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Direct sequence spread spectrum parallel acquisition in a fading mobile channel

机译:直接序列扩频并行采集在褪色的移动通道中

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The acquisition performance of a direct-sequence spread-spectrum system is investigated in a fading mobile environment. A parallel acquisition scheme is applied to make up for the effect of the fading environment on key parameters such as the probability of detection, the probability of false alarm, and the mean acquisition time. An expression for the mean acquisition time is derived in terms of detection, false alarm, and missing probabilities. These probability expressions are derived in both a nonfading and fast-fading AWGN (additive white Gaussian noise) channels, and the mean acquisition time is shown for nonfading, slow-fading, and fast-fading channels. It is shown that in a nonfading channel, the designer should choose the MF (matched filter) length as large as practically possible and then cover the rest of the uncertainty region with parallel MFs. The same applies for the slow-fading channel. In fast-fading channels the contrary is the right choice; for better performance the designer needs to increase parallelism at the cost of MF length.
机译:在衰落的移动环境中研究了直序扩展频谱系统的采集性能。应用平行获取方案用于弥补衰落环境对诸如检测概率的关键参数的效果,误报的概率和平均采集时间。在检测,假警报和缺失概率方面导出平均采集时间的表达。这些概率表达式衍生在非裂缝和快速衰落的AWGN(添加性白色高斯噪声)通道中,并且示出了用于非裂缝,慢衰落和快速衰落通道的平均采集时间。结果表明,在非扫描信道中,设计者应该根据实际上可以选择MF(匹配的滤波器)长度,然后用并行MFS覆盖不确定区域的其余部分。这同样适用于慢衰落的频道。在快速衰落的渠道中,相反的是正确的选择;为了更好的性能,设计者需要以MF长度的成本增加并行性。

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