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A pulsed plasma thruster fault detection and isolation strategy for formation flying of satellites

机译:卫星编队飞行的脉冲等离子推进器故障检测与隔离策略

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The main objective of this paper is to develop a dynamic neural network-based fault detection and isolation (FDI) scheme for pulsed plasma thrusters (PPTs) that are employed in the attitude control subsystem (ACS) of satellites tasked to perform formation flying (FF) missions. A hierarchical methodology is proposed that consists of three fault detection and isolation (FDI) approaches, namely (i) a "low-level" FDI scheme, (ii) a "high-level" FDI scheme, and (iii) an "integrated" FDI scheme. Based on the data from the electrical circuit of the PPTs, the proposed "low-level" FDI scheme can detect and isolate faults in the PPT actuators with a good level of accuracy, however the precision level is poor and below expectations with the misclassification rates as expressed by False Healthy and False Faulty parameters being too high. The proposed "high-level" FDI scheme utilizes data from the relative attitudes of the FF mission. This scheme has good detection capabilities, however its isolation capabilities are not adequate. Finally, the proposed "integrated" FDI scheme takes advantage of the strengths of each of the above two schemes while reducing their individual weaknesses. The results demonstrate a high level of accuracy (99.79%) and precision (99.94%) with a misclassification rates that are quite negligible (less than 1%). Furthermore, the proposed "integrated" FDI scheme provides additional and interesting information related to the effects of faults in the thrust production levels that would not have been available from simply using the low or the high level schemes alone.
机译:本文的主要目的是为脉冲等离子推进器(PPT)开发基于动态神经网络的故障检测和隔离(FDI)方案,该方案被用于执行编队飞行(FF)的卫星的姿态控制子系统(ACS)中)任务。提出了一种分层方法,该方法由三种故障检测和隔离(FDI)方法组成,即(i)“低级” FDI方案,(ii)“高级” FDI方案和(iii)“集成”外商直接投资计划。根据PPT电路的数据,提出的“低级” FDI方案可以以良好的精度检测和隔离PPT执行器中的故障,但是精度级别很差,并且由于误分类率而低于预期如False Healthy和False Fault参数所表示的过高。拟议的“高级”外国直接投资计划利用了实况调查团相对态度的数据。该方案具有良好的检测能力,但是其隔离能力不足。最后,提出的“综合”外国直接投资方案利用了以上两种方案各自的优势,同时减少了它们各自的弱点。结果显示出较高的准确度(99.79%)和精密度(99.94%),并且误分类率几乎可以忽略不计(小于1%)。此外,提出的“集成” FDI方案提供了与推力生产水平中的断层影响有关的其他有趣信息,而仅通过使用低级或高级方案无法获得这些信息。

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