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Throughput maximization in wireless powered communication networks with minimum node throughput requirement

机译:无线通信网络中的吞吐量最大化,节点吞吐量要求最低

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This paper considers wireless powered communication network consisting of one hybrid access point and a set of one-hop nodes. Hybrid access point conducts wireless energy transfer (WET) in the downlink and nodes conduct wireless information transmissions (WITs) in the uplink based on the time division multiple access (TDMA) mode. Specifically, for the scenario where each node has its own minimum throughput requirement and different nodes' data have different levels of utility, we aim to achieve the minimum node throughput constrained weighted sum throughput maximization (MT-WSTM) by jointly optimizing the time allocations of the WET and the WITs. First, we formulate the MT-WSTM problem as a nonlinear optimization problem and further transform it into a more tractable form. Then, we prove the MT-WSTM problem is convex and develop an efficient algorithm utilizing the dual decomposition technique to obtain the optimal solution of this problem. Compared with two schemes which use the optimal WET time and allocate the surplus WIT time evenly to all nodes and solely to the best node, respectively, the weighted sum throughput of the MT-WSTM scheme is obviously larger in both homogeneous and heterogeneous scenarios.
机译:本文考虑由一个混合接入点和一组单跳节点组成的无线通信网络。混合接入点基于时分多址(TDMA)模式在下行链路中进行无线能量传输(WET),节点在上行链路中进行无线信息传输(WIT)。具体来说,对于每个节点都有其自己的最小吞吐量要求且不同节点的数据具有不同级别的效用的情况,我们旨在通过共同优化以下节点的时间分配来实现最小节点吞吐量约束加权总和吞吐量最大化(MT-WSTM)。 WET和WIT。首先,我们将MT-WSTM问题公式化为非线性优化问题,然后将其进一步转换为更易于处理的形式。然后,我们证明了MT-WSTM问题是凸的,并利用对偶分解技术开发了一种有效的算法,以获得该问题的最佳解决方案。与使用最佳WET时间并将剩余WIT时间分别平均分配给所有节点和仅分配给最佳节点的两种方案相比,MT-WSTM方案的加权和吞吐量在同构和异构场景中都明显更大。

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