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首页> 外文期刊>IEEE Transactions on Signal Processing >Optimal Wireless Communications With Imperfect Channel State Information
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Optimal Wireless Communications With Imperfect Channel State Information

机译:具有不完美信道状态信息的最佳无线通信

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摘要

This paper studies optimal transmission over wireless channels with imperfect channel state information available at the transmitter side in the context of point-to-point channels, multiuser orthogonal frequency division multiplexing, and random access. Terminals adapt transmitted power and coding mode to channel estimates in order to maximize expected throughput subject to average power constraints. To reduce the likelihood of packet losses due to the mismatch between channel estimates and actual channel values, a backoff function is further introduced to enforce the selection of more conservative coding modes. Joint determination of optimal power allocations and backoff functions is a nonconvex stochastic optimization problem with infinitely many variables that despite its lack of convexity is part of a class of problems with null duality gap. Exploiting the resulting equivalence between primal and dual problems, we show that optimal power allocations and channel backoff functions are uniquely determined by optimal dual variables. This affords considerable simplification because the dual problem is convex and finite dimensional. We further exploit this reduction in computational complexity to develop iterative algorithms to find optimal operating points. These algorithms implement stochastic subgradient descent in the dual domain and operate without knowledge of the probability distribution of the fading channels. Numerical results corroborate theoretical findings.
机译:本文研究了在点对点信道,多用户正交频分复用和随机访问的情况下,具有不完善的信道状态信息的无线信道上的最佳传输,该状态信息在发送器端可用。终端使发射功率和编码模式适应信道估计,以便在平均功率约束下最大化预期吞吐量。为了减少由于信道估计和实际信道值之间的不匹配而造成的分组丢失的可能性,进一步引入了退避功能以强制选择更保守的编码模式。最优功率分配和补偿函数的联合确定是一个具有无限多个变量的非凸随机优化问题,尽管它缺乏凸性,但它是一类具有零对偶间隙的问题的一部分。利用原始问题和双重问题之间的等效性,我们表明,最佳功率分配和信道退避功能由最佳双重变量唯一确定。由于对偶问题是凸的并且是有限维的,因此这提供了相当大的简化。我们进一步利用计算复杂度的降低来开发迭代算法以找到最佳工作点。这些算法在双域中实现随机次梯度下降,并且在不知道衰落信道概率分布的情况下运行。数值结果证实了理论发现。

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