Microgravity disturbance analysis on Chinese space laboratory.

Aerospace engineering Scientific data

Journal

NPJ microgravity
ISSN: 2373-8065
Titre abrégé: NPJ Microgravity
Pays: United States
ID NLM: 101703605

Informations de publication

Date de publication:
2019
Historique:
received: 25 11 2018
accepted: 20 05 2019
entrez: 18 7 2019
pubmed: 18 7 2019
medline: 18 7 2019
Statut: epublish

Résumé

Many scientific experiments are conducted in space; therefore, it is critical to understand the microgravity environment of a space laboratory. The first Chinese cargo ship, Tianzhou-1 (TZ-1), entered space on 20 April, 2017 and later joined with the Tiangong-2 (TG-2) Chinese space laboratory. TZ-1 carried a high-precision electrostatic suspension accelerometer system (ES-ACC) for measuring the microgravity acceleration on the spacecraft and a microgravity-active vibration system (MAIS), which contained flexible quartz accelerometers (Q-ACC). The ES-ACC was able to provide a reduced-disturbance environment for the MAIS. The purpose of these two instruments was to validate novel technologies and as an opportunity to record the microgravity acceleration of TZ-1 and TG-2 in detail during spacecraft operation in different flight modes, with or without vibration isolation. The acceleration data were analyzed comprehensively in a time-frequency-amplitude spectrogram. Some periodical disturbances with orbital period and irregular signals related to certain in-orbit events were observed. After reducing those disturbances, the microgravity levels on TZ-1 and TG-2 could be resolved to better than 10

Identifiants

pubmed: 31312719
doi: 10.1038/s41526-019-0078-z
pii: 78
pmc: PMC6614482
doi:

Types de publication

Journal Article

Langues

eng

Pagination

18

Déclaration de conflit d'intérêts

Competing interestsThe authors declare no competing interests.

Références

Sci Rep. 2016 Aug 17;6:31632
pubmed: 27530726
Rev Sci Instrum. 2016 Nov;87(11):114502
pubmed: 27910446
Sensors (Basel). 2017 Aug 23;17(9):
pubmed: 28832538

Auteurs

Wenbo Dong (W)

1Key Laboratory 3 of Space Utilization, Chinese Academy of Sciences, 100094 Beijing, China.
2Technology and Engineering Center for Space Utilization, Chinese Academy of Sciences, 100094 Beijing, China.

Wenxiang Duan (W)

1Key Laboratory 3 of Space Utilization, Chinese Academy of Sciences, 100094 Beijing, China.
2Technology and Engineering Center for Space Utilization, Chinese Academy of Sciences, 100094 Beijing, China.
3University of Chinese Academy of Sciences, 100094 Beijing, China.

Wei Liu (W)

1Key Laboratory 3 of Space Utilization, Chinese Academy of Sciences, 100094 Beijing, China.
2Technology and Engineering Center for Space Utilization, Chinese Academy of Sciences, 100094 Beijing, China.

Yongkang Zhang (Y)

1Key Laboratory 3 of Space Utilization, Chinese Academy of Sciences, 100094 Beijing, China.
2Technology and Engineering Center for Space Utilization, Chinese Academy of Sciences, 100094 Beijing, China.

Classifications MeSH