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Mixed-Integer Linear optimization algorithm for Volt/Var Control on a distribution grid with renewable penetration

机译:可再生渗透的分布网格伏/瓦控制的混合整数线性优化算法

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Nowadays, the diffusion of renewable energy sources and electric vehicles are turning the traditional passive distribution networks into active grids, requiring Distribution Management System (DMS) to exploit Information and Communication Technology (ICT) improvements to get a smarter control through wider communication and local monitoring. In this paper, a Mixed-Integer Linear Programming (MILP) algorithm is developed to perform Volt/Var Optimization (VVO), providing the optimal setting for all the available controllable devices which minimizes power losses and violations of network constraints. Necessary linearization affects acceptably the accuracy of the computed outcomes and the resulting fast computational time makes it suitable for online application within a real DMS.
机译:如今,可再生能源和电动车辆的扩散正在将传统的被动分配网络转变为有源网格,需要分配管理系统(DMS)来利用信息和通信技术(ICT)改进,以通过更广泛的通信和本地监控获得更智能的控制。在本文中,开发了一种混合整数线性编程(MILP)算法以执行Volt / VAR优化(VVO),为所有可用可控设备提供最佳设置,从而最大限度地减少功率损耗和违反网络限制的违规。必要的线性化会接受地影响计算结果的准确性和由此产生的快速计算时间使其适用于实际DMS内的在线应用程序。

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