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A generator control strategy for reducing the load shedding amount after the UHVDC commutation failure

机译:减少UHVDC换相失败后的减载量的发电机控制策略

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In the power grid of "strong DC and weak AC", the commutation failure of the ultra-high voltage (UHV) line will result in angle swing between two regional power grids. Our analysis show that, unlike the scenario in the single machine infinite bus system, the speed of angle swing between two regional power grids after the fault is slow since power vacant is not very large (compared with the moment of inertia of the regional power grid). The first swing may last for several seconds. In this paper it is possible to improve the stability by changing generators output. We propose a new control strategy in this paper. The control strategy is as follows: when UHV commutation failure happens, signals are sent to generators in local power grid so that they can increase power output to compensate for the power vacant. At the same time, signals are also sent to generators in remote regional power grid to decrease their power output. This way, out of step can be avoided. Under typical simulation parameters configuration, a generator can increase/decrease mechanical power output by 6 % in 4s after the fault happens. The simulation results show that this strategy can decrease the amount of load shedding from 10.3 % to 6 % after commutation failure happens in UHV DC line connected to Henan province.
机译:在“强直流弱交流”电网中,超高压(UHV)线路的换向失败将导致两个区域电网之间的角度摆动。我们的分析表明,与单机无限总线系统中的情况不同,故障后两个区域电网之间的角度摆动速度很慢,因为空缺不是很大(与区域电网的惯性矩相比) )。第一次挥杆可能会持续几秒钟。在本文中,可以通过更改发电机输出来提高稳定性。我们在本文中提出了一种新的控制策略。控制策略如下:当特高压换相失败时,信号将发送到本地电网中的发电机,以便它们可以增加功率输出以补偿空缺的功率。同时,信号还会发送到偏远地区电网中的发电机,以降低其功率输出。这样,可以避免失步。在典型的仿真参数配置下,故障发生后,发电机可以在4s内增加/减少6%的机械功率输出。仿真结果表明,该策略可以在与河南省连接的特高压直流线路发生换向失败后将减载量从10.3%降低到6%。

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