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Joint Receiver and Transmitter Optimization for Energy-Efficient CDMA Communications

机译:节能CDMA通信的联合接收器和发送器优化

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This paper focuses on the cross-layer issue of joint multiuser detection and resource allocation for energy efficiency in wireless code-division multiple-access (CDMA) networks. In particular, assuming that a linear multiuser detector is adopted in the uplink receiver, the situation considered is that in which each terminal is allowed to vary its transmit power, spreading code, and uplink receiver in order to maximize its own utility, which is defined as the ratio of data throughput to transmit power. Applying a game-theoretic formulation, a non-cooperative game for utility maximization is formulated, and it is proved that a unique Nash equilibrium exists, which, under certain conditions, is also Pareto-optimal. Theoretical results concerning the relationship between the problems of signal-to-interference-plus noise ratio (SINR) maximization and mean-square error (MSE) minimization are given, and, by applying the tools of large system analysis, a new distributed power control algorithm is implemented, based on very little prior information about the user of interest. The utility profile achieved by the active users in a large CDMA system is also computed, and, moreover, the centralized socially optimal solution is analyzed. Considerations concerning the extension of the proposed framework to a multi-cell scenario are also briefly detailed. Simulation results confirm that the proposed non-cooperative game largely outperforms competing alternatives, and that it exhibits negligible performance loss with respect to the socially optimal solution, and only in the case in which the number of users exceeds the processing gain. Finally, results also show an excellent agreement between the theoretical closed-form formulas based on large system analysis and the outcome of numerical experiments.
机译:本文着眼于联合多用户检测和资源分配的跨层问题,以提高无线码分多址(CDMA)网络的能效。特别是,假设在上行链路接收器中采用了线性多用户检测器,则考虑的情况是,允许每个终端改变其发射功率,扩展码和上行链路接收器,以最大化其自身的效用,这是定义的数据吞吐量与发射功率之比。应用博弈论的公式,建立了效用最大化的非合作博弈,并证明存在唯一的纳什均衡,在某些条件下,纳什均衡也是帕累托最优的。给出了有关信干噪比(SINR)最大化和均方误差(MSE)最小化之间的关系的理论结果,并通过使用大型系统分析工具,提出了一种新的分布式功率控制基于关于感兴趣用户的很少的先验信息来实施该算法。还计算了大型CDMA系统中活动用户获得的效用配置文件,此外,还分析了集中式的社会最优解决方案。还简要介绍了有关将建议的框架扩展到多小区方案的注意事项。仿真结果证实,提出的非合作游戏在很大程度上优于竞争产品,并且相对于社会最优解决方案而言,它表现出的性能损失可忽略不计,并且仅在用户数量超过处理收益的情况下才表现出来。最后,结果还表明,基于大型系统分析的理论闭式公式与数值实验的结果之间有着极好的一致性。

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