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BOND-GRAPH-BASED FAULT DIAGNOSIS IN SWITCHED POWER ELECTRONIC SYSTEMS

机译:切换电力电子系统中基于债券图的故障诊断

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Switched power electronic subsystems are widely used in various applications. A fault in one of their components may have a significant effect on the system’s load or may even cause a damage. Therefore, it is important to detect and isolate faults and to report true faults to a supervisory system in order to avoid malfunction of or damage to a load. If, in a model-based approach to fault detection and isolation of hybrid systems, switching devices are considered as ideal switches then some equations must be reformulated whenever some devices have switched. In this paper, a fixed causality bond graph representation of hybrid system models is used, i.e., computational causalities assigned according to the Standard Causality Assignment Procedure (SCAP) are independent of system modes of operation. The latter are taken into account by transformer moduli m_i(t) ∈ {0, 1} ?t ≥ 0 in a unique set of equations of motion. In a case study, this approach is used for fault diagnosis in a three-phase full-wave rectifier. Residuals of Analytical Redundancy Relations (ARRs) holding for all modes of operations and serving as fault indicators are computed in an offline simulation as part of a DAE system by using a bond graph model of the faulty system instead of the real one and by coupling it to a bond graph of the healthy system by means of residual sinks.
机译:交换电力电子子系统广泛用于各种应用中。其中一个组件中的故障可能对系统的负荷产生显着影响,或者甚至可能导致损坏。因此,重要的是要检测和隔离故障并将真实故障报告给监管系统,以避免对负载的故障或损坏。如果在基于模型的故障检测和混合系统隔离的方法中,则切换设备被认为是理想的交换机,然后每当一些设备切换时必须重新重新重新重新重新重新重新重新重新重新重新重新重新格式化一些方程。在本文中,使用混合系统模型的固定因果关系键曲线图表示,即根据标准因果关系分配过程(SCAP)分配的计算因果关系与系统操作模式无关。后者通过变压器Moduli M_I(t)∈{0,1}Δt≥0以唯一的运动方式考虑。在一个案例研究中,这种方法用于三相全波整流器中的故障诊断。用于所有操作模式和用作故障指示器的分析冗余关系(ARRS)的残差在离线模拟中计算作为DAE系统的一部分,通过使用故障系统的键控模型而不是真实的,并通过耦合通过剩余水槽对健康系统的键合图。

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