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Transmission control in cognitive radio systems with latency constraints as a switching control dynamic game

机译:具有时延约束的认知无线电系统中的传输控制作为切换控制动态博弈

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This paper addresses the secondary user rate adaptation problem in cognitive radio networks. By modeling primary user activities and secondary user block fading channels as finite state Markov chains, we formulate the transmission rate adaptation problem of each secondary user as a zerosum dynamic Markovian game with a delay constraint. The Nash equilibrium of the resulting game is available and all of the Nash equilibria have a unique value vector. Conditions are given so that the Nash equilibrium transmission policy of each user is a randomized mixture of pure threshold policies. Such threshold policies are easily implementable. Finally, we present a stochastic approximation algorithm which can adaptively estimate Nash equilibrium policies and track such policies for non-stationary problems where the statistics of the channel and user parameters evolve with time.
机译:本文解决了认知无线电网络中的次要用户速率适应问题。通过将主要用户活动和次要用户块衰落信道建模为有限状态马尔可夫链,我们将每个次要用户的传输速率适应问题公式化为具有延迟约束的零和动态马尔可夫博弈。所得博弈的纳什均衡是可用的,所有纳什均衡都具有唯一的值向量。给出条件以使每个用户的纳什均衡传输策略是纯阈值策略的随机混合。这样的阈值策略很容易实现。最后,我们提出了一种随机逼近算法,该算法可以自适应地估计Nash均衡策略,并针对非静态问题跟踪此类策略,在这些非平稳问题中,通道和用户参数的统计信息会随着时间变化。

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