Error rate considerations for a high bit rate DS-SS BPSK dual space diversity RAKE

R. Framjee, V. Prabhu
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Abstract

In high bit rate DS-SS BPSK mobile radio reverse links with RAKE demodulators the frequency selective channel causes intersymbol interference. For many years the standard Gaussian approximation error rate has been used and for high bit rates its accuracy is not known. We compare the Gaussian approximation to error rate derived using total probability theorem, Chernoff and Prabhu bounds with true statistics of intersymbol interference. For signal-to-noise ratio's (SNR's) greater than 6dB (cases of interest), we show that the Gaussian approximation is a much looser upper bound than our bounds. The Prabhu bound which can be tailored to different intersymbol interference conditions is the tightest bound. We show that the RAKE combats incoherent intersymbol interference while the immunity it offers decreases for SNR's greater than 10dB. Finally, a dual space diversity RAKE provides an 8dB space diversity gain.
高比特率DS-SS BPSK双空间分集RAKE的误码率考虑
在采用RAKE解调器的高比特率DS-SS BPSK移动无线电反向链路中,频率选择信道引起码间干扰。多年来,标准高斯近似误差率一直被使用,对于高比特率,其精度尚不清楚。利用全概率定理、Chernoff界和Prabhu界推导出的误差率与码间干扰真统计量的高斯近似进行了比较。对于信噪比(SNR)大于6dB(感兴趣的情况),我们表明高斯近似是一个比我们的界限宽松得多的上界。可适应不同码间干扰条件的Prabhu界是最紧密的界。结果表明,当信噪比大于10dB时,RAKE抗非相干码间干扰能力下降。最后,双空间分集RAKE提供8dB的空间分集增益。
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