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Fault-tolerant sensor using model based simulated value for space environment simulation applications

机译:使用基于模型的仿真值的容错传感器在空间环境仿真应用中

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Integrated spacecrafts and associated appendages have to be tested for performance in simulated space environments before launch. These tests involve simulation of thermal and vacuum environments for the space which are performed in thermo-vacuum chambers as well as thermal cycling tests for appendages. Temperature variations in these tests are performed by radiatively coupling the test object with an active surface heated and cooled by the media flowing within. Usually thermocouples placed on the test object act as the process value to which the control system responds by manipulating the temperature of the media in the active surface. Unlike other process applications where a fault in the control channel value can be tolerated or rectified, sensors in thermo-vacuum chambers are inaccessible. The failure of this thermocouple leads to loss of control or wrong control action. This paper introduces the application of model identification techniques to simulate the test object thermocouple data. The same simulated value is used as the process value for the control system. The developed application identifies linear models viz. ARX and ArMaX and non-linear models viz. NLARX and Neural. The simulated process value for the control system is automatically selected in case of constraint violation by the actual sensor value. Process dynamics can be observed and either PID or Fuzzy control can be applied. Both model based process value simulation and control gave excellent results.
机译:在发射之前,必须对集成航天器和相关附件进行模拟太空环境中的性能测试。这些测试包括模拟在热真空腔室内进行的空间的热和真空环境,以及附件的热循环测试。这些测试中的温度变化是通过将测试对象与一个活动表面进行辐射耦合来进行的,该活动表面被其中流动的介质加热和冷却。通常,放置在测试对象上的热电偶充当过程值,控制系统通过操纵活动表面中的介质温度来响应该过程值。与可以容忍或纠正控制通道值故障的其他过程应用不同,热真空室中的传感器不可访问。该热电偶的故障会导致失去控制或错误的控制动作。本文介绍了模型识别技术在模拟测试对象热电偶数据中的应用。相同的模拟值用作控制系统的过程值。开发的应用程序可识别线性模型。 ARX和ArMaX以及非线性模型,即。 NLARX和神经。在实际传感器值违反约束的情况下,将自动选择控制系统的模拟过程值。可以观察到过程动态,可以应用PID或模糊控制。基于模型的过程值仿真和控制都给出了出色的结果。

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