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Sliding mode control based power balancing for grid connected PV system

机译:基于滑模控制的电网连接PV系统功率平衡

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摘要

Renewable sources of energy are gaining importance with each passing day. In order to increase the penetration of renewable sources of energy, they must have some reserve capacity for stable operation and higher reliability. Generally PV systems are equipped with sufficient battery back up when interfaced with any load network. However, installation and maintenance of batteries for high power systems becomes difficult from economic perspective. On the other hand, grid connected PV systems are relatively more stable and robust. In this paper, a sliding mode based power balancing control strategy for grid connected solar PV systems is proposed. Some of the advantages of sliding mode control are disturbance rejection, insensitivity to parameter variation and simple implementation by means of conventional power converters. The proposed control strategy can provide power balancing and reserve capacity without use of expensive energy storage devices like batteries. Simulations are carried out under varying load demand as well as changing weather conditions to demonstrate the applicability and effectiveness of the proposed sliding mode control strategy.
机译:可再生能源来源正在与每周过往的一天都有重要性。为了增加可再生能源来源的渗透,他们必须有一些稳定运行的储备能力和更高的可靠性。通常,当与任何负载网络接口时,PV系统配备有足够的电池。然而,从经济角度难以安装和维护电池的电池。另一方面,电网连接的光伏系统相对较稳定且稳健。本文提出了一种基于滑动模式的电网连接太阳能光伏系统的电力平衡控制策略。滑动模式控制的一些优点是扰动抑制,通过传统功率转换器对参数变化和简单实现的不敏感。所提出的控制策略可以提供电力平衡和储备容量,而无需使用电池等昂贵的能量存储设备。模拟在不同负载需求下进行,以及改变天气条件,以证明所提出的滑模控制策略的适用性和有效性。

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