A Noise Reduction Method for a Modulated Orthogonal Sequence under Impulsive Noise Environment
スポンサーリンク
概要
- 論文の詳細を見る
In this paper, we investigate an inherent noise reduction characteristic of a modulated orthogonal sequence. The modulated orthogonal sequence generates length N^2 sequences from N information symbols. Using the amplitudes of received sequences, we first estimate the smallest amplitude noise. Then the noise is reduced by the proposed scheme. The noise reduction scheme is shown to have an excellent performance in non-Gaussian noise environment.
- 社団法人電子情報通信学会の論文
- 1999-10-25
著者
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KIM Dae
Department of Anatomy and Center for Advanced Medical Education by BK21 Project, Inha University Col
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SONG Iickho
Department of Electrical Engineering, Korea Advanced Institute of Science and Technology
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Park So
Department Of Physical Therapy Daegu University
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Park So
The Department Of Electrical Engineering Korea Advanced Institute Of Science And Technology
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Song Iickho
Department Of Electrical Engineering And Computer Science
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Park So
Department Of Electrical Engineering Korea Advanced Institute Of Science And Technology
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Park So
Department Of Clothing & Textiles College Of Human Ecology Kyungpook National University
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Kim Dae
Department Of Anatomy And Center For Advanced Medical Education By Bk21 Project Inha University Coll
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Kim Dae
The Author Is With The Department Of Electronics Engineering Chonnam National University
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Kim Dae
Department Of Electronics Engineering Chonnam National University
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Lee J
Department Of Electrical Engineering & Computer Science Korea Advanced Institute Of Science And
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PARK Seong
Daewoo Electronics, Digital Information Transmission (DIT) Lab. 3
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LEE Jooshik
Department of Electrical Engineering, Korea Advanced Institute of Science and Technology
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JOO Young-Sup
Daewoo Electronics, Digital Information Transmission (DIT) Lab. 3
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Joo Young-sup
Daewoo Electronics Digital Information Transmission (dit) Lab. 3
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Lee Jooshik
Department Of Electrical Engineering Korea Advanced Institute Of Science And Technology
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Park Seong
Daewoo Electronics Digital Information Transmission (dit) Lab. 3
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Park So
Department of Biomedical Engineering, Inje University
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