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Firing thyristors with negative firing angle using multilevel current reinjection concept: an experimental evaluation

机译:使用多级电流注入概念以负触发角触发晶闸管:实验评估

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Thyristor based multilevel current reinjection (MLCR) current source converter (CSC) provides self-commutation capability to thyristors. It also has high quality line current waveform by accurately shaping the DC bus current using an auxiliary reinjection bridge. However the theoretical and PSCAD/ETDC simulation analysis do not take into account the inevitable stray capacitances and inductances which may influence the thyristor turn-on/off and the simulation switching model may not represent the switching characteristics of the main bridge thyristors fully or accurately. Questions have been raised about the ability to achieve self-commutation with thyristors and the possibility of operating thyristors with negative firing angles. Therefore, it is necessary to experimentally verify whether neglecting the real-world artefacts actually impedes the performance of thyristor based MLCR CSC. The experimental results presented in this paper prove that the auxiliary reinjection circuit can force the thyristor to commutate independently from their respective line-to-line voltages and thyristor converter can operate with a negative firing angle.
机译:基于晶闸管的多级电流注入(MLCR)电流源转换器(CSC)为晶闸管提供自换相功能。通过使用辅助再注入电桥精确整形DC总线电流,它还具有高质量的线电流波形。但是,理论分析和PSCAD / ETDC仿真分析并未考虑不可避免的杂散电容和电感,这些杂散电容和电感可能会影响晶闸管的导通/关断,并且模拟开关模型可能无法完全或准确地代表主桥晶闸管的开关特性。人们提出了与晶闸管实现自换向的能力以及以负触发角操作晶闸管的可能性的问题。因此,有必要进行实验验证,忽略现实世界的假象是否实际上会阻碍基于晶闸管的MLCR CSC的性能。本文给出的实验结果证明,辅助注入电路可以迫使晶闸管独立于各自的线间电压进行换相,并且晶闸管转换器可以以负触发角工作。

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