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Discrete time domain analysis of chaos-based wireless communication systems with imperfect sequence synchronization

机译:序列同步不完善的混沌无线通信系统的离散时域分析

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摘要

Problem of sequence synchronization in chaos-based direct sequence spread-spectrum (DS-SS) systems and code division multiple access systems (CDMA) has been widely investigated. However, no mathematical expressions have been derived in closed form for the bit error probability in these systems when they operate with the imperfect time synchronization (represented by a delay between the received and reference spreading sequence generated in the receiver). Precise derivatives for this bit error probability are necessary to quantify the effect of imperfect synchronization on the overall properties of the system. To implement a random delay between the received and the receiver reference sequence, all signals in this paper are represented in the discrete time domain. To represent finite and random discrete delays between the sequences (which occur in a limited interval) the Gaussian and uniform probability density functions are expressed in discrete form. Furthermore, due to the finite value of possible random discrete delays, the expressions of related truncated density functions are expressed in closed form. Following this approach, the expressions for the bit error probability in closed form for chaotic and random spreading sequences have been derived. (C) 2018 Elsevier B.V. All rights reserved.
机译:已经广泛研究了基于混沌的直接序列扩频(DS-SS)系统和码分多址系统(CDMA)中的序列同步问题。但是,当这些系统以不完美的时间同步(由接收器中生成的接收扩频和参考扩频序列之间的延迟表示)运行时,对于这些系统中的误码率,尚无封闭形式的数学表达式。要量化不完全同步对系统总体性能的影响,必须有此位错误概率的精确导数。为了在接收和接收参考序列之间实现随机延迟,本文中的所有信号均以离散时域表示。为了表示序列之间的有限和随机离散延迟(在有限的间隔内发生),高斯和均匀概率密度函数以离散形式表示。此外,由于可能的随机离散延迟的有限值,相关的截断密度函数的表达式以封闭形式表示。按照这种方法,已经得出了封闭形式的混沌和随机扩频序列误码概率的表达式。 (C)2018 Elsevier B.V.保留所有权利。

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