Supplement to “Asymmetrical Space-Conversion Space SCS1 Strict-Sense and Wide-Sense Nonblocking Switching Fabrics for Continuous Multislot Connections” - the SCS2 Switching Fabrics Case

Recently, Danilewicz has proposed strict-sense and wide-sense nonblocking structures of asymmetrical space-conversion-space (S-C-S) switching fabrics. One of the two possible architectures, called the SCS1 switching fabric, was previously considered. In this paper, the second architecture, called th...

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Main Author: Grzegorz Danilewicz
Format: Article
Language:English
Published: IEEE 2019-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/8907347/
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spelling doaj-6c3edbfafcaa4bbd908cbb50e7c1e1a92021-03-30T00:39:02ZengIEEEIEEE Access2169-35362019-01-01716757716758310.1109/ACCESS.2019.29540148907347Supplement to &#x201C;Asymmetrical Space-Conversion Space SCS1 Strict-Sense and Wide-Sense Nonblocking Switching Fabrics for Continuous Multislot Connections&#x201D; - the SCS2 Switching Fabrics CaseGrzegorz Danilewicz0https://orcid.org/0000-0002-3281-678XFaculty of Electronics and Telecommunications, Poznan University of Technology, Pozna&#x0144;, PolandRecently, Danilewicz has proposed strict-sense and wide-sense nonblocking structures of asymmetrical space-conversion-space (S-C-S) switching fabrics. One of the two possible architectures, called the SCS1 switching fabric, was previously considered. In this paper, the second architecture, called the SCS2 switching fabric, is presented. Similarly to the previous study, this paper considers a more general case in which conversion in the middle-stage switches can be made for one of the different domains (frequency, time, etc.). Moreover, m-slot connections are a basis for the presented theory. For the S-C-S switching fabrics discussed in this paper, we derive and prove strict-sense nonblocking conditions for asymmetrical SCS2 switching fabrics when m-slot connections are set up in which m<sub>min</sub> &#x2264; m &#x2264; m<sub>max</sub>. In addition, wide-sense nonblocking conditions for SCS2 switching fabrics with functional decomposition of center-stage switches are presented. This paper is a supplementary study to the previous paper devoted to the SCS1 switching fabrics. Motivation, state-of-the-art, and many definitions and assumptions are the same as for the SCS1 and SCS2 solutions, so for these the reader is referred to the previous paper.https://ieeexplore.ieee.org/document/8907347/Asymmetrical switching fabricsspace-conversion-space switching fabricsstrict-sense nonblocking conditionswide-sense nonblocking conditions
collection DOAJ
language English
format Article
sources DOAJ
author Grzegorz Danilewicz
spellingShingle Grzegorz Danilewicz
Supplement to &#x201C;Asymmetrical Space-Conversion Space SCS1 Strict-Sense and Wide-Sense Nonblocking Switching Fabrics for Continuous Multislot Connections&#x201D; - the SCS2 Switching Fabrics Case
IEEE Access
Asymmetrical switching fabrics
space-conversion-space switching fabrics
strict-sense nonblocking conditions
wide-sense nonblocking conditions
author_facet Grzegorz Danilewicz
author_sort Grzegorz Danilewicz
title Supplement to &#x201C;Asymmetrical Space-Conversion Space SCS1 Strict-Sense and Wide-Sense Nonblocking Switching Fabrics for Continuous Multislot Connections&#x201D; - the SCS2 Switching Fabrics Case
title_short Supplement to &#x201C;Asymmetrical Space-Conversion Space SCS1 Strict-Sense and Wide-Sense Nonblocking Switching Fabrics for Continuous Multislot Connections&#x201D; - the SCS2 Switching Fabrics Case
title_full Supplement to &#x201C;Asymmetrical Space-Conversion Space SCS1 Strict-Sense and Wide-Sense Nonblocking Switching Fabrics for Continuous Multislot Connections&#x201D; - the SCS2 Switching Fabrics Case
title_fullStr Supplement to &#x201C;Asymmetrical Space-Conversion Space SCS1 Strict-Sense and Wide-Sense Nonblocking Switching Fabrics for Continuous Multislot Connections&#x201D; - the SCS2 Switching Fabrics Case
title_full_unstemmed Supplement to &#x201C;Asymmetrical Space-Conversion Space SCS1 Strict-Sense and Wide-Sense Nonblocking Switching Fabrics for Continuous Multislot Connections&#x201D; - the SCS2 Switching Fabrics Case
title_sort supplement to &#x201c;asymmetrical space-conversion space scs1 strict-sense and wide-sense nonblocking switching fabrics for continuous multislot connections&#x201d; - the scs2 switching fabrics case
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2019-01-01
description Recently, Danilewicz has proposed strict-sense and wide-sense nonblocking structures of asymmetrical space-conversion-space (S-C-S) switching fabrics. One of the two possible architectures, called the SCS1 switching fabric, was previously considered. In this paper, the second architecture, called the SCS2 switching fabric, is presented. Similarly to the previous study, this paper considers a more general case in which conversion in the middle-stage switches can be made for one of the different domains (frequency, time, etc.). Moreover, m-slot connections are a basis for the presented theory. For the S-C-S switching fabrics discussed in this paper, we derive and prove strict-sense nonblocking conditions for asymmetrical SCS2 switching fabrics when m-slot connections are set up in which m<sub>min</sub> &#x2264; m &#x2264; m<sub>max</sub>. In addition, wide-sense nonblocking conditions for SCS2 switching fabrics with functional decomposition of center-stage switches are presented. This paper is a supplementary study to the previous paper devoted to the SCS1 switching fabrics. Motivation, state-of-the-art, and many definitions and assumptions are the same as for the SCS1 and SCS2 solutions, so for these the reader is referred to the previous paper.
topic Asymmetrical switching fabrics
space-conversion-space switching fabrics
strict-sense nonblocking conditions
wide-sense nonblocking conditions
url https://ieeexplore.ieee.org/document/8907347/
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