A game-theoretic approach for opportunistic transmission scheme in cognitive radio networks with incomplete information

X. Tan, Liang Li, Wei Guo
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引用次数: 1

Abstract

One of the key issues in cognitive transmission is for secondary users to dynamically acquire spare spectrum from the primary user and then select appropriate transmission schemes. The existing spectrum sharing scheme adopts a deterministic Cournot game to formulate this problem, of which the solution is Nash equilibrium. This formulation implicitly assumes that each secondary user is willing to fully exchange transmission parameters with all other users and hence knows the complete information of all others. However, this assumption may not be true in general. To remedy this, the present paper considers a more realistic assumption of incomplete information, i.e., each secondary user may choose to conceal its private information for achieving higher transmission benefit. Following this assumption, we adopt a probabilistic Cournot game to propose an opportunistic transmission scheme to maximize the transmission benefit of all secondary users. Bayesian equilibrium is considered as the solution of this game. Moreover, we rigorously prove that a secondary user can improve its expected transmission benefit by actively hiding its private transmission parameters and increasing the variance of its allocated spectrum.
不完全信息认知无线网络中机会传输方案的博弈论方法
从用户动态获取主用户的备用频谱并选择合适的传输方案是认知传输的关键问题之一。现有的频谱共享方案采用确定性古诺博弈来表述该问题,其解为纳什均衡。该公式隐含地假设每个辅助用户都愿意与所有其他用户充分交换传输参数,因此知道所有其他用户的完整信息。然而,这种假设在一般情况下可能并不正确。为了解决这个问题,本文考虑了一个更现实的信息不完全假设,即每个二级用户可能选择隐藏其私有信息以获得更高的传输效益。在此假设下,我们采用概率古诺博弈提出了一种机会传输方案,使所有二次用户的传输效益最大化。贝叶斯均衡被认为是这个博弈的解。此外,我们严格证明了二级用户可以通过主动隐藏其私有传输参数和增加其分配频谱的方差来提高其预期传输效益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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