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首页> 外文期刊>International Transactions on Electrical Energy Systems >Improving power quality and load profile using PV-Battery-SAPF system with metaheuristic tuning and its HIL validation
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Improving power quality and load profile using PV-Battery-SAPF system with metaheuristic tuning and its HIL validation

机译:使用具有元启发式调整功能的PV-Battery-SAPF系统和HIL验证来改善电能质量和负载曲线

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摘要

Nonlinear load results in inferior power quality and a non-uniform power demand curve. This gets aggravated due to the charging of electric vehicles. This paper presents a new control approach of integrating a photovoltaic (PV) cell with battery storage to a shunt active power filter (SAPF) for electric vehicle (EV) applications. The multifunctional PV-Battery-integrated SAPF (PV-Battery-SAPF) performs harmonic mitigation along with clean power generation, energy storage, uniform load demand curve, and battery swapping. It is achieved through a two-stage topology. In the first stage, maximum power point (MPP) of a PV array is robustly tracked using metaheuristic algorithms like cuckoo search algorithm and particle swarm optimization. In the second stage, an ant colony optimization-tuned controller is developed which adaptively controls the SAPF to improve the power quality. The suggested method provides efficient MPP tracking, lesser total harmonic distortion, better dynamic system performance, and appropriate charging/discharging of battery leading to increased system reliability. The proposed system is validated in real time on a hardware-in-the-loop (HIL) testing platform.
机译:非线性负载会导致电能质量变差以及功率需求曲线不一致。由于电动车辆的充电,这变得更加严重。本文提出了一种新的控制方法,该方法将具有电池存储功能的光伏(PV)电池集成到电动汽车(EV)应用的并联有源功率滤波器(SAPF)中。多功能PV-Battery-集成SAPF(PV-Battery-SAPF)执行谐波缓解以及清洁发电,能量存储,均匀的负载需求曲线和电池更换。它是通过两阶段拓扑结构实现的。在第一阶段,使用诸如杜鹃搜索算法和粒子群优化之类的元启发式算法来稳健地跟踪PV阵列的最大功率点(MPP)。在第二阶段,开发了一种蚁群优化调整控制器,该控制器自适应地控制SAPF以改善电能质量。建议的方法可提供有效的MPP跟踪,较小的总谐波失真,更好的动态系统性能以及适当的电池充电/放电,从而提高了系统的可靠性。该系统在硬件在环(HIL)测试平台上进行了实时验证。

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