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Frequency Control of SEIG Based Microgrid during Transition from Grid Connected to Island Mode

机译:从电网连接到岛模式的转换期间SEIG基微电网的频率控制

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Frequency behavior of self-excited induction generator (SEIG) wind turbines during control mode transition from grid connected to islanded mode is investigated in detail. A robust control scheme for frequency regulation based on combined action of STATCOM, energy storage system (ESS) and pitch angle control for wind powered microgrid (MG) is proposed. Suggested STATCOM controller comprises a 3-phase voltage source converter (VSC) that contains insulated gate bipolar transistors (IGBTs) based pulse width modulation (PWM) inverters along with a capacitor bank. Energy storage system control consists of current controlled voltage source converter and battery bank. The proposed model performs robust action upon detection of islanding to compensate reactive and supply active power demand thus regulating frequency at point of common coupling (PCC) with improved load stability. Obtained results reveal that proposed method control not only stabilizes frequency during transition duration but also minimizes sudden frequency imbalance caused by load variation or wind intermittencies in islanded operation. The studied system is investigated with and without proposed control schemes.
机译:详细地研究了自我激发感应发生器(SEIG)风力涡轮机的频率特性从连接到孤岛模式的网格的转换。提出了一种基于STATCOM,能量存储系统(ESS)和风力发电微电网(MG)的桨距角控制的组合动作的频率调节的鲁棒控制方案。建议的Statcom控制器包括3相电压源转换器(VSC),其包含基于绝缘栅极双极晶体管(IGBT)的基于脉冲宽度调制(PWM)逆变器以及电容器组。能量存储系统控制包括电流控制电压源转换器和电池组。所提出的模型在检测岛以补偿反应性和供应有效功率需求时执行鲁棒作用,从而调节具有改进的负载稳定性的公共耦合(PCC)点的频率。获得的结果表明,所提出的方法控制不仅在过渡持续时间期间稳定频率,而且还最大限度地减少了由岛状操作中的负载变化或风力间歇性引起的突然频率不平衡。研究了研究的系统,无需提出的控制方案。

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