论文标题

OLTC和智能逆变器的协调,以最佳的电压调节分配网络的最佳电压调节

Coordination of OLTC and Smart Inverters for Optimal Voltage Regulation of Unbalanced Distribution Networks

论文作者

Li, Changfu, Disfani, Vahid R., Haghi, Hamed Valizadeh, Kleissl, Jan

论文摘要

光伏(PV)智能逆变器可以改善配电网络的电压曲线。提出了用于协调智能逆变器的反应式功率注入和用于多相多相不平衡分配系统的自动点击操作的多目标优化框架。优化目标是同时减少电压偏差和TAP操作的数量。提出了一种新型的线性化方法,以使功率流程方程线性化并凸出问题,从而确保优化的收敛性和更少的计算成本。使用混合企业线性编程(MILP)对优化进行建模和解决。该方法对基于常规规则的自主电压法规(AVR)进行了验证,该方法在高度不平衡的IEEE 37总线测试系统和大型加利福尼亚公用事业馈线上进行了验证。仿真结果表明,所提出的方法可以准确估计馈线电压,可显着降低电压偏差,减轻过电压问题,并降低电压不足,同时消除不必要的TAP操作。该方法的鲁棒性在各种级别的预测误差方面进行了验证。通过大型公用事业馈线的模拟也证明了所提出方法的计算效率和可扩展性。

Photovoltaic (PV) smart inverters can improve the voltage profile of distribution networks. A multi-objective optimization framework for coordination of reactive power injection of smart inverters and tap operations of on-load tap changers (OLTCs) for multi-phase unbalanced distribution systems is proposed. The optimization objective is to minimize voltage deviations and the number of tap operations simultaneously. A novel linearization method is proposed to linearize power flow equations and to convexify the problem, which guarantees convergence of the optimization and less computation costs. The optimization is modeled and solved using mixed-integer linear programming (MILP). The proposed method is validated against conventional rule-based autonomous voltage regulation (AVR) on the highly-unbalanced modified IEEE 37 bus test system and a large California utility feeder. Simulation results show that the proposed method accurately estimates feeder voltage, significantly reduces voltage deviations, mitigates over-voltage problems, and reduces voltage unbalance while eliminating unnecessary tap operations. The robustness of the method is validated against various levels of forecast error. The computational efficiency and scalability of the proposed approach are also demonstrated through the simulations on the large utility feeder.

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