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Voltage sag ride-through control strategy with reactive power compensation for virtual synchronous generator

机译:虚拟同步发电机无功补偿的电压暂降穿越控制策略

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In recent years, with the increasing number of distributed generators (DG), how to increase the stability of the power with the improvement of consumptive ability of new energy has become an important research issue. Virtual synchronous generator (VSG) is a control strategy, which can improve the friendliness of DGs by imitating the output characteristics of the traditional synchronous generators, for inverters. However, traditional VSG control strategy is not capable of suppressing overcurrent or providing reactive power during grid fault. An improved VSG control strategy with reactive power compensation for voltage sag fault is proposed in this paper. Firstly, a VSG model is established for behavior analysis during symmetrical voltage sag. Secondly, the overall and detailed control structure of improved VSG control is designed. Besides, the principle of control strategy and parameter setting are also given. Finally, the proposed control method are verified by Simulink simulation.
机译:近年来,随着分布式发电机数量的增加,如何通过提高新能源的消费能力来提高电力的稳定性已经成为重要的研究课题。虚拟同步发电机(VSG)是一种控制策略,通过模仿传统同步发电机的逆变器输出特性,可以提高DG的友好性。但是,传统的VSG控制策略无法在电网故障期间抑制过电流或提供无功功率。提出了一种改进的带有无功补偿的电压暂降故障的VSG控制策略。首先,建立了一个VSG模型,用于对称电压暂降过程中的行为分析。其次,设计了改进的VSG控制的总体和详细的​​控制结构。此外,还给出了控制策略和参数设置的原理。最后,通过Simulink仿真验证了所提出的控制方法。

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