Efficient Orthogonal Bicomplex Bilinear DSP Algorithm Design

The present paper describes the development of a new technique for designing orthogonal bicomplex Digital Signal Processing (DSP) algorithms. In contrast to those previously reported on, this novel method is of universal application while being unaffected by either the type or the order of the real...

Full description

Bibliographic Details
Main Authors: Valkova-Jarvis Zlatka, Mihaylova Dimitriya, Stoynov Viktor
Format: Article
Language:English
Published: Sciendo 2020-01-01
Series:Electrical, Control and Communication Engineering
Subjects:
Online Access:https://doi.org/10.2478/ecce-2020-0005
id doaj-abfc3a5e9953400db0a94e3e25ee7b2a
record_format Article
spelling doaj-abfc3a5e9953400db0a94e3e25ee7b2a2021-09-05T21:00:46ZengSciendoElectrical, Control and Communication Engineering 2255-91592020-01-01161303610.2478/ecce-2020-0005ecce-2020-0005Efficient Orthogonal Bicomplex Bilinear DSP Algorithm DesignValkova-Jarvis Zlatka0Mihaylova Dimitriya1Stoynov Viktor2Associate Professor, Department of Communication Networks, Faculty of Telecommunications, Technical University of Sofia, Sofia, BulgariaEngineer, Technical University of Sofia, Sofia, BulgariaEngineer, Technical University of Sofia, Sofia, BulgariaThe present paper describes the development of a new technique for designing orthogonal bicomplex Digital Signal Processing (DSP) algorithms. In contrast to those previously reported on, this novel method is of universal application while being unaffected by either the type or the order of the real digital processing algorithm employed as a prototype. The proposed technique builds on Watanabe and Nishihara’s complex orthogonal transformation, and converts real or complex orthogonal transfer functions into bicomplex orthogonal ones. In this study, the new technique is applied to the design and testing of orthogonal bilinear bicomplex filters with a canonical number of elements, the main advantage of which is that they are several times lower in order. In this way, bilinear bicomplex orthogonal transfer functions are made up of real coefficient ones of the fourth-order, thereby reducing the order of the filter by a factor of four. The experiments demonstrate that the properties of the prototype filter are acquired by the bicomplex orthogonal filters, irrespective of the prototype being complex or real in nature.https://doi.org/10.2478/ecce-2020-0005bicomplex digital filtersorthogonal complex digital filtersensitivityword-length
collection DOAJ
language English
format Article
sources DOAJ
author Valkova-Jarvis Zlatka
Mihaylova Dimitriya
Stoynov Viktor
spellingShingle Valkova-Jarvis Zlatka
Mihaylova Dimitriya
Stoynov Viktor
Efficient Orthogonal Bicomplex Bilinear DSP Algorithm Design
Electrical, Control and Communication Engineering
bicomplex digital filters
orthogonal complex digital filter
sensitivity
word-length
author_facet Valkova-Jarvis Zlatka
Mihaylova Dimitriya
Stoynov Viktor
author_sort Valkova-Jarvis Zlatka
title Efficient Orthogonal Bicomplex Bilinear DSP Algorithm Design
title_short Efficient Orthogonal Bicomplex Bilinear DSP Algorithm Design
title_full Efficient Orthogonal Bicomplex Bilinear DSP Algorithm Design
title_fullStr Efficient Orthogonal Bicomplex Bilinear DSP Algorithm Design
title_full_unstemmed Efficient Orthogonal Bicomplex Bilinear DSP Algorithm Design
title_sort efficient orthogonal bicomplex bilinear dsp algorithm design
publisher Sciendo
series Electrical, Control and Communication Engineering
issn 2255-9159
publishDate 2020-01-01
description The present paper describes the development of a new technique for designing orthogonal bicomplex Digital Signal Processing (DSP) algorithms. In contrast to those previously reported on, this novel method is of universal application while being unaffected by either the type or the order of the real digital processing algorithm employed as a prototype. The proposed technique builds on Watanabe and Nishihara’s complex orthogonal transformation, and converts real or complex orthogonal transfer functions into bicomplex orthogonal ones. In this study, the new technique is applied to the design and testing of orthogonal bilinear bicomplex filters with a canonical number of elements, the main advantage of which is that they are several times lower in order. In this way, bilinear bicomplex orthogonal transfer functions are made up of real coefficient ones of the fourth-order, thereby reducing the order of the filter by a factor of four. The experiments demonstrate that the properties of the prototype filter are acquired by the bicomplex orthogonal filters, irrespective of the prototype being complex or real in nature.
topic bicomplex digital filters
orthogonal complex digital filter
sensitivity
word-length
url https://doi.org/10.2478/ecce-2020-0005
work_keys_str_mv AT valkovajarviszlatka efficientorthogonalbicomplexbilineardspalgorithmdesign
AT mihaylovadimitriya efficientorthogonalbicomplexbilineardspalgorithmdesign
AT stoynovviktor efficientorthogonalbicomplexbilineardspalgorithmdesign
_version_ 1717782298668040192