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首页> 外文期刊>Microelectronics journal >Squirrel cage induction generator to 140 bus weak distribution power grid connection using i-UPQC for voltage fluctuations
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Squirrel cage induction generator to 140 bus weak distribution power grid connection using i-UPQC for voltage fluctuations

机译:使用i-UPQC将鼠笼式感应发电机连接到140总线弱配电电网以应对电压波动

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摘要

This paper develops an optimal power transmit strategy for 140 bus weak distribution power grid connecting squirrel cage induction generator (SCIG) and integrated unified power quality conditioner (i-UPQC). To meet technical standards and earn operational profits in electricity market can consequently increases the operational cost. As to decrease the operational cost basis, the optimal location of i-UPQC on 140 bus power system for voltage control can be determined. The integrated-proposed controller can modulate the predictions of weak power grid, maintenance cost, wind power and voltage fluctuations. The proposed model is validated using SCIG data for weak distribution power grid and i-UPQC capacity. Results address the effectiveness of the method and help to weak power grid to ensure optimal location and energy schedule. The results motivate weak power grid operators to adjust i-UPQC real and reactive output powers to overcome the power quality problem called weak power grid.
机译:本文提出了一种将鼠笼式感应发电机(SCIG)与集成式统一电能质量调节器(i-UPQC)连接起来的140总线弱配电电网的最优输电策略。为了满足技术标准并在电力市场中获得运营利润,可能会增加运营成本。为了降低运营成本,可以确定i-UPQC在140总线电源系统上用于电压控制的最佳位置。集成提议的控制器可以调制对电网薄弱,维护成本,风力和电压波动的预测。使用SCIG数据验证了所提出模型的弱配电网和i-UPQC容量。结果说明了该方法的有效性,并有助于弱电网以确保最佳位置和能源调度。结果激励弱电网运营商调整i-UPQC有功和无功输出功率,以克服称为弱电网的电能质量问题。

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