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Three-Level T-Type Inverter Fault Diagnosis and Tolerant Control Using Single-Phase Line Voltage

机译:三级T型逆变器故障诊断和使用单相线电压的耐受控制

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摘要

This study combines extension theory and chaos theory to create a three-level T-type inverter fault diagnosis system that uses single-phase line voltage signals. First, the three-level T-type inverter single-phase line voltage output waveform was measured when faults occurred separately in 12 power transistors. Subsequently, the Lorenz master & x2013;slave dynamic error transformation was used to obtain the chaos eye coordinates, which functioned as fault characteristics. Fault diagnosis involved extension theory & x2013;based fault categorization. Specifically, fault characteristic values were adopted as the input signal to determine the correlation between chaos eyes coordinates and transistor fault, thereby locating faulty transistors. In summary, this study established a low-cost and fast-operating inverter fault diagnosis system. The system integrates detection results with inverter fault-tolerant control to enable the constant operation of inverters in power generation without derating, thereby greatly enhancing system reliability. Finally, the reliability of the smart fault diagnosis system and fault-tolerant control was verified through measurement results.
机译:本研究结合了扩展理论和混沌理论,创建了一种使用单相线电压信号的三级T型逆变器故障诊断系统。首先,当在12个功率晶体管中单独发生故障时,测量三级T型逆变器单相线电压输出波形。随后,Lorenz Master&x2013;从动动态误差转换用于获得功能作为故障特性的混沌眼坐标。故障诊断涉及延伸理论和X2013;基于故障分类。具体地,采用故障特性值作为输入信号,以确定混沌眼睛坐标和晶体管故障之间的相关性,从而定位故障晶体管。总之,本研究建立了低成本和快速操作的逆变器故障诊断系统。该系统将检测结果与逆变器容错控制集成,以使得在不降额的情况下使得逆变器在发电中的恒定操作,从而大大提高了系统可靠性。最后,通过测量结果验证了智能故障诊断系统和容错控制的可靠性。

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