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HVDC auxiliary emergency power control strategy for power disturbance in two different positions of AC/DC interconnection system

机译:HVDC辅助应急功率控制策略在AC / DC互连系统的两个不同位置中的电力干扰

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High voltage direct current (HVDC) emergency control can significantly improve the transient stability of an AC/DC interconnected power grid, and is an important measure to reduce the amount of generator and load shedding when the system fails. For the AC/DC interconnected power grid, according to the location of failure, disturbances can be classified into two categories: 1) interconnected system tie-line faults, which will cause the power unbalance at both ends of the AC system, as a result of the generator rotor acceleration at the sending-end grid and the generator rotor deceleration at the receiving-end grid; 2) AC system internal faults, due to the isolation effect of the DC system, only the rotor of the generator in the disturbed area changes, which has little impact on the other end of the grid. In view of the above two different locations of disturbance, auxiliary power and frequency combination control as well as a switch strategy, are proposed in this paper. A four-machine two-area transmission system and a multi-machine AC/DC parallel transmission system were built on the PSCAD platform. The simulation results verify the effectiveness of the proposed control strategy.
机译:高压直流(HVDC)应急控制可以显着提高AC / DC互联电网的瞬态稳定性,并且是减少系统失效时的发电机量和负载脱落的重要措施。对于AC / DC互连电网,根据故障位置,干扰可以分为两类:1)互联系统系列故障,这将导致AC系统两端的功率不平衡,因此在发送端网格和接收端网格处的发电机转子加速度和发电机转子减速; 2)AC系统内部故障,由于DC系统的隔离效果,仅在干扰区域发生变化的发电机的转子,这对网格的另一端影响很小。鉴于上述两个不同的干扰位置,本文提出了辅助电源和频率组合控制以及开关策略。在PSCAD平台上建立了一个四机两区域传输系统和多机AC / DC并联传输系统。仿真结果验证了所提出的控制策略的有效性。

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