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Joint Consideration of Communication Network and Power Grid Topology for Communications in Community Smart Grid

机译:社区智能电网通信通信网络和电网拓扑的联合思考

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Community smart grid is formed by a group of neighboring households to share renewable generators and energy storage facilities. Within a community grid, all power grid entities are connected to power lines that are downstream to a common substation. In this paper, we use device-to-device communications to connect sensors that are installed at grid entities to their respective control units. The topology and node membership of such communication network depend on the topology of its power grid. As such, a communication node may not be assigned the best quality channel. This has imposed additional constraints in radio resource allocation. We exploit the feature that sensors and control units are static but cellular users are mobile, in proposing a two-stage radio resource allocation scheme. In the planning stage, we use the Hungarian method to find the optimal channel assignment for static sensors and control units. In the operation stage, we run recursively the Hungarian algorithm to allocate proportionally all remaining channels to cellular users. Given the channel assignment, the operation stage further performs transmit power allocation to all nodes. The power control problem is originally nonconvex. We transform the problem into a difference of convex structure, which can be solved successively. We have evaluated the proposed radio resource allocation scheme through extensive simulations. Results confirm that the scheme is indeed efficient in assigning channels and finding the minimum transmit power, to maximize sum-rate of cellular users while guaranteeing a minimum throughput to each sensor and control unit.
机译:社区智能电网由一群邻近家庭组成,可以共享可再生发电机和能源存储设施。在社区网格中,所有电网实体都连接到公共变电站下游的电源线。在本文中,我们使用设备到设备通信来连接在网格实体上安装到各自的控制单元的传感器。这种通信网络的拓扑和节点成员资格取决于其电网的拓扑。这样,可以不为通信节点被分配最佳质量信道。这在无线电资源分配中强加了额外的约束。我们利用传感器和控制单元是静态但蜂窝用户是移动的特征,在提出两级无线电资源分配方案。在规划阶段,我们使用匈牙利方法找到静态传感器和控制单元的最佳通道分配。在操作阶段,我们递归地运行匈牙利算法将所有剩余信道分配给蜂窝用户。给定信道分配,操作阶段还执行对所有节点的发送功率分配。功率控制问题最初是非渗透。我们将问题转换为凸面结构的差异,这可以连续解决。我们通过广泛的模拟评估了所提出的无线电资源分配方案。结果确认该方案确实有效地分配通道并找到最小发射功率,以最大限度地提高蜂窝用户的总和率,同时保证对每个传感器和控制单元的最小吞吐量。

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