Signal to interference ratio measurement techniques for CDMA cellular systems in a frequency-selective multipath fading channel

Chih-Wei Wang, Li-Chun Wang
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引用次数: 7

Abstract

The signal-to-interference ratio (SIR) is a predominant criterion for radio resource management techniques in wireless networks. Many algorithms such as power control, channel allocation, and handoff, etc., require a fast and accurate SIR measurement. In practice, however, the SIR estimation needs a lot of computations. The major challenge for the SIR estimation issue is to find an efficient way to separate the desired signal with interference. We investigate the performance of the SIR estimation techniques for the DS-CDMA cellular system in a time-dispersive (or a frequency-selective) fading channel. The major contribution is to provide a framework incorporating the effect of channel dispersions into the SIR estimator for the CDMA systems. We present new results on the quantitative performance of two easily implemented SIR estimation techniques, taking into account the impact of frequency-selective fading, mobility, different number of interferers, and different initial transmission power levels.
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CDMA蜂窝系统在选频多径衰落信道中的信干扰比测量技术
信号干扰比(SIR)是无线网络中无线电资源管理技术的主要标准。许多算法,如功率控制、信道分配和切换等,都需要快速准确的SIR测量。但在实际应用中,SIR估计需要进行大量的计算。SIR估计问题的主要挑战是找到一种有效的方法将期望信号与干扰分离开来。我们研究了DS-CDMA蜂窝系统在时间色散(或频率选择性)衰落信道中的SIR估计技术的性能。主要贡献是提供了一个框架,将信道色散的影响纳入CDMA系统的SIR估计器中。我们提出了两种易于实现的SIR估计技术的定量性能的新结果,考虑了频率选择性衰落、移动性、不同数量的干扰和不同的初始传输功率水平的影响。
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