A Routing and Link Scheduling Strategy for Smart Grid NAN Communications

Shuchismita Biswas, V. Centeno
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Abstract

As large scale deployment of smart devices in the power grid continues, research efforts need to increasingly focus on efficient communication of generated information. This paper describes a strategy for static routing and scheduling of messages in a multi-hop wireless Smart Grid Neighborhood Area Network (NAN) with multiple source nodes and a common set of destinations or gateways. The problem is formulated as a Mixed Integer Linear Program (MILP) and solved using commercial optimization solver CPLEX. Feasibility of the scheme is demonstrated using different network models, constraints, message injection rates, and initial conditions. It is shown that the proposed approach can be used to generate an optimal link schedule for collecting user-generated bids in a transactive energy market in the least possible time. It is also shown that the methodology is applicable to multiple destination nodes and that their location affects message delivery time.
智能电网NAN通信的路由和链路调度策略
随着智能设备在电网中的大规模部署,研究工作需要越来越多地关注生成信息的有效通信。本文描述了一种具有多个源节点和一组通用目的地或网关的多跳无线智能电网邻域网络(NAN)中的静态路由和消息调度策略。该问题被表述为一个混合整数线性规划(MILP),并使用商用优化求解器CPLEX进行求解。使用不同的网络模型、约束、消息注入速率和初始条件证明了该方案的可行性。结果表明,所提出的方法可以在最短的时间内生成一个最优的链路计划,用于在交易能源市场中收集用户生成的投标。结果还表明,该方法适用于多个目标节点,它们的位置影响消息传递时间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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