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首页> 外文期刊>IEEE Transactions on Communications >Performance of BPSK and TCM using the exponential multipath profile model for spread-spectrum indoor radio channels
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Performance of BPSK and TCM using the exponential multipath profile model for spread-spectrum indoor radio channels

机译:使用指数多径轮廓模型对扩频室内无线信道的BPSK和TCM的性能

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摘要

A common approach to analyzing the performance of a spread-spectrum communication system in fading is to assume that the multipath profile is a constant function of delay. However, different multipath profile models can lead to significant differences in predicted system performance, so caution should be exercised when choosing a particular model for analysis. Several previous studies show that a good fit to the experimentally measured multipath profile of indoor wireless channels is an exponential function. Assuming Rayleigh fading and an exponential multipath profile, in this paper we derive a closed form expression for the bit error rate of biphase-shift-keying and an upper bound for trellis-code-modulation both with combined spread-spectrum and antenna diversity. Comparison of these results with simulated results based on actual indoor channel measurements shows that the exponential profile model differs from the simulation model by only 1-2 dB whereas the constant profile model differs by as much as 5 dB.
机译:分析衰落中扩频通信系统性能的常用方法是假设多径分布是延迟的恒定函数。但是,不同的多路径配置文件模型可能会导致预测的系统性能出现显着差异,因此在选择特定模型进行分析时应格外小心。先前的一些研究表明,对室内无线信道的实验测量多径分布的良好拟合是指数函数。假设瑞利衰落和指数多径分布,在本文中我们导出了双相移键控误码率的封闭形式表达式,以及结合了扩频和天线分集的网格编码调制上限。将这些结果与基于实际室内通道测量结果的模拟结果进行比较后发现,指数轮廓模型与模拟模型的差异仅为1-2 dB,而恒定轮廓模型的差异则高达5 dB。

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