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首页> 外文期刊>Vehicular Technology, IEEE Transactions on >Distributed Optimal Relay Selection in Wireless Cooperative Networks With Finite-State Markov Channels
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Distributed Optimal Relay Selection in Wireless Cooperative Networks With Finite-State Markov Channels

机译:有限状态马尔可夫信道的无线合作网络中的分布式最优中继选择

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摘要

Relay selection is crucial in improving the performance of wireless cooperative networks. Most previous works for relay selection use the current observed channel conditions to make the relay-selection decision for the subsequent frame. However, this memoryless channel assumption is often not realistic given the time-varying nature of some mobile environments. In this paper, we consider finite-state Markov channels in the relay-selection problem. Moreover, we also incorporate adaptive modulation and coding, as well as residual relay energy in the relay-selection process. The objectives of the proposed scheme are to increase spectral efficiency, mitigate error propagation, and maximize the network lifetime. The formulation of the proposed relay-selection scheme is based on recent advances in stochastic control algorithms. The obtained relay-selection policy has an indexability property that dramatically reduces the computation and implementation complexity. In addition, there is no need for a centralized control point in the network, and relays can freely join and leave from the set of potential relays. Simulation results are presented to show the effectiveness of the proposed scheme.
机译:中继选择对于提高无线协作网络的性能至关重要。大多数先前的中继选择工作都使用当前观察到的信道条件来为后续帧做出中继选择决策。但是,鉴于某些移动环境的时变特性,这种无内存信道的假设通常是不现实的。在本文中,我们在中继选择问题中考虑了有限状态马尔可夫信道。此外,我们还将自适应调制和编码以及剩余的中继能量纳入中继选择过程中。所提出的方案的目的是提高频谱效率,减轻误差传播并最大化网络寿命。所提出的中继选择方案的制定是基于随机控制算法的最新进展。所获得的中继选择策略具有可索引性,可以显着降低计算和实现的复杂性。另外,网络中不需要集中控制点,并且继电器可以自由地加入和退出一组潜在的继电器。仿真结果表明了该方案的有效性。

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