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Coordinated closed-loop voltage control by using a real-time Volt/VAR Optimization function for MV distribution Networks

机译:中压配电网实时伏特/无功优化功能的协调闭环电压控制

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Advanced Distribution Management Systems (DMS) functions in general and Volt/Var Optimization (VVO) function in particular are forefront tools for reliable and economic operation of distribution Networks. By using real time calculation results from VVO, there is a potential for closed-loop voltage control and sending set-points to tap changers and capacitor banks. The major challenge for such closed-loop voltage control is the possibility of larger computation time for optimization problem and also delays associated to the two-way communication platform between the VVO engine and field through the SCADA system. The objective of this paper is to develop the idea of closed-loop voltage control by utilizing a VVO engine with a full mixed integer linear programming (MILP) model for solving optimization problem for real-time and planning applications. Optimization problems are implemented in GAMS and have been tested on a real small MV distribution network.
机译:总体而言,高级配电管理系统(DMS)功能尤其是伏特/无功优化(VVO)功能是实现配电网络可靠且经济运行的最前沿工具。通过使用VVO的实时计算结果,可以进行闭环电压控制,并将设定点发送到分接开关和电容器组。这种闭环电压控制的主要挑战是可能需要更长的计算时间来解决优化问题,以及通过SCADA系统与VVO引擎和现场之间的双向通信平台相关的延迟。本文的目的是通过利用具有完全混合整数线性规划(MILP)模型的VVO引擎来开发闭环电压控制的思想,以解决实时和计划应用的优化问题。优化问题是在GAMS中实现的,并且已经在真正的小型MV分销网络上进行了测试。

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