Fast open-transistor fault diagnosis based on calculated bridge arm pole-to-pole voltages in voltage-source inverters

Zhan Li, Z. Bai, Hao Ma, Yuxi Wang
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引用次数: 2

Abstract

A novel fast open-transistor diagnosis approach for voltage-source inverters (VSI) based on calculated bridge arm pole-to-pole (PTP) voltages is proposed in this paper. The theoretical PTP voltages can be calculated with duty cycle ratio and DC input, and the real PTP voltages can be calculated with output voltages and currents. When no fault occurs, there should be no difference between the theoretical and the real PTP voltages. Once fault happens, great deviations between these two calculated voltages will be incurred and can be utilized to detect and localize the fault. This method is able to achieve fast diagnosing speed, while no extra hardware circuits and complex calculation are needed, thus it can be embedded in the existing control system with little effort. Furthermore, strong robustness against operation variation makes this method feasible in diversified applications. Simulations and experiments have been carried out to validate the correctness and effectiveness of this method.
基于桥臂极对极电压计算的电压源逆变器开路晶体管故障快速诊断
提出了一种基于桥臂极对极(PTP)电压计算的电压源逆变器(VSI)开路晶体管快速诊断方法。理论PTP电压可以用占空比和直流输入计算,实际PTP电压可以用输出电压和电流计算。当不发生故障时,理论电压与实际PTP电压应无差异。一旦发生故障,这两个计算电压之间会产生很大的偏差,可以用来检测和定位故障。该方法诊断速度快,不需要额外的硬件电路和复杂的计算,可以轻松嵌入到现有的控制系统中。此外,该方法对操作变化具有较强的鲁棒性,适用于多种应用。仿真和实验验证了该方法的正确性和有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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