This paper introduces the preliminary design and operation of an adaptive instrument module (AIM) for space applications, which uses FPGA technology to enable in-flight hardware and software reconfiguration. An experimental AIM will be flown as a payload on the low Earth orbit satellite FedSat. The payload will be used to investigate the practicality of using reconfigurable computing technology for spacecraft applications
A hierarchy of FPGAs, DSPs, and a multiprocessing microprocessor provide a layered high performance ...
Current and future space missions demand sophisticated on-board data processing functionalities, whi...
Space-borne imaging sensors onboard remote sensing satellites capture images of specific interest to...
Satellites and other space-based signal processing systems face a challenging operating environment....
A reconfigurable computer consists of reconfigurable logic circuits added to a conventional processo...
For micro-satellites the required attitude accuracy, agility and autonomy along with desired paralle...
For micro-satellites the required attitude accuracy, agility and autonomy along with desired paralle...
The High Performance Computing (IIPC-I) payload is an innovative computing device designed for deplo...
Programmable logic offers an efficient solution for the performance and flexibility required by real...
This paper explores the use of SRAM-based FPGAs as a system component in future generation spacecraf...
There is a great interest in cost-effective, reliable and state-of-the-art computing performance for...
Future science missions will require the use of multiple spacecraft with multiple sensor nodes auton...
There is a great interest in cost-effective, reliable and state-of-the-art computing performance for...
There is a great interest in cost-effective, reliable and state-of-the-art computing performance for...
There is a great interest in cost-effective, reliable and state-of-the-art computing performance for...
A hierarchy of FPGAs, DSPs, and a multiprocessing microprocessor provide a layered high performance ...
Current and future space missions demand sophisticated on-board data processing functionalities, whi...
Space-borne imaging sensors onboard remote sensing satellites capture images of specific interest to...
Satellites and other space-based signal processing systems face a challenging operating environment....
A reconfigurable computer consists of reconfigurable logic circuits added to a conventional processo...
For micro-satellites the required attitude accuracy, agility and autonomy along with desired paralle...
For micro-satellites the required attitude accuracy, agility and autonomy along with desired paralle...
The High Performance Computing (IIPC-I) payload is an innovative computing device designed for deplo...
Programmable logic offers an efficient solution for the performance and flexibility required by real...
This paper explores the use of SRAM-based FPGAs as a system component in future generation spacecraf...
There is a great interest in cost-effective, reliable and state-of-the-art computing performance for...
Future science missions will require the use of multiple spacecraft with multiple sensor nodes auton...
There is a great interest in cost-effective, reliable and state-of-the-art computing performance for...
There is a great interest in cost-effective, reliable and state-of-the-art computing performance for...
There is a great interest in cost-effective, reliable and state-of-the-art computing performance for...
A hierarchy of FPGAs, DSPs, and a multiprocessing microprocessor provide a layered high performance ...
Current and future space missions demand sophisticated on-board data processing functionalities, whi...
Space-borne imaging sensors onboard remote sensing satellites capture images of specific interest to...