Co-channel interference measurement for TDMA radio mobile communication systems

L. Husson, J. Dany
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引用次数: 2

Abstract

In cellular radio systems, the signal is affected by co-channel interference due to frequency reuse. Power control is a technique for minimizing this co-channel interference. Recent algorithms, based on a minimum signal-to-interference ratio (SIR) requirement, need an accurate SIR measurement. A method of measuring co-channel interference for analogue mobile communication systems has previously been proposed but was restricted to pilot signals. In this paper, we extend this method by applying it directly to the received modulated signal and, therein, we improve spectral efficiency. The envelope of the received signal is affected by fluctuations which can be separated into two terms: slow fluctuations resulting of fading and fast fluctuations (at a frequency related to the bit rate) due to co-channel interference. The method exploits the possibility of separating these terms in the frequency domain in order to evaluate the signal-to-interference ratio. Extensive simulations have been carried out to analyse the measurement errors. Used modulations are 2PSK, 4PSK, GMSK and GMSK preceeded by Miller precoding that leads to the best performances. These good performances (less than 1dB error for SIR greater than 10 dB) for the estimation of signal-to-interference ratio can significantly enhance the efficiency of power control algorithms in cellular mobile radio systems.
TDMA无线移动通信系统的同信道干扰测量
在蜂窝无线电系统中,由于频率复用,信号受到同信道干扰的影响。功率控制是一种减小同信道干扰的技术。最近的算法基于最小信干扰比(SIR)的要求,需要精确的SIR测量。一种测量模拟移动通信系统共信道干扰的方法已经提出,但仅限于导频信号。在本文中,我们扩展了该方法,将其直接应用于接收到的调制信号,从而提高了频谱效率。接收信号的包络受到波动的影响,波动可分为两种:由衰落引起的缓慢波动和由同信道干扰引起的快速波动(以与比特率相关的频率)。该方法利用了在频域中分离这些项的可能性,以评估信干扰比。进行了大量的仿真来分析测量误差。使用的调制是2PSK、4PSK、GMSK和GMSK,在米勒预编码之前可以获得最好的性能。这些良好的信干扰比估计性能(SIR大于10db误差小于1dB)可以显著提高蜂窝移动无线电系统中功率控制算法的效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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