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Channel-relay price pair: towards arbitrating incentives in wireless ad hoc networks

机译:通道中继价格对:仲裁无线自组织网络中的激励措施

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摘要

Cooperation in wireless ad hoc networks has twofold implications. First, each wireless node does not excessively and greedily inject traffic to the shared wireless channel. Second, intermediate nodes voluntarily relay traffic for upstream nodes towards the destination at the cost of its own private resource. Such an assumption supports almost all existing research when it comes to protocol design in ad hoc networks. We believe that without appropriate incentive mechanisms, the nodes are inherently selfish (unwilling to contribute its private resource to relay traffic) and greedy (unfairly sharing the wireless channel). In this paper, we present a price pair mechanism to arbitrate resource allocation and to provide incentives simultaneously such that cooperation is promoted and the desired global optimal network operating point is reached by convergence with a fully decentralized self-optimizing algorithm. Such desired network-wide global optimum is characterized with the concept of Nash bargaining solution (NBS), which not only provides the Pareto optimal point for the network, but is also consistent with the fairness axioms of game theory. We simulate the price pair mechanism and report encouraging results to support and validate our theoretical claims.
机译:无线自组织网络中的合作具有双重含义。首先,每个无线节点不会过分贪婪地将流量注入共享无线信道。其次,中间节点以其自身专用资源为代价,自愿将上游节点的流量中继到目的地。在ad hoc网络中的协议设计中,这种假设几乎支持所有现有研究。我们认为,如果没有适当的激励机制,则节点本质上是自私的(不愿意贡献其私有资源来中继流量)和贪婪的(不公平地共享无线信道)。在本文中,我们提出了一种价格对机制来仲裁资源分配并同时提供激励措施,从而促进合作并通过完全分散的自优化算法的收敛达到所需的全局最优网络工作点。这种期望的网络范围内的全局最优特征在于纳什讨价还价解决方案(NBS)的概念,该概念不仅为网络提供了帕累托最优点,而且还与博弈论的公平公理相一致。我们模拟价格对机制并报告令人鼓舞的结果,以支持和验证我们的理论主张。

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