A Novel FLL-Assisted PLL With Fuzzy Control for TC-OFDM Carrier Signal Tracking

The time and code division-orthogonal frequency-division multiplexing (TC-OFDM) signal is a promising wireless positioning signal, which multiplexes the China mobile multimedia broadcasting signal and pseudorandom noise codes in the same frequency band. The drastic change of carrier-to-noise ratio c...

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Main Authors: Jun Mo, Zhongliang Deng, Buyun Jia, Haijun Jiang, Xinmei Bian
Format: Article
Language:English
Published: IEEE 2018-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/8467327/
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author Jun Mo
Zhongliang Deng
Buyun Jia
Haijun Jiang
Xinmei Bian
author_facet Jun Mo
Zhongliang Deng
Buyun Jia
Haijun Jiang
Xinmei Bian
author_sort Jun Mo
collection DOAJ
description The time and code division-orthogonal frequency-division multiplexing (TC-OFDM) signal is a promising wireless positioning signal, which multiplexes the China mobile multimedia broadcasting signal and pseudorandom noise codes in the same frequency band. The drastic change of carrier-to-noise ratio can increase carrier tracking error of the TC-OFDM receiver and may lead to the loss of lock. To address this problem, a novel frequency-lock loop (FLL)-assisted phase-lock loop (PLL) with fuzzy control is proposed, and the effect of signal strength on the carrier tracking loop is analyzed. The proposed algorithm uses the outputs of the phase and frequency discriminator as measured residuals of the Kalman filter (KF), and a KF-based second-order FLL-assisted three-order PLL carrier tracking loop is designed. Moreover, fuzzy control is applied to the designed loop. It can automatically switch between pure KF-based PLL, pure KF-based FLL, and KF-based FLL-assisted PLL, and automatically adjust the noise bandwidth. Simulation and experimental results show that, compared with the existing carrier tracking algorithms, the proposed algorithm can effectively avoid the divergence of the tracking loop and improve the robustness of the TC-OFDM receiver.
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spelling doaj.art-79f1d8e694664053af0d77d6c6bfdcf42022-12-21T20:02:28ZengIEEEIEEE Access2169-35362018-01-016524475245910.1109/ACCESS.2018.28709088467327A Novel FLL-Assisted PLL With Fuzzy Control for TC-OFDM Carrier Signal TrackingJun Mo0https://orcid.org/0000-0001-7117-1091Zhongliang Deng1Buyun Jia2Haijun Jiang3Xinmei Bian4School of Electronic Engineering, Beijing University of Posts and Telecommunications, Beijing, ChinaSchool of Electronic Engineering, Beijing University of Posts and Telecommunications, Beijing, ChinaSchool of Electronic Engineering, Beijing University of Posts and Telecommunications, Beijing, ChinaSchool of Electronic Engineering, Beijing University of Posts and Telecommunications, Beijing, ChinaSchool of Electronic Engineering, Beijing University of Posts and Telecommunications, Beijing, ChinaThe time and code division-orthogonal frequency-division multiplexing (TC-OFDM) signal is a promising wireless positioning signal, which multiplexes the China mobile multimedia broadcasting signal and pseudorandom noise codes in the same frequency band. The drastic change of carrier-to-noise ratio can increase carrier tracking error of the TC-OFDM receiver and may lead to the loss of lock. To address this problem, a novel frequency-lock loop (FLL)-assisted phase-lock loop (PLL) with fuzzy control is proposed, and the effect of signal strength on the carrier tracking loop is analyzed. The proposed algorithm uses the outputs of the phase and frequency discriminator as measured residuals of the Kalman filter (KF), and a KF-based second-order FLL-assisted three-order PLL carrier tracking loop is designed. Moreover, fuzzy control is applied to the designed loop. It can automatically switch between pure KF-based PLL, pure KF-based FLL, and KF-based FLL-assisted PLL, and automatically adjust the noise bandwidth. Simulation and experimental results show that, compared with the existing carrier tracking algorithms, the proposed algorithm can effectively avoid the divergence of the tracking loop and improve the robustness of the TC-OFDM receiver.https://ieeexplore.ieee.org/document/8467327/TC-OFDMtracking loopFLL-assisted PLLKFfuzzy control
spellingShingle Jun Mo
Zhongliang Deng
Buyun Jia
Haijun Jiang
Xinmei Bian
A Novel FLL-Assisted PLL With Fuzzy Control for TC-OFDM Carrier Signal Tracking
IEEE Access
TC-OFDM
tracking loop
FLL-assisted PLL
KF
fuzzy control
title A Novel FLL-Assisted PLL With Fuzzy Control for TC-OFDM Carrier Signal Tracking
title_full A Novel FLL-Assisted PLL With Fuzzy Control for TC-OFDM Carrier Signal Tracking
title_fullStr A Novel FLL-Assisted PLL With Fuzzy Control for TC-OFDM Carrier Signal Tracking
title_full_unstemmed A Novel FLL-Assisted PLL With Fuzzy Control for TC-OFDM Carrier Signal Tracking
title_short A Novel FLL-Assisted PLL With Fuzzy Control for TC-OFDM Carrier Signal Tracking
title_sort novel fll assisted pll with fuzzy control for tc ofdm carrier signal tracking
topic TC-OFDM
tracking loop
FLL-assisted PLL
KF
fuzzy control
url https://ieeexplore.ieee.org/document/8467327/
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