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Coordination strategy for harmonic compensation using multiple distributed resources

机译:使用多种分布式资源的谐波补偿协调策略

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Nowadays, due to the development of power electronic technology, nonlinear electronic loads using power electronic circuits are widespread in power grids. The loads can consume more reliable and high-quality power through the power conversion circuits. However, the power grids can suffer significant harmonic currents caused by these power electronic circuits. This paper proposes a new harmonic compensation method of utilizing multiple power inverters that integrate distributed resources (DRs) to a microgrid. Therefore, harmonic problems can be solved without installing additional power filters to the grids. To coordinate multiple various DGs such as small distributed generators (DGs) and battery energy storage systems (BESSs), the proposed method considers multiple objectives in terms of energy cost, generation margins of DGs and energy margins of BESSs. The optimization algorithm is constructed based on fuzzy multi-objective optimization model so that the proposed method assigns the additional output power of each DR that is needed for harmonic elimination. Simulations of the suggested coordination strategy for harmonic compensation using multiple DRs are conducted in the microgrid including two inverter-based DGs and one BESS to verify the performance of the proposed method.
机译:如今,由于电力电子技术的发展,使用电力电子电路的非线性电子负载在电网中得到了广泛的应用。负载可以通过电源转换电路消耗更可靠的高质量电源。然而,电网可能遭受由这些功率电子电路引起的大量谐波电流。本文提出了一种新的谐波补偿方法,该方法利用了将分布式资源(DR)集成到微电网的多个功率逆变器。因此,无需在电网上安装额外的电源滤波器就可以解决谐波问题。为了协调多个不同的DG,例如小型分布式发电机(DG)和电池储能系统(BESS),该方法考虑了多个目标,包括能源成本,DG的发电余量和BESS的能源余量。该优化算法是基于模糊多目标优化模型构造的,因此该方法分配了消除谐波所需的每个DR的额外输出功率。在包括两个基于逆变器的DG和一个BESS的微电网中,对使用多个DR的谐波补偿建议的协调策略进行了仿真,以验证所提出方法的性能。

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