半双工多中继网络的传输调度优化

Wen Wang, L. Ong, M. Motani
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引用次数: 6

摘要

半双工设备广泛应用于当今的无线网络中。这些设备只能发送或接收,但不能同时做这两件事。在本文中,我们使用协作的前向译码中继策略来提高半双工无线网络的吞吐量。由于半双工的限制,中继需要仔细选择他们的传输状态,以最大限度地提高吞吐量。我们证明了传输调度优化可以被表述为一个线性规划问题。尽管随着中继数量的增加,可能的状态数量呈指数增长,但这些状态中只有一小部分需要用于最优传输调度。这一观察结果允许我们使用启发式算法来求解大型网络中的近最优调度。数值结果表明,在半双工无线网络中,译码转发策略提供的吞吐量是传统多跳中继策略的近3倍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Transmission schedule optimization for half-duplex multiple-relay networks
Half duplex devices are widely used in today's wireless networks. These devices can only send or receive, but not do both at the same time. In this paper, we use cooperative decode-forward relay strategies to increase the throughput of half-duplex wireless networks. Due to the half duplex constraint, relays need to carefully choose their transmission states in order to maximize the throughput. We show that the transmission schedule optimization can be formulated as a linear programming problem. Although the number of possible states grows exponentially as the number of relays increases, only a small subset of these states needs to be used in the optimal transmission schedule. This observation allows us to use heuristic algorithms to solve for near-optimal schedule in large networks. Our numerical results show that the decode-forward strategy can provide nearly 3 times more throughput than the traditional multi-hop relaying strategy in half duplex wireless networks.
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