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A game-theoretic approach to energy-efficient power control in multicarrier CDMA systems

机译:基于博弈论的多载波CDMA系统节能控制方法

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A game-theoretic model for studying power control in multicarrier code-division multiple-access systems is proposed. Power control is modeled as a noncooperative game in which each user decides how much power to transmit over each carrier to maximize its own utility. The utility function considered here measures the number of reliable bits transmitted over all the carriers per joule of energy consumed and is particularly suitable for networks where energy efficiency is important. The multidimensional nature of users' strategies and the nonquasi-concavity of the utility function make the multicarrier problem much more challenging than the single-carrier or throughput-based-utility case. It is shown that, for all linear receivers including the matched filter, the decorrelator, and the minimum-mean-square-error detector, a user's utility is maximized when the user transmits only on its "best" carrier. This is the carrier that requires the least amount of power to achieve a particular target signal-to-interference-plus-noise ratio at the output of the receiver. The existence and uniqueness of Nash equilibrium for the proposed power control game are studied. In particular, conditions are given that must be satisfied by the channel gains for a Nash equilibrium to exist, and the distribution of the users among the carriers at equilibrium is characterized. In addition, an iterative and distributed algorithm for reaching the equilibrium (when it exists) is presented. It is shown that the proposed approach results in significant improvements in the total utility achieved at equilibrium compared with a single-carrier system and also to a multicarrier system in which each user maximizes its utility over each carrier independently.
机译:提出了一种研究多载波码分多址系统中功率控制的博弈模型。功率控制被建模为非合作游戏,其中每个用户决定在每个载波上传输多少功率以最大化其自身的效用。这里考虑的效用函数测量每焦耳能量消耗在所有载波上传输的可靠比特的数量,并且特别适用于能源效率非常重要的网络。用户策略的多维性质以及效用函数的非拟凹性使多载波问题比单载波或基于吞吐量的效用情况更具挑战性。如图所示,对于包括匹配滤波器,解相关器和最小均方误差检测器的所有线性接收机,当用户仅在其“最佳”载波上进行发送时,用户的效用最大化。这是一种在接收器的输出端需要最少功率以实现特定目标信噪比与噪声比的载波。研究了所提出的功率控制博弈的纳什均衡的存在性和唯一性。特别地,给出了必须存在的信道增益才能满足存在纳什均衡的条件,并且表征了处于均衡状态的载波之间的用户分布。此外,提出了一种用于达到平衡(存在时)的迭代和分布式算法。结果表明,与单载波系统以及多载波系统相比,所提出的方法在平衡状态下实现了总效用的显着提高,在多载波系统中,每个用户独立地在每个载波上最大化了其效用。

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