Acquisition Time and Probabilities of Detection and False Alarm in Direct Sequence Code Division Multiple Access Systems

IF 0.7 Q4 COMPUTER SCIENCE, INFORMATION SYSTEMS Jordan Journal of Electrical Engineering Pub Date : 2023-01-01 DOI:10.5455/jjee.204-1668454435
A. Hassani, Y. Garrouani, F. Mrabti, F. Abdi
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Abstract

Multiple access interference (MAI) is one of the most important issues to consider in the design, implementation and operation of 5G systems using code division multiple access (CDMA) technique based on spread spectrum that offers a more flexible solution, compared to other techniques. Especially, it permits a much higher user bit rate, due to the bandwidth allocated to the emitted signal; thus, allowing very attractive multimedia services. In this paper, we develop the expressions of the detection probability, false alarm probability and the average acquisition time - in a direct sequence CDMA (DS-CDMA) transmission system - using a serial search and taking into consideration MAI. The evolution of these parameters according to the signal- to-noise ratio (SNR) and the decision threshold leads to study performances of the system in terms of detection and average acquisition time. The obtained results reveal that the acquisition time decreases when the SNR increases. Additionally, it is found that the probability of detection increases when the threshold decreases, and increasing SNR it reaches a constant value for an SNR/chip around 0 dB for all thresholds.
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直接序列码分多址系统中检测和虚警的获取时间和概率
与其他技术相比,基于扩频的码分多址(CDMA)技术提供了更灵活的解决方案,在5G系统的设计、实现和运行中,多址干扰(MAI)是需要考虑的最重要问题之一。特别是,由于分配给发射信号的带宽,它允许更高的用户比特率;因此,允许非常有吸引力的多媒体服务。本文利用序列搜索的方法,在考虑MAI的情况下,建立了直接顺序CDMA (DS-CDMA)传输系统的检测概率、虚警概率和平均采集时间的表达式。这些参数根据信噪比(SNR)和决策阈值进行演化,从而研究系统在检测和平均采集时间方面的性能。结果表明,随着信噪比的增大,采集时间减小。此外,发现当阈值降低时,检测概率增加,并且随着信噪比的增加,对于所有阈值的信噪比/芯片,检测概率在0 dB左右达到恒定值。
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0.20
自引率
14.30%
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0
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