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Green resource allocation and EE-balancing in multiuser two-way amplify-and-forward relay networks

机译:多用户双向转发中继网络中的绿色资源分配和EE平衡

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In this paper, we investigate an energy-efficient joint subcarrier and power allocation algorithm for improving the worst energy efficiency (worst-EE) in multiuser two-way amplify-and-forward (AF) relay networks, that not only balances the EE of the two-way links, but also ensures the desired quality-of-service (QoS) of each user. In order to maximize the worst-EE, an EE-balancing optimization problem is formulated as the ratio of the spectral efficiency (SE) over the total network power consumption subject to a total transmit power and users' QoS constraints. Since the formulated primal problem is a non-convex fractional mixed binary-integer program, i.e., NP-hard to solve, thus a concave lower bound on the objective function and a series of convex transformations are applied to transform the problem into a tractable convex form. An iterative algorithm is proposed to achieve the optimal solution of the dual problem. We further propose an efficient, low-complexity suboptimal resource allocation algorithm. Simulation results demonstrate the effectiveness of the proposed iterative and suboptimal algorithms.
机译:在本文中,我们研究了一种能效联合子载波和功率分配算法,该算法可改善多用户双向双向转发(AF)中继网络中的最差能量效率(worst-EE),不仅可以平衡EE的EE双向链接,还可以确保每个用户所需的服务质量(QoS)。为了最大化最差的EE,将EE均衡优化问题表述为频谱效率(SE)占总网络功耗的比例,该比例取决于总发射功率和用户的QoS约束。由于拟定的原始问题是一个非凸分数混合二进制整数程序,即难于求解的NP,因此目标函数上的凹下限和一系列凸变换被应用来将问题转化为可处理的凸形式。提出了一种迭代算法来实现对偶问题的最优解。我们进一步提出了一种有效的,低复杂度的次优资源分配算法。仿真结果证明了所提出的迭代算法和次优算法的有效性。

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