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Power Allocation and Control in Multimedia CDMA Wireless Systems

机译:多媒体CDMA无线系统中的功率分配和控制

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摘要

This paper proposes an analysis of outage performance of a Direct Sequence-Code Division Multiple Access (DS-CDMA) wireless system with heterogeneous traffic. Imperfections in closed-loop power control and the activity characteristics of any traffic source in the system are taken into account. For given requirements of signal-to-(noise+interference) ratio and outage probability of every user in the system, the system capacity is derived in terms of the maximum number of users of each class that can be accomodated. The optimization problem is explicitly solved for a system consisting of a single cell and an approach is outlined for solving the optimization problem in a multi-cell system. The analysis is carried out by resorting to various approximations of Multiple Access Interference (MAI), that require different methods for solving the optimization problem and yield different degrees of accuracy. From numerical results it is seen that optimal power allocation is essential to limit the effects of power control imperfections, mainly in the case of non uniform amplitudes of residual power fluctuations. In the second part of the paper, a performance study of fixed step closed-loop power control algorithms is presented. A detailed simulation of the power control loop evidences that fast fading phenomena can not be easily tracked, even at moderate Doppler spread. Statistics of residual power fluctuations are estimated and can be used to support the assumptions in the first part of the paper. Furthermore, second order statistics of the controlled channel are estimated, and second order outage statistics (average rate and duration of outage events) are derived as a quantitative measure of residual channel burstiness.
机译:本文提出了一种具有异类流量的直接序列码分多址(DS-CDMA)无线系统的中断性能分析。考虑了闭环功率控制的缺陷以及系统中任何流量源的活动特性。对于给定的信噪比和系统中每个用户的中断概率的要求,系统容量是根据可以容纳的每个类别的最大用户数得出的。对于由单个单元组成的系统,明确解决了优化问题,并且概述了用于解决多单元系统中的优化问题的方法。通过采用多种近似的多址干扰(MAI)进行分析,这些近似方法需要使用不同的方法来解决优化问题并产生不同程度的准确性。从数值结果可以看出,最佳功率分配对于限制功率控制缺陷的影响至关重要,主要是在剩余功率波动幅度不均匀的情况下。在论文的第二部分,提出了固定步长闭环功率控制算法的性能研究。功率控制环路的详细仿真表明,即使在中等多普勒扩展下,也无法轻易跟踪快速衰落现象。估计剩余功率波动的统计数据,并可以将其用于支持本文第一部分中的假设。此外,估计受控信道的二阶统计量,并导出二阶中断统计量(中断事件的平均速率和持续时间)作为残余信道突发性的定量度量。

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