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Prioritized Throughput Maximization via Rate and Power Control for 3G CDMA: The 2 Terminal Scenario

机译:通过3G CDMA的速率和功率控制实现优先吞吐量最大化:2终端方案

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Variable spreading gain (VSG) CDMA allows data terminals to operate at dissimilar transmission rates. With this technique, the chip rate is common to all users, but the spreading gains vary. Our work is relevant to the uplink of a single-cell VSG CDMA system, in which each terminal's data throughput is weighted differently in calculating the network throughput. We seek for each active user a power level and transmission rate which will maximize the network's aggregate weighted throughput. This paper focuses on the two-terminal, interference-limited scenario. The development is entirely analytical, based on optimization theory. One of the principal results is that the favorite terminal should always operate at the highest data rate. The optimal bit rate of the other terminal depends on the ratio of the minimum allowable spreading gain to the square root of the priority coefficient. Only when this ratio is large enough, is it optimal for both terminals to operate at the highest permissible data rate. In either case, we provide equations whose solutions lead to the optimal power ratios.
机译:可变扩频增益(VSG)CDMA允许数据终端以不同的传输速率运行。使用这种技术,码片速率对所有用户都是通用的,但是扩频增益会有所不同。我们的工作与单小区VSG CDMA系统的上行链路有关,在该上行链路中,每个终端的数据吞吐量在计算网络吞吐量时都具有不同的加权。我们为每个活跃用户寻求功率水平和传输速率,以最大程度地提高网络的总加权吞吐量。本文着重于两终端,受干扰限制的情况。该开发完全基于优化理论进行分析。主要结果之一是,喜欢的终端应始终以最高数据速率运行。另一终端的最佳比特率取决于最小允许扩频增益与优先级系数的平方根的比值。仅当该比率足够大时,两个终端才能以允许的最高数据速率进行操作才是最佳的。无论哪种情况,我们都提供方程,这些方程的解可导致最佳功率比。

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