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Optimization of Wireless Powered Communication Networks with Heterogeneous Nodes

机译:异构节点的无线通信网络优化

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This paper studies optimal resource allocation in a wireless powered communication network with two groups of users; one is assumed to have radio frequency (RF) energy harvesting capability and no other energy sources, while the other group has legacy nodes that are assumed not to have RF energy harvesting capability and are equipped with dedicated energy supplies. First, the base-station (BS) with a constant power supply broadcasts an energizing signal over the downlink. Afterwards, all users transmit their data independently on the uplink using time division multiple access (TDMA). We propose two transmission schemes, namely OPIC and OPAC, subject to different energy constraints on the system. Within each scheme, we formulate two optimization problems with different objective functions, namely maximizing the sum throughput and maximizing the minimum throughput, for enhanced fairness. We establish the convexity of all formulated problems which opens room for efficient solution using standard techniques. Our numerical results show the superiority of our realistic system accommodating legacy nodes, along with RF harvesting nodes, compared to the baseline WPCN system with RF energy harvesting nodes only. Moreover, the results reveal new insights and throughput-fairness trade-offs unique to our new problem setting.
机译:本文研究了两组用户的无线通信网络中的最佳资源分配;假设一个射频(RF)能量收集能力和没有其他能源,而另一组具有遗留节点,该遗传节点不具有RF能量收集能力,并且配备有专用的能量供应。首先,具有恒定电源的基站(BS)在下行链路上广播激励信号。之后,所有用户都使用时分多次访问(TDMA)在上行链路上独立地在上行链路上传输数据。我们提出了两个传输方案,即替代品和OPAC,受系统的不同能量约束。在每个方案中,我们制定了两个具有不同目标函数的优化问题,即最大化总吞吐量并最大化最小吞吐量,以提高公平性。我们建立了所有配方问题的凸起,使用标准技术打开了高效解决方案的空间。我们的数值结果表明,与仅具有RF能量收集节点的基线WPCN系统相比,我们的现实系统的优势与RF收集节点相比。此外,结果揭示了新的洞察力和吞吐量公平的权衡,以我们的新问题设置独特。

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