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Presents: THE XR-82 PROJECT
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Team Members James Flora Power Point Christopher Ho Report Editor Jonathan Hammer Parts Manager Kyle Tam Web Design Edel Marcelino Project Manager
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Problem Definition Military Research Disaster zones
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Proposed Product A multi-purpose robotic vehicle with the following attributes: Aerial Inexpensive Expandable Quadrotor design
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Our task Take off Autonomously Fly to the end of the hallway Retrieve data input Return to take off location and land Output data Teams will be judged by time, collisions, and data capture
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Simplicity of design Few moving parts Good payload capacity Why a Quadrotor?
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Flight Control
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Functionality
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Power Supply +3.3V +5V
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Low Voltage Indicator + Battery
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Infrared Sensors
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Accelerometer
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Gyroscope
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Signal Amplifier
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Embedded System
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Pulse Width Modulation
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ESC and Motors
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Error Measurement Accelerometer Tilt
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Error Measurement Gyroscope Axial Rotation
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Complementary Filter
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PID Controller
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Proportional Control
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Proportional + Integral
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PID Controller
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Single Axis PID
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Start Up Sequence
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Manual Override
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Infrared Data
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IR Beacon Detection
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Progress
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Mechanical Design Low center of gravity Rotor Protection Lightweight
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Cost DescriptionPrice/ItemQtyPrice(design)Price(prod.) Microcontroller$0.001 $5.23 Accelerometer (3-axis)$0.001 $1.88 Gyroscope (2-axis)$0.001 $35.00 IR Sensor (100cm-550cm)$19.504$78.00 IR Sensor (20-150cm)$11.501 $7.91 3-Cell Li 11.1V 2100mAh$42.001 Propellers (counter rotating pair)$4.002$8.00 Brushless Motor$13.994$55.96 Speed Control$18.604$74.40 Carbon Fiber Tubing 40in$15.004$60.00$48.00 PCB Material$0.001 $10.50 Misc (hardware, wire, etc.)$10.001 $5.00 Total$339.86$366.88
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Single Axis Testing
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Tethered Testing
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Custom Quadrotor design Complementary filter to combine signals Implemented PID stabilization algorithm Infrared data collection Results
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Competition: Thursday, December 11, 2008 Design Day: Friday, December 12, 2008 Visit us at aerobotics.sdsu.edu
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