Differential Detection of Serially Concatenated Precoded GMSK with Iterative Decoding
碩士 === 國立高雄第一科技大學 === 電腦與通訊工程所 === 94 === Abstract In this thesis, differential detection for a serial concatenated coding system consists of an outer convolutional encoder, an interleaver and an inner rate-1 precoded Gaussian minimum-shift keying (GMSK) modulation is studied. Using differential pha...
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ndltd-TW-094NKIT56500222016-05-20T04:18:02Z http://ndltd.ncl.edu.tw/handle/30305306764513687667 Differential Detection of Serially Concatenated Precoded GMSK with Iterative Decoding 串列聯結前置編碼GMSK之差分偵測與遞迴解碼 Zhi-Yuan Hsu 許智源 碩士 國立高雄第一科技大學 電腦與通訊工程所 94 Abstract In this thesis, differential detection for a serial concatenated coding system consists of an outer convolutional encoder, an interleaver and an inner rate-1 precoded Gaussian minimum-shift keying (GMSK) modulation is studied. Using differential phase detector (DPD) combined with an iterative MAP (maximum a posteriori) decoding scheme is constructed to improve the system performance. It is shown that GMSK modulation with DPD results in a feedforward tapped delay line. Therefore, a rate-1 recursive precoder is employed in front of the GMSK to produce a combined inner MAP decoder with a trellis of four states only. Finally, numerical results are performed for AWGN and flat fading channels. It is shown that the proposed structure outperforms previous work about 2 dB in the AWGN channel and about 9 dB in the flat Rayleigh fading channel at BER is equal to 10-4 respectively. Hsin-Hsyong Yang 楊新雄 2006 學位論文 ; thesis 60 en_US |
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碩士 === 國立高雄第一科技大學 === 電腦與通訊工程所 === 94 === Abstract
In this thesis, differential detection for a serial concatenated coding system consists of an outer convolutional encoder, an interleaver and an inner rate-1 precoded Gaussian minimum-shift keying (GMSK) modulation is studied. Using differential phase detector (DPD) combined with an iterative MAP (maximum a posteriori) decoding scheme is constructed to improve the system performance. It is shown that GMSK modulation with DPD results in a feedforward tapped delay line. Therefore, a rate-1 recursive precoder is employed in front of the GMSK to produce a combined inner MAP decoder with a trellis of four states only. Finally, numerical results are performed for AWGN and flat fading channels. It is shown that the proposed structure outperforms previous work about 2 dB in the AWGN channel and about 9 dB in the flat Rayleigh fading channel at BER is equal to 10-4 respectively.
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Hsin-Hsyong Yang |
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Hsin-Hsyong Yang Zhi-Yuan Hsu 許智源 |
author |
Zhi-Yuan Hsu 許智源 |
spellingShingle |
Zhi-Yuan Hsu 許智源 Differential Detection of Serially Concatenated Precoded GMSK with Iterative Decoding |
author_sort |
Zhi-Yuan Hsu |
title |
Differential Detection of Serially Concatenated Precoded GMSK with Iterative Decoding |
title_short |
Differential Detection of Serially Concatenated Precoded GMSK with Iterative Decoding |
title_full |
Differential Detection of Serially Concatenated Precoded GMSK with Iterative Decoding |
title_fullStr |
Differential Detection of Serially Concatenated Precoded GMSK with Iterative Decoding |
title_full_unstemmed |
Differential Detection of Serially Concatenated Precoded GMSK with Iterative Decoding |
title_sort |
differential detection of serially concatenated precoded gmsk with iterative decoding |
publishDate |
2006 |
url |
http://ndltd.ncl.edu.tw/handle/30305306764513687667 |
work_keys_str_mv |
AT zhiyuanhsu differentialdetectionofseriallyconcatenatedprecodedgmskwithiterativedecoding AT xǔzhìyuán differentialdetectionofseriallyconcatenatedprecodedgmskwithiterativedecoding AT zhiyuanhsu chuànlièliánjiéqiánzhìbiānmǎgmskzhīchàfēnzhēncèyǔdìhuíjiěmǎ AT xǔzhìyuán chuànlièliánjiéqiánzhìbiānmǎgmskzhīchàfēnzhēncèyǔdìhuíjiěmǎ |
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1718273163932991488 |