The CubeSat platform provides a unique challenge for flight software design due to the incredible size and power constraints. A number of tradeoffs must be made to balance effectiveness, fault tolerance, and cost. These basic requirements have been combined with the lessons learned from Cal Poly’s past 8-bit avionics system to design a significant revision based around a 32-bit microprocessor running Linux. This work analyzes both generations of avionics design, including a discussion of major design principles that are relevant to other CubeSat missions
In this contribution, we present a CubeSat-compatible on-board computer (OBC) architecture that offe...
The California Polytechnic State University’s Aerospace Engineering Department is developing a CubeS...
Since their creation, CubeSats have become a valuable educational tool for university science and en...
The CubeSat platform provides a unique challenge for flight software design due to the incredible si...
The CubeSat pico-satellite is gaining popularity in both the educational and aerospace industries. ...
Picosatellites demand highly efficient designs. Restricted in mass, volume, and surface area, the de...
Thesis: S.M., Massachusetts Institute of Technology, Department of Aeronautics and Astronautics, 201...
CubeSats are small satellites used for scientific experiments because they cost less than full sized...
SIL has leveraged our experience and previously qualified Intelli-Avionics® aerospace hardware to fi...
There are multiple common reasons for CubeSats’ failure. These include power, mechanical, and commun...
This paper focuses on experimented space projects run by universities, offering an effective design ...
Alpha is a 1U CubeSat developed at Cornell University that deploys a ChipSat-equipped free-flying li...
In the last twenty years, CubeSat Systems have gained popularity in educational institutions and com...
This paper describes the design of a CubeSat with a 1U (10x10x10 cm) size, which will be used in lab...
The hardware and software pitfalls associated with satellite development have led to a nearly 60% fa...
In this contribution, we present a CubeSat-compatible on-board computer (OBC) architecture that offe...
The California Polytechnic State University’s Aerospace Engineering Department is developing a CubeS...
Since their creation, CubeSats have become a valuable educational tool for university science and en...
The CubeSat platform provides a unique challenge for flight software design due to the incredible si...
The CubeSat pico-satellite is gaining popularity in both the educational and aerospace industries. ...
Picosatellites demand highly efficient designs. Restricted in mass, volume, and surface area, the de...
Thesis: S.M., Massachusetts Institute of Technology, Department of Aeronautics and Astronautics, 201...
CubeSats are small satellites used for scientific experiments because they cost less than full sized...
SIL has leveraged our experience and previously qualified Intelli-Avionics® aerospace hardware to fi...
There are multiple common reasons for CubeSats’ failure. These include power, mechanical, and commun...
This paper focuses on experimented space projects run by universities, offering an effective design ...
Alpha is a 1U CubeSat developed at Cornell University that deploys a ChipSat-equipped free-flying li...
In the last twenty years, CubeSat Systems have gained popularity in educational institutions and com...
This paper describes the design of a CubeSat with a 1U (10x10x10 cm) size, which will be used in lab...
The hardware and software pitfalls associated with satellite development have led to a nearly 60% fa...
In this contribution, we present a CubeSat-compatible on-board computer (OBC) architecture that offe...
The California Polytechnic State University’s Aerospace Engineering Department is developing a CubeS...
Since their creation, CubeSats have become a valuable educational tool for university science and en...