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Resilient planning of PowerLine Communications networks over Medium Voltage distribution grids

机译:中压配电网上PowerLine通信网络的弹性规划

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In this paper a network planning problem aiming to enable underground Medium Voltage (MV) power grids to resilient PowerLine Communications (PLCs) is faced. The PLC network is used to connect PLC End Nodes (ENs) located into the secondary substations to the energy management system of the utility by means of PLC network nodes enabled as Access Points. An optimization problem is formulated, aiming to optimally allocate the Access Points to the substations and the repeaters to the MV feeders. A multi-objective optimization approach is used, in order to keep in balance the needs of minimizing the cost of equipment allocation and maximizing the reliability of PLC network paths. Resiliency and capacity constraints are properly modeled, in order to guarantee the communications even under faulted link conditions. As a byproduct, the optimization algorithm also returns the optimal routing. Simulations performed on a realistic underground MV distribution grid validate the proposed approach
机译:本文提出了一个网络规划问题,旨在使地下中压(MV)电网实现弹性PowerLine Communications(PLC)。 PLC网络用于通过启用为访问点的PLC网络节点将位于次级变电站中的PLC终端节点(EN)连接到公用事业的能源管理系统。提出了一个优化问题,旨在以最佳方式将接入点分配给变电站,并将中继器分配给MV馈线。为了平衡使最小化设备分配成本和最大化PLC网络路径的可靠性的需求,使用了多目标优化方法。对弹性和容量约束进行了正确建模,以确保即使在故障链路条件下也能进行通信。作为副产品,优化算法还返回最佳路由。在现实的地下MV配电网格上进行的仿真验证了所提出的方法

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