세계의 항공기용 소프트웨어 테스트 및 개발 시장
Global Aircraft Software Testing and Development Market
세계의 항공기용 소프트웨어 테스트 및 개발 시장에 대해 조사했으며, 시장 예측, 시장 역학, 동향 분석 등의 정보를 제공합니다. 운항 회사에 의한 신형 항공기 수요 증가는 시장 성장을 촉진하고 있습니다.
10년간 항공기용 소프트웨어 테스트 및 개발 시장 분석은 항공기용 소프트웨어 테스트 및 개발 시장의 성장, 변화하는 시장 역학, 기술 채용 개요를 자세히 살펴보고, 전체적인 시장 매력에 대해 이 장에서 설명합니다.
이 부문에서는 이 시장에 영향을 미칠 것으로 예상되는 주요 10가지 기술과 이러한 기술이 시장 전체에 미칠 수 있는 영향에 대해 알아봅니다.
이 시장의 10년간 항공기용 소프트웨어 테스트 및 개발 시장 예측은 상기 부문 전체에 걸쳐서 상세하게 설명합니다.
이 부문에서는 지역의 항공기용 소프트웨어 테스트 및 개발 시장 동향, 촉진요인, 이 시장의 억제요인과 과제, 정치, 경제, 사회, 기술 측면을 다룹니다. 이 부문에서는 지역 전체의 시장 예측과 시나리오 분석에 대해서도 자세하게 설명합니다. 지역 분석의 후반부에는 주요 기업 프로파일링, 공급업체 상황, 기업 벤치마크를 기재하고 있습니다. 현재 시장 규모는 일반 시나리오에 기반해 추정됩니다.
이 장에서는 이 시장의 주요 방위 프로그램에 대해 설명하고, 최신 뉴스와 이 시장에서 출원된 특허에 대해서도 다룹니다. 이 장에서는 국가별 10년간 시장 예측과 시나리오 분석에 대해서도 설명합니다.
기회 매트릭스는 독자가 이 시장에서 기회가 많은 부문을 이해하는데 도움이 됩니다.
이 시장 분석에 대한 당사 전문가의 의견
The functioning, safety, and operations of an airplane during flight are heavily dependent on many forms of software. Software is widely used in avionics, from the seatbelt indicator to the control unit. As a result, it should go without saying that software testing is essential to ensure that an aircraft operates as intended. Software testing and quality control are consequently the aerospace industry's support structures. When it comes to testing and validating aircraft software applications, there are very tight criteria that must be adhered to without exception in order to ensure the safety and wellbeing of commuters, the flight crew, and the vehicle itself. In addition to thousands of various functions, the procedure involves millions of separate codes.
Functional testing: This ensures that the software programmes meet both high-level and low-level requirements. Timing of the worst-case scenario: There are some lines of code that must operate within a given time limit, and it is essential to test that they do so. Analysis of structural coverage: This makes sure that the codes' structural provisions have been examined and verified to the extent required by industry norms.The aviation sector is changing as a result of digital disruptions. Travelers' expectations for excellent digital experiences and airline-related services are changing as a result of technology. Airlines and other industry-related businesses must respond to these changes with ground-breaking technical innovations.
Avionics software differs significantly from other embedded systems in that actual standards are frequently far more stringent and complex than commercial standards, which are typically specified in publications that run into the hundreds of pages. Typically, a real-time operating system is used to execute it. Most procedures have documentation or software to track requirements from numbered paragraphs in the specs and designs to precise lines of code, with accurate tests for each, and a box on the final certification checklist because the process is legally needed. This is specifically done to demonstrate compliance with the legal requirements. Due to the use of alternative technologies or low safety level standards, there may be deviations from a given project to the processes detailed here.
The increasing demand for new aircrafts by operator will create significant demand for aircraft software testing and development market. For the two biggest commercial jet manufacturers, 2021 was a year of recovery after a more than difficult 2020 caused by the COVID-19 epidemic. Despite the current conflict between Russia and Ukraine, 2022 is already well under way and is anticipated to be another year of recovery for the commercial aircraft manufacturing business. However, there is still a long way to go before deliveries resume to their pre-pandemic levels at Boeing and Airbus.
Avionics software differs significantly from other embedded systems in that actual standards are frequently far more stringent and complex than commercial standards, which are typically specified in publications that run into the hundreds of pages. Typically, a real-time operating system is used to execute it. Software testing is a crucial area of attention for adjustments and enhancements. To overcome the difficulties of obtaining "Quality at Speed" amongst the growing complexity of systems, settings, and data, testing procedures and technologies must change. Although the software research community has long used artificial intelligence and machine learning (AI/ML) approaches to address difficulties in software testing, current advances in AI/ML and the abundance of data now available present new opportunities to use AI/ML in testing. AI and Machine Learning will influence the growth of aircraft software testing and development market.
The International Civil Aviation Organization (ICAO) projects that both passenger and freight traffic should quadruple by 2035. An increase in middle-class disposable income and the emergence of low-cost airlines are two factors that have contributed to an increase in airline passengers. The demand for in-flight entertainment and connectivity services has grown significantly along with the increase in airline passengers. The number of passengers flying has increased in major nations like Canada, the United States, Brazil, Indonesia, the Philippines, China, Saudi Arabia, and India. When people seek to escape the monotonous routine that has emerged as the "new normal" in the wake of the coronavirus epidemic, this behavior is referred to as revenge travel or tourism. It also results from a condition known as "lockdown fatigue," or exhaustion that worsens as a result of monotony. These factors significantly increase the demand for aircraft software testing and development market.
With the opening of a new office in Phoenix, Arizona, Daedalean, a Swiss company that creates AI and machine learning software for aviation systems, has begun operations outside of Europe. After working for Intel for the last seven years as an aeronautical engineer and worldwide sales director, Dr. Yemaya Bordain will lead Daedalean's Americas division.
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