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Avionics Systems, Integration, and Technologies of the Light Transport Aircraft (Review Paper)

机译:轻型运输飞机的航空电子系统,集成和技术(评论文件)

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摘要

Avionics of the present day comprises advanced technology and software-intensive systems. Earlier generation?avionics constituted federated architecture and used line replaceable units (LRUs) having individual resources for each application with redundant hardware and software. However with the advancement of technology, methods,and mechanisms, the industry moved quite rapidly towards the integrated architecture called integrated modular?avionics (IMA). Over the last decade there has been tremendous growth in these technologies which has resulted?in reduced weight, volume, and developmental efforts. Usage of complex systems with advanced technologies and their certification for use in civil aircraft are the key issues to be addressed even today. Avionics of general aviation aircraft consists of typical systems like communication, navigation, display, radar, engine indication and data acquisition and recoding systems. These can be realised in federated as well as integrated architectures. TheLRUs requirements for avionics sub-system depends on the certification standards like FAR 23 or FAR 25. The whole cycle of architecture definition, integration, testing and means of compliance of the complete suite is the major activity in any new aircraft development programme. Development of ground-based test facilities and proper maintenance of the entire system on aircraft are other important activities in such programmes. These issues are?presented in this paper for a typical light transport aircraft (LTA). The new technologies with their relevance, merits/de-merits, awareness of the global systems being adopted, etc., which are being attempted as indigenousdesign and development, are also presented. Defence Science Journal, 2011,?61(4), pp.289-298 ,?DOI:http://dx.doi.org/10.14429/dsj.61.1090
机译:当今的航空电子设备包括先进的技术和软件密集型系统。较早的一代航空电子设备构成了联邦体系结构,并使用了线路可更换单元(LRU),这些单元可通过冗余硬件和软件为每个应用程序提供单独的资源。但是,随着技术,方法和机制的进步,该行业朝着称为集成模块化航空电子设备(IMA)的集成体系结构迅速发展。在过去的十年中,这些技术取得了巨大的发展,从而导致了重量,体积和开发工作量的减少。复杂技术和先进技术的使用以及它们在民用飞机上的使用认证甚至是当今仍要解决的关键问题。通用航空飞机的航空电子设备由典型的系统组成,例如通信,导航,显示,雷达,发动机指示以及数据采集和记录系统。这些可以在联邦架构和集成架构中实现。 LRU对航空电子子系统的要求取决于FAR 23或FAR 25之类的认证标准。在任何新飞机开发计划中,架构定义,集成,测试和整套套件的符合性方法的整个周期都是主要活动。在这些计划中,开发地面测试设备以及对飞机上的整个系统进行适当维护是其他重要活动。本文针对典型的轻型运输机(LTA)提出了这些问题。还介绍了新技术及其相关性,优点/缺点,对采用的全球系统的认识等,这些都是作为本土设计和开发而尝试的。国防科学杂志,2011,61(4),289-298页,DOI:http://dx.doi.org/10.14429/dsj.61.1090

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