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首页> 外文期刊>Electric power systems research >Harmonic voltage resonant compensation control of a three-phase inverter for battery energy storage systems applied in isolated microgrid
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Harmonic voltage resonant compensation control of a three-phase inverter for battery energy storage systems applied in isolated microgrid

机译:隔离微电网中电池储能系统三相逆变器的谐波电压谐振补偿控制

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摘要

The aim of this paper is to propose a sinusoidal voltage signals tracking control strategy, adaptive for frequency of a three-phase inverter for a battery energy storage system (BESS) applied to an isolated microgrid. To support the normal operation of distributed renewable energy and feed the critical loads under the isolated mode, the BESS generally works in voltage control mode (VCM). The proposed control strategy, which transforms the tracking control problem into a state feedback control problem, includes two terms, one of which is state feedback control used to stabilize system while another employs multiple resonant controllers applied to achieve harmonics compensation control. The optimal linear-quadratic (LQ) control approach in which the root locus method is used for optimization selection of weight matrix Q is adopted to tune the control parameters of multiple resonant controllers. The proposed control strategy performs outstanding voltage control performance to maintain an excellent voltage level such as zero steady-state error and low total harmonic distortion (THD) under the situation of sudden load changes, back power flow of renewable energy such as photovoltaic and nonlinear load in an isolated microgrid. Finally, the validity of the proposed approach is verified through simulations and a three-phase experiment prototype of BESS with TMS320F28335 DSP. (C) 2015 Elsevier B.V. All rights reserved.
机译:本文的目的是提出一种正弦电压信号跟踪控制策略,该策略适用于应用于隔离式微电网的电池储能系统(BESS)的三相逆变器的频率。为了支持分布式可再生能源的正常运行并在隔离模式下馈送关键负载,BESS通常以电压控制模式(VCM)工作。所提出的将跟踪控制问题转换为状态反馈控制问题的控制策略包括两个术语,其中一个是用于稳定系统的状态反馈控制,另一个是采用多个谐振控制器来实现谐波补偿控制的术语。采用根轨迹法优化权重矩阵Q的最优线性二次(LQ)控制方法,对多个谐振控制器的控制参数进行了优化。所提出的控制策略具有出色的电压控制性能,可在负载突然变化,光伏和非线性负载等可再生能源的反向潮流情况下保持出色的电压水平,例如零稳态误差和低总谐波失真(THD)。在孤立的微电网中。最后,通过仿真和采用TMS320F28335 DSP的BESS三相实验原型,验证了该方法的有效性。 (C)2015 Elsevier B.V.保留所有权利。

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