33cm band communications for high altitude balloons clayton g. jacobs tucson, arizona april 21 st,...

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33cm Band Communications for High Altitude Balloons Clayton G. Jacobs Tucson, Arizona April 21 st , 2012

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Page 1: 33cm Band Communications for High Altitude Balloons Clayton G. Jacobs Tucson, Arizona April 21 st, 2012

33cm Band Communications for High Altitude Balloons

Clayton G. Jacobs

Tucson, Arizona

April 21st, 2012

Page 2: 33cm Band Communications for High Altitude Balloons Clayton G. Jacobs Tucson, Arizona April 21 st, 2012

Overview

• Research Question

• Objectives

• Experimentation

• Results

• Conclusion

• Further Development

Page 3: 33cm Band Communications for High Altitude Balloons Clayton G. Jacobs Tucson, Arizona April 21 st, 2012

Research Question:

• Is the 33-centimeter Radio Band and useful method of communication for high altitude balloon experiments?

• How can a 900mhz transceiver be integrated into a high altitude balloon payload?

Page 4: 33cm Band Communications for High Altitude Balloons Clayton G. Jacobs Tucson, Arizona April 21 st, 2012

Objectives

• Design an interface for the transceiver and microcontroller.

• Program the microcontroller to operate with the transceiver.

• Build a structure to contain payload.

• Fly payload on a balloon flight to collect data.

Page 5: 33cm Band Communications for High Altitude Balloons Clayton G. Jacobs Tucson, Arizona April 21 st, 2012

Experimentation

• Arduino chosen as the microcontroller.

• Radio interface designed using an arduino add-on shield.

Page 6: 33cm Band Communications for High Altitude Balloons Clayton G. Jacobs Tucson, Arizona April 21 st, 2012

Microcontroller Stack

Page 7: 33cm Band Communications for High Altitude Balloons Clayton G. Jacobs Tucson, Arizona April 21 st, 2012

Experimentation Cont.

• Radio stack was joined with an ASCEND payload and programmed to transmit telemetry and Geiger counter output.

• Matching base station was paired with the radio to receive data.

Page 8: 33cm Band Communications for High Altitude Balloons Clayton G. Jacobs Tucson, Arizona April 21 st, 2012

ASCEND Payload

Page 9: 33cm Band Communications for High Altitude Balloons Clayton G. Jacobs Tucson, Arizona April 21 st, 2012

Experimentation Cont.

• The arduino/transeiver module flew on three separate near space balloon flights courtesy of ANSR, Arizona Near Space Research.

Page 10: 33cm Band Communications for High Altitude Balloons Clayton G. Jacobs Tucson, Arizona April 21 st, 2012

ANSR Flights 65, 66, and 67

Page 11: 33cm Band Communications for High Altitude Balloons Clayton G. Jacobs Tucson, Arizona April 21 st, 2012

Results

• Transmitted data was received clearly with no packet loss below 40,000ft.

• 50% Packet loss from 40,000ft to 70,000ft.

• 80% packet loss above 70,000ft.

• Received packets were complete and unaltered.

Page 12: 33cm Band Communications for High Altitude Balloons Clayton G. Jacobs Tucson, Arizona April 21 st, 2012

Conclusions

• The collected results are favorable.

• 33cm band communications are useful for high altitude balloons due to there generally low packet loss and high data rate.

Page 13: 33cm Band Communications for High Altitude Balloons Clayton G. Jacobs Tucson, Arizona April 21 st, 2012

Further Development

• While the radios performed well, the radio command ability was not tested.

• The available radios were capable of advanced transfer methods that were left untested.

• Future tests will evaluate these abilities.

Page 14: 33cm Band Communications for High Altitude Balloons Clayton G. Jacobs Tucson, Arizona April 21 st, 2012

End

Questions and Comments Welcome