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Real-time diagnosis of multiple transistor open-circuit faults in a T-type inverter based on finite-state machine model

机译:基于有限状态机模型的T型逆变器中多晶体管开路故障的实时诊断

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摘要

This paper proposes a fault diagnosis method to diagnose multiple transistor open-circuit faults in a T-type three-level inverter. In this method, a finite-state machine (FSM) tracks state transitions caused by abnormal fault-linked current paths, and rough set theory (RST) is employed to optimize and obtain a minimum set of variables necessary to distinguish state transitions under various fault scenarios. After applying RST, voltage state variables expressed by Boolean logic relationships are adopted in the FSM to identify faults. This can also effectively reflect state transitions between single and multiple fault cases. The approach is immune to load disturbances and dead times. Through logic relationships, a circuit is designed for fast online fault location to minimize the impact of sampling frequency on diagnosis. Factors that affect diagnosis time and accuracy are considered and analyzed to ensure the reliability of the proposed method. Experimental results obtained under various conditions verify the effectiveness of this approach.
机译:本文提出了一种故障诊断方法,用于诊断T型三级逆变器中多个晶体管开路故障。在该方法中,有限状态机(FSM)跟踪由异常故障链接电流路径引起的状态转换,并且采用粗糙集理论(RST)来优化和获取在各种故障下区分状态转换所需的最小变量集场景。应用RST后,在FSM中采用了由布尔逻辑关系表示的电压状态变量以识别故障。这也可以有效地反映单个故障情况和多个故障情况之间的状态转换。这种方法免受负载扰动和死亡时间。通过逻辑关系,一个电路专为快速在线故障定位而设计,以最大限度地减少采样频率对诊断的影响。考虑并分析影响诊断时间和准确性的因素,以确保所提出的方法的可靠性。在各种条件下获得的实验结果验证了这种方法的有效性。

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