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Performance of digital code tracking loops for direct-sequence spread-spectrum signals in mobile radio channels

机译:移动无线电信道中直接序列扩频信号的数字代码跟踪环路的性能

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摘要

The performance of first- and second-order non-coherent digital delay lock loops (DDLL) for direct-sequence spread-spectrum (DS-SS) signals is investigated in the mobile radio environment. The mobile radio channel is first characterized by Rayleigh fading and Doppler shift. A closed-form expression for the timing error transition probability density function of the Chapman-Kolmogorov (C-K) equation is proposed. The probability density function of the steady-state timing error for the first- and second-order DDLL is obtained by solving the C-K equation numerically, and the results are confirmed by computer simulations. Furthermore, the mean time to lose lock (MTLL) of the first-order loop is evaluated, and some numerical results and simulation results are reported. Finally, the steady-state timing error and MTLL of the first-order loop for DS-SS signals in the log-normal fading environment are also presented, and the results are compared with those of Rayleigh and AWGN channels.
机译:在移动无线环境中研究了直接序列扩频(DS-SS)信号的一阶和二阶非相干数字延迟锁定环(DDLL)的性能。移动无线电信道首先以瑞利衰落和多普勒频移为特征。提出了Chapman-Kolmogorov(C-K)方程的定时误差跃迁概率密度函数的封闭形式。通过数值求解C-K方程,获得一阶和二阶DDLL稳态定时误差的概率密度函数,并通过计算机仿真验证了结果。此外,评估了一阶环路的平均失锁时间(MTLL),并报告了一些数值结果和仿真结果。最后,给出了对数正态衰落环境下DS-SS信号的稳态定时误差和一阶环路的MTLL,并将其结果与瑞利和AWGN信道进行了比较。

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