of Chinese In-cabin Monitoring System Suppliers (3)
  • Summary of Solutions of Chinese In-cabin Monitoring System Suppliers (4)
  • Summary of Solutions of Chinese In-cabin Monitoring System Suppliers (5)
  • 5.2 DMS
  • Number of DMS Patents
  • Rankings of DMS Patents
  • 5.3 OMS
  • Number of OMS Patents
  • Rankings of OMS Patents
  • 5.4 In-cabin Monitoring Technology Trends
  • In-cabin Monitoring Technology Trends (1)
  • In-cabin Monitoring Technology Trends (2)
  • In-cabin Monitoring Technology Trends (6)
  • In-cabin Monitoring Technology Trends (7)
  • Application Cases of Driver Incapacitation Assistance (1)
  • Application Cases of Driver Incapacitation Assistance (2)
  • Application Cases of Driver Incapacitation Assistance (3)

6 Patents for Other Cockpit Functions

  • 6.1 Digital Key Patents
  • Introduction to Digital Keys
  • Development History of Digital Keys
  • Technical Routes for Digital Keys
  • Number of Digital Key Patents
  • Rankings of Digital Key Patents
  • Digital Key Technology Composition
  • Hot Digital Key Technologies
  • Number of Bluetooth Key Patents
  • Rankings of Bluetooth Key Patents
  • Summary of Representative BLE Digital Key Solutions (1)
  • Summary of Representative BLE Digital Key Solutions (2)
  • Summary of Representative BLE Digital Key Solutions (3)
  • Summary of Representative BLE Digital Key Solutions (4)
  • Number of NFC Key Patents
  • Rankings of NFC Key Patents
  • Number of UWB Key Patents
  • Rankings of UWB Key Patents
  • Summary of Representative UWB Digital Key Solutions (1)
  • Summary of Representative UWB Digital Key Solutions (2)
  • Summary of Representative UWB Digital Key Solutions (3)
  • Summary of Representative UWB Digital Key Solutions (4)
  • Summary of Representative UWB Digital Key Solutions (5)
  • Number of NearLink Key Patents
  • Vehicle Models Deploying NearLink Digital Keys
  • Summary of Representative NearLink Digital Key Solutions (1)
  • Summary of Representative NearLink Digital Key Solutions (2)
  • Digital Key Technology Trends (1)
  • Digital Key Technology Trends (2)
  • Digital Key Technology Trends (3)
  • 6.2 Intelligent Seat Patents
  • Definition of Intelligent Seats
  • Status Quo of Intelligent Seats
  • Technical Routes for Intelligent Seats
  • Breakdown of Technical Routes for Intelligent Seats
  • Number of Intelligent Seat Patents
  • Rankings of Intelligent Seat Patents
  • Intelligent Seat Technology Composition
  • Hot Intelligent Seat Technologies
  • Intelligent Seat Technology Trends (1)
  • Intelligent Seat Technology Trends (5)
  • Intelligent Seat Technology Trends (6)
  • 6.3 Smart Audio Patents
  • Number of Smart Audio Patents
  • Rankings of Smart Audio Patents
  • Smart Audio Technology Composition
  • Hot Smart Audio Technologies
  • Summary of Application Cases of Automotive Audio Systems (1)
  • Summary of Application Cases of Automotive Audio Systems (2)
  • Summary of Application Cases of Automotive Audio Systems (3)
  • Smart Audio Technology Trends (1)
  • Smart Audio Technology Trends (2)
  • Smart Audio Technology Trends (6)
  • 6.4 Panoramic Sunroof Patents
  • Definition of Panoramic Sunroofs
  • Development History of Panoramic Sunroofs
  • Number of Panoramic Sunroof Patents
  • Rankings of Panoramic Sunroof Patents
  • Panoramic Sunroof Technology Composition
  • Hot Panoramic Sunroof Technologies
  • Keywords in Panoramic Sunroof Patents
  • Summary of Application Cases of Panoramic Sunroofs in Mainstream Vehicle Models (1)
  • Summary of Application Cases of Panoramic Sunroofs in Mainstream Vehicle Models (2)
  • Summary of Application Cases of Panoramic Sunroofs in Mainstream Vehicle Models (6)
  • Technical Routes of Panoramic Sunroof Suppliers
  • Panoramic Sunroof Technology Trends (1)
  • Panoramic Sunroof Technology Trends (2)
  • Panoramic Sunroof Technology Trends (3)
  • 6.5 In-vehicle Health Patents
  • Development History of In-vehicle Health
  • In-vehicle Health Layout of OEMs
  • In-vehicle Health Layout of Suppliers
  • In-vehicle Health Patent 1: A Multi-sensor Fusion Intelligent Cockpit Environmental Perception Control System
  • In-vehicle Health Patent 2: Eye Status Monitoring Method, Apparatus, Electronic Device and Storage Medium
  • In-vehicle Health Patent 3: A Scenario-based Intelligent Health Cockpit System with Multimodal Imperceptible Monitoring.
  • In-vehicle Health Patent 4: Health Detection Method, Apparatus, Computer Equipment and Storage Medium
  • In-vehicle Health Patent 5: Vehicle Health Status Assessment Method and Related Apparatus
  • In-vehicle Health Patent 6: A Driver Health and Safety Protection Method, System, Equipment and Medium for Vehicles
  • In-vehicle Health Patent 7: An In-vehicle Health Detection Abnormality Handling Method, Apparatus and Vehicle
  • In-vehicle Health Patent 8: A Multi source perception based Intelligent In-vehicle Air conditioning Health Regulation Method and System
  • In-vehicle Health Patent 9: An In-vehicle Health Detection Abnormality Handling Method, Apparatus and Vehicle
  • In-vehicle Health Patent 10: Health File Fusion Method, Apparatus, Computer Equipment and Storage Medium
  • In-vehicle Health Patent 11: Driver Spinal Health Monitoring Method, System and Automotive Intelligent Cockpit
  • In-vehicle Health Patent 12: Information Recommendation Method, Apparatus and Storage Medium
  • In-vehicle Health Technology Trends (1): Multimodal Imperceptible Monitoring + Scenario-based Intelligent Health Cockpit Closed Loop System
  • In-vehicle Health Technology Trends (2): Occupant Vital Sign Perception Hardware Innovations and Specialized Physiological Monitoring Technologies
  • In-vehicle Health Technology Trends (3): Health Data Fusion, File Construction and Cross-device/Cross-scenario Services
  • In-vehicle Health Technology Trends (4): Proactive Care for Specific Populations and Special Physical and Mental Scenarios

7 Intelligent Cockpit Patent Layout of OEMs

  • 7.1 Geely
  • Intelligent Cockpit Patents
  • Data for Infotainment Patents
  • Infotainment Patent 1: In-vehicle Digital Human Interaction Method, Apparatus, Device, Storage Medium and Product
  • Infotainment Patent 2: Vehicle Game Processing Method and Apparatus
  • Infotainment Patent 3: Predictive Sleep Aid Method, Apparatus, Electronic Device and Vehicle
  • Infotainment Patent 4: An Automotive Cockpit Music Interaction Method
  • Infotainment Patent 5: Vehicle-based Adaptive Image Playback Method and Related Devices
  • Infotainment Patent 6: A Vehicle and An Operation Control Method and Apparatus for Automotive Functional Modules
  • Data for Cockpit Interaction Patents
  • Cockpit Interaction Patent 1: In-vehicle and External Voice Interaction Method, System, Device and Storage Medium
  • Cockpit Interaction Patent 2: External Voice Interaction Method, System, Device, Storage Medium and Program Product
  • Other Patents: Vehicle Occupant Sitting Posture Detection Method, System and Readable Storage Medium
  • 7.2 Chery
  • Intelligent Cockpit Patents
  • Data for Cockpit Interaction Patents
  • Cockpit Interaction Patent 1: Continuous Driving Emotion Recognition Method, Apparatus, Vehicle and Storage Medium
  • Cockpit Interaction Patent 2: An Automotive Intelligent Cockpit Child Safety Monitoring System Based on Multimodal Interaction
  • Cockpit Interaction Patent 3: An Intelligent Vehicle User Personalized Data Cross-vehicle Synchronization Method and Apparatus
  • Data for Infotainment Patents
  • Infotainment Patent 1: A Synchronization Control Method between In-vehicle Esports Terminals, Apparatus, and Vehicle
  • Infotainment Patent 2: A Parent-Child Entertainment Intelligent Cockpit System and Control Method Thereof
  • Infotainment Patent 3: Tactile Game Interaction Apparatus, Method and Vehicle
  • Infotainment Patent 4: Somatosensory Game Control Method Based on Vehicle Intelligent Floor Mats, and Apparatus
  • Infotainment Patent 5: Intelligent Light Information Interaction Control Method, System and Electronic Device
  • Other Patent 1: In-vehicle Child Presence Detection Method, System, Device and Medium
  • Other Patent 2: An AI and VR Based AR HUD Generation Method, Apparatus, Device and Storage Medium
  • 7.3 Changan
  • Intelligent Cockpit Patents
  • Data for Infotainment Patents
  • Infotainment Patent: A Vehicle Game Operation Control Method
  • Data for Cockpit Interaction Patents
  • Cockpit Interaction Patent 1: A Multi-feature Fusion Based Dangerous Driving Management and Control Method and System
  • Cockpit Interaction Patent 2: Automotive Intelligent Voice Interaction Method, Apparatus, Electronic Device and Storage Medium
  • 7.4 Dongfeng
  • Intelligent Cockpit Patents
  • Data for Infotainment Patents
  • Infotainment Patent 1: Automotive Dynamic Ambient Lighting Adjustment Method, System, Vehicle and Electronic Device
  • Infotainment Patent 2: Automotive Viewing Status Control Method, System, Device, Medium and Product
  • Infotainment Patent 3: A Sunroof and Automobile Integrated with Image System
  • Data for Cockpit Interaction Patents
  • Cockpit Interaction Patent 1: An Automotive Scenario Strategy Generation Method, System, Medium and Device
  • Cockpit Interaction Patent 2: Center Console Screen Feedback Adjustment Method, System, Device and Storage Medium
  • Cockpit Interaction Patent 3: A Vehicle Emergency Event Handling Method, Storage Medium and Program Product
  • Cockpit Interaction Patent 4: User Requirement Recognition Method
  • Other Patents: A Machine Vision Based Automotive Rearview Mirror Automatic Adjustment Method and System
  • 7.5 FAW
  • Intelligent Cockpit Patents
  • Data for Cockpit Interaction Patents
  • Cockpit Interaction Patent 1: A Voice Image Facial Expression Collection Method Based on Vision Large model
  • Cockpit Interaction Patent 2: Driving Authority Management Method, Apparatus and Medium Based on Biometric Verification
  • Cockpit Interaction Patent 3: Adaptive Soundscape Simulation System, Method and Device Based on Intelligent Cockpits
  • Cockpit Interaction Patent 4: A Multimodal Fusion Based Cockpit Collaborative Recognition and Intention prediction Control System and Method
  • Data for Infotainment Patents
  • Infotainment Patent 1: Projection Lamp Game Implementation Method, Apparatus, Electronic Device, Storage Medium and Vehicle
  • Infotainment Patent 2: In-vehicle Children Story Playback Method, Apparatus, Electronic Device and Storage Medium
  • Infotainment Patent 3: An In-vehicle Karaoke System, Control Method, Electronic Device and Storage Medium
  • Other Patent 1: A Dynamic Starlight Roof Control Method and Related Devices
  • Other Patent 2: In-vehicle Sunroof Projection Adjustment System and Method
  • Other Patent 3: An AR HUD Based Intelligent Pedestrian Interaction System, Method and Device
  • Other Patent 4: In-vehicle Motion Sickness Prevention Parameter Automatic Adaptation Control Method, System, Vehicle and Medium
  • Other Patent 5: Automobile Control System, Method and Electronic Device Based on Driver Status Detection
  • Other Patent 6: A Seat Adjustment Control System, Method, Electronic Device and Storage Medium
  • Other Patent 7: Automotive Audio Volume Adjustment Method, System, Electronic Device and Storage Medium
  • 7.6 BAIC
  • Intelligent Cockpit Patents
  • Data for Cockpit Interaction Patents
  • Cockpit Interaction Patent: Electric Vehicle Speed Limiting Method, Apparatus, Vehicle and Storage Medium
  • Data for Infotainment Patents
  • Infotainment Patent: Vehicle Lock Control Method and Vehicle
  • 7.7 Great Wall Motor
  • Intelligent Cockpit Patents
  • Data for Infotainment Patents
  • Infotainment Patent: A Music Rhythm Ambient Lighting Control Method, Apparatus, Vehicle and Medium
  • Data for Cockpit Interaction Patents
  • Cockpit Interaction Patent 1: Vehicle Control Method, Electronic Device and Vehicle
  • Other Patents 1: Automotive Wireless Charging Control Method, Apparatus, Electronic Device and Vehicle
  • Other Patents 2: Armrest Assembly, Seat Structure and Vehicle
  • 7.8 Seres
  • Intelligent Cockpit Patents
  • Data for Cockpit Interaction Patents
  • Cockpit Interaction Patent 1: A Vehicle Lighting Control Method, Apparatus, Device and Medium
  • Cockpit Interaction Patent 2: A Visual Synchronization Method, System, Equipment and Medium in Relaxation Scenarios
  • Data for Infotainment Patents
  • Infotainment Patent: An Automobile Seat Music Headrest Plug-in Device and Automobile Seat
  • Other Patent 1: Intelligent Cockpit Control Method, Apparatus, Device and Product Based on Emotion Recognition
  • Other Patent 2: A Driver Fatigue Status Detection Method, Apparatus, Device and Medium
  • Other Patent 3: Personalized Motion Sickness Prevention Method, Apparatus, Device, Medium and Vehicle
  • Other Patent 4: Automotive Toilet and Vehicle
  • 7.9 BYD
  • Intelligent Cockpit Patents
  • Data for Infotainment Patents
  • Infotainment Patent: Audio-visual System
  • Data for Cockpit Interaction Patents
  • Cockpit Interaction Patent: Vehicle Intelligent Safety Protection System
  • Other Patent: Motion Sickness Protection
  • 7.10 GAC
  • Intelligent Cockpit Patents
  • Data for Infotainment Patents
  • Infotainment Patent: Game Display Method, Apparatus, Vehicle and Storage Medium
  • Data for Cockpit Interaction Patents
  • Cockpit Interaction Patent: A DeepSeek-based Intelligent Mobile Center Console Screen System
  • 7.11 Representative Patents of Other OEMs
  • FAW Bestune Representative Patent 1: Intelligent Intervention System for In-vehicle Awkward Scenarios
  • FAW Bestune Representative Patent 2: Automotive Voice Recognition Performance Enhancement Method
  • Xiaomi Auto Representative Patent: Vehicle Rooftop Tent
  • Xpeng Representative Patent 1: Large Language Model Training Method, Automotive Voice Interaction Method and Server
  • Xpeng Representative Patent 2: AR HUD Light Carpet Correction Method
  • Voyah Representative Patent 1: Voice Data Processing Method and Related Devices Based on Automotive Voice AI
  • Voyah Representative Patent 2: In-vehicle Interaction Control Method, Vehicle and System
  • Voyah Representative Patent 3: Automotive Roof-mounted Screen Control Method
  • Li Auto Representative Patent: Automotive Wireless Charging
  • Deepal Representative Patent: Vehicle Intelligent Control Method based on Multimodal Emotion Recognition
  • SAIC GM Representative Patent: Multimodal Information Fused In-vehicle Child Posture Analysis Method
  • Hyundai Representative Patent: Rollable OLED Display Patent
  • BMW Representative Patent: Alcohol detection Smart Key Patent
  • General Motors Representative Patent 1: Window Display and Communication Patent
  • General Motors Representative Patent 2: In-vehicle Q&A Game System Patent
  • Ford Representative Patent 1: Lip Reading Recognition Mode Patent
  • Ford Representative Patent 2: Stowable Keyboard Patent
  • Tesla Representative Patent: Patent for Maintaining Coolness without Removing Glass Roof
  • Mercedes Benz Representative Patent 1: AR Display Obstructed Vehicle Brake Light
  • Mercedes Benz Representative Patent 2: Automotive Graphical Interface Intelligent Agent System Based on Multimodal Large Model and Voice Interaction
  • GAC Honda Representative Patent: Machine Vision Based Child Seatbelt Intelligent Adjustment Method

8 Intelligent Cockpit Patent Layout of Suppliers

  • 8.1 Baidu
  • Intelligent Cockpit Patents
  • Data for Cockpit Interaction Patents
  • Cockpit Interaction Patent 1: Human-Machine Interaction Method
  • Cockpit Interaction Patent 2: Vehicle Voice Recognition Method
  • 8.2 PATEO CONNECT+
  • Intelligent Cockpit Patents
  • Data for Infotainment Patents
  • Infotainment Patent: Automotive Audio-visual Playback Control Method, Control System and Control Device
  • Data for Cockpit Interaction Patents
  • Cockpit Interaction Patent 1: Dialing Method, Dialing Apparatus, Electronic Device, Storage Medium and Program Product
  • Cockpit Interaction Patent 2: Voice wakeup Monitoring Method and System, Electronic Device and Readable Storage Medium
  • 8.3 Desay SV
  • Intelligent Cockpit Patents
  • Data for Infotainment Patents
  • Infotainment Patent 1: A Multimedia Management System
  • Infotainment Patent 2: Service Recommendation Method, Apparatus, Device and Storage Medium
  • Data for Cockpit Interaction Patents
  • Cockpit Interaction Patent 1: An Intelligent Cockpit Emotional Interaction Method, System and Storage Medium
  • Cockpit Interaction Patent 2: A Vehicle Cockpit Intention Recognition Method, Apparatus, Device and Medium
  • Cockpit Interaction Patent 3: AI based In-vehicle Meditation Guidance Method, Apparatus and Readable Computer Storage Medium
  • Cockpit Interaction Patent 4: An Automotive Fragrance Control Method, Control System and Pet Fragrance Box
  • Cockpit Interaction Patent 5: An In-vehicle Ambient Lighting Adjustment Method and System Based on DMS and Automotive KTV
  • Cockpit Interaction Patent 6: An External Human-vehicle Interaction Method
  • Other Patent: Automotive Mobile Phone Wireless Charging
  • 8.4 Apollo Intelligent Connectivity
  • Intelligent Cockpit Patents
  • Data for Infotainment Patents
  • Infotainment Patent: Audio Processing Method
  • Other Patent 1: Multimodal Data Based User Intention Recognition and Model Training Method
  • Other Patent 2: Voice Control Method and Apparatus
  • 8.5 Yinwang
  • Intelligent Cockpit Patents
  • Data for Infotainment Patents
  • Infotainment Patent 1: Optical Device, Projection Optical Engine, Head-up Display Device and Vehicle
  • Infotainment Patent 2: Lens, Projection Device, Lamp Device and Transportation Tool
  • Data for Cockpit Interaction Patents
  • Cockpit Interaction Patent: A Human-machine Interaction Method, Apparatus and Carrier Vehicle
  • Other Patents 1: Vehicle Window Glass Display
  • Other Patents 2: Stowable Steering Wheel System
  • Other Patents 3: Electrochromic Glass Control Method
  • Other Patents 4: A Display Device and Automotive Display System
  • 8.6 Futurus Technology
  • Intelligent Cockpit Patents
  • Data for Novel Cockpit Display Patents
  • Novel Cockpit Display Patent 1: A Road Condition Information Display Method
  • Novel Cockpit Display Patent 2: Prompt Mark Display Method
  • Novel Cockpit Display Patent 3: A Multilayer Imaging System
  • Novel Cockpit Display Patent 4: Display Control Method
  • Novel Cockpit Display Patent 5: Image Display Method
  • 8.7 Huawei
  • Intelligent Cockpit Patents
  • Data for Infotainment Patents
  • Infotainment Patent 1: Audio Module and Vehicle
  • Infotainment Patent 2: An Optical Module, Electronic Device and Vehicle
  • Other Patent 1: Vehicle Roof Storage
  • Other Patent 2: Vehicle Roof Lifting
  • Other Patent 3: Cockpit Multi-zone Management Method
  • Other Patent 4: Navigation Arrow Display Method
  • 8.8 Hangsheng Electronics
  • Intelligent Cockpit Patents
  • Data for Infotainment Patents
  • Infotainment Patent: An Automotive Intelligent Electronic System
  • Data for Cockpit Interaction Patents
  • Cockpit Interaction Patent: An Automotive Entertainment Mode Recommendation Method and System Based on Historical Data
  • Other Patent: An Intelligent Cabin Audio Channel Management System Based on External DSP
  • 8.9 ADAYO
  • Intelligent Cockpit Patents
  • Data for Infotainment Patents
  • Infotainment Patent: An Automotive Audio System and Control Method Thereof
  • Data for Cockpit Interaction Patents
  • Cockpit Interaction Patent: A Touchpad Based Gesture Recognition Method and System
  • Data for Novel Cockpit Display Patents
  • Novel Cockpit Display Patent 1: An AR HUD with High Temperature Protection Structure Against Solar Irradiation
  • Novel Cockpit Display Patent 2: Driving Assistance Graphical User Interface for Display Panel with Oblique Projection 3D Dynamic Interaction
  • Novel Cockpit Display Patent 3: Driving Assistance Graphical User Interface for Display Panel with Navigation Interface
  • Other Patent: Brightness Control Method for Automotive Head-up Display
  • 8.10 Xingyu Automotive Lighting Systems
  • Intelligent Cockpit Patents
  • Data for Cockpit Interaction Patents
  • Cockpit Interaction Patent 1: Automotive Lamp Control System and Automobile Based on Voice Control
  • Cockpit Interaction Patent 2: A Multifunctional Steering Wheel Human-vehicle Interaction System Based on TOF Gesture Recognition
  • Cockpit Interaction Patent 3: A Light Scheduling System and Method for Automobiles
  • Data for Infotainment Patents
  • Infotainment Patent 1: An Intelligent Closed Loop Lamp Light Carpet Projection System and Control Method
  • Infotainment Patent 2: A Lamp Angle Adjustment Control System and Method Based on Light Controller
  • Other Patent 1: Automotive Laser Optical Fiber Projection Scenario Interaction System and Method
  • Other Patent 2: 3D Projection System Simulating Automotive Rearview Mirror
  • 8.11 Representative Patents of Other Suppliers
  • BiTECH Representative Patent: Eye Tracking Adaptive HUD
  • Tonghua Taichu Representative Patent: Multimodal XR Automotive Transparent Window
  • Seeyao Electronics Representative Patent: Vehicle Door Glass Display System
  • Seeyao Electronics Representative Patent: Vehicle Door Glass Display System
  • IDTE Representative Patent: Integrated Scroll Type Ultra-short Throw Projection
  • Nanjing Rongxiang Representative Patent: Intelligent Automotive A-pillar Display
  • Coolwell Representative Patent: Automotive Manicure Device
  • Kwung's Aroma Representative Patent: Automotive Aromatherapy Healing System Based on Multimodal Perception and AI Large Model
  • Yuzhou Electric Appliance Representative Patent: Smart Surfaces with Intelligent Touch Control and Light transmitting Display
  • Mingchi Glass Representative Patent 1: Self-displaying Smart Sunroof Glass
  • Mingchi Glass Representative Patent 2: Solar Power Generating Laminated Dimmable Glass
  • Xinyi Glass Representative Patent 1: Off-Site Processable Flexible Perovskite CIPV Power Generating Sunroof Glass
  • Conor Nano Tech Representative Patent: Intelligent Starlight Glass
  • Changchun FAWAY Representative Patent: Dynamic Starlight Roof Based on Large Model Control
  • Honghui Auto Parts Representative Patent: Automotive Seat Headrest Integrating Bone Conduction Vibration Unit
  • Rivotek Representative Patent: Self-driving Tour Vlog System Based on Multimodal Emotion Correlation
  • Shanghai Changxing Representative Patent: Driver Emotion Intelligent Analysis and Warning Solution
  • Yanfeng Representative Patent: OMS
  • Hyperview Representative Patent: Automotive Air Conditioning Intelligent Health Control System Based on Multisource Perception
  • Tangtring Seating Representative Patent: Automotive Oxygen Generation Method and Intelligent Seating
  • CATARC Representative Patent: Intelligent Cockpit AI Voice Interaction
  • Wanglan Technology Representative Patent: Intelligent Vehicle Assistant System Based on AI Digital Human
  • Fullink Technology Representative Patent: Automotive Emotion Robot
  • BICV Representative Patent: In-vehicle Music and Lighting Adaptive Adjustment Method Based on Emotion Recognition
  • Lingai Future Technology Representative Patent: Gesture control supported In-vehicle Game
  • Smart (Zhejiang) Software Technology Representative Patent: Automotive KTV Dynamic Effect Interaction System
  • Lion Tech Representative Patent: Cockpit KTV Multiscreen Interaction
  • Neura Bloom Network Technology Representative Patent: Automotive Emotion Interaction Method Based on Multidimensional Recognition
  • Vanchoices Automotive Parts Representative Patent: An Automotive Seat Motor Intelligent Slide Rail Adjustment System Based on AI Voice Interaction
  • Xingchi Automobile Representative Patent: Child Seat Water Leakage Alarm
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