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Volt-Var Optimization of Distribution Systems for Coordinating Utility Voltage Control with Smart Inverters

机译:配电系统的电压-电压优化,用于与智能逆变器协调市电电压控制

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The Volt-Var control of smart inverters has drawn wide attention as one of the solutions to the voltage regulation of distribution systems with high PV penetration. Unlike utility voltage control devices, such as on-load tap changers and switched capacitors, smart inverters can provide fast and continuous voltage regulation. This paper describes a new Volt-Var optimization scheme that coordinates the utility control of switched capacitors and on-load tap changers with Volt-Var droop control of smart PV inverters. A voltage-load sensitivity matrix is used to form a linear relationship between control variables and bus voltages. A successive linear programming technique is applied to transform the original mixed-integer nonconvex programing problem into a sequence of mixed-integer linear programming problems. The proposed Volt-Var optimization model is validated on a 47-bus distribution circuit and the results show that the method is effective in improving voltage regulation as well as reducing the operations of on-load tap changers.
机译:智能逆变器的Volt-Var控制作为具有高PV渗透率的配电系统的电压调节解决方案之一已引起广泛关注。与公用电压控制设备(例如有载分接开关和开关电容器)不同,智能逆变器可以提供快速,连续的电压调节。本文介绍了一种新的Volt-Var优化方案,该方案可与智能PV逆变器的Volt-Var下垂控制协调开关电容器和有载分接开关的效用控制。电压-负载灵敏度矩阵用于在控制变量和母线电压之间形成线性关系。应用连续线性规划技术将原始的混合整数非凸规划问题转换为一系列混合整数线性规划问题。所提出的Volt-Var优化模型在47总线配电电路上得到验证,结果表明该方法可有效改善电压调节并减少有载分接开关的运行。

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