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Joint Power Allocation and Beamforming for Energy-Efficient Two-Way Multi-Relay Communications

机译:节能两路多中继通信的联合功率分配和波束成形

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摘要

This paper considers the joint design of user power allocation and relay beamforming in relaying communications, in which multiple pairs of single-antenna users exchange information with each other via multiple-antenna relays in two time slots. All users transmit their signals to the relays in the first time slot while the relays broadcast the beamformed signals to all users in the second time slot. The aim is to maximize the system’s energy efficiency (EE) subject to quality-of-service (QoS) constraints in terms of exchange throughput requirements. The QoS constraints are nonconvex with many nonlinear cross-terms, so finding a feasible point is already computationally challenging. The sum throughput appears in the numerator while the total consumption power appears in the denominator of the EE objective function. The former is a nonconcave function and the latter is a nonconvex function, making fractional programming useless for EE optimization. Nevertheless, efficient iterations of low complexity to obtain its optimized solutions are developed. The performance of the multiple-user and multiple-relay networks under various scenarios is evaluated to show the merit of the proposed method.
机译:本文考虑了中继通信中用户功率分配和中继波束成形的联合设计,在该设计中,多对单天线用户通过两个时隙中的多天线中继彼此交换信息。所有用户在第一个时隙中将其信号发送给中继站,而中继器在第二个时隙中将波束成形的信号广播给所有用户。目的是在交换吞吐量要求方面,根据服务质量(QoS)约束最大化系统的能效(EE)。 QoS约束是非凸的,具有许多非线性交叉项,因此找到可行点已经在计算上具有挑战性。总吞吐量显示在分子中,而总消耗功率显示在EE目标函数的分母中。前者是一个非凹函数,后者是一个非凸函数,因此分数编程对EE优化毫无用处。然而,开发了低复杂度的有效迭代以获得其优化的解决方案。评估了在各种情况下的多用户和多中继网络的性能,以显示该方法的优点。

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