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Differentially coherent detection technique for direct-sequence code acquisition in a Rayleigh fading mobile channel

机译:瑞利衰落移动信道中直接序列码获取的差分相干检测技术

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摘要

A novel differentially coherent (DC) detection scheme for rapid code acquisition is proposed for a direct sequence (DS) spread-spectrum system being used to communicate over a fast Rayleigh fading mobile radio channel. The scheme processes the received signal at baseband using a complex differential detector with one-chip time delay and then performs a coherent partial correlation of the detector output with the product of a local DS code and its one-chip delayed phase to form a test sample. While still preserving the pseudo-noise attribute at its output, the differential detector is able to effectively suppress slowly fluctuating phase components due to fading and carrier frequency offset, thereby enhancing the in-sync correlation at the following correlator. The performance of this detection scheme is analysed based on a central-limit-theorem argument, and verified by simulation. Both serial and parallel acquisition systems employing the proposed DC detector are compared with the conventional parallel I-Q system by mean acquisition time performance. It is shown that the serial DC acquisition system significantly outperforms the parallel I-Q system in very fast Rayleigh fading environments.
机译:针对直接序列(DS)扩频系统,提出了一种用于快速代码获取的新颖差分相干(DC)检测方案,该系统用于在快速瑞利衰落移动无线信道上进行通信。该方案使用具有单片时间延迟的复数差分检测器在基带处处理接收到的信号,然后对检测器输出与本地DS码及其单片延迟相位的乘积执行相干的部分相关,以形成测试样本。差分检测器在其输出端仍保留伪噪声属性的同时,能够有效地抑制由于衰落和载波频率偏移而引起的缓慢波动的相位分量,从而增强了后续相关器的同步相关性。基于中心极限定理,对该检测方案的性能进行了分析,并通过仿真进行了验证。将采用建议的直流检波器的串行和并行采集系统与常规并行I-Q系统的平均采集时间性能进行比较。结果表明,在非常快的瑞利衰落环境中,串行DC采集系统明显优于并行I-Q系统。

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