2018
DOI: 10.1007/s11277-018-5647-z
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Novel Reversible Design of Advanced Encryption Standard Cryptographic Algorithm for Wireless Sensor Networks

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Cited by 18 publications
(8 citation statements)
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“…Almazrooie et al [1] improve on Grassl et al's Toffoli count, using When aiming at a reduction of T -gates and T -depth, work on classical reversible circuits offers helpful results, and it seems these have not been fully leveraged yet. For instance, in 2018, Saravanan and Kalpana [16] suggest an implementation of SubByte involving only 35 Toffoli, 152 cnot, and 4 not gates. This design (which again exploits the algebraic structure of the S-box) produces dozens of "garbage outputs," and for our purposes the cost to "clean up" wires is to be taken into account.…”
Section: B Prior Work To Implement Subbyte As Quantum Circuitmentioning
confidence: 99%
See 1 more Smart Citation
“…Almazrooie et al [1] improve on Grassl et al's Toffoli count, using When aiming at a reduction of T -gates and T -depth, work on classical reversible circuits offers helpful results, and it seems these have not been fully leveraged yet. For instance, in 2018, Saravanan and Kalpana [16] suggest an implementation of SubByte involving only 35 Toffoli, 152 cnot, and 4 not gates. This design (which again exploits the algebraic structure of the S-box) produces dozens of "garbage outputs," and for our purposes the cost to "clean up" wires is to be taken into account.…”
Section: B Prior Work To Implement Subbyte As Quantum Circuitmentioning
confidence: 99%
“…This design (which again exploits the algebraic structure of the S-box) produces dozens of "garbage outputs," and for our purposes the cost to "clean up" wires is to be taken into account. Still, combining Bennett's method [5] with [16] leads to a quantum circuit with a Toffoli count of only 2 • 35 = 70, less than one-sixth of the Toffoli counts in [1] and [9].…”
Section: B Prior Work To Implement Subbyte As Quantum Circuitmentioning
confidence: 99%
“…Reversible sequential circuits and memories have also been proposed [18][19][20][21]. Few applications have been investigated from the domains of image processing [22,23], cyptography [24][25][26] and FEC [27]. Synthesis methodologies for reversible circuits have been proposed in [28][29][30].…”
Section: Literature Reviewmentioning
confidence: 99%
“…The design of intelligent agent in WSNs can be divided into four parts: general framework, route planning, middleware design and agent cooperation [21]. The access order of source nodes in MA mobile process is determined by the route planning in these components.…”
Section: Multiple Intelligent Agent Route Planning (Mip)mentioning
confidence: 99%