An overview of ongoing research in Dr. Ho's Space Systems Optimization Group. This was presented by Dr. Ho in a biweekly SSDL meeting. This PowerPoint was last updated for a Fall 2021 biweekly lab meeting.
You can download the presentation here.
An overview of ongoing research in Dr. Ho's Space Systems Optimization Group. This was presented by Dr. Ho in a biweekly SSDL meeting. This PowerPoint was last updated for a Fall 2021 biweekly lab meeting.
You can download the presentation here.
An overview of ongoing research in Dr. Ho's Space Systems Optimization Group. This was presented by Dr. Ho in a biweekly SSDL meeting. This PowerPoint was last updated for a Fall 2021 biweekly lab meeting.
You can download the presentation here.
A description of ongoing research into a time-expanded logistics network model for on orbit servicing, assembly, and manufacturing. This was presented by Tristan Sarton du Jonchay. This PowerPoint was last updated for a Fall 2021 biweekly lab meeting.
You can download the presentation here
A description of ongoing research into a time-expanded logistics network model for on orbit servicing, assembly, and manufacturing. This was presented by Tristan Sarton du Jonchay. This PowerPoint was last updated for a Fall 2021 biweekly lab meeting.
You can download the presentation here
Master's Proposal by Kohei Kotani on :"High-Speed, Low-Profile Design Fiber Optic Communication System for CubeSat" advised by Prof. Brian Gunter
Abstract:
First used in a space mission in 1992, fiber optic communications have been utilized on board to achieve high-speed interconnections. Although fiber optic interconnections include other advantages such as lightweight and low-profile design, which are desirable characteristics for CubeSat design with strict constraints on mass and volume, fiber optic interconnections are not commonly used in CubeSat platforms today. Furthermore, small satellites including CubeSat are adopting higher carrier frequencies for RF communications to achieve higher data rates in recent years because of the increased amount of sensor data such as high-resolution cameras. Future CubeSat design needs higher data-rate interconnections at a rate of multi-Gbps to accommodate the increasing demand for the high volume of data. Now that several commercial off-the-shelf fiber optic modules are available, the feasibility of fiber optic interconnections in CubeSat platforms should be tested. Hence, this research will demonstrate such an interconnection for CubeSat platforms with the BF4M fiber optic module.
Committee:
Event link:
https://ae.gatech.edu/event/masters-proposal-kohei-kotani-0?fbclid=IwAR2M__zSoNgVHtdVjV1gFdBiqVpkVShjc22LFUuidVdFQkcTrWriCwn7aGM
Conference on:
Las Vegas: 15 - 17 Nov
Online: 8-10 + 15-17 Nov
D.C.: 15 Nov
Shimane, Y.; and Ho, K.; “Interplanetary Low-Thrust Trajectory Design to Libration Point Orbits via Sims-Flanagan Transcription,” 2021 AAS/AIAA Astrodynamics Specialist Conference, Big Sky, MT, August 2021.
Lee, H.; and Ho, K.; “A Lagrangian Relaxtion-Based Heuristic Approach to Regional Constellation Reconfiguration Problem,” 2021 AAS/AIAA Astrodynamics Specialist Conference, Big Sky, MT, August 2021.
Kolhof, M.; Rawson, W.; Yanakieva, R.; Loomis, A.; Lightsey, E.G.; and Peet, S.; “Lessons Learned from the GT-1 1U CubeSat Mission,” 35th AIAA Small Satellite Conference, Logan, UT, August 2021.
Skidmore, L.; Lightsey, E.G.; “Design of a Cold Gas Propulsion System for the SunRISE Mission,” August 2021.
Dutta, A.; Lightsey, E.G.; “VISORS Mission Design and Spacecraft Layout,” August 2021.