Hold-in, pull-in and lock-in ranges for phase-locked loop with tangential characteristic of the phase detector

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Abstract

In the present paper the phase-locked loop (PLL), an electric circuit widely used in telecommunications and computer architectures is considered. A new modification of the PLL with tangential phase detector characteristic and active proportionally-integrating (PI) filter is introduced. Hold-in, pull-in and lock-in ranges for given circuit are studied rigorously. It is shown that lock-in range of the new PLL model is infinite, compared to the finite lock-in range of the classical PLL.

Original languageEnglish
Pages (from-to)558-566
Number of pages9
JournalProcedia Computer Science
Volume150
DOIs
StatePublished - 1 Jan 2019
Event13th International Symposium on Intelligent Systems, INTELS 2018 - St. Petersburg, Russian Federation
Duration: 22 Oct 201824 Oct 2018

Keywords

  • Capture range
  • Hold-in range
  • Lock-in range
  • Nonlinear analysis
  • Phase-locked loop
  • PLL
  • Pull-in range

Scopus subject areas

  • Computer Science(all)

Cite this

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title = "Hold-in, pull-in and lock-in ranges for phase-locked loop with tangential characteristic of the phase detector",
abstract = "In the present paper the phase-locked loop (PLL), an electric circuit widely used in telecommunications and computer architectures is considered. A new modification of the PLL with tangential phase detector characteristic and active proportionally-integrating (PI) filter is introduced. Hold-in, pull-in and lock-in ranges for given circuit are studied rigorously. It is shown that lock-in range of the new PLL model is infinite, compared to the finite lock-in range of the classical PLL.",
keywords = "Capture range, Hold-in range, Lock-in range, Nonlinear analysis, Phase-locked loop, PLL, Pull-in range",
author = "Blagov, {M. V.} and Kuznetsova, {O. A.} and Kudryashova, {E. V.} and Kuznetsov, {N. V.} and Mokaev, {T. N.} and Mokaev, {R. N.} and Yuldashev, {M. V.} and Yuldashev, {R. V.}",
year = "2019",
month = "1",
day = "1",
doi = "10.1016/j.procs.2019.02.093",
language = "English",
volume = "150",
pages = "558--566",
journal = "Procedia Computer Science",
issn = "1877-0509",
publisher = "Elsevier",

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TY - JOUR

T1 - Hold-in, pull-in and lock-in ranges for phase-locked loop with tangential characteristic of the phase detector

AU - Blagov, M. V.

AU - Kuznetsova, O. A.

AU - Kudryashova, E. V.

AU - Kuznetsov, N. V.

AU - Mokaev, T. N.

AU - Mokaev, R. N.

AU - Yuldashev, M. V.

AU - Yuldashev, R. V.

PY - 2019/1/1

Y1 - 2019/1/1

N2 - In the present paper the phase-locked loop (PLL), an electric circuit widely used in telecommunications and computer architectures is considered. A new modification of the PLL with tangential phase detector characteristic and active proportionally-integrating (PI) filter is introduced. Hold-in, pull-in and lock-in ranges for given circuit are studied rigorously. It is shown that lock-in range of the new PLL model is infinite, compared to the finite lock-in range of the classical PLL.

AB - In the present paper the phase-locked loop (PLL), an electric circuit widely used in telecommunications and computer architectures is considered. A new modification of the PLL with tangential phase detector characteristic and active proportionally-integrating (PI) filter is introduced. Hold-in, pull-in and lock-in ranges for given circuit are studied rigorously. It is shown that lock-in range of the new PLL model is infinite, compared to the finite lock-in range of the classical PLL.

KW - Capture range

KW - Hold-in range

KW - Lock-in range

KW - Nonlinear analysis

KW - Phase-locked loop

KW - PLL

KW - Pull-in range

UR - http://www.scopus.com/inward/record.url?scp=85064440101&partnerID=8YFLogxK

U2 - 10.1016/j.procs.2019.02.093

DO - 10.1016/j.procs.2019.02.093

M3 - Conference article

VL - 150

SP - 558

EP - 566

JO - Procedia Computer Science

JF - Procedia Computer Science

SN - 1877-0509

ER -