2018
DOI: 10.3390/electronics7120346
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New Nonlinear Second-Order Phase-Locked Loop with Adaptive Bandwidth Regulation

Abstract: Synchronization of large acquisition bandwidth brings great challenges to the traditional second-order phase-locked loop (PLL). To address the contradiction between acquisition bandwidth and noise suppression capability of the traditional PLL, a new second-order PLL coupled with a nonlinear element is proposed. The proposed nonlinear second-order PLL regulates the loop noise bandwidth adaptively by the nonlinear module. When a large input–output phase error occurs, this PLL reduces the frequency offset quickly… Show more

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Cited by 4 publications
(1 citation statement)
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“…To address this problem, the parallel fast coarse acquisition method is utilized, as shown in Figure 2. The Doppler frequency offset range is divided into several channels to be processed simultaneously, which can reduce acquisition time significantly [19,20]. At the sending end, IFFT (Inverse Fast Fourier Transformation) is conducted to the modulated sending signal and the sending symbol d(t) is formed.…”
Section: Fast Coarse Acquisition Of Doppler Frequency Offsetmentioning
confidence: 99%
“…To address this problem, the parallel fast coarse acquisition method is utilized, as shown in Figure 2. The Doppler frequency offset range is divided into several channels to be processed simultaneously, which can reduce acquisition time significantly [19,20]. At the sending end, IFFT (Inverse Fast Fourier Transformation) is conducted to the modulated sending signal and the sending symbol d(t) is formed.…”
Section: Fast Coarse Acquisition Of Doppler Frequency Offsetmentioning
confidence: 99%