Institutions SSU (Sonoma State University) MSU (Morehead State University) LHR (Little H-Bar Ranch) NA (Noqsi Aerospace) PICO (Playful Invention Company)

Slides:



Advertisements
Similar presentations
1.  Background on AMiBA  Problems/Things to Consider  Solutions/introduce my project  Fabrication  Conclusion  Acknowledgments 2.
Advertisements

Prof. Lynn Cominsky SSU Education/Public Outreach and Department of Physics & Astronomy This work has been supported by NASA Grant NNX12AB97G and California.
GM4CXM and GM3WOJ Personal 10 GHz Beacons
Page 1 Aalborg University Communication system for the AAUSAT-II Communication System for the AAUSAT-II Kresten K. Sørensen Department.
Overview of the SMAP Science Data Manager (SDM) Ed Benowitz SMAP FSW Developer NASA/Jet Propulsion Laboratory Caltech Copyright.
Coordinates. You are used to reading and plotting coordinates in this quadrant This is called the first quadrant.
A Proposed Student Built and Operated Satellite: The Gamma Ray Burst Polarization Observer (PolOSat) ABSTRACT The Polarization Observer (PolOSat) is small.
High Energy Education and Public Outreach Lynn Cominsky and Sarah Silva Sonoma State University.
Students Aaron Roney, Albert Soto, Brian Kuehner, David Taylor, Mark Hibbeler, Nicholas Logan, Stephanie Herd Tele-Operation and Vision System for Moon.
CanSat 2002 Final Presentation AA June, 2002.
A beginner’s guide to amateur radio satellites
Navigational Aids Know the theory and operation of modern air navigational aids.
SENIOR PROJECTS LABORATORY ECE 4773 Team 5B: Side Lobe Canceller Micah Nelson Rafael Mendoza Kari Gammons Michael Lee.
United Nations SPOC Meeting Miami, February 19-23, 2008 Local User Terminals Manuel Valenzuela.
EXAMPLE 1 Graph a rational function (m < n) Graph y =. State the domain and range. 6 x SOLUTION The degree of the numerator, 0, is less than the.
Designing a Circularly Polarized Antenna for EagleSat Dadija Bliudzius Embry-Riddle Aeronautical University NASA Space Grant.
Small Satellites for Secondary Students Kevin John Sonoma State University Education and Public Outreach Group This work has been supported by NASA Grant.
US Naval Academy Prototype Communications Satellite Team: 6 Students, 3 Profs, 1 Engineer (1 HAM) Over 1200 mobile Amateur Satellite Users.
Student Satellite Project Tracking, Telemetry & Command UASat Progress Review Tracking, Telemetry and Command (TTC) January 26, 1999 Dana Irvin, Team Leader.
2.4 GHz CubeSat Communications System Robert Bui Communications Subsystem Lead.
Artificial Vision-Based Tele-Operation for Lunar Exploration Students Aaron Roney, Albert Soto, Brian Kuehner, David Taylor, Bonnie Stern, Nicholas Logan,
Team GReEN members: Project Manager: Garret Smith Facilitator: Eric Austin Customer Liaison: Nikhil Andrews Artifacts Manager: Rebecca Collins Overview.
Digital Wireless Transmission of Live Video Wright State High Altitude Balloon Team F INAL P RESENTATION Greg Taylor, Brandon Bayer, Tom Holmes Faculty.
Rhotheta (406 Becker) RT-600 Basic Training (How to get started for beginners)
Bellarmine University Centre College Eastern Kentucky University Ky Center for Space Enterprise Kentucky State University Morehead State University Murray.
HARRY S. CAMPBELL September 23, Copyright © 2010 Outlook Partners, LLC.
High Altitude Balloon Design Review
Governor’s School for the Sciences Mathematics Day 3.
Objective - To organize data using tables and graphs.
A. A linkup is a meeting of friendly ground forces. Linkups depend on control, detailed planning, and stealth. Linkup procedure begins as the unit moves.
GRAPHING ON A COORDINATE PLANE. VOCABULARY Coordinate system- a system which uses one or more numbers or coordinates, to uniquely determine the position.
Commencement Day Receptions Katherine Crawford & family.
Frequency Comb Velocity-Modulation Spectroscopy of HfF + Kevin Cossel Laura Sinclair, Tyler Coffey, Jun Ye, and Eric Cornell OSU 2011 Acknowledgements:
HARRY S. CAMPBELL. Copyright © 2010 Outlook Partners, LLC MAI Outlook Partners FQ.com.
Precision spectroscopy of trapped HfF + with a coherence time of 1 second Kevin Cossel JILA eEDM collaboration.
Excellence in Performance Based Logistics Presented at: PSM Workshop 6 April 2016 Presented by: Dave Repsch, NAVSUP WSS ARC-210 Supply Planner Aaron Maue,
E2.2 Implementation of a Demodulator Sponsor: Steve Hicks, FlexRadio Systems Faculty Advisor: Dr. Harold Stern & Dr. Semih Aslan.
The Coordinate Plane. We have worked with both horizontal and vertical number line s Horizontal
Prepare Launch Spyder Open Spyder (C:/Anaconda2/Scripts/spyder) Or Open from launcher (C:/Anaconda2/Scripts/launcher) Download data
David Mentor Bobb 1817 Anthony Lead Mentor Mentor Myers 1817 Mark Mentor Traphagan 1817 Travis Lead Mentor Mentor Ray 1817 Juan Mentor Chong 1817 Michael.
3.4 Graphing Linear Equations in Standard Form
Communications Design Review
GLASS MEASURING GUIDE View Series.
The Mind Project - Robotics Initiative
Designing a Circularly Polarized Antenna for EagleSat
Using the GAVRT Radio Telescope: The SETI Project
Rhotheta (406 Becker) RT-600 Basic Training
Presentation Summary How Beacons are Located Using Low Earth Orbit (LEO) Satellites Requires Highly accurate Orbit information and Very Stable Beacon Oscillator.
Michael Fusco AZ / NASA Space Grant Scholar
9 Graphs and Graphing.
Rhotheta (406 Becker) RT-600 Basic Training
SATELLITES.
Objective The student will be able to:
Graphing Linear Equations
Technician Licensing Class
EagleSat-I Integration and Testing of 1U CubeSats
DRILL (4 HOURS) (20 dollars) (River Paddlers)
Amateur Extra Q & A Study Pool
Cartesian Coordinate System
“Day D” March 1, :01 - 9:01 Exploratory 9: :03
AZ/NASA Space Grant Symposium
How do horizontal bar graphs differ from vertical bar graphs?
The COORDINATE PLANE The COORDINATE PLANE is a plane that is divided into four regions (called quadrants) by a horizontal line called the x-axis and a.
Coordinate Shirley Sides
Objective The student will be able to:
Objective The student will be able to:
Graphing on a Coordinate plane
Coordinate Plane y axis x axis.
Packet Radio Equipment required:
Graph Rational Functions
Presentation transcript:

Institutions SSU (Sonoma State University) MSU (Morehead State University) LHR (Little H-Bar Ranch) NA (Noqsi Aerospace) PICO (Playful Invention Company) MSU Student Team Adams, Garret Fitzpatrick, John Glaser-Garbrick, Dan Grindrod, Jennafer Healea, Jordan Lawson, Eric Mabry, Hannah Mays, David SSU Student Team Cunningham, Ben Goldsmith, Corbbin (LHR) Mills, Hunter Loudermilk, Lauryn Pacheco, Aaron (SRJC) T-LogoQube Team Lead Science Mentor Dr. Garrett Jernigan (LHR) Lead Engineering Mentor Prof. Robert Twiggs (MSU) Science Mentor Prof. Lynn Cominsky (SSU) Science Mentor Prof. Benamin Malphrus (MSU) Software Mentor Brian Silverman (PICO) Engineering Mentor Dr. John Doty (NA) Engineering Mentor Jeffrey Kruth (MSU) Engineering Mentor Steve Anderson (SSU) Overall Student Team Leader Kevin Zack (SSU) MSU Student Team Leaders Sean McNeil and Will Roach (MSU) Acknowledgements: Chantal Cappelletti and the UniSat-5 team; Prof. Kevin Brown, Tyler Rose, Lance Simms, Luke Lim, Bob Kroll, Eric Thomas, Mike Combs and the entire CXBN team; 50 Dollar Team: Stuart Robinson, Michael Kirkhart, Howie DeFelice, Charlie Cantrill, Bo Lowery; also Eric Tapio, Barry Silverman, Greg Sprehn, David McCall, Kamal Prasad, John Collins and Laura Chase.

SSU T-LogoQube Team

First four beacon packets from T-LogoQube (horizontal axis = frequency; vertical axis = time) Packets arrive every ~20 seconds. Each packet appears in the waterfall plot as a pair of points at two frequencies ~ MHz. The tilt of the pattern is caused by the doppler shift from higher to low frequencies as T-LogoQube passes over head. The tilted signals on the right side of the waterfall plot are from a different satellite. T-LogoQube Packets Every ~20 seconds

This waterwall plot shows a sequence of beacon packets saved in memory of T-LogoQube over a ~3 hour period that was commanded from the ground to dump in real time as T-LogoQube passed over head. The tilt of the packets is due to the doppler shift. The periodic dimming and of the signal is due to the spin of T-LogoQube. The vertical lines are terrestrial radio sources near the Little H-Bar Ranch in Petaluma (no doppler shift). Stream of many T- LogoQube Packets Every ~4 seconds Ground Command

T-LogoQube being tested in Vacuum Chamber at SSU

T-LogoQube being installed into into the MR-FOD launcher in UniSat-5 in Italy

Sean McNeil in Italy preparing to install T-LogoQube into UniSat-5 He is listening to the 70 cm Ham Receiver for the beacon packets.