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Sensor Fault Detection for Line Regulating Converters supplying Constant Power Loads in DC Microgrids

机译:用于在直流微电网中提供恒定功率负载的线路调节转换器的传感器故障检测

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The objective of this paper is to increase the reliability of DC-DC converters operation, used in DC Microgrids (MG). This paper will determine the design requirements for a Sensor Fault Diagnosis (SFD) strategy for a DC-DC converter intended for DC MG, in order to allow continuous operation during erroneous sensor measurements. The SFD scheme is based on residuals generated by a generalized observer scheme. The observer gains is based on adaptive high-gain observer theory. The generated residuals are compared with thresholds, to detect sensor faults. The SFD scheme for the Line Regulating Converter (LRC) side is validated through simulations on a prototype DC MG system where the sensors are subjected to three types of sensor faults. In this paper, the prototype DC MG system will consist of a battery which is connected to the DC bus through a bidirectional buck/boost converter. A buck converter is used as LRC connected to the DC bus.
机译:本文的目的是提高DC微电网(MG)中使用的DC-DC转换器运行的可靠性。本文将确定用于DC MG的DC-DC转换器的传感器故障诊断(SFD)策略的设计要求,以允许在错误的传感器测量期间连续运行。 SFD方案基于广义观察者方案生成的残差。观察者收益基于自适应高增益观察者理论。将生成的残差与阈值进行比较,以检测传感器故障。通过样机DC MG系统上的仿真,对线路调节转换器(LRC)端的SFD方案进行了验证,其中传感器遭受三种类型的传感器故障。在本文中,原型DC MG系统将由一个电池组成,该电池通过双向降压/升压转换器连接到DC总线。降压转换器用作连接到直流总线的LRC。

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