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      KCI등재 SCIE SCOPUS

      Soft-Decision for Differential Amplify-and-Forward over Time-Varying Relaying Channel = Soft-Decision for Differential Amplify-and-Forward over Time-Varying Relaying Channel

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      https://www.riss.kr/link?id=A103334322

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      다국어 초록 (Multilingual Abstract)

      Differential detection schemes do not require any channel estimation, which can be employed under user mobility with low computational complexity. In this work, a soft-input soft-output (SISO) differential detection algorithm is proposed for amplify-a...

      Differential detection schemes do not require any channel estimation, which can be employed under user mobility with low computational complexity. In this work, a soft-input soft-output (SISO) differential detection algorithm is proposed for amplify-and-forward (AF) over time-varying relaying channels based cooperative communications system. Furthermore, maximum-likelihood (ML) detector for M-ary differential Phase-shift keying (DPSK) is derived to calculate a posteriori probabilities (APP) of information bits. In addition, when the SISO is exploited in conjunction with channel decoding, iterative detection and decoding approach by exchanging extrinsic information with outer code is obtained. Finally, simulation results show that the proposed non-coherent approach improves detection performance significantly. In particular, the system can obtain greater performance gain under fast-fading channels.

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      참고문헌 (Reference)

      1 J. D. Parsons, "The Mobile Radio Propagation Channel" John Wiley & Sons 2000

      2 C. S. Patel., "Statistical properties of amplify and forward relay fading channels" 55 (55): 1-9, 2006

      3 S. Benedetto., "Soft-input soft-output modules for the construction and distributed iterative decoding of code networks" 9 : 155-172, 1998

      4 M. R. Avendi., "Selection combining for differential amplify-and-forward relaying over Rayleigh-fading channels" 20 (20): 277-280, 2013

      5 Yulong Zou., "Relay-selection improves the security-reliability trade-off in cognitive radio systems" 63 (63): 215-228, 2015

      6 M. R. Avendi., "Performance of selection combing for differential amplify-and-forward relaying over time-varying channels" 13 (13): 4156-4166, 2014

      7 M. R. Avendi., "Performance of differential amplify-and-forward relaying in multinode wireless communications" 62 (62): 3603-3613, 2013

      8 H. Fu., "Performance comparison of selection combining schemes for binary DPSK on nonselective Rayleigh-fading channels with interference" 4 (4): 192-201, 2005

      9 M. M. Fareed., "On relay selection for decode-and-forward relaying" 8 (8): 3341-3346, 2009

      10 E. A. Neasmith., "New results on selection diversity" 46 (46): 695-704, 1998

      1 J. D. Parsons, "The Mobile Radio Propagation Channel" John Wiley & Sons 2000

      2 C. S. Patel., "Statistical properties of amplify and forward relay fading channels" 55 (55): 1-9, 2006

      3 S. Benedetto., "Soft-input soft-output modules for the construction and distributed iterative decoding of code networks" 9 : 155-172, 1998

      4 M. R. Avendi., "Selection combining for differential amplify-and-forward relaying over Rayleigh-fading channels" 20 (20): 277-280, 2013

      5 Yulong Zou., "Relay-selection improves the security-reliability trade-off in cognitive radio systems" 63 (63): 215-228, 2015

      6 M. R. Avendi., "Performance of selection combing for differential amplify-and-forward relaying over time-varying channels" 13 (13): 4156-4166, 2014

      7 M. R. Avendi., "Performance of differential amplify-and-forward relaying in multinode wireless communications" 62 (62): 3603-3613, 2013

      8 H. Fu., "Performance comparison of selection combining schemes for binary DPSK on nonselective Rayleigh-fading channels with interference" 4 (4): 192-201, 2005

      9 M. M. Fareed., "On relay selection for decode-and-forward relaying" 8 (8): 3341-3346, 2009

      10 E. A. Neasmith., "New results on selection diversity" 46 (46): 695-704, 1998

      11 Dandan Liang., "Near-capacity turbo coded soft-decision aided DAPSK/Star-QAM for amplify-and-forward based cooperative communications" 61 (61): 1080-1087, 2013

      12 W. C. Jakes, "Microwave Mobile Communications" Wiley-IEEE Press 1994

      13 Peng Liu., "Maximum-likelihood detector for differential amplify-and-forward cooperative networks" 62 (62): 4097-4104, 2013

      14 A. V. Nguyen., "Iterative demodulation and decoding of differential space-time block codes" 2394-2400, 2000

      15 M. C. Valenti., "Iterative Demodulation and Decoding of Turbo Coded M-ary Noncoherent Orthogonal Modulation" 23 : 1738-1747, 2005

      16 Yulong Zou., "Improving physical-layer security in wireless communications using diversity techniques" 29 (29): 42-48, 2015

      17 T. Wang., "High performance cooperative demodulation with decode-and-forward relays" 55 (55): 1427-1438, 2007

      18 P. Y. Kam., "Further results on the bit error probabilities of MDPSK over the nonselective rayleigh fading channel with diversity reception" 43 (43): 2732-2741, 1995

      19 S. M. Kay, "Fundamentals of Statistical Signal Processing: Estimation Theory" Prentice-Hall 1993

      20 M. K. Simon, "Digital Communication over Fading Channels" John Wiley & Sons 2005

      21 T. Himsoon., "Differential transmission for amplify-and-forward cooperative communications" 12 (12): 5579-560, 2005

      22 Tao Cui., "Differential modulation for two-way wireless communications : a perspective of differential network coding at the physical layer" 57 (57): 2977-2987, 2009

      23 Q. Zhao., "Differential modulation for cooperative wireless systems" 55 (55): 2273-2283, 2007

      24 M. R. Avendi., "Differential dual-hop relaying under user mobility" 8 : 3161-3169, 2014

      25 Chi-Hsiao Yih, "Differential BPSK modulation for cooperative communication systems in time-selective Rayleigh fading channels" 2012

      26 J. N. Laneman., "Cooperative diversity in wireless networks : efficient protocols and outage behavior" 50 (50): 3062-3080, 2004

      27 P. Y. Kam, "Bit error probabilities of MDPSK over the nonselective Rayleigh fading channel with diversity reception" 39 (39): 220-224, 1991

      28 B. Bai., "A unified matching framework for multi-flow decode-and-forward cooperative networks" 30 (30): 397-406, 2012

      29 M. K. Varanasi, "A systematic approach to the design and analysis of optimum DPSK receivers for generalized diversity communications over Rayleigh fading channels" 47 (47): 1365-1375, 1999

      30 Y. Zhu., "A message-passing approach for joint channel estimation, interference mitigation, and decoding" 8 : 6008-6018, 2009

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
      학술지등록 한글명 : KSII Transactions on Internet and Information Systems
      외국어명 : KSII Transactions on Internet and Information Systems
      2023 평가예정 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
      2020-01-01 평가 등재학술지 유지 (해외등재 학술지 평가) KCI등재
      2013-10-01 평가 등재학술지 선정 (기타) KCI등재
      2011-01-01 평가 등재후보학술지 유지 (기타) KCI등재후보
      2009-01-01 평가 SCOPUS 등재 (신규평가) KCI등재후보
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      학술지 인용정보

      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.45 0.21 0.37
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.32 0.29 0.244 0.03
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