协作通信中基于拍卖的中继分配

Bin Cao, G. Feng, Yun Li, M. Daneshmand
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引用次数: 15

摘要

协作通信的性能增益很大程度上取决于中继的选择。现有的中继选择方法大多以选择合适的中继实现合作收益最大化为目标,没有考虑到合作通信带来的不利影响:中继传输带来的额外干扰(称为合作干扰)。因此,所得的性能增益可能不准确和/或所选继电器可能不是最佳的。在本文中,我们讨论了在无线网络中使用协作通信的多个通信会话的中继分配问题。我们首先深入研究了使用继电器带来的不利影响,并推导了考虑合作干扰的合作增益。基于我们调查的见解,我们提出了一种将中继分配给单个传输流的方法,同时考虑到合作通信中的合作干扰。为了权衡中继传输带来的优势和不利影响,我们采用拍卖的方法来解决合作通信的中继分配问题。具体来说,我们提出了一种针对集中式无线网络的单轮双拍卖方案(SAS)和针对分散式无线网络的多轮顺序拍卖方案(MAS),用于中继分配。我们进行了大量的仿真实验来验证SAS和MAS的有效性。数值结果证明了协同干扰对系统吞吐量和能源效率的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Auction-based relay assignment in cooperative communications
The performance gain of cooperative communications depends heavily on the selection of relay. Most of existing relay selection methods aim at maximizing cooperative gain by selecting appropriate relay, without taking into account the adverse effect brought by cooperative communications: extra interferences introduced by relay transmission (called cooperation interference). Thus the derived performance gain could be inaccurate and/or the selected relay may be not optimal. In this paper, we address the assignment of relays for multiple communication sessions using cooperative communications in a wireless network. We first thoroughly investigate the adverse effect brought by using relays, and derive the cooperation gain with consideration of cooperation interference. Based on the insights of our investigation, we propose a method of assigning relays to individual transmission flows while taking into account cooperation interference in cooperative communications. In order to tradeoff the advantage and adverse effect caused by relay transmissions, we use an auction approach to address relay assignment of cooperative communications. Specifically, we propose a Single round double Auction Scheme (SAS) for centralized wireless network and a Multiple rounds sequential Auction Scheme (MAS) for decentralized wireless network for relay assignment. We conduct extensive simulation experiments to validate the effectiveness of SAS and MAS. The significance of the impact of cooperation interference, improvement of system throughput and energy efficiency are demonstrated by numerical results.
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