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Radio Resource Allocation Scheme for Reliable Demand Response Management Using D2D Communications in Smart Grid

机译:使用D2D通信在智能网格中的可靠需求响应管理的无线电资源分配方案

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摘要

Integration of renewable energy into power distribution network is a challenge because renewable output is intermittent. This problem can be tackled through demand response management which controls consumption demand by adjusting energy prices in real-time to match the available time-varying power supply. Such real-time pricing (RTP) requires an advanced communication network to collect data and to disseminate price information. We use cellular-assisted underlay device-to-device (D2D) communications to connect energy management units (EMUs) directly to the RTP control center. Such D2D transmissions can be interfered by concurrent cellular transmissions. This interference can affect reliability of the RTP operation. We quantify the reliability requirements given a tolerable financial loss and a supply-demand gap. The cost in satisfying the reliability requirement appears in the form of a lower sum-rate for all cellular nodes, because cellular rate is a revenue generator for communication service provider. We formulate an optimization problem to allocate radio resources in terms of communication channel and transmit power, to maximize the cellular sum-rate without compromising the RTP reliability requirements. Since the optimization problem is non-convex, we use a pair of iterative algorithms to assign communication channel using the Hungarian algorithm and to control transmit power using the difference of convex (DC) optimization. The effectiveness of the combination of the Hungarian algorithm and the DC optimization has been verified through extensive simulations, with the results compared against a benchmark scheme that randomly assigns communication channels.
机译:可再生能源将可再生能源集成到配电网络是一个挑战,因为可再生输出是间歇性的。可以通过需求响应管理解决此问题,通过实时调整能源价格来控制消费需求以匹配可用的时变电源。这种实时定价(RTP)需要高级通信网络来收集数据并传播价格信息。我们使用蜂窝辅助底层设备到设备(D2D)通信将能量管理单元(EMU)直接连接到RTP控制中心。这种D2D传输可以通过并发蜂窝传递干扰。这种干扰会影响RTP操作的可靠性。我们量化了可容忍的财务损失和供需差距的可靠性要求。满足可靠性要求的成本以所有蜂窝节点的较低总和速率的形式出现,因为蜂窝速率是用于通信服务提供商的收入发生器。我们制定了在通信信道和传输功率方面分配无线电资源的优化问题,以最大化蜂窝和速率而不会影响RTP可靠性要求。由于优化问题是非凸的,我们使用一对迭代算法来使用匈牙利算法分配通信信道,并使用凸(DC)优化的差异来控制发射功率。通过广泛的模拟验证了匈牙利算法和DC优化组合的有效性,结果与随机分配通信信道的基准方案进行了比较。

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