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- W971526402 abstract "FPGA has found an increasingly wide utilization in automatic train control (ATC) equipment used in high- speed rail systems, which is potentially sensitive to radiation. How the space radiation caused by Geomagnetic storm af- fects FPGA devices was analyzed. This paper investigated the FPGA fault-tolerance techniques used nowadays and pre- sented a new mitigation technique against upsets, duplication with comparison combined with time redundancy. A com- parison between the main characteristics of several implemented versions of the case circuit was reported. The results show that the minimum partitioning dual modular redundancy design, with the upset detector and voter circuit no radia- tion-hardened, has 12.3% sensitive areas. If the upset detector and voter circuit is tripled, the radiation sensitive areas will be 0%. This methodology may not only reduce area and pin counts and consequently power dissipation in the I/O pads, the main drawbacks of the triple modular redundancy (TMR) approach, but also look interesting to mitigate the radiation effect produced by geomagnetic storm." @default.
- W971526402 created "2016-06-24" @default.
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- W971526402 date "2015-05-29" @default.
- W971526402 modified "2023-09-27" @default.
- W971526402 title "Fault-Tolerant Techniques for ATC Systems Used in High-Speed Railway to Prevent Geomagnetic Storm’s Effects" @default.
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- W971526402 doi "https://doi.org/10.2174/1874444301507010459" @default.
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