飞机动力子系统仿真激励器设计

T. Feng, Li Dong-liang, Feng Zhi-gang, Zhang Tong
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摘要

在飞机研制过程中,需要对电气管理系统(UMS)各子系统状态监测和控制功能的数字化以及系统管理的自动化进行验证。对于分系统电源分系统要求UMS实现其交直流供电分系统母线、地电源、蓄电池、整流单元和应急直流发电机等设备的状态监测和故障报警。在电源分系统实际硬件没有安装的情况下,我们需要开发一个电源系统仿真励磁器来完全模拟交流电源分系统、直流电源分系统、应急直流电源系统、蓄电池系统、交直流配电系统的功能以及与UMS的接口,这种仿真可以实时监控供电网络状态,能够植入故障信息;可以记录和回放供电系统的工作状态,验证UMS对于供电子系统的控制、监控功能。本文对硬件和软件的结构和功能进行了详细的描述,并进行了相应的软件测试,以及验证了软件对各板硬件的控制和数据采集功能,最后介绍了系统开发过程中遇到的主要问题和关键技术。实际运行结果表明,该系统能有效地对机电验证管理系统进行监控。
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Design of Aircraft Power Subsystem Simulation Exciter
In the process of aircraft development, we need to verify the Electrical Management System (UMS) on condition monitoring and control functions of each subsystem digitization, as well as the system management automation. For the subsystem power subsystem requires UMS achieve its AC and DC power supply subsystem bus bar, ground power, battery, rectifier unit and emergency DC generators and other equipment for condition monitoring and fault alarms. In the case of the power supply subsystem actual hardware is not installed, we need to develop a power supply system simulation exciter to completely simulate AC power subsystem, DC power supply subsystem, emergency DC power system, the function of the battery system, AC/DC power distribution system and the interface with UMS, this simulation can real-time monitor the power supply network state, to be able to implant failure information, can record and playback the working state of the power supply system, it is verify UMS for the control of the power supply subsystem, monitoring function. In this paper, the structure and function of the hardware and software are detailed described, with a corresponding software test, as well as verifying the software for each board hardware control and data acquisition functions, and finally introduces the development of the main problems encountered in the process of the system and the key technology. Actual results had shown that the system can effectively monitor and control electrical and mechanical verification management system.
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