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Published byNickolas Booth Modified over 9 years ago
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Stephen Copeland, Xau Moua, Joseph Lane, Robert Akerson Client: Doug Taylor, John Deere Renewables Advisors: Dr. Manimaran Govindarasu, Dr.Venkataramana Ajjarapu
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Small scout towers capable of wirelessly transmitting measurements to large MET towers. Wireless communication via radio transceivers on scout tower and MET tower. Built-in mesh networking protocol
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Microcontroller Arduino Runs programmed code to send and receive data on mesh network Wireless Shield Xbee Provides easy form of adapter from transceiver to arduino due to header misalignment.
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Transceiver Xbee-PRO digimesh 900 Provides mesh protocol Transmits data to other node Antenna 7" ½ wave dipole, bulkhead mount, RPSMA connector Omni-directional transmission of data
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Wind Vane NRG#200P Provides wind direction Angle from North=(360’/Vin)*Vout Vout ranging from 0 to Vin Anemometer NRG#40C Provides wind speed Generates a sine wave whose frequency determines wind speed
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Used to transform the Sine wave output from the Anemometer into a square wave which provides the arduino with a frequency that represents the measured wind speed.
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Range Evaluations ◦ Elevated testing locations north of Ames Power consumption ◦ Use of LabView and multi meters to measure current and voltage levels Microcontroller ◦ Basic data communication ◦ Message integrity ◦ Throughput
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Self Healing ◦ Selected modules turned off during transmission Security ◦ Channel hopping, Encryption Latency ◦ Receiving rate vs. data size Casing ◦ Shock, vibration, realistic impact, and contact with water, ice, and snow.
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More in-depth testing of sensor/arduino interface Affixing sensors and modules to roof of Coover for data collection Working with EE491 Wind Turbine team to develop real-time wind simulation.
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Any Questions?
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