Frequency Locked Loop Based on the Time Nonrecursive Processing

This paper describes one new approach to frequency locked loop (FLL), which is based on the time non-recursive processing of input periods. System parameters are defined by the ratio of frequencies. The conditions, under which the described system can have the properties of a FLL, are analyzed. All...

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Main Authors: D. M. Perisic, V. Petrovic, B. Kovacevic
Format: Article
Language:English
Published: D. G. Pylarinos 2018-10-01
Series:Engineering, Technology & Applied Science Research
Subjects:
FLL
PLL
Online Access:https://etasr.com/index.php/ETASR/article/view/2256
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spelling doaj-500634f08bd94428b3b45d1ef5be64082020-12-02T15:09:13ZengD. G. PylarinosEngineering, Technology & Applied Science Research2241-44871792-80362018-10-0185629Frequency Locked Loop Based on the Time Nonrecursive ProcessingD. M. Perisic0V. Petrovic1B. Kovacevic2Faculty of Information Technology, Slobomir P University, Bosnia and HerzegovinaSchool of Electrical and Computer Engineering of Applied Studies, Belgrade, SerbiaSchool of Electrical Engineering, University of Belgrade, SerbiaThis paper describes one new approach to frequency locked loop (FLL), which is based on the time non-recursive processing of input periods. System parameters are defined by the ratio of frequencies. The conditions, under which the described system can have the properties of a FLL, are analyzed. All math analyses were made by the use of Z transform approach. It was shown that FLL is extremely fast and that it is suitable for usage in different predicting, tracking and modulation applications, for the measurements of frequency and for other applications. The FLL realization in the technique of standard integrated circuits is described. The oscilloscope picture, made on the realized 8 bit model, is presented. Analysis in frequency domain was made using Matlab tools. https://etasr.com/index.php/ETASR/article/view/2256digital circuitsFLLPLLpulse circuits
collection DOAJ
language English
format Article
sources DOAJ
author D. M. Perisic
V. Petrovic
B. Kovacevic
spellingShingle D. M. Perisic
V. Petrovic
B. Kovacevic
Frequency Locked Loop Based on the Time Nonrecursive Processing
Engineering, Technology & Applied Science Research
digital circuits
FLL
PLL
pulse circuits
author_facet D. M. Perisic
V. Petrovic
B. Kovacevic
author_sort D. M. Perisic
title Frequency Locked Loop Based on the Time Nonrecursive Processing
title_short Frequency Locked Loop Based on the Time Nonrecursive Processing
title_full Frequency Locked Loop Based on the Time Nonrecursive Processing
title_fullStr Frequency Locked Loop Based on the Time Nonrecursive Processing
title_full_unstemmed Frequency Locked Loop Based on the Time Nonrecursive Processing
title_sort frequency locked loop based on the time nonrecursive processing
publisher D. G. Pylarinos
series Engineering, Technology & Applied Science Research
issn 2241-4487
1792-8036
publishDate 2018-10-01
description This paper describes one new approach to frequency locked loop (FLL), which is based on the time non-recursive processing of input periods. System parameters are defined by the ratio of frequencies. The conditions, under which the described system can have the properties of a FLL, are analyzed. All math analyses were made by the use of Z transform approach. It was shown that FLL is extremely fast and that it is suitable for usage in different predicting, tracking and modulation applications, for the measurements of frequency and for other applications. The FLL realization in the technique of standard integrated circuits is described. The oscilloscope picture, made on the realized 8 bit model, is presented. Analysis in frequency domain was made using Matlab tools.
topic digital circuits
FLL
PLL
pulse circuits
url https://etasr.com/index.php/ETASR/article/view/2256
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AT vpetrovic frequencylockedloopbasedonthetimenonrecursiveprocessing
AT bkovacevic frequencylockedloopbasedonthetimenonrecursiveprocessing
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