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Amplify-and-Forward Two-Way Relay Networks: Error Exponents and Resource Allocation

机译:放大转发双向中继网络:错误指数和资源分配

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In a two-way relay network, two terminals exchange information over a shared wireless half-duplex channel with the help of a relay. Due to its fundamental and practical importance, there has been an increasing interest in this channel. However, there has been little work that characterizes the fundamental tradeoff between the communication reliability and transmission rate across all signal-to-noise ratios. In this paper, we consider amplify-and-forward (AF) two-way relaying due to its simplicity. We first derive the random coding error exponent for the link in each direction. From the exponent expression, the capacity and cutoff rate for each link are also deduced. We then put forth the notion of bottleneck error exponent, which is the worst exponent decay between the two links, to give us insight into the fundamental tradeoff between the rate pair and information-exchange reliability in the two-way relay network. As applications of the error exponent analysis to design a reliable AF two-way relay network, we present two optimization framework to maximize the bottleneck error exponent, namely: i) the optimal rate allocation under a sum-rate constraint and its closed-form quasi-optimal solution that requires only knowledge of the capacity and cutoff rate of each link; and ii) the optimal power allocation under a total power constraint and perfect global channel state information, which is shown equivalently to a quasi-convex optimization problem. Numerical results verify our analysis and the effectiveness of the optimal rate and power allocations in maximizing the bottleneck error exponent, i.e. the network information-exchange reliability.
机译:在双向中继网络中,两个终端借助中继在共享的无线半双工信道上交换信息。由于其基本和实际重要性,人们对该渠道的兴趣日益浓厚。但是,很少有工作能够表征所有信噪比之间通信可靠性和传输速率之间的基本权衡。在本文中,由于其简单性,我们考虑了放大转发(AF)双向中继。我们首先导出每个方向上链路的随机编码误差指数。从指数表达式中,还可以推导出每个链接的容量和截止率。然后,我们提出了瓶颈误差指数的概念,这是两条链路之间最差的指数衰减,以便我们深入了解双向中继网络中速率对和信息交换可靠性之间的基本权衡。作为误差指数分析在设计可靠的AF双向中继网络中的应用,我们提出了两个优化框架以最大化瓶颈误差指数,即:i)在总和约束下的最优比率分配及其闭式准-仅需要了解每个链路的容量和切断率的最佳解决方案; ii)在总功率约束和完美的全局信道状态信息下的最优功率分配,等效于准凸优化问题。数值结果验证了我们的分析以及最优速率和功率分配在最大程度地提高瓶颈错误指数即网络信息交换可靠性方面的有效性。

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