基于键合图模型的电力电子系统故障调节

W. Borutzky
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引用次数: 6

摘要

提出了一种利用分析冗余关系残差的基于键图模型的主动容错控制方法。后者的计算是为了确定是否发生了故障。如果采用单故障假设,优点是可以节省通过参数估计在潜在故障候选中隔离故障的时间,只要ARR残差在其阈值内,就完全不需要输入重构。结果表明,ARR残差可用于可隔离故障的估计。基于ARR的输入重构应用于buck变换器驱动的直流电动机,作为一个使用平均键合图模型的开关电力电子系统的简单例子。Scilab仿真运行证实了分析结果。如果所需的输入不能解析确定,则可以通过数值求解微分代数方程(DAE)系统来获得。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bond graph model-based fault accommodation in power electronic systems
The paper presents a bond graph model-based approach to active fault tolerant control (FTC) that makes use of residuals of analytical redundancy relations (ARRs). The latter ones are computed in order to decide whether a fault has occurred. Given a single fault hypothesis can be adopted, an advantage is that the time for isolating a fault among potential fault candidates that contribute to an ARR by means of parameter estimation may be saved and as long as ARR residuals are within their thresholds no input reconstruction at all is needed. It is shown that ARR residuals can be used for estimation of faults that can be isolated. ARR based input reconstruction is demonstrated by application to a buck-converter driven DC motor as a simple example of a switched power electronic system for which an averaged bond graph model is used. Scilab simulation runs confirm analytical results. If a required input cannot be determined analytically, it can be obtained by numerically solving a differential-algebraic equations (DAE) system.
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