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A Three-Phase Smart Inverter for Frequency and Voltage Regulation in an Unbalanced Distribution System

机译:不平衡配电系统中用于频率和电压调节的三相智能逆变器

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In recent years, the use of renewable energy (RE) in distributed power generation has been increasing. However, a key drawback of RE is unstable power output that causes systemic effects. Moreover, with the increasing penetration of RE in three-phase distribution systems, the problem of unbalanced three-phase systems becomes increasingly challenging. This paper proposes a novel control strategy for a grid-connected three-phase four-wire smart inverter. By using the proposed power control strategy and the positive- and negative-sequence decoupling controls, the smart inverter can provide not only frequency but also voltage regulation to maintain a balanced and stable system. To verify the feasibility of the proposed method, a 2 kW grid-connected three-phase four-wire prototype inverter was implemented, which was connected to a three-phase AC source for analysis. The experimental results indicate that the proposed control strategy is a feasible scheme. System frequency regulation and phase voltage compensation can be achieved to support the system under an unbalanced or unstable condition.
机译:近年来,可再生能源(RE)在分布式发电中的使用一直在增加。但是,RE的主要缺点是功率输出不稳定,会引起系统性影响。而且,随着可再生能源在三相配电系统中的渗透率的提高,三相系统不平衡的问题变得越来越具有挑战性。本文提出了一种并网三相四线智能逆变器的新型控制策略。通过使用提出的功率控制策略以及正序和负序去耦控制,智能逆变器不仅可以提供频率,而且可以提供电压调节,以维持系统的平衡和稳定。为了验证该方法的可行性,实现了一个2 kW并网三相四线原型逆变器,该逆变器连接到三相交流电源进行分析。实验结果表明,所提出的控制策略是可行的。可以实现系统频率调节和相电压补偿,以在不平衡或不稳定的情况下为系统提供支持。

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