Coherent DS-SS receiver using exponentially weighted despreading function with imperfect power control in multipath Rayleigh fading environment

Yuejin Huang, T. S. Ng
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引用次数: 1

Abstract

A closed-form solution for the average bit error rate (BER) performance of a coherent DS-CDMA system with imperfect power control is derived for a multipath Rayleigh fading channel. The RAKE receiver under consideration employs exponentially weighted despreading function with an adjustable parameter /spl gamma/ optimized for multiple access interference rejection in a multipath environment. The results indicate that the number of active users supported at a given BER for the case of /spl gamma/ tuned to maximize the average signal to interference plus noise ratio (SINR) is much larger than commonly used rectangular despreading function (/spl gamma/=0). It is shown that imperfect power control affects the irreducible BER for the case of /spl gamma/=0. On the other hand, the effect of imperfect power control on the BER performance for /spl gamma/ tuned to maximize SINR is equivalent to a reduction in the average signal to white noise ratio /spl gamma/~/sub b/ and hence system performance can be compensated by increasing the transmitter power.
在多径瑞利衰落环境下,采用指数加权扩频函数和不完全功率控制的相干DS-SS接收机
针对多径瑞利衰落信道,推导了具有不完全功率控制的相干DS-CDMA系统的平均误码率性能的封闭解。考虑的RAKE接收机采用指数加权扩频函数,具有可调参数/spl γ /,针对多径环境中的多址干扰抑制进行了优化。结果表明,在给定的误码率下,调优/spl gamma/以最大化平均信噪比(SINR)的情况下,支持的活跃用户数量远远大于常用的矩形扩频函数(/spl gamma/=0)。结果表明,当/spl γ /=0时,不完善的功率控制会影响不可约误码。另一方面,当/spl γ /调谐到最大信噪比时,不完善的功率控制对误码率性能的影响相当于平均信白噪比/spl γ /~/sub b/的降低,因此系统性能可以通过增加发射机功率来补偿。
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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