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The effect of clock and carrier frequency offsets on the performance of a direct-sequence spread-spectrum multiple-access system

机译:时钟和载波频率偏移对直接序列扩频多址系统性能的影响

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摘要

It is widely known that the probability of symbol error in a direct-sequence spread-spectrum multiple-access network is dependent on the carrier and spreading code chip phases of the interfering terminals with respect to the signal of interest. As a result, for a given total interference power, the performance is worse for the case of one strong interferer when compared to the case of many weak interferers where the Gaussian assumption on the multiple-access interference holds. The author assumes a random-spreading code model and shows that if there is an offset on the carrier and spreading code frequencies of the interfering signals relative to the signal of interest, the above difference in performance between the cases of a set of balanced and a set of unbalanced interferers is drastically reduced. The result is that subject to such frequency offsets one may make the Gaussian assumption on the interference power regardless of whether it is composed of one strong interferer or many weak interferers of the same total power. In a network it may be desirable to actually force the offsets by putting a slight offset on the clock oscillators of the various transmitters. It is shown that to achieve a small variation of the noise variance, the spreading code and carrier offset frequencies should be greater than the symbol rate.
机译:众所周知,直接序列扩频多址网络中符号错误的概率取决于干扰终端相对于感兴趣信号的载波和扩频码片相位。结果,对于给定的总干扰功率,与一个强干扰源的情况相比,在保持多址干扰高斯假设的许多弱干扰源的情况下,性能较差。作者假设一个随机扩展码模型,并表明如果干扰信号的载波和扩展码频率相对于感兴趣信号有偏移,则在一组平衡和一组情况下,上述性能差异大量减少不平衡干扰源。结果是,受这种频率偏移的影响,无论干扰功率是由一个强干扰源还是由多个相同总功率的弱干扰源组成,都可以对干扰功率进行高斯假设。在网络中,可能希望通过在各种发送器的时钟振荡器上放置一些偏移量来实际强制偏移量。结果表明,为了实现噪声方差的较小变化,扩频码和载波偏移频率应大于符号率。

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