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Direct Current Control Strategy of SVG Based on Dual Sequence dq Coordinates Under Asymmetric Load Condition

机译:非对称载荷条件下基于双序列dq坐标的SVG直流控制策略

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In the case of asymmetric loads of power grid,load currents are composed of four components:positive sequence active and reactive components and negative sequence active and reactive components that can pollute the power grid with harmonics and reactive power and interrupt the normal operation of power grid.Therefore,increasing numbers of static var generators(SVGs)are used to stabilize the power grid.In this study,a new type of current compensation control strategy of a three-phase three-wire SVG under an asymmetric load is proposed.According to the symmetric component method and dual dq synchronous transformation theory,the load currents are transformed into four components under dual dq coordinates.Each component is compensated separately by the SVG.Simultaneously,the proportional-limiter method is adopted to minimize the harmonics from the SVG by optimizing the waveform of the modulation wave and limiting its amplitude.Finally,the validity and feasibility of the control strategy are verified by simulation and experimental results.
机译:在电网负荷不对称的情况下,负荷电流由四个分量组成:正序有功和无功分量以及负序有功和无功分量,可能会污染谐波和无功功率,中断电网的正常运行。因此,越来越多的静态无功发生器(SVG)用于稳定电网。在本研究中,提出了一种新型的三相三线SVG在非对称负载下的电流补偿控制策略。根据对称分量法和双dq同步变换理论,将负载电流在双dq坐标下转换为四个分量。每个分量由SVG分别补偿。同时,采用比例限制器方法最小化SVG产生的谐波优化调制波的波形并限制其幅度。最后,控制策略的有效性和可行性。通过仿真和实验结果验证。

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