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Coalitions in Cooperative Wireless Networks

机译:合作无线网络中的联盟

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Cooperation between rational users in wireless networks is studied using coalitional game theory. Using the rate achieved by a user as its utility, it is shown that the stable coalition structure, i.e., set of coalitions from which users have no incentives to defect, depends on the manner in which the rate gains are apportioned among the cooperating users. Specifically, the stability of the grand coalition (GC), i.e., the coalition of all users, is studied. Transmitter and receiver cooperation in an interference channel (IC) are studied as illustrative cooperative models to determine the stable coalitions for both flexible (transferable) and fixed (non-transferable) apportioning schemes. It is shown that the stable sum-rate optimal coalition when only receivers cooperate by jointly decoding (transferable) is the GC. The stability of the GC depends on the detector when receivers cooperate using linear multiuser detectors (non-transferable). Transmitter cooperation is studied assuming that all receivers cooperate perfectly and that users outside a coalition act as jammers. The stability of the GC is studied for both the case of perfectly cooperating transmitters (transferrable) and under a partial decode-and-forward strategy (non-transferable). In both cases, the stability is shown to depend on the channel gains and the transmitter jamming strengths.
机译:使用合理网络在无线网络中的合作,采用了独立博弈论研究。使用用户实现的速率作为其实用程序,显示了稳定的联盟结构,即用户对用户没有激励缺陷的联盟,取决于速率提升在合作用户之间分配的方式。具体而言,研究了大联盟(GC)的稳定性,即所有用户的联盟。干扰通道(IC)中的发射机和接收器协作被研究为说明性协作模型,以确定柔性(可转移)和固定(不可转换)分配方案的稳定联盟。结果表明,仅通过联合解码(可转移)合作的接收器的稳定总和最佳联盟是GC。当接收器使用线性多用户检测器(不可转换)协作时,GC的稳定性取决于检测器。研究了发射机协作,假设所有接收器完全合作,并在联盟以外的用户充当干扰物。研究了GC的稳定性,用于完全配合发射器(可转移)和在部分解码和前进策略(不可转移)下的情况。在这两种情况下,显示稳定性依赖于通道增益和发射器干扰强度。

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