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An Improved Centralized Control Structure for Compensation of Voltage Distortions in Inverter-Based Microgrids

机译:一种改进的集中控制结构,用于补偿逆变器的微电网中的电压失真

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摘要

Recently, increased use of non-linear loads has intensified the harmonic distortion and voltage unbalance in distribution systems. Inverter Based Distributed Generators (IBDGs) can be employed as distributed compensators to improve the power quality, as well as to supply distribution systems. In this paper, an enhanced hierarchical control scheme for the compensation of voltage disturbance in an AC Micro Grid (MG) that includes of two control levels is proposed. The secondary control level is performed by a centralized controller. Data of voltage harmonics and voltage unbalance at the MG Sensitive Load Bus (SLB) is sent to the centralized controller by a measurement unit. A general case with a combined voltage harmonic and unbalance distortion is considered. The compensation coefficients for IBDG units are computed by the centralized controller, and reference commands are sent to the local controllers of the IBDG units that act as a primary level of control. In the secondary control level, harmonic analysis is performed for the MG in order to provide a guide for properly assigning the harmonics and unbalance compensation priorities to IBDGs at different locations in the distribution system. Some buses have more participation in exciting the MG resonance modes; therefore, larger harmonic compensation factors are considered for the IBDGs that are near to these buses. For other IBDGs, the voltage unbalance compensation factor is selected bigger. The control system of the IBDGs mainly includes a current controller, a virtual damping resistor loop, and a load compensation block. Effectiveness of the proposed control scheme is demonstrated through simulation studies.
机译:最近,增加了非线性载荷的使用增强了分配系统中的谐波失真和电压不平衡。基于逆变器的分布式发电机(IBDGS)可用作分布式补偿器以提高电力质量,以及供应分配系统。本文提出了一种增强的分层控制方案,用于补偿包括两个控制电平的AC微电网(MG)中的电压干扰。二次控制级别由集中控制器执行。 MG敏感负载总线(SLB)的电压谐波和电压不平衡数据通过测量单元发送到集中控制器。考虑具有组合电压谐波和不平衡失真的一般情况。 IBDG单元的补偿系数由集中控制器计算,并将参考命令发送到充当主要控制级别的IBDG单元的本地控制器。在二次控制水平中,对MG执行谐波分析,以便提供用于将谐波和不平衡补偿优先级正确分配到分配系统中的不同位置的IBDGS的指南。一些公共汽车更多参与令人兴奋的MG共振模式;因此,靠近这些公共汽车的IBDG,考虑了较大的谐波补偿因子。对于其他IBDG,选择较大的电压不平衡补偿因子。 IBDG的控制系统主要包括电流控制器,虚拟阻尼电阻环和负载补偿块。通过模拟研究证明了所提出的控制方案的有效性。

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