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Steady state distribution of a hyperbolic digital tanlock loop with extended pull-in range for frequency synchronization in High Doppler environment

机译:高多普勒环境中频率同步的双曲线数字tanlock环路的稳态分布,具有扩展的引入范围

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摘要

A hyperbolic arctan based Digital Tanlock Loop (D-TLL) operating with complex signals at base-band or intermediate frequencies in high Doppler environments is treated here. The arctan based loop, known as the tanlock loop (TLL), is used in software defined radio architectures for frequency acquisition and tracking. The hyperbolic nonlinearity intentionally introduced within the phase detector extends the pull-in range of the frequency for a given loop, compared to the normal D-TLL, allowing a wider frequency acquisition range which is suitable for high Doppler communications environment. In this paper we study the steady state phase noise performances of such a feedback loop for additive Gaussian noise using stochastic analysis. The stochastic model of a first-order hyperbolic loop and the theoretical analysis for the corresponding statistical distribution of the closed loop steady state phase noise are presented. The theoretical results are also verified by simulations.
机译:本文讨论了基于双曲反正弦的基于数字Tanlock环路(D-TLL)的信号,该信号在高多普勒环境中以基带或中频的复杂信号运行。基于arctan的环路(称为tanlock环路(TLL))在软件定义的无线电体系结构中用于频率采集和跟踪。与正常的D-TLL相比,故意在相位检测器中引入的双曲线非线性扩展了给定环路的频率引入范围,从而允许更宽的频率采集范围,适用于高多普勒通信环境。在本文中,我们使用随机分析研究了这种加性高斯噪声反馈环路的稳态相位噪声性能。给出了一阶双曲环的随机模型和闭环稳态相位噪声的相应统计分布的理论分析。理论结果也通过仿真验证。

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