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Design and implementation of real-time simulation system of OTV based on xPC target and SIT

机译:基于xPC目标和SIT的OTV实时仿真系统的设计与实现。

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Developing real-time simulation systems by manual programming is a relatively complex, unreliable and costly process. In order to overcome the problems above, real-time simulation systems of the model of orbital transfer vehicle (OTV) were designed in two ways based on xPC Target and mix-programming of LabVIEW/SIT and MATLAB/Simulink, respectively in this paper. Both methods not only had little requirement for the programming skills of the designers but also were convenient for hardware-in-the-loop (HIL) simulations. The process of building the real-time simulation system, semi-physical simulation and the characteristics of the two methods were presented in detail in the paper. The simulation results showed that both methods avoided programming for models and drivers of hardwares successfully. They are efficient ways to develop systems and have high application value.
机译:通过手动编程开发实时仿真系统是一个相对复杂,不可靠且昂贵的过程。为了克服上述问题,本文分别基于xPC Target和LabVIEW / SIT和MATLAB / Simulink的混合编程,以两种方式设计了轨道转移飞行器(OTV)模型的实时仿真系统。两种方法不仅对设计人员的编程技能要求不高,而且对于硬件在环(HIL)仿真也很方便。详细介绍了实时仿真系统的构建过程,半物理仿真以及两种方法的特点。仿真结果表明,两种方法均能成功避免对硬件模型和驱动程序进行编程。它们是开发系统的有效方法,具有很高的应用价值。

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