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A coalitional game-based relay load balancing and power allocation scheme in decode-and-forward cellular relay networks

机译:解码转发蜂窝中继网络中基于联盟博弈的中继负载均衡和功率分配方案

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摘要

In this paper, a game theoretic relay load balancing and power allocationscheme is proposed for downlink transmission in a decode-and-forward orthogonal frequency division multiple access-based cellular relay network. A system with a base station communicating with multiple users via multiple relays is considered. The relays have limited power, which must be divided among the users they support. In traditional scheme, each relay simply divides its transmit power equally among all its users. Moreover, each user selects the relay with the highest channel gain. In this work, we do not apply the traditional relay scheme. It is because the users are distributed randomly, and by applying the traditional relay selection scheme, it may happen that some relays have more users connected to them than other relays, which results in having unbalanced load among the relays. In order to avoid performance degradation, achieve relay load balancing, and maximize the total data rate of the network, a game theoretic approach is proposed, which efficiently assigns the users to relays. The power of each relay is wisely distributed among users by the efficient power allocation scheme. Simulation results indicate that the proposed game-based scheme can considerably improve the average sum-spectral efficiency. Moreover, it shows that by applying the game, users who can connect to uncongested relays join them as opposed to connecting to congested relays. Copyright (C) 2015 John Wiley & Sons, Ltd.
机译:本文提出了一种基于博弈论的中继负载均衡和功率分配方案,用于基于解码和转发正交频分多址的蜂窝中继网络中的下行传输。考虑具有基站经由多个中继与多个用户通信的系统。继电器的功率有限,必须在其支持的用户之间分配功率。在传统方案中,每个中继简单地将其发射功率平均分配给所有用户。而且,每个用户选择具有最高信道增益的继电器。在这项工作中,我们不应用传统的中继方案。这是因为用户是随机分布的,并且通过应用传统的中继选择方案,可能会发生某些中继的用户连接数量超过其他中继的情况,从而导致中继之间的负载不均衡。为了避免性能下降,实现中继负载平衡并最大化网络的总数据速率,提出了一种博弈论方法,该方法可以有效地将用户分配给中继。每个继电器的功率通过有效的功率分配方案明智地分配给用户。仿真结果表明,所提出的基于游戏的方案可以显着提高平均和谱效率。而且,它表明通过应用游戏,可以连接到未拥塞的中继的用户加入了他们,而不是连接到拥塞的中继。版权所有(C)2015 John Wiley&Sons,Ltd.

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