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Vehicle Tracking/Payload Release System For Small UAV Project Team 02009
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Project Summary ► Motivation for the Project Advancement of RIT MAV Development ► Objectives: Accurate Tracking of a UAV Two-Way Wireless Communication Autonomous Function : Drop a Payload
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Project Goals ► Remotely Track the position of a vehicle. ► Collect data remotely from the vehicle. ► Automatically drop a Payload. ► Drop site selectable at Base Station. ► Design a reliable Payload Retaining/Release System. ► Confirm Payload delivery, desired target accuracy: 100ft. ► Minimum system range: 500 ft. from Base Station. ► Maximum budget: $2000.
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Base-Station User Interface
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On-Board Electronic System Concept
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Final On-Board Circuit Diagram
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On-Board System Final Design
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Payload Release Mechanism Design ► Concept: Sliding Pin ► Final Design
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Payload Mold Construction POSITIVE TEMPLATEFINISHED PAYLOAD MOLD
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Payload Fabrication
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Payload Configuration ► The payload will be made out of a carbon-fiber shell and filled with shock absorbing foam for electronics.
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Parachute Selection ► Preliminary testing of parachutes included: 36” round 30” x-form 27” x-form 24” round paper ► 30” x- form chosen for secondary testing Less drift/oscillation Adequate drop velocity
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Range Testing ► Video Ground testing confirmed range greater than 500ft. ► Data Ground testing confirmed range greater than 1000ft.
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GPS Test/ Simulation ► GPS tested as stand alone component ► Data from the test used to simulate flight course over ground ► GPS test helped establish a baseline for the simulation inputs
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Drop Program ► Trajectory of Payload is estimated ► The position used by the simulation represents the landing position of the payload if released at that time. ► 3 conditions for drop indication: X range Y Range Heading v. Target angle
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Budget
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Conclusion ► The Design satisfies the goals of the project. ► The design’s concepts achieve the goal of advancing MAV technology. ► System Integration is not as easy as it sounds! ► This system is a platform for further development. ► Thanks!
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