Worst-Case Based Robust Distributed Beamforming for Two-Way Relay Networks

Li Zhang, Haihua Chen, G. Sun
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引用次数: 3

Abstract

In this paper, we consider a worst-case based robust beam forming approach for two-way relay networks that consist of two transceivers and multiple relays. Both the transceiver-to relay channels are assumed to have norm-bounded channel estimation errors. The worst case of the problem in a norm defined error set is optimized to guarantee the performance of the actual case. The resultant beam forming problem minimizes the worst-case total relay transmit power subject to the constraints of quality of service (QoS) of both receivers. We show that the robust beam forming problem can be formulated to a second-order-cone programming (SOCP) problem and can be solved efficiently using interior point method. Simulation results show that the proposed robust beam forming method guarantees no QoS outage at the price of 2 dB of total relay transmit power.
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基于最坏情况的双向中继网络鲁棒分布式波束形成
在本文中,我们考虑了一种基于最坏情况的由两个收发器和多个中继组成的双向中继网络的鲁棒波束形成方法。假设收发器到中继的两个信道都有范数有界的信道估计误差。在规范定义的错误集中对问题的最坏情况进行优化,以保证实际情况的性能。所得到的波束形成问题在受两个接收机的服务质量(QoS)约束的情况下使中继总发射功率最小化。我们证明了鲁棒梁成形问题可以化为二阶锥规划问题,并且可以用内点法有效地求解。仿真结果表明,所提出的鲁棒波束形成方法在中继发射总功率降低2db的情况下保证了不中断QoS。
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