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独立微电网中谐波与不平衡源电压状况的缓解:基于正序分量和动态相量的实时补偿器

Mitigation of harmonics and unbalanced source voltage condition in standalone microgrid: positive sequence component and dynamic phasor based compensator with real-time approach.

作者信息

Rane M, Wagh S

机构信息

Electrical Engineering Department, VJTI, Mumbai, India.

出版信息

Heliyon. 2019 Feb 5;5(2):e01178. doi: 10.1016/j.heliyon.2019.e01178. eCollection 2019 Feb.

Abstract

Penetration of Distributed Energy Resources (DER) is in high demand to supply power to the load where the grid is not available. Many of these sources are a single phase source used to form standalone Microgrid (MG). Single phase connectivity of these sources results in an unbalanced source voltage condition (UbSVC). Interfacing power electronic devices also inject the harmonics into Point of Common Coupling (PCC) voltage. The effect of this unbalance and harmonics on the operation of standalone MG is analysed in this paper in a twofold manner. One at a reduced power transfer from DER to load and the other is an error produced in Phase Locked Loop (PLL) operation. Positive Sequence Component (PSC) based and Dynamic Phasor (DP) based compensation techniques are proposed in this paper to mitigate the effect of UbSVC. Simulation validates that both the proposed methods are capable to provide balanced load voltage condition under UbSVC in terms of Voltage Unbalance Factor ( ). It also enhances the power transferred from DER to load during an UbSVC. The performance of the proposed compensator during UbSVC and harmonic presence is validated in real-time simulation using Opal-RT and dSPACE simulators.

摘要

在电网无法供电的情况下,对分布式能源资源(DER)的渗透率有很高的要求,以向负载供电。这些能源中的许多是用于形成独立微电网(MG)的单相电源。这些电源的单相连接会导致源电压不平衡状况(UbSVC)。电力电子接口设备也会将谐波注入公共耦合点(PCC)电压。本文从两个方面分析了这种不平衡和谐波对独立微电网运行的影响。一方面是从DER到负载的功率传输减少,另一方面是锁相环(PLL)运行中产生的误差。本文提出了基于正序分量(PSC)和基于动态相量(DP)的补偿技术,以减轻UbSVC的影响。仿真验证了这两种方法都能够在UbSVC条件下,根据电压不平衡因数( )提供平衡的负载电压状况。它还提高了在UbSVC期间从DER到负载传输的功率。使用Opal-RT和dSPACE模拟器在实时仿真中验证了所提出的补偿器在UbSVC和谐波存在情况下的性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/24ae/6366151/93167b7d4448/gr001.jpg

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