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Joint Power Allocation and Beamforming in Amplify-and-Forward Relay Networks under Per-Node Power Constraint

机译:在每个节点功率约束下的放大转发中继网络中的联合功率分配和波束成形

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摘要

Two-way relay networks (TWRN) have been intensively investigated over the past decade due to their ability to enhance the performance assessment of networks in terms of cellular coverage and spectral efficiency. Yet, power control in such systems is a nontrivial issue, particularly in multirelay networks where relays are deployed to ensure a required Quality of Service (QoS). In this paper, we envision to address this critical issue by minimizing the sum-power with respect to per-node power consumption and acceptable users’ rates. To tackle this, we employ a variable transformation to turn the fractional quadratically constrained quadratic problem (QCQP) into semidefinite programming (SDP). This algorithm is also extended to a distributed format. Simulation results of deploying 10 relay stations reveal that the total power consumption will decrease to approximately 8 dBW for 6 bps/Hz sum-rate.
机译:在过去的十年中,由于双向中继网络(TWRN)能够增强网络在蜂窝覆盖范围和频谱效率方面的性能评估能力,因此已经对其进行了深入研究。然而,在这样的系统中,功率控制是一个不小的问题,特别是在多中继网络中,其中部署了中继以确保所需的服务质量(QoS)。在本文中,我们设想通过将与每个节点的功耗和可接受的用户费率有关的总功耗最小化来解决此关键问题。为了解决这个问题,我们采用变量变换将分数二次约束二次问题(QCQP)转换为半定规划(SDP)。该算法也扩展为分布式格式。部署10个中继站的仿真结果表明,对于6µbps / Hz的总速率,总功耗将降低到大约8µdBW。

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