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Game-Theoretic Approach to Joint Transmitter Adaptation and Power Control in Wireless Systems

机译:无线系统中联合发射机自适应和功率控制的博弈论方法

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Game theory has emerged as a new mathematical tool in the analysis and design of wireless communication systems, being particularly useful in studying the interactions among adaptive transmitters that attempt to achieve specific objectives without cooperation. In this paper, we present a game-theoretic approach to the problem of joint transmitter adaptation and power control in wireless systems, where users' transmissions are subject to quality-of-service requirements specified in terms of target signal-to-interference-plus-noise ratios (SINRs) and nonideal vector channels between transmitters and receivers are explicitly considered. Our approach is based on application of separable games, which are a specific class of noncooperative games where the players' cost is a separable function of their strategic choices. We formally state a joint codeword and power adaptation game, which is separable, and we study its properties in terms of its subgames, namely, the codeword adaptation subgame and the power adaptation subgame. We investigate the necessary conditions for an optimal Nash equilibrium and show that this corresponds to an ensemble of user codewords and powers, which maximizes the sum capacity of the corresponding multiaccess vector channel model, and for which the specified target SINRs are achieved with minimum transmitted power.
机译:博弈论已经成为无线通信系统分析和设计中的一种新的数学工具,在研究自适应发射机之间的相互作用时特别有用,这些发射机试图在没有合作的情况下实现特定目标。在本文中,我们针对无线系统中的联合发射机自适应和功率控制问题提出了一种博弈论方法,在该系统中,用户的传输受目标信号与干扰加的规定的服务质量要求的约束明确考虑了发射器和接收器之间的噪声比(SINR)和非理想向量通道。我们的方法基于可分离游戏的应用,可分离游戏是一类非合作游戏,其中玩家的费用是其战略选择的可分离功能。我们正式声明了一个可分离的联合代码字和功率适应游戏,并根据其子游戏(即代码字适应子游戏和功率适应子游戏)研究其属性。我们研究了最佳Nash均衡的必要条件,并表明这与用户码字和功率的集合相对应,这使对应的多路访问矢量信道模型的总容量最大化,并且以最小的发射功率实现了指定的目标SINR 。

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