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Energy-Efficient Scheduling and Power Allocation for Energy Harvesting-Based D2D Communication

机译:基于能量收集的D2D通信的节能调度和功率分配

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Energy Harvesting (EH)-based Device-to-Device (D2D) communication brings some challenges in resources management due to the joint influence of the volatility of available energy and the interference between cellular and D2D users. In this paper, we focus on improving the energy efficiency of EH-based D2D communication for the scenario where multiple EH- based D2D communication links multiplex the uplink channel resource of one cellular user (CU). Considering the variation of transmission requests based on available energy in different time slots, a short-term sum energy efficiency maximization problem for EH-based D2D communication is formulated to integrate the transmission scheduling and power allocation while maintaining a given transmission rate requirement for both CU and D2D links. The modeled problem is a non-convex mixed integer non- linear programming (MINLP) problem. In view of the NP-hardness property of the optimization problem, we develop a two-layer convex approximation iteration algorithm (CAIA) to obtain a feasible suboptimal solution. Finally, numerical simulation results indicate the performance of CAIA in aspects of average energy efficiency and transmission rate of D2D communication.
机译:基于能量收集(EH)的设备到设备(D2D)通信由于可用能量波动和细胞和D2D用户之间的干扰的关节影响,为资源管理带来了一些挑战。在本文中,我们专注于提高基于EH的D2D通信的能效,其中包括多个基于EH的D2D通信链路多路复用一个蜂窝用户(CU)的上行链路信道资源。考虑到不同时隙中的可用能量的传输请求的变化,配制了基于EH的D2D通信的短期和能效最大化问题,以集成传输调度和功率分配,同时保持CU的给定的传输速率要求和D2D链接。建模问题是非凸混合整数非线性编程(MINLP)问题。鉴于优化问题的NP硬度特性,我们开发了双层凸近似迭代算法(CAIA)以获得可行的次优溶液。最后,数值模拟结果表明CAIA在D2D通信的平均能效和传输速率方面的性能。

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