Parallel operation of two adjacent steam power plants under coordinated Q-V control

J. Dragosavac, Ž. Janda, Tomislav Gajić, D. Arnautović, J. Milanović
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Abstract

The paper examines parallel operation of two adjacent steam power plants (SPP) under coordinated reactive power (Q) - voltage control. A coordinated reactive power-voltage controller (CQVC) performs optimal coordination of the synchronous generators' Q outputs in order to maintain the voltage at a SPP HV busbars. When the plants are equipped with CQVC, they are both trying to control the same voltage, so the Q oscillations may occur due to high level of coupling. Before the commissioning of the second CQVC detailed laboratory testing was performed to determine under which conditions the oscillations may occur. The impact of all generators on HV busbars voltage is determined first. Then the worst case scenario is chosen for the most influential generators, i.e., when both CQVCs act simultaneously and independently. The laboratory test rig is developed for CQVC testing. The results showed that coordinated control of influential generators results in stable operation and ensures uniform Q share among involved generators which leads to better power system voltage support.
两个相邻蒸汽发电厂在Q-V协调控制下并联运行
本文研究了在协调无功电压控制下相邻两台蒸汽电厂并联运行的问题。协调无功电压控制器(CQVC)对同步发电机的Q输出进行优化协调,以保持SPP高压母线上的电压。当植物配置CQVC时,它们都试图控制相同的电压,因此由于高耦合可能会出现Q振荡。在第二个CQVC调试之前,进行了详细的实验室测试,以确定在哪些条件下可能发生振荡。首先确定所有发电机对高压母线电压的影响。然后为最具影响力的生成器选择最坏情况,即两个cqvc同时独立地行动。研制了用于CQVC测试的实验室试验台。结果表明,对有影响的发电机组进行协调控制,可以保证各发电机组的Q分担均匀,从而获得更好的电力系统电压支持。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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