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Migration Laws of Power System Out-of-Step Center with High-Penetration of Grid-Connected Photovoltaic

机译:高并网光伏渗透率的电力系统失调中心迁移规律

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With the increased penetration of grid-connected photovoltaics, the mechanism of the out-of-step center needs careful investigations. To tackle that challenge, this paper proposes the impedance characteristics-based out-of-step center analysis. According to the photovoltaic power model and its different fault control strategies, the external characteristics of the PV power station is modelled by an equivalent dynamically changing negative impedance. Then the out-of-step center's position distribution can be derived and the migration laws are investigated. Theoretical analysis shows that as the PV output increases, the position distribution of the oscillation center shifts from one side of the line to its opposite side. Furthermore, in the process of gradually increasing photovoltaic output, the distribution range is gradually increased when the oscillation center position is away from the power supply. It is found that when the position is near the power supply, the distribution range is gradually reduced. In addition, the out-of-step center migrates in a direction away from the photovoltaic access point. Simulation results carried out on the IEEE 9-bus test system verify the correctness and effectiveness of the theoretical analysis.
机译:随着并网光伏发电的普及,失调中心的机理需要仔细研究。为了应对这一挑战,本文提出了基于阻抗特性的失步中心分析。根据光伏发电模型及其不同的故障控制策略,可通过等效动态变化的负阻抗对光伏电站的外部特性进行建模。然后可以得出失调的中心的位置分布,并研究迁移规律。理论分析表明,随着PV输出的增加,振荡中心的位置分布从线的一侧移到其相反侧。此外,在逐渐增加光伏输出的过程中,当振荡中心位置远离电源时,分布范围逐渐增加。发现当位置靠近电源时,分配范围逐渐减小。另外,失调的中心在远离光伏接入点的方向上迁移。在IEEE 9总线测试系统上进行的仿真结果验证了理论分析的正确性和有效性。

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