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A fuzzy logic-based frequency control scheme for an isolated AC coupled PV-wind-battery hybrid system

机译:用于隔离交流耦合PV风电池混合系统的模糊逻辑频率控制方案

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摘要

The power generation from a renewable energy system has a fluctuating nature due to the intermittent sources. Mismatch between power generation and load demand causes a deviation from the desired frequency in power supply. A frequency control scheme for an isolated PV-wind-battery hybrid energy system is proposed by using fuzzy logic control for automatically select the frequency deviation suppressing element without communications among the different opera-tional controllers. That said, the scheme proposed in this paper requires fewer measuring instruments. The proposed control scheme requires two parameters - system frequency and battery state of charge measurement in order to execute the following tasks. The first task includes - selection of proper frequency balancing element (i.e. battery or a dump load or a primary variable load) that depends on the frequency deviation and battery state of charge. The second task is to address the control operation of the selected element from battery, dump load and primary load. Here, we have demonstrated that by the control scheme, fluctuation of system frequency can be suppressed within an allowable limit owing to effective power manage-ment of the hybrid system. The scheme presented here simplifies the integration of renewable energy systems to an existing hybrid power system.
机译:来自可再生能源系统的发电具有由于间歇源而具有波动性。发电和负载需求之间的不匹配导致电源中所需频率的偏差。通过使用模糊逻辑控制来提出用于隔离的PV-风电池混合能量系统的频率控制方案,用于自动选择频率偏差抑制元件而不在不同的操作系统控制器之间进行通信。也就是说,本文提出的方案需要较少的测量仪器。所提出的控制方案需要两个参数 - 系统频率和电池充电状态,以执行以下任务。第一任务包括 - 选择适当的频率平衡元件(即电池或卸载负载或主变量负载),其取决于频率偏差和电池充电状态。第二任务是从电池,转储负载和主要负载中解决所选元素的控制操作。这里,我们已经证明,通过控制方案,由于混合系统的有效功率管理,可以在允许的限制内抑制系统频率的波动。这里提出的方案简化了可再生能源系统将可再生能源系统集成到现有的混合动力系统。

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