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Performance analysis of hybrid AC/DC microgrid under influence of battery energy storage location

机译:电池储能位置影响下杂交AC / DC微电网的性能分析

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摘要

In microgrids, energy storage is generally located based on power management criteria and economic objectives that lean on the system's steady-state operation. However, the grid configuration, dynamics of primary energy sources, and storage type (AC or DC) impact its transient operation. This paper conducts a comparative study of the dynamic performance of Hybrid AC/DC Microgrids (HMGs) under the influence of Battery Energy Storage System (BESS) location, which has been neglected in the literature. The HMG performance is compared for one single BESS unit located either in AC or DC sub-grid during various grid operational cases, considering interlinking converter (ILC) control topology that alters depending on the type of BESS. Two types of microgrid case studies with different structures have been considered, that is, a high inertia HMG and a converter-interfaced low inertia HMG. Simulation results reveal that the HMGs with both BESS locations perform robustly in handling grid disruptions. However, the BESS located in the DC sub-grid of a high inertia microgrid case presents an average of 40% higher quality of performance in key performance indicators compared to that of the AC sub-grid BESS. Conversely, the performance of the low inertia HMG with the BESS connected to the AC sub-grid is superior to that of the DC sub-grid BESS, by an average of 65% and 54% in key performance indicators.
机译:在微电网中,能量存储通常基于电源管理标准和依赖于系统稳态操作的经济目标。但是,网格配置,主要能量源的动态和存储类型(AC或DC)会影响其瞬态操作。本文对文献中的电池储能系统(BESS)位置的影响,进行了对混合AC / DC微电网(HMG)的动态性能的对比研究。将HMG性能与位于AC或DC子网格中的一个单个BESS单元进行比较,考虑到互连转换器(ILC)控制拓扑,这取决于贝塞的类型。已经考虑了两种类型的微电网案例研究,即高惯性HMG和转化器接口的低惯性HMG。仿真结果表明,HMG在处理网格中断时,HMG具有稳健性地执行。然而,与AC子网电网的关键性能指标相比,位于高惯性微电网电影的DC子网格中的BESS平均呈现在关键性能指标中的40%的性能质量。相反,通过连接到AC子网格的BESS的低惯性HMG的性能优于DC子网格BESS的性能,在关键性能指标中平均为65%和54%。

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