首页> 外文会议>IEEE Energy Conversion Congress Exposition - Asia >A New Mode-Switching Algorithm for the Line Commutated - Thyristor Bridge Emulated Rotating Power Electronic Converter for Brushless Exciter Applications
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A New Mode-Switching Algorithm for the Line Commutated - Thyristor Bridge Emulated Rotating Power Electronic Converter for Brushless Exciter Applications

机译:一种新型开关算法,用于晶体型晶闸管桥梁仿真旋转电力电子转换器,用于无刷励磁应用

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Conventional brushless exciters supply the field current to the wound-field synchronous machines through a diode bridge rectifier. Though these diode bridge-based exciters are more reliable compared to the static exciters which use brushes and slip rings, they can not produce a negative voltage across the field winding. This makes the rate of decay of the field current is very slow. To rapidly remove the field current in case of an internal fault in the synchronous machine, a thyristor emulated rotating power electronic converter (RPEC) has been proposed for brushless exciter applications. This paper shows the implementation of the gate pulse generation for the RPEC during both rectification mode as well as inversion mode. Also, the field winding current disruption issue has been analyzed while switching from rectification to inversion mode. To avoid this problem, a new algorithm has been introduced in this paper. Also, an analysis has been done on the maximum firing angle for the RPEC during the inversion mode to make sure the field current is not disrupted for the proposed converter. Finally, MATLAB-SIMULINK based simulation results are presented along with the experimental results.
机译:传统的无刷激励器通过二极管桥式整流器将场电流提供给伤口场同步机。虽然与使用刷子和滑动环的静电激励器相比,基于二极管的桥梁的激励器更可靠,但它们不能在现场绕组上产生负电压。这使得场电流的衰减速度非常慢。为了在同步机中的内部故障的情况下快速拆下现场电流,已经提出了一种晶闸管模拟旋转电力电子转换器(RPEC),用于无刷励磁应用。本文示出了在整流模式下以及反转模式期间RPEC的栅极脉冲产生的实现。此外,已经在从整流到反转模式的同时分析了现场绕组电流中断问题。为了避免这个问题,本文介绍了一种新的算法。此外,在反转模式下,在RPEC的最大触发角度上进行了分析,以确保为所提出的转换器中断字段电流。最后,基于Matlab-Simulink的仿真结果以及实验结果呈现。

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