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Non-local harmonic current and reactive power compensation for a multi-microgrid system using a series–shunt network device

机译:使用系列分流网络设备的多微电网系统的非本地谐波电流和无功功率补偿

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摘要

In this study, a new non-local active compensation method is developed for a multi-microgrid (MMG) system. The current industry practice is to utilise local harmonic current and reactive power compensation methods, however, local compensation methods are not practical for large MMG system with widely dispersed non-linear loads, because each non-linear load would require its own compensator. To overcome this problem, a novel compensating technology called a series-shunt network device (SSND) is installed between a pair of microgrids in the proposed MMG system. The SSND reduces the number of local compensators required while also performing additional functions in comparison with conventional devices. For effective control of the SSND, an improved model predictive control (MPC) algorithm, which gives better tracking accuracy and faster set-point change than that of a conventional proportional-integral controller, is also presented. Analysis and simulations verify the capability of SSND in performing both local and non-local active compensation of harmonic current and reactive power in the proposed MMG system under various test scenarios. Simulation results show that the MPC-controlled SSND can achieve effective compensation, thereby resulting in a very low current total harmonic distortion value of 2.4% and a unity power factor at the distribution grid side.
机译:在该研究中,为多微电网(MMG)系统开发了一种新的非局部主动补偿方法。目前的行业实践是利用本地谐波电流和无功补偿方法,然而,局部补偿方法对于具有广泛分散的非线性负载的大MMG系统不实用,因为每个非线性负载都需要其自己的补偿器。为了克服这个问题,在所提出的MMG系统中的一对微电网之间安装了一种新的补偿技术(SSND)。 SSND与传统设备相比,还减少了所需的本地补偿器的数量,同时执行其他功能。对于SSND的有效控制,还提出了一种改进的模型预测控制(MPC)算法,其提供比传统比例积分控制器更好的跟踪精度和更快的设定点变化。分析和模拟在各种测试场景下验证了SSND在提出的MMG系统中对谐波电流和无功功率进行了局部和非局部主动补偿的能力。仿真结果表明,MPC控制的SSND可以实现有效补偿,从而导致极低的电流总谐波失真值为2.4%和分布网格侧的单位功率因数。

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