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Passivity-based control technique for integration of DG resources into the power grid

机译:基于无源性的控制技术,用于将DG资源整合到电网中

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摘要

This paper deals with a control method for integration of Distributed Generation (DG) sources to the power grid. The proposed control strategy has been designed based on passivity technique and provides compensation for the active, reactive, and harmonic current components of loads during the connection of DG link to the grid. The proper switching functions of interfaced converter have been defined based on the passivity method through the achieving space equations and suitable series damping injection. The proposed control plan is completed by setting suitable reference current components for the d and q axis in the control loop of DG, which are defined based on the objectives of proposed method. The effectiveness of the proposed control scheme is validated with injection of maximum available power from the DG resources to the power grid, correction of power factor between the grid current and load voltage, generates a fix voltage at the point of common coupling (PCC), and reduces total harmonic distortion (THD) of grid current, through the simulation results under steady-state and dynamic operating conditions.
机译:本文讨论了一种将分布式发电(DG)源集成到电网的控制方法。所建议的控制策略是基于无源技术设计的,可在DG链路与电网连接期间为负载的有功,无功和谐波电流分量提供补偿。通过实现空间方程和适当的串联阻尼注入,基于无源方法定义了接口转换器的适当开关功能。通过为DG的控制回路中的d和q轴设置合适的参考电流分量,可以完成所提出的控制计划,这些参考电流是根据所提出方法的目标定义的。通过从DG资源向电网注入最大可用功率,校正电网电流和负载电压之间的功率因数,在公共耦合点(PCC)处生成固定电压,来验证所提出控制方案的有效性。通过在稳态和动态工作条件下的仿真结果,降低了电网电流的总谐波失真(THD)。

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