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A Game-theoretic Framework for Network Coding Based Device-to-Device Communications

机译:基于网络编码的设备间通信的博弈论框架

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摘要

This paper investigates the delay minimization problem for instantly decodable network coding (IDNC) based deviceto- device (D2D) communications. In D2D enabled systems, users cooperate to recover all their missing packets. The paper proposes a game theoretic framework as a tool for improving the distributed solution by overcoming the need for a central controller or additional signaling in the system. The session is modeled by self-interested players in a non-cooperative potential game. The utility functions are designed so as increasing individual payoff results in a collective behavior achieving both a desirable system performance in a shared network environment and the Nash equilibrium. Three games are developed whose first reduces the completion time, the second the maximum decoding delay and the third the sum decoding delay. The paper, further, improves the formulations by including a punishment policy upon collision occurrence so as to achieve the Nash bargaining solution. Learning algorithms are proposed for systems with complete and incomplete information, and for the imperfect feedback scenario. Numerical results suggest that the proposed game-theoretical formulation provides appreciable performance gain against the conventional point-to-multipoint (PMP), especially for reliable user-to-user channels.
机译:本文研究了基于即时可解码网络编码(IDNC)的设备到设备(D2D)通信的延迟最小化问题。在启用D2D的系统中,用户合作以恢复所有丢失的数据包。本文提出了一种博弈论框架,将其作为一种工具,通过克服对系统中中央控制器或其他信令的需求来改进分布式解决方案。该会话由不合作的潜在游戏中的自私玩家建模。设计效用函数是为了增加个人收益,从而导致集体行为,在共享网络环境中达到理想的系统性能,并达到纳什均衡。开发了三个游戏,它们的第一个减少完成时间,第二个减少最大解码延迟,第三个减少和解码延迟。此外,本文还通过对碰撞发生时的惩罚政策进行了改进,以实现纳什讨价还价的解决方案。针对具有完整和不完整信息的系统以及不完善的反馈方案,提出了学习算法。数值结果表明,与传统的点对多点(PMP)相比,所提出的博弈论公式提供了可观的性能提升,尤其是对于可靠的用户对用户通道而言。

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