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Energy-Efficient Resource Allocation for Wireless-Powered Backscatter Communication Networks

机译:无线供电后向散射通信网络的节能资源分配

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In this paper, we investigate energy-efficient resource allocation in a wireless powered backscatter communication network (WPBCN), which consists of two types of wireless devices. To fully exploit the information transmission time, the two devices are supported to operate in different modes, i.e., the harvest-then-transmit (HTT) mode and backscatter communication (BackCom) mode, respectively. To improve the efficiency of wireless power transfer, energy beamforming technique is adopted at the PB. We formulate the system energy efficiency (EE) maximization problem by jointly optimizing the energy beamforming vector, power allocation, and time allocation. Since the formulated problem is non-convex, we employ variable substitutions, fractional programming theory, and semi-definite relaxation (SDR) to transform the non-convex problem into a convex problem. An algorithm is finally proposed to derive the optimal solution. Simulation results show that the proposed resource allocation scheme can improve the system EE.
机译:在本文中,我们研究了由两种类型的无线设备组成的无线后向散射通信网络(WPBCN)中的节能资源分配。为了充分利用信息传输时间,支持两个设备以不同的模式运行,即分别为“先取后发(HTT)模式”和“后向散射通信(BackCom)模式”。为了提高无线功率传输的效率,PB采用了能量波束成形技术。通过共同优化能量波束形成向量,功率分配和时间分配,我们制定了系统能效(EE)最大化问题。由于所提出的问题是非凸问题,因此我们采用变量替换,分数规划理论和半定松弛(SDR)将非凸问题转换为凸问题。最后提出了一种算法,以求出最优解。仿真结果表明,所提出的资源分配方案可以提高系统的能效。

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