包括分集技术的蜂窝数字移动无线电系统性能分析

W. Hollemans, R. Prasad, A. Kegel
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引用次数: 6

摘要

利用正交调幅(4-QAM)和差分相移键控(DPSK)在对数正态阴影的频率非选择性瑞利衰落环境中研究了蜂窝数字移动无线电系统的性能,包括(白)高斯噪声、窄带脉冲噪声/干扰(米德尔顿a类模型)和共信道干扰的影响。从误码概率的角度对其性能进行了分析。考虑局部平均功率与传播距离的四次方成反比,引入了超高频地波的传播规律。为了研究选择分集和最大比组合对误码率的影响,分析了选择分集和最大比组合对误码率的影响。研究发现,阴影对误码性能有显著影响。选择分集或最大比组合的应用对系统性能有重要的改善。在低信噪比条件下,选择分集比最大比值组合效果更好。分析结果表明,最大比组合对不相等的支路信噪比不敏感。
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Performance analysis of cellular digital mobile radio systems including diversity techniques
The performance of cellular digital mobile radio systems is investigated using quadrature amplitude modulation (4-QAM) and differential phase shift keying (DPSK) in a frequency nonselective Rayleigh fading environment with lognormal shadowing, including the effects of (white) Gaussian noise, narrow-band impulsive noise/interference (Middleton's Class A model), and cochannel interference. The performance is analyzed in terms of probability of bit error. The UHF groundwave propagation law is introduced by considering the local mean power to be inversely proportional to the fourth power of propagation distance. To investigate the improvement in performance the influence of selection diversity and maximal ratio combining on the bit error probability is analyzed. It has been found that shadowing significantly affects the bit error performance. Application of selection diversity or maximal ratio combining results in important improvement of system performance. Selection diversity gives better results than maximal ratio combining for low signal-to-noise ratios. Results of our analysis show maximal ratio combining is not that sensitive to unequal branch signal-to-noise-plus-interference ratio.
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