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CubeSat Design for Solar Sail Testing Applications Phillip HempelPaul Mears Daniel ParcherTaffy Tingley October 11, 2001The University of Texas at Austin
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Presentation Outline Project Goal Background Constraints Timeline Conclusion Candidate Solutions
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Project Goal Design a Test Platform for Solar Sail Propulsion Technology –Measure Thrust –Measure Solar Sail Efficiency Educational Experience –Provide Students with the Opportunity to See the Entire Satellite Design Process –Develop Orbital Trajectory and Satellite Orientation Simulation
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CubeSat Project Background Sponsored by Stanford University Utilizes Picosatellite Satellite Designs that Perform Some Scientific Task Involves Many Universities Gives Students a Chance to Develop a Space Projects for Real Application
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Presentation Outline Project Goal Background Constraints Timeline Conclusion Candidate Solutions
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Constraints CubeSat Prescribed Constraints –10cm Sided Cube –1 Kg Weight –Timing System to Delay Power-On –Space-Flown Materials Adopted Constraints (for Simplicity and Reliability) –No Attitude Control –No Powered Systems (except required Timer) –No Communications Systems
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Candidate Solutions Outline Propulsion –Sail Material Selection –Tension lines –Reflectivity Optimization Deployment System Tracking and Communication
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Solar Sail Material Selection Encounter SatelliteSolar Blade Solar Sail
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Solar Sail Material Selection Star of Tolerance Satellite Cosmos I
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Tear Strips
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Reflectivity Optimization Number of folds Rigidity Tear Strips Material Selection
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Deployment Sequence Unlock Side Panels Deploy Solar Sail
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Sail Deployment Memory Spring Compressed Gas/Capillaries
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Tracking and Communication Corner Cube Reflectors Laser from Ground Station Multiple Measurements to Determine Position, Rotation, Acceleration
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Corner Cube Orientation
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Presentation Outline Project Goal Background Constraints Timeline Conclusion Candidate Solutions
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Conclusion PaperSat is Developing a PicoSatellite Design for CubeSat Design will Test Solar Sail Propulsion Technology Design will not Incorporate Attitude Control Position, Acceleration, and Orientation will be Measured from Ground Stations http://www.ae.utexas.edu/design/papersat/
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Acknowledgements Dr. Wallace Fowler Dr. Cesar Ocampo Previous CubeSat Design Groups
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Questions?
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