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Sensitivity analysis for a type of statically stable sailcrafts 被引量:1

Sensitivity analysis for a type of statically stable sailcrafts
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摘要 Two types of sensitivities are proposed for stat- ically stable sailcrafts. One type is the sensitivities of solar-radiation-pressure force with respect to position of the center of mass, and the other type is the sensitivities of solar-radiation-pressure force with respect to attitude. The two types of sensitivities represent how the solar-radiation- pressure force changes with the position of mass center and the attitude. Sailcrafts with larger sensitivities undergo larger error of the solar-radiation-pressure force, leading to larger orbit error, as demonstrated by simulation. Then as a case study, detailed formulas are derived to calculate the sensi- tivities for sailcrafts with four triangular sails. According to these formulas, in order to reduce both types of sensitivities, the angle between opposed sails should not be too large, and the center of mass should be as close to the axis of symmetry of the four sails as possible and as far away from the center of pressure of the sailcraft as possible. Two types of sensitivities are proposed for stat- ically stable sailcrafts. One type is the sensitivities of solar-radiation-pressure force with respect to position of the center of mass, and the other type is the sensitivities of solar-radiation-pressure force with respect to attitude. The two types of sensitivities represent how the solar-radiation- pressure force changes with the position of mass center and the attitude. Sailcrafts with larger sensitivities undergo larger error of the solar-radiation-pressure force, leading to larger orbit error, as demonstrated by simulation. Then as a case study, detailed formulas are derived to calculate the sensi- tivities for sailcrafts with four triangular sails. According to these formulas, in order to reduce both types of sensitivities, the angle between opposed sails should not be too large, and the center of mass should be as close to the axis of symmetry of the four sails as possible and as far away from the center of pressure of the sailcraft as possible.
机构地区 School of Aerospace
出处 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2012年第2期532-542,共11页 力学学报(英文版)
基金 supported by the National Natural Science Foundation of China (10832004) China Postdoctoral Science Foundation (023200006)
关键词 Statically stable sailcraft Sensitivity Solar- radiation-pressure force error. Mass center and pressure cen- ter errors Attitude and orbit errors Statically stable sailcraft Sensitivity Solar- radiation-pressure force error. Mass center and pressure cen- ter errors Attitude and orbit errors
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  • 1McInnes, C. R.: Solar Sailing: Technology, Dynamics, and Mission Applications. Springer Praxis, New York (1999).
  • 2McInnes, C. R., MacDonald, M., Angelopolous, V., et al.: GEOSAIL: Exploring the geomag-netic tail using a small solar sail. Journal of Spacecraft and Rockets 38(4), 622-629 (2001).
  • 3Leipold, M., Lappas, V., Lyngvi, A, et al.: Interstellar heliopause probe: system design of a solar sail mission to 200\;AU. In: AIAA Guidance, Navigation, and Control Conference, 15-18, August, San Francisco, California (2005).
  • 4Lappas, V., Wie, B., McInnes, C. R., et al.: Microsolar sails for earth magnetotail monitoring. Journal of Spacecraft and Rockets 44(4), 840-848 (2007).
  • 5Wie, B.: Dynamics and control of gravity tractor spacecraft for asteroid deflection. Journal of Guidance, Control, and Dynamics 31(5), 1413-1423 (2008).
  • 6Wright, L., Warmke, L.: Solar sail mission applications. In: AIA/AAS Astrodynamics Conference, 18-20, August, San Diego, CA (1976).
  • 7Lichodziejewski, D., Derbes, B., West, J., et al.: Bringing an effective solar sail design toward TRL 6. In: 39th AIAA/ASME/SAE/ASEE Joint Propulsion Conference and Exhibit, 20-23, July, Huntsville, Alabama (2003) .
  • 8Wie, B., Murphy, D.: Solar-sail attitude control design for a sail flight validation mission. Journal of Spacecraft and Rockets 44(4), 809-821 (2007).
  • 9Wie, B.: Solar sail attitude control and dynamics, Part 2. Journal of Guidance, Control, and Dynamics 27(4), 536-544 (2004).
  • 10Wie, B.: Thrust vector control analysis and design for solar-sail spacecraft. Journal of Spacecraft and Rockets 44(3), 545-557 (2007).

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