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A Model Predictive Control-Based Open-Circuit Fault Diagnosis and Tolerant Scheme of Three-Phase AC–DC Rectifiers

机译:基于模型预测控制的三相交直流整流器开路故障诊断与容错方案

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摘要

Three-phase ac-dc rectifiers are extensively employed in critical power conversion applications. This paper proposes an open-circuit fault diagnosis and tolerant scheme based on model predictive control (MPC) to enhance their reliability. The proposed fault diagnosis method is directly implemented by checking the mismatch signal between the applied switching state and the estimated one. The switching state error is independent of the voltage or current signals. Therefore, it is applicable to different voltage rating and loading scenarios. As long as the faulty switch conducts current, the open-circuit fault can be isolated very fast within several sampling periods. By introducing the healthy leg variables, a generalized model including both normal and faulty operations is proposed and the fault-tolerant scheme can be integrated into the MPC scheme for normal operations. With the proposed generalized model and fault-tolerant scheme, the rectifier can autonomously recover from open-circuit faults and the continuous operation of three-phase ac-dc rectifiers is maintained. The proposed fault diagnosis and tolerant scheme are applicable under balanced and unbalanced grid conditions. Experimental results demonstrate the effectiveness of the proposed integrated fault diagnosis and fault-tolerant scheme.
机译:三相AC-DC整流器广泛用于关键的电源转换应用中。提出了一种基于模型预测控制(MPC)的开路故障诊断与容错方案,以提高其可靠性。通过检查施加的开关状态和估计的开关状态之间的失配信号,可以直接实现所提出的故障诊断方法。开关状态误差与电压或电流信号无关。因此,它适用于不同的额定电压和负载情况。只要故障开关导通电流,就可以在几个采样周期内非常快速地隔离开路故障。通过引入健康的腿部变量,提出了一个包含正常和错误操作的通用模型,并且可以将容错方案集成到用于正常操作的MPC方案中。利用提出的通用模型和容错方案,整流器可以从开路故障中自动恢复,并保持三相AC-DC整流器的连续运行。提出的故障诊断和容错方案适用于平衡和不平衡的电网条件。实验结果证明了所提出的集成故障诊断和容错方案的有效性。

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