Quality and Reliability-Exploitation Modeling of Power Supply Systems
This article describes the issues related to the analysis of the reliability-exploitation of power supply systems in transport telematics devices (PSSs in TTDs). This paper characterizes solutions, which are applied in supply systems, and describes a PSS in a TTD from a main source and a standby one...
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doaj-7289f42d52ce4b798b0209cf86be0d402021-05-31T23:36:34ZengMDPI AGEnergies1996-10732021-05-01142727272710.3390/en14092727Quality and Reliability-Exploitation Modeling of Power Supply SystemsMarek Stawowy0Adam Rosiński1Mirosław Siergiejczyk2Krzysztof Perlicki3Faculty of Transport, Warsaw University of Technology, Koszykowa 75, 00-662 Warsaw, PolandFaculty of Electronic, Military University of Technology, gen. S. Kaliskiego 2, 00-908 Warsaw, PolandFaculty of Transport, Warsaw University of Technology, Koszykowa 75, 00-662 Warsaw, PolandInstitute of Telecommunications, Warsaw University of Technology, Nowowiejska 15/19, 00-665 Warsaw, PolandThis article describes the issues related to the analysis of the reliability-exploitation of power supply systems in transport telematics devices (PSSs in TTDs). This paper characterizes solutions, which are applied in supply systems, and describes a PSS in a TTD from a main source and a standby one. This enables determining the dependencies denoting the probabilities of the system staying in full ability state, safety threat state, and safety unreliability state. A quality analysis of the PSS in TTD was conducted, and the indicator value of the supply continuity quality was evaluated. This indicator allows the demonstration of continuity quality of power supply (CQoPS) dependency on many quality dimensions, not just reliability. An example demonstrates the calculation of CQoPS factor for both the main and the standby power supply, employing three observations, each influencing the quality. The presented considerations in the field of quality and reliability-exploitation modeling of a PSS can be applied as well in other public utility facilities (including those classified as critical infrastructure). The character of functions performed by critical infrastructure facilities demands an operating continuity of these systems at an appropriate level. The co-first authors of the article once again address the issue of determining CQoPS factor, this time on the basis of modeling using mathematical evidence. TTD is an example in this article, because the presented methods can be used in any kind of system, especially in the power source of critical systems.https://www.mdpi.com/1996-1073/14/9/2727qualityreliabilityexploitationpower supplypower supply continuity quality |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Marek Stawowy Adam Rosiński Mirosław Siergiejczyk Krzysztof Perlicki |
spellingShingle |
Marek Stawowy Adam Rosiński Mirosław Siergiejczyk Krzysztof Perlicki Quality and Reliability-Exploitation Modeling of Power Supply Systems Energies quality reliability exploitation power supply power supply continuity quality |
author_facet |
Marek Stawowy Adam Rosiński Mirosław Siergiejczyk Krzysztof Perlicki |
author_sort |
Marek Stawowy |
title |
Quality and Reliability-Exploitation Modeling of Power Supply Systems |
title_short |
Quality and Reliability-Exploitation Modeling of Power Supply Systems |
title_full |
Quality and Reliability-Exploitation Modeling of Power Supply Systems |
title_fullStr |
Quality and Reliability-Exploitation Modeling of Power Supply Systems |
title_full_unstemmed |
Quality and Reliability-Exploitation Modeling of Power Supply Systems |
title_sort |
quality and reliability-exploitation modeling of power supply systems |
publisher |
MDPI AG |
series |
Energies |
issn |
1996-1073 |
publishDate |
2021-05-01 |
description |
This article describes the issues related to the analysis of the reliability-exploitation of power supply systems in transport telematics devices (PSSs in TTDs). This paper characterizes solutions, which are applied in supply systems, and describes a PSS in a TTD from a main source and a standby one. This enables determining the dependencies denoting the probabilities of the system staying in full ability state, safety threat state, and safety unreliability state. A quality analysis of the PSS in TTD was conducted, and the indicator value of the supply continuity quality was evaluated. This indicator allows the demonstration of continuity quality of power supply (CQoPS) dependency on many quality dimensions, not just reliability. An example demonstrates the calculation of CQoPS factor for both the main and the standby power supply, employing three observations, each influencing the quality. The presented considerations in the field of quality and reliability-exploitation modeling of a PSS can be applied as well in other public utility facilities (including those classified as critical infrastructure). The character of functions performed by critical infrastructure facilities demands an operating continuity of these systems at an appropriate level. The co-first authors of the article once again address the issue of determining CQoPS factor, this time on the basis of modeling using mathematical evidence. TTD is an example in this article, because the presented methods can be used in any kind of system, especially in the power source of critical systems. |
topic |
quality reliability exploitation power supply power supply continuity quality |
url |
https://www.mdpi.com/1996-1073/14/9/2727 |
work_keys_str_mv |
AT marekstawowy qualityandreliabilityexploitationmodelingofpowersupplysystems AT adamrosinski qualityandreliabilityexploitationmodelingofpowersupplysystems AT mirosławsiergiejczyk qualityandreliabilityexploitationmodelingofpowersupplysystems AT krzysztofperlicki qualityandreliabilityexploitationmodelingofpowersupplysystems |
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