Commercial-off-the-shelf devices are often advocated as the only solution to the increasing performance requirements in space applications. This paper presents the solutions developed in the frame of the European Space Agencys HiRel program, concluded in December 2014, where a number of techniques proposed in the past 10 years have been used to design a highly reliable system, which has been selected for forthcoming space missions. This paper presents the system architecture, describes performed evaluations, and discusses the results
Computational demands on spacecraft have continuously increased for years whereby available space q...
Space applications have special requirements due to the particular environment into which they are d...
Future onboard computing applications require significantly greater computing performance than is cu...
Commercial-off-the-shelf devices are often advocated as the only solution to the increasing performa...
Satellites and other space systems typically employ rare and expensive radiation tolerant, radiation...
This paper presents an overview of some of the methodologies defined during the project “Development...
The increasing complexity of future satellite missions requires adequately powerful on- board comput...
Testbed on the ARGOS Satellite provides the first direct, on orbit comparison of a modern radiation ...
Future-generation space missions across the solar sys-tem to the planets, moons, asteroids, and come...
By judiciously using COTS technology a new space computer product that has lower cost, higher perfor...
The computational demands of current space missions outrun the capability of available state-of-the-...
The MaMMoTH-Up project aims at designing and manufacturing a COTS-based system to be used on the Ari...
Space is one of the harshest environments that electronics need to operate in and is also one of the...
In this position article, we motivate the necessity to introduce three software methods in spacecraf...
RISC-V is an open and modular Instruction Set Architecture(ISA) which is rapidly growing in populari...
Computational demands on spacecraft have continuously increased for years whereby available space q...
Space applications have special requirements due to the particular environment into which they are d...
Future onboard computing applications require significantly greater computing performance than is cu...
Commercial-off-the-shelf devices are often advocated as the only solution to the increasing performa...
Satellites and other space systems typically employ rare and expensive radiation tolerant, radiation...
This paper presents an overview of some of the methodologies defined during the project “Development...
The increasing complexity of future satellite missions requires adequately powerful on- board comput...
Testbed on the ARGOS Satellite provides the first direct, on orbit comparison of a modern radiation ...
Future-generation space missions across the solar sys-tem to the planets, moons, asteroids, and come...
By judiciously using COTS technology a new space computer product that has lower cost, higher perfor...
The computational demands of current space missions outrun the capability of available state-of-the-...
The MaMMoTH-Up project aims at designing and manufacturing a COTS-based system to be used on the Ari...
Space is one of the harshest environments that electronics need to operate in and is also one of the...
In this position article, we motivate the necessity to introduce three software methods in spacecraf...
RISC-V is an open and modular Instruction Set Architecture(ISA) which is rapidly growing in populari...
Computational demands on spacecraft have continuously increased for years whereby available space q...
Space applications have special requirements due to the particular environment into which they are d...
Future onboard computing applications require significantly greater computing performance than is cu...