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A control architecture to coordinate distributed generators and active power filters coexisting in a microgrid

机译:控制架构,用于在微电网中协调分布式发电机和有效电源过滤器

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This paper proposes a control architecture of distributed generators (DGs) inverters and shunt active power filters (APFs) in microgrids to compensate voltage harmonics in a coordinated way. For this, a hierarchical control structure is proposed that includes two control levels. The primary (local) control consists of power controllers, selective virtual impedance loops and proportional-resonant (PR) voltage/current controllers. The secondary (central) control manages the compensation level of voltage harmonic distortion of sensitive load bus (SLB). Compensation of SLB harmonics by control of DGs may cause excessive voltage harmonics at the terminal of one or more of DGs interface inverters and/or overloading of the inverters. After occurrence of each case, active power filter (APF) participates in harmonic compensation and consequently the compensation efforts of DGs decrease to avoid excessive harmonics or overloading of interface inverters. Effectiveness of the proposed control scheme is demonstrated through simulation studies.
机译:本文提出了一种分布式发电机(DGS)逆变器的控制架构,并在微电网中分流有源电力滤波器(APFS)以协调的方式补偿电压谐波。为此,提出了包括两个控制级别的分层控制结构。主要(本地)控制包括电源控制器,选择性虚拟阻抗环和比例谐振(PR)电压/电流控制器。辅助(中央)控制管理敏感负载总线(SLB)的电压谐波失真的补偿水平。通过控制DGS的SLB谐波补偿可能导致一个或多个DGS接口逆变器的端子和/或逆变器过载的过度电压谐波。在发生每种情况之后,有源电力滤波器(APF)参与谐波补偿,因此DGS的补偿工作减少以避免接口逆变器的过度谐波或过载。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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