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2024 | OriginalPaper | Buchkapitel

Design and Verification of Solar Array Deployment Scheme Based on a Novel Biaxial Drive Assembly

verfasst von : Lifang Song, Ke Zhang, Jinhua Hao

Erschienen in: Signal and Information Processing, Networking and Computers

Verlag: Springer Nature Singapore

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Abstract

Comparing with traditional solar-synchronous orbit satellite, the angle between orbital plane and solar vector of the inclined-orbit satellite varies over a much wider range, up to ±90°. In order to constantly align with solar vector, one of important means is to replace single-axis solar array drive assembly with biaxial solar array drive assembly (BSADA). However, BSADA may result in interference between solar array and satellite body, and is vulnerable to reaction force of solar array deployment. To solve this problem, this paper introduces a novel BSADA, increasing the distance between two axes (named axis A and axis B) by an extension rod, and designs solar array deployment scheme in the satellite injection phase, in which, other than traditional spring-damping device, axis B far away from the satellite is used to deploy the solar array to reduce reaction force. Relevant analysis, simulations and experimental results show that this scheme can effectively avoid solar array’s potential interference to satellite structure, and keep the reactional impact allowable during solar array deployment, which can meet the requirements of inclined orbit satellite to track the direction of solar vector.

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Literatur
1.
Zurück zum Zitat Lu, Q., Wan, X.C., Sun, Y.Y.: Study on low incline orbit and constellation of radar satellite for location coverage. Aerosp. Shanghai 33(2), 15–19 (2016) Lu, Q., Wan, X.C., Sun, Y.Y.: Study on low incline orbit and constellation of radar satellite for location coverage. Aerosp. Shanghai 33(2), 15–19 (2016)
2.
Zurück zum Zitat Wang, Y., Gu, Q.Y.: Methods of solar array tracking for inclined-orbit satellite. Spacecraft Eng. 18(3), 36–40 (2009) Wang, Y., Gu, Q.Y.: Methods of solar array tracking for inclined-orbit satellite. Spacecraft Eng. 18(3), 36–40 (2009)
3.
Zurück zum Zitat Feng, B.R., Chen, Z.S., Ye, L.J., Ji, C.S., Zhu, H.: Solar height angle analysis and attitude maneuver design of inclined-orbit small satellite. Aerosp. Control Appl. 42(3), 33–37 (2016) Feng, B.R., Chen, Z.S., Ye, L.J., Ji, C.S., Zhu, H.: Solar height angle analysis and attitude maneuver design of inclined-orbit small satellite. Aerosp. Control Appl. 42(3), 33–37 (2016)
4.
Zurück zum Zitat Tao, Y., Pan, C.Y., Tan, Y.Q.: A method to improve sunshine efficiency of solar array. Aerosp. Shanghai 2007(5), 23–26, 50 (2007) Tao, Y., Pan, C.Y., Tan, Y.Q.: A method to improve sunshine efficiency of solar array. Aerosp. Shanghai 2007(5), 23–26, 50 (2007)
5.
Zurück zum Zitat Li, J.H., Li, R.X., Qian, Z.Y.: Design and thermal analysis of space dual-axis solar array drive assembly. Chin. J. Space Sci. 31(3), 390–394 (2011)CrossRef Li, J.H., Li, R.X., Qian, Z.Y.: Design and thermal analysis of space dual-axis solar array drive assembly. Chin. J. Space Sci. 31(3), 390–394 (2011)CrossRef
6.
Zurück zum Zitat Li, X.F., Gao, L.F., Pei, S.W., Gao, X.H., Wang, X.: Configuration parameter optimization method of dual-axis solar wing. Spacecraft Eng. 28(5), 62–69 (2019) Li, X.F., Gao, L.F., Pei, S.W., Gao, X.H., Wang, X.: Configuration parameter optimization method of dual-axis solar wing. Spacecraft Eng. 28(5), 62–69 (2019)
7.
Zurück zum Zitat Zhang, K., Cui, C.M., Zhu, X.L., et al.: A method of dynamic strength analysis for drive mechanism of Biax Solar Array. Spacecraft Environ. Eng. 40(2), 122–127 (2023) Zhang, K., Cui, C.M., Zhu, X.L., et al.: A method of dynamic strength analysis for drive mechanism of Biax Solar Array. Spacecraft Environ. Eng. 40(2), 122–127 (2023)
8.
Zurück zum Zitat Yuan, J.J.: Satellite Structure Design and Analysis, 1st edn., vol. 2, p. 10. China Astronautic Publishing Company (2004) Yuan, J.J.: Satellite Structure Design and Analysis, 1st edn., vol. 2, p. 10. China Astronautic Publishing Company (2004)
9.
Zurück zum Zitat Jin, G., Xie, X.G., Gu, S., Zhang, D.: Dynamic simulation and application of deployable mechanism of satellite solar panels. Opt. Precis. Eng. 22(3), 745–753 (2014) Jin, G., Xie, X.G., Gu, S., Zhang, D.: Dynamic simulation and application of deployable mechanism of satellite solar panels. Opt. Precis. Eng. 22(3), 745–753 (2014)
10.
Zurück zum Zitat Kote, A., Balaji, K., Nataraiu, B.S., Aralimatti, V.C.: Effect of solar array deployment on spacecraft attitude. J. Spacecraft Technol. 17(2), 1–8 (2007) Kote, A., Balaji, K., Nataraiu, B.S., Aralimatti, V.C.: Effect of solar array deployment on spacecraft attitude. J. Spacecraft Technol. 17(2), 1–8 (2007)
Metadaten
Titel
Design and Verification of Solar Array Deployment Scheme Based on a Novel Biaxial Drive Assembly
verfasst von
Lifang Song
Ke Zhang
Jinhua Hao
Copyright-Jahr
2024
Verlag
Springer Nature Singapore
DOI
https://doi.org/10.1007/978-981-97-2116-0_32