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A lattice predictor based adaptive Volterra filter and its convergence property analysis
- フォーマット:
- 論文
- 責任表示:
- Nakayama, Kenji ; Hirano, Akihiro ; Kashimoto, Hiroaki
- 言語:
- 英語
- 出版情報:
- Institute of Electrical and Electronics Engineers (IEEE), 2004-09-01
- 著者名:
- 掲載情報:
- Proceedings of the IEEE , The 47th International Midwest Symposium on Circuits and Systems (MWSCAS2004), Hiroshima, Japan
- ISSN:
- 1548-3746
- 巻:
- 2
- 開始ページ:
- II-37
- 終了ページ:
- II-40
- バージョン:
- publisher
- 概要:
- 金沢大学大学院自然科学研究科情報システム<br />This paper proposes a lattice predictor based adaptive Volterra filter (Lattice-AVF), and its convergence property is analyzed. In the adaptive FIR Volterra filter (AVF), the eigen value spread of a correlati … on matrix is extremely amplified, and its convergence is very slow for gradient methods. A lattice predictor is employed for whitening the input signal. For stationary colored input signals, the Lattice-AVF can provide a fast convergence and the well reduced residual error. Its convergence is highly dependent on a time constant, used in updating the reflection coefficients. A very large time constant is required. In the case of nonstationary colored input signal, the eigen value spread after the Volterra polynomial is not so highly amplified. This means fast convergence will be expected, and effects of the whitening will be small. These properties are analyzed. A problem of asynchronous updating the reflection coefficients and the filter coefficients observed in linear lattice predictor based adaptive filters, is also observed in the LatticeAVF. 続きを見る
- URL:
- http://hdl.handle.net/2297/6888
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