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A Stages Compensation and Control Strategy for Series Power-Quality Regulator

机译:串联电能质量调节器的阶段补偿和控制策略

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摘要

A novel stages compensation and control strategy suitable for a series power-quality regulator (SPQR) based on a voltage-source converter (VSC) inverter is proposed in which steady operation stage, overrun operation stage, and recovery operation stage are included. The presag voltage compensation, minimum energy compensation, and maximum energy compensation strategies are adopted to the three stages, respectively, based on the characteristics of the three stages. The double closed-loop control with feedbacks from load voltage and filter capacitor current is used in each stage. Moreover, the dc capacitor voltage regulation control for SPQR is applied in the steady operation stage. To avoid switching disorder during the stage change, a criterion based on voltage magnitude of the dc capacitor and source side is proposed. Simulation results in EMTDC/PSCAD show that voltage disturbances of the steady and transient state can be compensated by using the proposed compensation and control strategy and, at the same time, the dc capacitor voltage can be stabilized. The proposed strategy makes it possible to use the dc capacitor as the energy source of SPQR with the merit of a simple main circuit topology.
机译:提出了一种适用于基于电压源变换器(VSC)逆变器的串联电能质量调节器(SPQR)的新型阶段补偿和控制策略,该阶段包括稳定工作阶段,超限工作阶段和恢复工作阶段。根据三个阶段的特性,分别将预垂电压补偿,最小能量补偿和最大能量补偿策略应用于这三个阶段。每个阶段都使用具有负载电压和滤波电容器电流反馈的双闭环控制。此外,用于SPQR的直流电容器电压调节控制应用于稳定运行阶段。为了避免级转换期间的开关混乱,提出了基于直流电容器和源极侧的电压幅度的准则。 EMTDC / PSCAD中的仿真结果表明,使用所提出的补偿和控制策略可以补偿稳态和瞬态的电压干扰,同时可以稳定直流电容器的电压。所提出的策略使得可以将直流电容器用作SPQR的能源,并具有简单的主电路拓扑的优点。

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