Finite Impulse Response Filter with Square-Exponential Frequency Response
- Authors: Fursov V.A.1, Bibikov S.A.1
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Affiliations:
- Research Education Center for Computer Science
- Issue: Vol 29, No 2 (2019)
- Pages: 284-295
- Section: Applied Problems
- URL: https://journals.rcsi.science/1054-6618/article/view/195589
- DOI: https://doi.org/10.1134/S1054661819020081
- ID: 195589
Cite item
Abstract
This article is devoted to resolving problems with synthesis of FIR-filter restoring distortions such as defocusing. We propose a new parametrical class of finite impulse response filters (FIR-filters) based on a model of the one-dimensional radially-symmetric frequency response. In the proposed synthesis method, the one-dimensional frequency response was composed of square and exponential functions. The two-dimensional filter’s impulse response (SE-filter) was constructed by sampling one-dimensional impulse responses for all directions. For filter parameters estimation, the iterative scheme was used. We considered two approaches to estimating the filter parameters: with training images and in the absence of training images. The important advantages of the proposed synthesis method are the possibility of high quality restoration with a minimum of prior information and the low amount of computing resources required. Given examples illustrates the possibility of the high-quality distortion correction. The proposed method provides higher quality restorations than optimal Wiener filter (from Open CV) due to a lack of distortion on the border of images.
About the authors
V. A. Fursov
Research Education Center for Computer Science
Author for correspondence.
Email: fursov@ssau.ru
Russian Federation, Samara, 443086
S. A. Bibikov
Research Education Center for Computer Science
Author for correspondence.
Email: bibikov.sergei@gmail.com
Russian Federation, Samara, 443086
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