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Local voltage control strategy of active distribution network with PV reactive power optimization

机译:光伏无功优化的有源配电网局部电压控制策略

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The increasing penetration of photovoltaics (PVs) exacerbates the risk of voltage violations in active distribution networks (ADNs). The centralized control limited by the computational and communicational burdens is difficult to meet the requirement of fast voltage and reactive power control. Local voltage control based on the real-time measurements has a fast response to the frequent PV fluctuations. In this paper, a local voltage control strategy of ADNs is proposed, in which the local Q-V control curve is defined as piecewise linear functions. PV inverters equipped with Q-V control curve react to the local voltage measurement to adjust reactive power compensation. A parameters optimization model of local control curve is also built to improve the system voltage profile. By applying the linearization, the original nonconvex mixed-integer nonlinear programming (MINLP) model is converted into an effectively solved mixed-integer linear programming (MILP) model. Case studies on the IEEE 69-node system are conducted to verify the effectiveness of the proposed control strategy.
机译:光伏(PV)的不断普及加剧了有源配电网(ADN)中违反电压的风险。受计算和通信负担限制的集中控制难以满足快速电压和无功控制的要求。基于实时测量的本地电压控制可快速响应频繁的PV波动。本文提出了一种ADN的局部电压控制策略,其中将局部Q-V控制曲线定义为分段线性函数。配备Q-V控制曲线的光伏逆变器会对本地电压测量做出反应,以调整无功功率补偿。还建立了局部控制曲线的参数优化模型,以改善系统电压曲线。通过应用线性化,将原始的非凸混合整数非线性规划(MINLP)模型转换为有效求解的混合整数线性规划(MILP)模型。对IEEE 69节点系统进行了案例研究,以验证所提出的控制策略的有效性。

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