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Joint Downlink-Uplink Throughput optimization in Wireless Powered Communication Networks

机译:无线供电通信网络中的下行链路-上行链路联合吞吐量优化

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Wireless power transfer has attracted a great deal of attentions recently, due to its ability to extend the lifetime of IoT devices. In this paper, a joint downlink (DL) and uplink (UL) optimization for sum throughput maximization in a two user wireless powered communication network (WPCN) is considered. During DL, a hybrid access point (H-AP) sequentially broadcasts energy and transmits information to each user, and during the UL, each user transmits information to the H-AP, and harvests energy from other users’ UL information transmissions. Each user exploits the total harvested energy during both DL and UL to support its circuit power consumption for the DL information receiving and decoding and WET in the UL as well as information transmit power in the UL. Under this setting, we maximize the weighted sum throughput over both DL and UL by optimizing transmit power and time allocations at H-AP and users, subject to the H-AP’s and each user’s transmit power constraint, time allocation constraint and energy harvesting constraints at each user. However, this problem is found to be a non-convex optimization problem. We transform this problem into a convex optimization problem, and obtain the optimal solutions using an efficient algorithm.
机译:由于其能够延长IOT设备的寿命,无线电力传输最近引起了大量的注意。在本文中,考虑了两个用户无线供电通信网络(WPCN)中的总吞吐量最大化的关节下行链路(DL)和上行链路(UL)优化。在DL期间,混合接入点(H-AP)顺序地广播能量并向每个用户发送信息,并且在UL期间向H-AP发送信息,并从其他用户的UL信息传输收集能量。每个用户在DL和UL期间利用总收获的能量,以支持其在UL中的DL信息接收和解码和潮湿的电路功耗以及在UL中发射功率。在此设置下,通过优化H-AP和用户的发送功率和时间分配,通过H-AP和每个用户的发射功率约束,时间分配约束和能量收集约束来最大限度地提高DL和UL的加权和吞吐量每个用户。但是,发现这个问题是非凸优化问题。我们将此问题转换为凸优化问题,并使用高效算法获得最佳解决方案。

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