Novel Design of Minimum-Phase and Multiplierless Maximally-Flat FIR Filters
碩士 === 國立臺灣大學 === 電信工程學研究所 === 93 === In part I of this dissertation, a structure is proposed to acquire the maximally flat lowpass FIR filter. The advantage is that the multiplication elements are not included. Only the addition and delay elements are required. Afterward, the 1-dimensional multipli...
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ndltd-TW-093NTU054350812015-12-21T04:04:15Z http://ndltd.ncl.edu.tw/handle/41072655078034542682 Novel Design of Minimum-Phase and Multiplierless Maximally-Flat FIR Filters 最小相位與無乘法器之最平坦FIR濾波器設計 Huei-Shan Lin 林慧珊 碩士 國立臺灣大學 電信工程學研究所 93 In part I of this dissertation, a structure is proposed to acquire the maximally flat lowpass FIR filter. The advantage is that the multiplication elements are not included. Only the addition and delay elements are required. Afterward, the 1-dimensional multiplierless maximally flat designs are extended to the 2-dimensional cases to acquire the quasi-circular-shaped or quasi-ellipse-shaped maximally flat FIR filters. Moreover, the spectrum-shifted and spectrum-rotated versions of the basic 2-dimensional maximally flat prototypes have been designed. In part II, we deal with the minimum-phase filters design. First the concepts of the homomorphic systems and complex cepstrum are reviewed. Then several cepstrum-based or non-cepstrum-based approaches are reviewed. Finally, we propose our minimum-phase filters design based on real cepstrum. This method has many advantages over other existing approaches concerning the complexity of the design process. Moreover, it is emphasized that the resulting magnitude response is the same with the original prototype. 貝蘇章 2005 學位論文 ; thesis 113 en_US |
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碩士 === 國立臺灣大學 === 電信工程學研究所 === 93 === In part I of this dissertation, a structure is proposed to acquire the maximally flat lowpass FIR filter. The advantage is that the multiplication elements are not included. Only the addition and delay elements are required. Afterward, the 1-dimensional multiplierless maximally flat designs are extended to the 2-dimensional cases to acquire the quasi-circular-shaped or quasi-ellipse-shaped maximally flat FIR filters. Moreover, the spectrum-shifted and spectrum-rotated versions of the basic
2-dimensional maximally flat prototypes have been designed.
In part II, we deal with the minimum-phase filters design. First the concepts of the homomorphic systems and complex cepstrum are reviewed. Then several cepstrum-based or non-cepstrum-based approaches are reviewed. Finally, we propose
our minimum-phase filters design based on real cepstrum. This method has many advantages over other existing approaches concerning the complexity of the design process. Moreover, it is emphasized that the resulting magnitude response is the same with the original prototype.
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author2 |
貝蘇章 |
author_facet |
貝蘇章 Huei-Shan Lin 林慧珊 |
author |
Huei-Shan Lin 林慧珊 |
spellingShingle |
Huei-Shan Lin 林慧珊 Novel Design of Minimum-Phase and Multiplierless Maximally-Flat FIR Filters |
author_sort |
Huei-Shan Lin |
title |
Novel Design of Minimum-Phase and Multiplierless Maximally-Flat FIR Filters |
title_short |
Novel Design of Minimum-Phase and Multiplierless Maximally-Flat FIR Filters |
title_full |
Novel Design of Minimum-Phase and Multiplierless Maximally-Flat FIR Filters |
title_fullStr |
Novel Design of Minimum-Phase and Multiplierless Maximally-Flat FIR Filters |
title_full_unstemmed |
Novel Design of Minimum-Phase and Multiplierless Maximally-Flat FIR Filters |
title_sort |
novel design of minimum-phase and multiplierless maximally-flat fir filters |
publishDate |
2005 |
url |
http://ndltd.ncl.edu.tw/handle/41072655078034542682 |
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