• Title/Summary/Keyword: symbol timing recovery

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Performance Analysis of Symbol Timing and Carrier Synchronization in Block Burst Demodulation of LMDS Uplink (LMDS 역방향 채널의 블록 버스트 복조에 대한 심벌타이밍과 반송파 동기의 성능 분석)

  • Cho, Byung-Lok;Lim, Hyung-Rea;park, Sol
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.10 no.1
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    • pp.99-108
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    • 1999
  • In this paper, we propose $\pi$/4 QPSK scheme with block modulation algorithm, which can reduce preamble in order to transmit ATM cell efficiently in the uplink channel of LMDS, and also designed a new carrier recovery circuit which can improve carrier synchronization performance of block demodulation algorithm. The $\pi$/4 QPSK scheme employing the proposed block modulation algorithm achieved efficient frame transmission by making use of a few preamble when carrier synchronization, symbol timing synchronization and slot timing synchronization were performed by burst data of ATM cell in LMDS environment. For performance evaluation of the proposed method, a simulation analyzing the variation of carrier synchronization, symbol timing synchronization and slot timing synchronization using LMDS environment and burst mode condition was executed. In the simulation, the proposed method showed a good performance even though the reduced preamble as a few aspossible when carrier synchronization, symbol timing synchronization and slot timing synchronization is performed.

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8VSB Equalization Techniques for the Performance Improvement of Indoor Reception (실내 수신 성능 개선을 위한 8VSB의 등화 기법)

  • 김대진;박성우;이종주;전희영;이동두;박재홍
    • Journal of Broadcast Engineering
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    • v.4 no.2
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    • pp.103-118
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    • 1999
  • This paper analyzes the performance of symbol timing recovery and equalizer in 8VSB digital terrestrial TV receiver under various multipath signals and proposes equalization techniques which improve indoor reception performance. Data segment sync is used for symbol timing recovery and timing offset is measured for echoes of various delays and amplitudes by using symbol timing detection filter whose pattern is +1. +1. -1. and -1. Measured timing offsets were below 10% for long echoes with more than 5 symbol delay and above 30% for short echoes with around 1 symbol delay. Indoor reception is always more challenging than outdoor reception due to lower signal strength. large and short multipaths. and moving interfering objects. So it is considered to use FSE (Fractionally Spaced Equalizer) which is very robust to timing offset and blind equalizer which can update equalizer tap coefficients even by information data. We compare the performance of conventional DFE (Decision Feedback Equalizer) and FSE-DFE using LMS algorithm and Stop and Go algorithm for the indoor reception. Experiments reveals FSE has excellent performance for large timing offset and Stop and Go algorithm shows good performance for Doppler shift. so we propose to use FSE-DFE structure with Stop and Go algorithm for the reliable indoor reception.

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A Symbol Timing Recovery scheme using the jitter mean of adaptive loop filter in ATSC DTV systems (적응적 루프필터의 지터 평균값을 이용한 ATSC DTV 심볼 타이밍 동기 방식)

  • Kim, Joo-Kyoung;Lee, Joo-hyoung;Song, Hyun-keun;Kim, Jae-Moung;Kim, Seung-Won
    • Journal of the Institute of Electronics Engineers of Korea TC
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    • v.42 no.10 s.340
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    • pp.1-8
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    • 2005
  • This Paper Proposes the algorithm for improving the Performance or symbol timing synchronization in hoc terrestrial DTV system. The Gardner algerian is used for symbol timing synchronization has good performance in multipath fading environment but degradation of performance is caused by jitter. Though the amount of jitter becomes more little as narrow bandwidth of loop Inter, convergence speed becomes slower. This paper propose the algorithm that averages out values of loop filter every certain time and gradually reduces the bandwidth of loop filter after estimating offset using this average for the high speed of convergence and reducing the met of jitter. The proposed algorithm has better performance with high speed of convergence and the amount of jitter than conventional method.

Timing-offset compensation techniques in ATSC DTV receivers (지상파 DTV 수신기에서 타이밍 옵셋 보상 기법)

  • 김용철;김대진
    • Journal of Broadcast Engineering
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    • v.8 no.2
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    • pp.146-152
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    • 2003
  • ATSC DTV receivers use repetitive data segment syncs or Gardner algorithm as a tuning recovery circuit. Many multipath signals can induce timing-offset in the symbol timing recovery circuit using Gardner algorithm and this timing-offset shifts sampling instant to the wrong points, causing the performance of the equalizer to become nr. When many echoes exist, the optimal sampling instant will be the Point at which the main-path has a peak value. In this paper, by using channel correlation techniques, we find the optimal sampling instant, thereby compensating the timing offset and improving DTV reception performance. We analyzed the Performance enhancement of DTV receivers using the timing offset compensator.

Design of Synchronization Algorithms for Burst QPSK Receiver (버스트 QPSK 수신기의 동기 알고리즘 설계)

  • 남옥우;김재형
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.5 no.7
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    • pp.1219-1225
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    • 2001
  • In this Paper we describe the design of synchronization algorithms for burst QPSK receiver, which are applicable to BWLL uplink. The demodulator consists of digital down converter, matched filter and synchronization circuits. For symbol timing recovery we ufo Gardner algorithm. And we use forth power method and decision directed method for carrier frequency recovery and phase recovery, respectively. For the sake of performance analysis, we compare simulation results with the board implemented by FPGA which is APEX20KE series chip for Alter. The performance results show it works quite well up to the condition that a frequency offset equal to 4.7% of symbol rate.

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Non-Data-Aided Spectral-Line Method for Fine Carrier Frequency Synchronization in OFDM Receivers

  • Roh, Heejin;Cheun, Kyungwhoon
    • Journal of Communications and Networks
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    • v.6 no.2
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    • pp.112-122
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    • 2004
  • A nonlinear spectral-line method utilizing the fourth absolute moment of the receiver discrete Fourier transform output is proposed as a non-data-aided fine carrier frequency synchronization algorithm for OFDM receivers. A simple modification of the algorithm resulting in low implementation complexity is also developed. Analytic expressions are derived for the steady-state frequency error variances of the algorithms and verified to be very accurate via computer simulations over AWGN and frequency selective multipath channels. Numerical results show that the proposed algorithms provide reliable and excellent steady-state performance, especially with PSK modulation. Also, the proposed algorithms are insensitive to symbol timing offsets, only requiring a coarse symbol timing recovery.

Comparative Study of the Symbol Rate Detection of Unknown Digital Communication Signals (미상 디지털 통신 신호의 심볼율 검출 방식 비교)

  • Joo, Se-Joon;Hong, Een-Kee
    • Journal of Advanced Navigation Technology
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    • v.7 no.2
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    • pp.141-148
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    • 2003
  • This paper presents and compares several techniques that detect the symbol rate of unknown received signal. Symbol rate is detected from the power spectral density of the circuits such as the delay and multiplier circuit, the square law circuit, and analytic signal, etc. As a result of discrete Fourier transform of the output signals of these circuits, a lot of spectral lines and some peaks appear in frequency domain and the position of first peak is corresponding to the symbol rate. If a spectral line on the frequency that is not located in symbol rate is larger than the first peak, the symbol rate is erroneously detected. Thus, the ratio between the value of first peak and the highest side spectral line is used for the measure of the performance of symbol rate detector. For the MPSK modulation, the analytic signal method shows better performance than the delay and multiplier and square law circuits when the received signal power is lager than -20dB. It is also noted that the delay and multiplier circuit is not able to detect the symbol rate for the QAM modulation.

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Performance Evaluation of Symbol Timing Algorithm for QPSK Modulation Technique in Digital Receiver (QPSK변조기법을 위한 Digital 수신기의 심볼동기 알고리즘 성능평가)

  • 송재철;고성찬;최형진
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.17 no.11
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    • pp.1299-1310
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    • 1992
  • Recently, digital realizations of timing recovery circuits for digital data transmission are of growing interest. As a result of digital realization of timing recovery circuits, new digital algorithms for timing error detection are required. In this paper, we present a new digital Angular Form(AF) algorithm which can be directly applied to QPSK modulation technique. AF algorithm is basically developed on the concepts of detected angle form and transition logic table. We evaluated the performance of this algorithm by Monte-Carlo simulation method under Gaussian and Impulsive noise environments. From the performance evaluation result, we show that the performance of AF Algorithm is better than that of Gardner in BER, RMS jitter, S-curve.

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Design of the Upstream Cable Modem for Symmetric Multimedia Services over HFC Networks (HFC망 기반 대칭형 멀티미디어 서비스를 위한 상향 채널 케이블 모뎀 설계)

  • Cho, Byung Hak
    • Journal of Broadcast Engineering
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    • v.10 no.3
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    • pp.401-412
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    • 2005
  • We propose and design the algorithms of symbol timing recovery, carrier recovery, and equalization for the receiver of S-DMT cable modem, which supports more channels and better symmetric mutimedia services over HFC network. We evaluate the performance of the concatenated entire receiving system of 16QAM, 64QAM in the mixed noise channel of AWGN, ISI and impulse. The result of evaluation shows those algorithms work correctly and designed S-DMT receiver has good performance. We also verify the designed system has excellent immunity against impulse noise channel of practical Cable TV networks by the result of simulation with the parameters of impulse internal $\varepsilon$ and noise power $\gamma^{k}$.