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首页> 外文期刊>Mathematics and computers in simulation >Open-circuit fault diagnosis and voltage sensor fault tolerant control of a single phase pulsed width modulated rectifier
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Open-circuit fault diagnosis and voltage sensor fault tolerant control of a single phase pulsed width modulated rectifier

机译:单相脉冲宽度调制整流器的开路故障诊断和电压传感器容错控制

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摘要

Recently, single phase pulsed width modulated (PWM) rectifiers become very attractive in different industrial applications that need connection to single phase grid. Like any other PWM converter, the single phase PWM rectifier may be subject to different failures like power switch failures or sensor faults. Hence, fault diagnosis and monitoring are essential to optimize the maintenance costs and increase the reliability levels of the system. This paper discusses the fault detection and isolation (FDI) of both failures. A new open circuit fault detection and isolation approach is proposed. The fault detection method is based on residual generation between measured and observed current form factors (CFFs) with an adaptive threshold in order to avoid the false alarm and increase the reliability of the diagnosis algorithm. Also, the grid voltage sensor FDI is considered in this contribution thanks to the use of parity space equations approach. Moreover, after sensor fault detection and isolation, a grid virtual flux estimator is used to achieve the grid voltage sensor fault tolerance (FTC). Each failure may be detected in few hundred of microseconds. Theoretical analysis, simulations and experimental results are presented to validate the effectiveness of the proposed method.
机译:最近,单相脉冲宽度调制(PWM)整流器在需要连接到单相电网的不同工业应用中变得非常有吸引力。像任何其他PWM转换器一样,单相PWM整流器可能会遭受不同的故障,例如电源开关故障或传感器故障。因此,故障诊断和监视对于优化维护成本和提高系统的可靠性水平至关重要。本文讨论了两种故障的故障检测和隔离(FDI)。提出了一种新的开路故障检测与隔离方法。故障检测方法基于具有自适应阈值的已测量和已观测电流形状因子(CFF)之间的残差生成,以避免虚假警报并提高诊断算法的可靠性。同样,由于使用了奇偶性空间方程方法,电网电压传感器FDI也被认为是这一贡献。此外,在传感器故障检测和隔离之后,使用电网虚拟通量估算器来实现电网电压传感器故障容错(FTC)。每个故障可能在几百微秒内被检测到。进行了理论分析,仿真和实验结果验证了该方法的有效性。

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