Design of Computationally Efficient IFIR based Filter Structure for Digital Channelizer'
- Title
- Design of Computationally Efficient IFIR based Filter Structure for Digital Channelizer'
- Creator
- Varghese R.C.; Amir A.
- Description
- A low computational complexity digital channelizer is essential for a wide band system. FRM is a widely used method to generate a sharp transition width sub-bands or channels in a digital channelizer. The aim of this work is to design a uniform and non-uniform sharp transition width FIR filter bank with low computational complexity compared to FRM based digital channelizer. The design parameters of the proposed structure are evaluated in an efficient way. The proposed structure is designed based on IFIR filter and complex exponential modulation technique (CEMT). The performance of the proposed structure is demonstrated with the help of an example. Results show that the number of multipliers of the proposed structure is less compared to other existing methods. 2022 IEEE.
- Source
- SPICES 2022 - IEEE International Conference on Signal Processing, Informatics, Communication and Energy Systems, pp. 99-104.
- Date
- 2022-01-01
- Publisher
- Institute of Electrical and Electronics Engineers Inc.
- Subject
- Complex Exponential modulation technique (CEMT); FIR filters; Frequency response masking (FRM); Interpolated finite impulse response (IFIR)
- Coverage
- Varghese R.C., Christ Deemed to Be University, Dept. of Ece, Bangalore, India; Amir A., Christ Deemed to Be University, Dept. of Ece, Bangalore, India
- Rights
- Restricted Access
- Relation
- ISBN: 978-166544940-3
- Format
- Online
- Language
- English
- Type
- Conference paper
Collection
Citation
Varghese R.C.; Amir A., “Design of Computationally Efficient IFIR based Filter Structure for Digital Channelizer',” CHRIST (Deemed To Be University) Institutional Repository, accessed February 26, 2025, https://archives.christuniversity.in/items/show/20386.