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Optimal utilisation of photovoltaic system as dynamic voltage restorer for voltage regulation and energy conservation

机译:光伏系统作为动态电压恢复器的最佳利用,以进行电压调节和节能

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摘要

This paper presents a novel optimal utilisation of photovoltaic (PV) system as dynamic voltage restorer (PV-DVR) for voltage sag, voltage swell, outage and unbalanced voltage mitigation during both daytime and night time. This novel PV system operated DVR reduces the energy consumption from the utility grid by disconnecting the utility grid from the load through semiconductor switches, when the PV system generates excessive or equal real power to the required load demand. However, the reduction of energy consumption is always desirable for the reduction of panel tariff and global warming gasses. In this paper, PV module is connected to the DC side of DVR through the low step-up DC-DC converter with fuzzy-based perturb and observe maximum power point tracking algorithm to eliminate the drawback of the conventional PV system by tracking maximum power point of the PV array is presented. The proposed PV-DVR, if connected at the terminals of a small industry or a home or a small educational institution, can avoid interruption of power, use of individual stabiliser and potential panel tariff over a 12-hour period. A MATLAB Simulink model with a 10 kW PV module is presented to validate the advantage of the proposed system.
机译:本文提出了一种新型的光伏(PV)系统的最佳利用方法,作为动态电压恢复器(PV-DVR),可在白天和夜间均用于电压骤降,电压骤升,断电和不平衡电压缓解。当光伏系统产生过多或相等于所需负载需求的有功功率时,这种新颖的光伏系统操作的DVR通过通过半导体开关将公用电网与负载断开连接来减少公用电网的能耗。然而,减少面板关税和全球变暖气体总是希望减少能耗。本文将光伏模块通过具有基于模糊扰动的低升压DC-DC转换器连接到DVR的DC端,并观察最大功率点跟踪算法,从而通过跟踪最大功率点来消除常规光伏系统的缺点介绍了光伏阵列的示意图。所提议的PV-DVR,如果连接在小型工业,家庭或小型教育机构的终端上,则可以避免电源中断,使用单个稳定器以及在12小时内可能收取的面板费用。提出了带有10 kW PV模块的MATLAB Simulink模型,以验证所提出系统的优势。

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