Presentation | 2013-07-12 A Design Method of Linear Phase Maximally Flat FIR Digital Differentiators at an Arbitrary Frequency Takashi YOSHIDA, Naoyuki AIKAWA, |
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Abstract(in Japanese) | (See Japanese page) |
Abstract(in English) | In recent years, digital differentiators have received much attention in many fields, such as instrumentation and control and so on. Several design methods of digital differentiators have been proposed. One of them is differentiators having the maximally flat criterion. Maximally flat digital differentiators have been described by several authors where the approximation is accurate at a single point, usually ω= 0,π/2,π. In this paper, we propose a design method of linear phase maximally flat digital FIR differentiators at an arbitrary frequency. we can obtain its coefficients by easy recursion formula. |
Keyword(in Japanese) | (See Japanese page) |
Keyword(in English) | digital differentiator / the maximally flat criterion / an arbitrary frequency / closed-form transfer function |
Paper # | CAS2013-25,VLD2013-35,SIP2013-55,MSS2013-25 |
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Committee | VLD |
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Conference Date | 2013/7/4(1days) |
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Registration To | VLSI Design Technologies (VLD) |
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Language | JPN |
Title (in Japanese) | (See Japanese page) |
Sub Title (in Japanese) | (See Japanese page) |
Title (in English) | A Design Method of Linear Phase Maximally Flat FIR Digital Differentiators at an Arbitrary Frequency |
Sub Title (in English) | |
Keyword(1) | digital differentiator |
Keyword(2) | the maximally flat criterion |
Keyword(3) | an arbitrary frequency |
Keyword(4) | closed-form transfer function |
1st Author's Name | Takashi YOSHIDA |
1st Author's Affiliation | Faculty of Industrial Science and Technology, Tokyo University of Science() |
2nd Author's Name | Naoyuki AIKAWA |
2nd Author's Affiliation | Faculty of Industrial Science and Technology, Tokyo University of Science |
Date | 2013-07-12 |
Paper # | CAS2013-25,VLD2013-35,SIP2013-55,MSS2013-25 |
Volume (vol) | vol.113 |
Number (no) | 119 |
Page | pp.pp.- |
#Pages | 4 |
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