CDMA系统中反向链路目标SIR的设置

Ashwin Sampatht, P., Sarath Kumart, Jack M. Holtzmant
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引用次数: 132

摘要

采用传统检测器的DS/CDMA系统需要严格的功率控制才能获得满意的性能。在IS-95系统中,反向环节的闭环功率控制包括两部分;一个内循环和一个外循环。内环通过一系列电源上/下命令帮助移动设备达到其当前的信号干扰比(SIR)目标。外环动态调整目标SIR,以便在帧错误率(FER)方面获得足够的性能,这是真正的质量度量。不同用户的传播条件不同。因此,对于所有用户来说,内循环的有效性是不一样的。在某些情况下,它总是接近目标,而在其他情况下,可变性可能相当显著。外环通过调整SIR目标来补偿这种可变性,以便所有用户在错误率方面获得相同的性能。在这项工作中,描述了用于外循环的算法。建立并分析了外环的模型。该解析模型可以研究算法对参数选择的敏感性。结果表明,要设置的目标值强烈依赖于内循环的有效性。因此,为最坏情况设计的固定目标策略将是低效的,并且会减少系统容量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On setting reverse link target SIR in a CDMA system
DS/CDMA systems with conventional detectors require tight power control for satisfactory performance. In IS-95 systems, closed loop power control on the reverse link comprises two parts; an inner loop and outer loop. The inner loop aids the mobile in reaching its current signal to interference ratio (SIR) target through a sequence of power up/down commands. The outer loop dynamically adjusts the target SIR so that adequate performance in terms of frame error rate (FER), the true quality measure, is achieved. The propagation conditions for different users are different. Hence, the effectiveness of the inner loop is not the same for all users. In some cases, it always comes close to the target, while in others the variability could be quite significant. The outer loop compensates for such variability by adjusting the SIR targets so that all users obtain the same performance in terms of error rate. In this work, the algorithm used for the outer loop is described. A model for the outer loop is developed and analyzed. The analytical model enables sensitivity study of the algorithm to choice of parameters. Results indicate that the target values to be set are strongly dependent on the effectiveness of the inner loop. Thus, a fixed target strategy designed for the worst case, would be inefficient and would diminish system capacity.
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