Title | ||
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Multiply Constant-Weight Codes and the Reliability of Loop Physically Unclonable Functions |
Abstract | ||
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We introduce the class of multiply constant-weight codes to improve the reliability of certain physically unclonable function response, and extend classical coding methods to construct multiply constant-weight codes from known (q) -ary and constant-weight codes. We derive analogs of Johnson bounds and give constructions showing these bounds to be asymptotically tight up to a constant factor under certain conditions. We also examine the rates of multiply constant-weight codes and demonstrate that these rates are the same as those of constant-weight codes of corresponding parameters. |
Year | DOI | Venue |
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2014 | 10.1109/TIT.2014.2359207 | IEEE Transactions on Information Theory |
Keywords | DocType | Volume |
constant-weight codes,johnson bounds,doubly constant-weight codes,physically unclonable functions,telecommunication network reliability,codes,physically unclonable function response,(q)-ary codes,multiply constant-weight codes,loop physically unclonable function reliability improvement,coding methods,systematics,binary codes,manganese,reliability | Journal | 60 |
Issue | ISSN | Citations |
11 | 0018-9448 | 10 |
PageRank | References | Authors |
0.57 | 16 | 8 |
Name | Order | Citations | PageRank |
---|---|---|---|
Yeow Meng Chee | 1 | 593 | 62.01 |
Zouha Cherif | 2 | 33 | 3.15 |
Jean-Luc Danger | 3 | 794 | 83.57 |
Sylvain Guilley | 4 | 292 | 33.07 |
Han Mao Kiah | 5 | 128 | 29.10 |
Jon-Lark Kim | 6 | 312 | 34.62 |
Patrick Solé | 7 | 636 | 89.68 |
Xiande Zhang | 8 | 52 | 15.19 |