Joint Carrier Phase Estimation and Data Detection Algorithms for Multi-h CPM Data Transmission
A dynamic programming algorithm, developed in [1]-[4] for obtaining the joint estimate of carrier phase and data, is applied to multi h continuous phase modulation. A MAP estimator detects data and jointly tracks carrier phase consisting of a normal random walk phase jitter process. Monte Carlo comp...
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          | Published in | I.R.E. transactions on communications systems Vol. 34; no. 9; pp. 873 - 881 | 
|---|---|
| Main Author | |
| Format | Journal Article | 
| Language | English | 
| Published | 
        New York, NY
          IEEE
    
        01.09.1986
     Institute of Electrical and Electronics Engineers  | 
| Subjects | |
| Online Access | Get full text | 
| ISSN | 0090-6778 0096-2244  | 
| DOI | 10.1109/TCOM.1986.1096649 | 
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| Abstract | A dynamic programming algorithm, developed in [1]-[4] for obtaining the joint estimate of carrier phase and data, is applied to multi h continuous phase modulation. A MAP estimator detects data and jointly tracks carrier phase consisting of a normal random walk phase jitter process. Monte Carlo computer simulations are used to evaluate the probability of error performance for two receivers employed in demodulation of multi- h CPM signals. A simplified algorithm is proposed which yields up to a tenfold reduction in computation time at the expense of less than 1 dB in signal-to-noise ratio at the error rates computed, and for suitable ranges of phase jitter increments variance. | 
    
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| AbstractList | A dynamic programming algorithm, developed in [1]-[4] for obtaining the joint estimate of carrier phase and data, is applied to multi h continuous phase modulation. A MAP estimator detects data and jointly tracks carrier phase consisting of a normal random walk phase jitter process. Monte Carlo computer simulations are used to evaluate the probability of error performance for two receivers employed in demodulation of multi- h CPM signals. A simplified algorithm is proposed which yields up to a tenfold reduction in computation time at the expense of less than 1 dB in signal-to-noise ratio at the error rates computed, and for suitable ranges of phase jitter increments variance. A dynamic programming algorithm is applied to multi-h continuous phase modulation. A MAP estimator detects data and jointly tracks carrier phase consisting of a normal random walk phase jitter process. Monte Carlo computer simulations are used to evaluate the probability of error performance for two receivers employed in demodulation of multi-h CPM signals. A simplified algorithm is proposed which yields up to a tenfold reduction in computation time at the expense of less than 1 dB in signal-to-noise ratio at the error rates computed, and for suitable ranges of phase jitter increments variance.  | 
    
| Author | Liebetreu, J. | 
    
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| Keywords | Phase Estimation Modulation Data transmission Detection Continuous phase Algorithm  | 
    
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| References | ref18a ref15 (ref18b) 1985; com 33 liebetreu (ref14) 1983 ref11 wickert (ref21) 1983 ref16 (ref10) 1970 ref19 omura (ref9) 1980 ungerboeck (ref17) 1974 ref8 ref4 ref3 ref6 (ref20b) 1985; com 33 ref20a ref5 scharf (ref1) 1977 ziemer (ref13) 1985 scharf (ref2) 1978 aulin (ref7) 0 bhargava (ref12) 1981  | 
    
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| Snippet | A dynamic programming algorithm, developed in [1]-[4] for obtaining the joint estimate of carrier phase and data, is applied to multi h continuous phase... A dynamic programming algorithm is applied to multi-h continuous phase modulation. A MAP estimator detects data and jointly tracks carrier phase consisting of...  | 
    
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| SubjectTerms | Applied sciences Computer simulation Continuous phase modulation Data communication Detection algorithms Dynamic programming Exact sciences and technology Heuristic algorithms Information, signal and communications theory Jitter Monte Carlo methods Phase detection Phase estimation Telecommunications and information theory  | 
    
| Title | Joint Carrier Phase Estimation and Data Detection Algorithms for Multi-h CPM Data Transmission | 
    
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