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A Power Control Based Admission Algorithm for Maximizing Throughput in a CDMA Network

机译:基于功率控制的CDMA网络吞吐量最大化算法

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摘要

In this paper we examine the aggregate throughput of the uplink of a circuit switched CDMA data transmission system using a combination of theoretical and simulation techniques. The theoretical analysis determines the transmitter power levels and the number of active terminals that jointly maximize the throughput via standard optimization methods. We find that the terminal with the lowest path gain should transmit at maximum power and that all other terminals should aim for a common received power level that is higher than the received power from the terminal with lowest path gain. In addition we show that the system should admit the number of terminals that results in a target signal-to-interference-plus-noise ratio that depends on the processing gain and the noise power. A numerical example suggests that power control designed to achieve equal received power for all terminals results in aggregate throughput nearly as high as that obtained with optimum power control. This finding greatly simplifies the engineering problem from a network manager’s viewpoint.
机译:在本文中,我们结合了理论和模拟技术,研究了电路交换CDMA数据传输系统上行链路的总吞吐量。理论分析确定了发射机功率电平和活动终端数量,这些活动通过标准优化方法共同使吞吐量最大化。我们发现路径增益最低的终端应以最大功率发射,而所有其他终端的目标应是一个共同的接收功率电平,该电平应高于路径增益最低的终端的接收功率。另外,我们表明,系统应允许产生的终端数量达到目标信噪比与噪声比,具体取决于处理增益和噪声功率。一个数字示例表明,旨在为所有终端获得相等的接收功率的功率控制所产生的总吞吐量几乎与最佳功率控制所获得的总吞吐量一样高。从网络管理员的角度来看,这一发现大大简化了工程问题。

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