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Bi-directional TRIAC fault-protection technique for Z-source half-bridge converter-fed AC motor Drives

机译:Z源半桥转换器供给交流电动机驱动器的双向三端双向可控硅故障保护技术

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With higher demand for power electronic converters in single-phase drive systems, the concern for fault-tolerant schemes has risen in the past decade. Also, the demand for Impedance(Z)-source converters, facilitating single-stage power conversion with high voltage gain, has increased for induction motor drive systems. This paper presents an efficient two TRIAC fault-protection technique for the impedance-source half-bridge converter-fed induction motor drive system. The study is analyzed thoroughly under pre-fault and post-fault conditions and a comparative analysis is presented in this paper. Simulation circuits with relevant harmonic spectra are assessed. From the detailed analysis, it is found that the occurrence of faults increases harmonic distortion to a high level, making the drive system ineligible for operation. The proposed fault-protection technique proves to be an efficient topology in maintaining continuous power flow during faults.
机译:在单相驱动系统中对电力电子转换器的需求较高,对过去十年来的容错方案的关注程度上升。此外,对电动电动机驱动系统的对电压增益进行单级功率转换的对阻抗(Z) - 源转换器的需求增加。本文介绍了阻抗源半桥转换器进料电动机驱动系统的有效两个TRIAC故障保护技术。在故障前和故障后条件下彻底分析该研究,本文提出了比较分析。评估具有相关谐波光谱的仿真电路。从详细分析中,发现故障发生的发生将谐波失真增加到高电平,使得驱动系统不符合操作。所提出的故障保护技术证明是在缺陷期间保持连续功率流动的有效拓扑。

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