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      KCI등재 SCIE SCOPUS

      Mathematical Analysis Power Spectrum of M-ary MSK and Detection with Optimum Maximum Likelihood = Mathematical Analysis Power Spectrum of M-ary MSK and Detection with Optimum Maximum Likelihood

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      https://www.riss.kr/link?id=A107844907

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      다국어 초록 (Multilingual Abstract)

      In this paper, the power spectral density(PSD) for Multilevel Minimum Shift Keyed signal with modulation index h=1/2 (M-ary MSK) are derived using the mathematical method of the Markov Chain model. At first, according to an essential requirement of th...

      In this paper, the power spectral density(PSD) for Multilevel Minimum Shift Keyed signal with modulation index h=1/2 (M-ary MSK) are derived using the mathematical method of the Markov Chain model. At first, according to an essential requirement of the phase continuity characteristics of MSK signals, a complete model of the whole process of signal generation is built. Then, the derivations for autocorrelation functions are carried out precisely. After that, we verified the correctness and accuracy of the theoretical derivation by comparing the derived results with numerical simulations using MATLAB. We also divided the spectrum into four components according to the derivation. By analyzing these figures in the graphic, each component determines the characteristics of the spectrum. It is vital for enhanced spectral characteristics. To more visually represent the energy concentration of the main flap and the roll-down speed of the side flap, the specific out-of-band power of M-ary MSK is given. OMLCD(Optimum Maximum Likelihood Coherent Detection) of M-ary MSK is adopted to compare the signal received with prepared in advance in a code element T to go for the best. And M-ary MSK BER(Bit Error Rate) is compared with the same ary PSK (Phase Shift Keying) with M=2,4,6,8. The results show the detection method could improve performance by increasing the length of L(memory inherent) in the phase continuity.

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      참고문헌 (Reference)

      1 Gupta A, "Weibull extension model : A Bayes study using Markov chain Monte Carlo simulation" 93 (93): 1434-1443, 2008

      2 Pelchat M G, "The Autocorrelation Function and Power Spectrum of PCM/FM with Random Binary Modulating Waveforms" 10 (10): 39-44, 1964

      3 Tao S, "Study of a novel amplitude-phase modulation IRZ-MSK in highspeed optical fiber transmission system" 20 (20): 254-260, 2014

      4 Bennett W R, "Spectral Density and Autocorrelation Functions Associated with Binary Frequency-Shift Keying" 42 (42): 2355-2385, 1963

      5 Anderson R R, "Spectra of Digital FM" 44 (44): 1165-1189, 1965

      6 Wang Y, "Research on the system performance evaluation of minimum-shift keying in uplink ground-to-satellite with gamma–gamma distribution" 56 (56): 076113-, 2017

      7 Jung P, "On the representation of CPM signals by linear superposition of impulses in the bandpass domain" 10 (10): 1236-1242, 1992

      8 Simon M K, "On the optimality of classical coherent receivers of differentially encoded M-PSK" 1 (1): 67-70, 1997

      9 Andersson S T, "Noncoherent detection of convolutionally encoded continuous phase modulation" 7 (7): 1402-1414, 1989

      10 Le N B, "Multi-amplitude minimum shift keying modulation format for optical communications" 281 (281): 4245-4253, 2008

      1 Gupta A, "Weibull extension model : A Bayes study using Markov chain Monte Carlo simulation" 93 (93): 1434-1443, 2008

      2 Pelchat M G, "The Autocorrelation Function and Power Spectrum of PCM/FM with Random Binary Modulating Waveforms" 10 (10): 39-44, 1964

      3 Tao S, "Study of a novel amplitude-phase modulation IRZ-MSK in highspeed optical fiber transmission system" 20 (20): 254-260, 2014

      4 Bennett W R, "Spectral Density and Autocorrelation Functions Associated with Binary Frequency-Shift Keying" 42 (42): 2355-2385, 1963

      5 Anderson R R, "Spectra of Digital FM" 44 (44): 1165-1189, 1965

      6 Wang Y, "Research on the system performance evaluation of minimum-shift keying in uplink ground-to-satellite with gamma–gamma distribution" 56 (56): 076113-, 2017

      7 Jung P, "On the representation of CPM signals by linear superposition of impulses in the bandpass domain" 10 (10): 1236-1242, 1992

      8 Simon M K, "On the optimality of classical coherent receivers of differentially encoded M-PSK" 1 (1): 67-70, 1997

      9 Andersson S T, "Noncoherent detection of convolutionally encoded continuous phase modulation" 7 (7): 1402-1414, 1989

      10 Le N B, "Multi-amplitude minimum shift keying modulation format for optical communications" 281 (281): 4245-4253, 2008

      11 Robert CP, "Monte Carlo statistical method" Springer 2004

      12 Douc R, "Markov Chains"

      13 Ekanayake N, "M-ary continuous phase frequency shift keying with modulation index 1/M" 131 (131): 173-178, 1984

      14 Chen, Xingbo, "Energy leakage analysis of the radar and communication integrated waveform" 12 (12): 375-382, 2018

      15 Hamed A M, "Energy and spectral efficiencies of M-CPFSK in fading and shadowing wireless channels" 30 : 204-212, 2018

      16 J. G. Proakis, "Digital Communications" 73 (73): 3-5, 2015

      17 Park H C, "Continuous Phase Modulation of F-QPSK-B Signals" 56 (56): 172-, 2007

      18 Serfozo Richard, "Basics of Applied Stochastic Processes" Springer 2009

      19 Gao C, "BER analysis of MPSK space-time block codes with differential detection" 7 (7): 314-316, 2003

      20 Rimoldi B E, "A decomposition approach to CPM" 34 (34): 260-270, 1998

      21 Dong S, "A 10-Gb/s 180-GHz Phase-Locked-Loop Minimum Shift Keying Receiver" 56 (56): 681-693, 2021

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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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