Threshold-Based Multichannel Access with Energy Constraint

Bo Yang, Yanyan Shen, M. Johansson, X. Guan
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引用次数: 3

Abstract

This paper considers multiaccess control for the uplink in orthogonal-frequency-division-multiple-access (OFDMA) wireless networks. To avoid extensive information exchange with the access point in centralized approaches, we propose a distributed threshold-based scheme, where each user accesses multiple channels simultaneously based on a comparison between measured channel gains and a channel gain threshold. Each user will adapts its channel gain threshold based on local measurements of collision on each channeland the energy consumption for channel contention. The problem is formulated as a constrained non-cooperative game. We show existence and uniqueness of the Nash equilibrium. A gradient-based algorithm is proposed to update the channel gain threshold. Furthermore, the convergence of this algorithm is proved. In addition, for heterogeneous systems, our proposed scheme can maintain multiuser diversity gains considering the time-varying channel gain and energy consumption. Compared with peer distributed OFDMA schemes and random channel selection algorithms, our proposed schemes reduce overhead and achieve a higher throughput.
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基于阈值的能量约束多通道访问
研究正交频分多址(OFDMA)无线网络中上行链路的多址控制问题。为了避免在集中式方法中与接入点进行大量的信息交换,我们提出了一种基于分布式阈值的方案,其中每个用户同时访问多个信道,基于测量的信道增益和信道增益阈值之间的比较。每个用户将根据每个信道的局部碰撞测量和信道争用的能量消耗来调整其信道增益阈值。该问题被表述为一个约束的非合作博弈。证明了纳什均衡的存在唯一性。提出了一种基于梯度的信道增益阈值更新算法。进一步证明了该算法的收敛性。此外,对于异构系统,考虑时变信道增益和能量消耗,该方案可以保持多用户分集增益。与对等分布式OFDMA方案和随机信道选择算法相比,我们提出的方案减少了开销,实现了更高的吞吐量。
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