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Joint energy-bandwidth allocation for multi-user channels with cooperating hybrid energy nodes

机译:具有混合能量节点协作的多用户信道联合能量带宽分配

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In this paper, we consider the energy-bandwidth allocation for a network of multiple users, where the transmitters each powered by both an energy harvester and conventional grid, access the network orthogonally on the assigned frequency band. The tradeoff among the weighted sum throughput, the use of grid energy, and the amount of energy cooperation is studied through an optimization objective which is a linear combination of these quantities. To solve the problem efficiently, an iterative algorithm is proposed using the Proximal Jacobian ADMM. We show that this algorithm converges to the optimal solution with an overall complexity of O(NK). Numerical results show that the proposed algorithms can make efficient use of the harvested energy, grid energy, energy cooperation, and the available bandwidth.
机译:在本文中,我们考虑了多用户网络的能量带宽分配,其中每个均由能量采集器和常规电网供电的发射机在分配的频带上正交访问网络。通过优化目标(这些数量的线性组合),研究了加权总和吞吐量,电网能源的使用以及能源合作量之间的权衡。为了有效地解决该问题,提出了一种使用雅可比近邻ADMM的迭代算法。我们表明,该算法以O(NK)的整体复杂度收敛到最优解。数值结果表明,所提出的算法可以有效利用采集的能量,电网能量,能量协作和可用带宽。

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