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首页> 外文期刊>IEEE transactions on wireless communications >Resource Allocation Techniques for Wireless Powered Communication Networks With Energy Storage Constraint
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Resource Allocation Techniques for Wireless Powered Communication Networks With Energy Storage Constraint

机译:具有能量存储约束的无线通信网络的资源分配技术

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摘要

This paper studies multiuser wireless powered communication networks, where energy constrained users charge their energy storages by scavenging energy of the radio frequency signals radiated from a hybrid access point (H-AP). The energy is then utilized for the users’ uplink information transmission to the H-AP in time division multiple access mode. In this system, we aim to maximize the uplink sum rate performance by jointly optimizing energy and time resource allocation for multiple users in both infinite capacity and finite capacity energy storage cases. First, when the users are equipped with the infinite capacity energy storages, we derive the optimal downlink energy transmission policy at the H-AP. Based on this result, analytical resource allocation solutions are obtained. Next, we propose the optimal energy and time allocation algorithm for the case where each user has finite capacity energy storage. Simulation results confirm that the proposed algorithms offer about 30% average sum rate performance gain over conventional schemes.
机译:本文研究了多用户无线供电的通信网络,其中受能量限制的用户通过清除从混合接入点(H-AP)辐射的射频信号的能量来为其能量存储充电。然后,该能量用于以时分多址模式将用户的上行链路信息传输到H-AP。在此系统中,我们旨在通过在无限容量和有限容量储能情况下共同优化多个用户的能源和时间资源分配,来最大化上行链路总和速率性能。首先,当用户配备了无限容量的能量存储装置时,我们在H-AP处推导了最佳的下行链路能量传输策略。基于此结果,获得分析资源分配解决方案。接下来,针对每个用户具有有限容量的能量存储的情况,我们提出了最佳的能量和时间分配算法。仿真结果证实,与常规方案相比,所提出的算法可提供约30%的平均总速率性能增益。

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