Modeling and Analysis of Non-Linear Phenomena of Satellite Power System in Space Environment and Hazard-Risk Evaluations

With the aim to solve the problem of the non-linear phenomenon of the satellite power system under the influence of the space environment factors, which threatens the stability of the power system, in this paper, the abnormal charging and discharging of solar arrays and solar array drive assembly (S...

Full description

Bibliographic Details
Main Authors: Yanchen Meng, Donglai Zhang, Chao Wang, Zhigang Liu, Liying Zhu, Anshou Li
Format: Article
Language:English
Published: MDPI AG 2022-05-01
Series:Electronics
Subjects:
Online Access:https://www.mdpi.com/2079-9292/11/11/1756
_version_ 1797493687692820480
author Yanchen Meng
Donglai Zhang
Chao Wang
Zhigang Liu
Liying Zhu
Anshou Li
author_facet Yanchen Meng
Donglai Zhang
Chao Wang
Zhigang Liu
Liying Zhu
Anshou Li
author_sort Yanchen Meng
collection DOAJ
description With the aim to solve the problem of the non-linear phenomenon of the satellite power system under the influence of the space environment factors, which threatens the stability of the power system, in this paper, the abnormal charging and discharging of solar arrays and solar array drive assembly (SADA) induced by the space plasma environment and accidental events, such as debris impact, and the non-linear behaviors of the solar array and load during the Earth eclipse are modeled and analyzed. On this basis, the hazard risk evaluations of the above non-linear phenomena are carried out, and the weak links of the satellite power system in the space environment are identified. The results show that the unexpected energy of the solar array will increase the current stress and power loss of the power device, resulting in S3R over-regulation. An SADA arc fault will reduce the power supply capacity of the solar array, damage the shunt regulator, and affect the quality of the bus. The non-linear behavior of the solar array and load during the Earth eclipse may damage the battery charge and discharge regulator, seriously affecting the stability of the power system.
first_indexed 2024-03-10T01:23:37Z
format Article
id doaj.art-25f1cf8525d54738a5cd252079593f27
institution Directory Open Access Journal
issn 2079-9292
language English
last_indexed 2024-03-10T01:23:37Z
publishDate 2022-05-01
publisher MDPI AG
record_format Article
series Electronics
spelling doaj.art-25f1cf8525d54738a5cd252079593f272023-11-23T13:55:23ZengMDPI AGElectronics2079-92922022-05-011111175610.3390/electronics11111756Modeling and Analysis of Non-Linear Phenomena of Satellite Power System in Space Environment and Hazard-Risk EvaluationsYanchen Meng0Donglai Zhang1Chao Wang2Zhigang Liu3Liying Zhu4Anshou Li5College of Mechanical Engineering and Automation, Harbin Institute of Technology, Shenzhen 518055, ChinaCollege of Mechanical Engineering and Automation, Harbin Institute of Technology, Shenzhen 518055, ChinaBeijing Institute of Spacecraft System Engineering, Beijing 100094, ChinaBeijing Institute of Spacecraft System Engineering, Beijing 100094, ChinaBeijing Institute of Spacecraft System Engineering, Beijing 100094, ChinaPeng Cheng Laboratory, Shenzhen 518000, ChinaWith the aim to solve the problem of the non-linear phenomenon of the satellite power system under the influence of the space environment factors, which threatens the stability of the power system, in this paper, the abnormal charging and discharging of solar arrays and solar array drive assembly (SADA) induced by the space plasma environment and accidental events, such as debris impact, and the non-linear behaviors of the solar array and load during the Earth eclipse are modeled and analyzed. On this basis, the hazard risk evaluations of the above non-linear phenomena are carried out, and the weak links of the satellite power system in the space environment are identified. The results show that the unexpected energy of the solar array will increase the current stress and power loss of the power device, resulting in S3R over-regulation. An SADA arc fault will reduce the power supply capacity of the solar array, damage the shunt regulator, and affect the quality of the bus. The non-linear behavior of the solar array and load during the Earth eclipse may damage the battery charge and discharge regulator, seriously affecting the stability of the power system.https://www.mdpi.com/2079-9292/11/11/1756solar arraysequential switching shunt regulator (S3R)arc faultEarth eclipsenon-linear load
spellingShingle Yanchen Meng
Donglai Zhang
Chao Wang
Zhigang Liu
Liying Zhu
Anshou Li
Modeling and Analysis of Non-Linear Phenomena of Satellite Power System in Space Environment and Hazard-Risk Evaluations
Electronics
solar array
sequential switching shunt regulator (S3R)
arc fault
Earth eclipse
non-linear load
title Modeling and Analysis of Non-Linear Phenomena of Satellite Power System in Space Environment and Hazard-Risk Evaluations
title_full Modeling and Analysis of Non-Linear Phenomena of Satellite Power System in Space Environment and Hazard-Risk Evaluations
title_fullStr Modeling and Analysis of Non-Linear Phenomena of Satellite Power System in Space Environment and Hazard-Risk Evaluations
title_full_unstemmed Modeling and Analysis of Non-Linear Phenomena of Satellite Power System in Space Environment and Hazard-Risk Evaluations
title_short Modeling and Analysis of Non-Linear Phenomena of Satellite Power System in Space Environment and Hazard-Risk Evaluations
title_sort modeling and analysis of non linear phenomena of satellite power system in space environment and hazard risk evaluations
topic solar array
sequential switching shunt regulator (S3R)
arc fault
Earth eclipse
non-linear load
url https://www.mdpi.com/2079-9292/11/11/1756
work_keys_str_mv AT yanchenmeng modelingandanalysisofnonlinearphenomenaofsatellitepowersysteminspaceenvironmentandhazardriskevaluations
AT donglaizhang modelingandanalysisofnonlinearphenomenaofsatellitepowersysteminspaceenvironmentandhazardriskevaluations
AT chaowang modelingandanalysisofnonlinearphenomenaofsatellitepowersysteminspaceenvironmentandhazardriskevaluations
AT zhigangliu modelingandanalysisofnonlinearphenomenaofsatellitepowersysteminspaceenvironmentandhazardriskevaluations
AT liyingzhu modelingandanalysisofnonlinearphenomenaofsatellitepowersysteminspaceenvironmentandhazardriskevaluations
AT anshouli modelingandanalysisofnonlinearphenomenaofsatellitepowersysteminspaceenvironmentandhazardriskevaluations