DocumentCode :
3667504
Title :
A high reliability design for space-borne large-scale SRAM-based FPGAs with low requirement of memory space
Author :
Zhonghua Zhou;Kang Wang;Jiapeng Wu;Qunyang Wang;Dongbo Pei
Author_Institution :
Intermediate engineer of Space Star Technology Co.Ltd, Beijing, China
fYear :
2015
fDate :
4/1/2015 12:00:00 AM
Firstpage :
482
Lastpage :
486
Abstract :
As FPGA is increasingly used by satellitic navigation receivers and many other space-based electronic devices, the influence on SRAM-based FPGA which caused by the robust ability of single event upsets (SEU) has become one of the most important topics for exploiting space-based equipments. Traditional online reconfigure system of SRAM-based FPGA needs both of original bit stream file and mask file, and therefore the memory space is doubled. Focus on this problem, this paper proposed a self-hosting configure management system for SRAM-based FPGA, which is based on compression algorithm. A compress and relevant decompress strategy is used to make full use of PROMs´ resources. The double-channel-reload method is used to improve the reliability of the SRAM-based FPGA in space radiation environment. Results of simulation show that, this design can effectively cure the influence from SEU and costs less hardware room.
Keywords :
"Clocks","Navigation","Field programmable gate arrays","PROM","Quantum cascade lasers"
Publisher :
ieee
Conference_Titel :
Information Science and Technology (ICIST), 2015 5th International Conference on
Type :
conf
DOI :
10.1109/ICIST.2015.7289020
Filename :
7289020
Link To Document :
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