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Research of an active and reactive power coordinated control method for photovoltaic inverters to improve power system transient stability

机译:光伏逆变器的主动和无功协调控制方法研究提高电力系统瞬态稳定性

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In recent years, the installed capacity of photovoltaic (PV) power keeps increasing rapidly. However, the typical control objective of the PV system is to provide as much active power to the system as possible, ignoring the reactive operating characteristics of PV inverters. On this basis, an active and reactive power coordinated control method of PV system suitable for electromechanical transient stability analysis is proposed in this paper. Firstly, the mathematical model for PV inverters is established. Then, a novel active and reactive power coordinated control method based on an improved double-loop control scheme is proposed, according to the steady-state active and reactive power operating limits of PV inverters. The voltage control loop is to get active and reactive current component references, combining the maximum active power point tracking under present solar irradiation and reactive power controlling under system voltage requirements; the current loop realizes the active power and reactive power coordinated control. Finally, the effectiveness of the proposed control method on power system transient stability is tested, based on the IEEE standard test system. Simulation results show that the proposed coordinated control method for photovoltaic inverters is helpful in improving the angle stability and voltage stability of power systems.
机译:近年来,光伏(PV)功率的装机容量不断迅速增加。然而,光伏系统的典型控制目标是尽可能为系统提供尽可能多的电力,忽略光伏逆变器的无功操作特性。在此基础上,提出了一种适用于机电瞬态稳定性稳定性分析的PV系统的主动和无功的协调控制方法。首先,建立了PV逆变器的数学模型。然后,提出了一种基于改进的双回路控制方案的新型活性和无功功率协调控制方法,根据PV逆变器的稳态主动和无功功率操作限制。电压控制回路是为了获得有源和无功电流分量参考,在系统电压要求下,将最大有源电力点跟踪组合在当前太阳照射和无功控制下;电流回路实现有源电力和无功协调控制。最后,基于IEEE标准测试系统,测试了所提出的控制方法对电力系统瞬态稳定性的有效性。仿真结果表明,光伏逆变器的建议配位控制方法有助于提高电力系统的角度稳定性和电压稳定性。

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