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DEVELOPMENT OF A SYSTEM INTEGRATION LABORATORY FOR AIRCRAFT AVIONICS SYSTEMS

机译:开发飞机航空系统系统整合实验室

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The avionic systems of newly developed aircraft platforms are demanded to be a fully integrated avionics system of enhanced functions supporting the operator for successful mission operations. Prior to its installation to the aircraft, the developed avionics system should have to be fully tested in an integrated Lab, SIL (System Integration Laboratory), to validate its successful integration and demonstrate OFP tests as an integrated avionics suite. Actually, system level test conducted at a System Integration Laboratory is now mostly required for aircraft development programs or for avionics system upgrade programs. This comes up to a need for developing a SIL system of the MEP system which is being developed for the KUH (Korean Utility Helicopter). This paper shows the design results of the KUH MEP SIL system. Requirements for the SIL system and SIL design results are shown. For a better understanding, the MEP system of the KUH is also introduced. The design options that were considered during the design process are shown and compared. The requirements, design results and design considerations introduced in this paper will be able to inspire upcoming similar programs including avionics system upgrade for classical aircrafts.
机译:要求新开发的飞机平台的航空气体系统是一个完全集成的航空电子系统,其增强功能支持运营商成功的任务操作。在安装到飞机的安装之前,发达的航空电子系统应该必须在集成的实验室,SIL(系统集成实验室)中进行完全测试,以验证其成功集成,并演示OFP测试作为集成的航空电子设备套件。实际上,在系统集成实验室进行的系统级测试现在主要是飞机开发计划或航空电子系统升级计划所必需的。这令人责任开发正在开发用于KUH(韩国公用事业直升机)开发的MEP系统的SIL系统。本文显示了KUH MEP SIL系统的设计结果。显示了SIL系统和SIL设计结果的要求。为了更好地理解,还介绍了KUH的MEP系统。显示和比较设计过程中考虑的设计选项。本文介绍的要求,设计结果和设计考虑将能够激发即将到来的类似程序,包括古典飞机的航空电子系统升级。

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