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Robust relay design for two-way multi-antenna relay systems with imperfect CSI

机译:CSI不完善的双向多天线中继系统的鲁棒中继设计

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The paper investigates the problem of designing the multiple-antenna relay in a two-way relay network by taking into account the imperfect channel state information (CSI). The objective is to design the multiple-antenna relay based upon the CSI estimates, where the estimation errors are included to attain the robust design under the worst-case philosophy. In particular, the worst-case transmit power at the multiple-antenna relay is minimized while guaranteeing the worst-case quality of service requirements that the received signal-to-noise ratio (SNR) at both sources are above a prescribed threshold value. Since the worst-case received SNR expression is too complex for subsequent derivation and processing, its lower bound is explored instead by minimizing the numerator and maximizing the denominator of the worst-case SNR. The aforementioned problem is mathematically formulated and shown to be nonconvex. This motivates the pursuit of semidefinite relaxation coupled with a randomization technique to obtain computationally efficient high-quality approximate solutions. This paper has shown that the original optimization problem can be reformulated and then relaxed to a convex problem that can be solved by utilizing suitable randomization loop. Numerical results compare the proposed multiple-antenna relay with the existing non-robust method, and therefore validate its robustness against the channel uncertainty. Finally, the feasibility of the proposed design and the associated influencing factors are discussed by means of extensive Monte Carlo simulations.
机译:本文通过考虑不完善的信道状态信息(CSI),研究了在双向中继网络中设计多天线中继的问题。目的是基于CSI估计来设计多天线中继,其中包括估计误差以在最坏情况下获得鲁棒的设计。特别是,在保证两个天线源的接收信噪比(SNR)均高于规定阈值的最坏情况服务质量要求的同时,将多天线中继处的最坏情况发射功率最小化。由于最坏情况下的SNR表达式对于后续的推导和处理而言过于复杂,因此通过最小化最坏情况SNR的分子并最大化其分母来探索其下限。前述问题是数学公式化的,并且显示为非凸的。这激发了对半确定松弛的追求,并结合了一种随机化技术来获得计算上高效的高质量近似解。本文表明,可以将原始的优化问题重新公式化,然后放宽为一个凸问题,可以通过使用适当的随机环来解决该凸问题。数值结果将提出的多天线中继与现有的非鲁棒方法进行了比较,从而验证了其针对信道不确定性的鲁棒性。最后,通过广泛的蒙特卡洛模拟讨论了所提出设计的可行性和相关的影响因素。

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