2021
DOI: 10.1002/cta.3030
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Tunnel FET‐based ultra‐lightweight reconfigurable TRNG and PUF design for resource‐constrained internet of things

Abstract: Conventional complementary metal oxide semiconductor (CMOS)-based dedicated true random number generator (TRNG) and physically unclonable function (PUF) designs have exhibited higher energy consumption and large area overhead with technology scaling. In contrast, this paper for the first time presents emerging tunnel field-effect transistor (TFET)-based ultra-lightweight reconfigurable TRNG and PUF design. A unique methodology is proposed that considers p-i-n forward current characteristics to generate random … Show more

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Cited by 4 publications
(1 citation statement)
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“…As long as a single-relay node performs cooperative transmission for short-distance communication scenarios, the communication quality requirements can be met. Thus, it reduces the use of relay nodes as much as possible and prolongs the service life of the nodes [ 16 , 17 ]. At the same time, the use of single-relay cooperative communication has low computational complexity and can save signaling overhead.…”
Section: Related Technical Overviewsmentioning
confidence: 99%
“…As long as a single-relay node performs cooperative transmission for short-distance communication scenarios, the communication quality requirements can be met. Thus, it reduces the use of relay nodes as much as possible and prolongs the service life of the nodes [ 16 , 17 ]. At the same time, the use of single-relay cooperative communication has low computational complexity and can save signaling overhead.…”
Section: Related Technical Overviewsmentioning
confidence: 99%