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Failure Modes Demonstration and Redundant Postfault Operation of Rotating Thyristor Rectifiers on Brushless Dual-Star Exciters

机译:无刷双星励磁机上旋转晶闸管整流器的故障模式演示和冗余后故障操作

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摘要

The excitation system plays a critical role in the operation of synchronous generators. An equipment failure could impact the voltage quality for smaller grids. Furthermore, it can lead to cost penalties and reduced production for the power plant owner. Recently, a new high-speed-response rotating brushless exciter was developed that employs remote control of the rotating thyristors on the generator shaft. This has led to new possibilities for improving the performance of brushless exciters. This contribution investigates the failure modes of a dual-star outer pole exciter that feeds two separate thyristor bridges connected in parallel during a normal operation. The possibility of a redundant postfault operation due to open-thyristor or open-phase faults is demonstrated using experimental testing. The system is compared with the fault performance of a conventional three-phase system. This paper includes the implementation and validation of a fault-predicting double d-q exciter model. In addition, the dangerous effects of a shorted-thyristor fault are investigated. A “skip firing” protection technique is briefly demonstrated for the fast isolation of such faults, yielding nondestructive postfault recovery and redundant failure-mode operation. The evidence shows that the dual-star exciter is a competitive choice for the future development of fault-tolerant brushless exciters.
机译:励磁系统在同步发电机的运行中起着至关重要的作用。设备故障可能会影响较小电网的电压质量。此外,它可能导致发电厂的所有者受到成本惩罚并降低产量。最近,开发了一种新型的高速响应旋转无刷励磁机,它采用了发电机轴上旋转晶闸管的远程控制。这为改善无刷励磁机的性能带来了新的可能性。该贡献调查了双星外极励磁机的故障模式,该励磁机为正常运行期间并联连接的两个单独的晶闸管桥馈电。通过实验测试证明了由于晶闸管断开或相缺相而导致的冗余故障后操作的可能性。将该系统与常规三相系统的故障性能进行了比较。本文包括故障预测双d-q励磁机模型的实现和验证。此外,还研究了晶闸管短路故障的危险影响。简要演示了一种“跳过触发”保护技术,用于快速隔离此类故障,从而实现无损的故障后恢复和冗余的故障模式操作。证据表明,双星励磁机是容错无刷励磁机未来发展的竞争选择。

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