首页> 外文会议>2014 International Conference on Power System Technology: Towards Green, Efficient and Smart Power System >Transient overvoltage control for a wind farm based on goal representation adaptive dynamic programming
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Transient overvoltage control for a wind farm based on goal representation adaptive dynamic programming

机译:基于目标表示自适应动态规划的风电场暂态过电压控制

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摘要

With increasing intermittent and fluctuant wind power integrated into the power system, the high penetration of wind generation has brought a series of challenges including voltage stability for the safe operation of power system. Static VAR Compensator (SVC) has been widely used to control the voltage on the point of common coupling (PCC) of wind farm. When severe fault occurs and leads to serious voltage drop in the system, SVC controlled by the conventional control method may cause voltage overshoot after the fault clearance due to its response time lag. And this voltage overshoot of PCC may lead to the failure of high voltage ride through. In order to solve such a problem and improve the system voltage stability under severe fault conditions, a goal representation adaptive dynamic programming (GrADP) based SVC controller is proposed in this paper. The proposed control method can precisely control reactive output of SVC through its self-learning function to approximate the optimal control policy. Thus the voltage on the PCC is effectively controlled. An IEEE four-machine two-area system is used to verify the effectiveness of the proposed approach. Detailed simulation analysis and comparative studies with particle swarm optimization (PSO) optimized SVC controller are carried out to demonstrate the performance of the new method. Simulation results indicate that the proposed control strategy is effective in mitigating the voltage overshoot with good adaptability under various operating conditions.
机译:随着越来越多的间歇性和波动性风能被集成到电力系统中,风力的高普及率带来了一系列挑战,包括电压稳定性以确保电力系统的安全运行。静态无功补偿器(SVC)已被广泛用于控制风电场公共耦合点(PCC)上的电压。当发生严重故障并导致系统中的严重电压下降时,采用常规控制方法控制的SVC可能会由于其响应时间滞后而在故障清除后引起电压过冲。 PCC的这种电压过冲可能导致高压穿越失败。为了解决该问题,提高严重故障条件下的系统电压稳定性,提出了一种基于目标表示自适应动态规划(GrADP)的SVC控制器。所提出的控制方法可以通过其自学习功能精确控制SVC的无功输出,从而逼近最佳控制策略。因此,可以有效地控制PCC上的电压。 IEEE四机两区系统用于验证所提出方法的有效性。进行了详细的仿真分析,并使用粒子群优化(PSO)优化的SVC控制器进行了比较研究,以证明该方法的性能。仿真结果表明,所提出的控制策略在各种工况下都能有效地缓解电压过冲,并且具有良好的适应性。

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