IEEE Transactions on Information Theory · 2014 · 26 citations · 19 references
Johnson BoundsEngineeringComputational ComplexityFormal VerificationHardware SecurityReliability EngineeringApproximation TheoryVariable-length CodeAlgebraic Coding TheoryInformation TheoryHardware ReliabilityComputer EngineeringComputer ScienceMultiply Constant-weight CodesError Correction CodeCryptographyFormal MethodsConstant-weight CodesFault AttackPhysical Unclonable Function
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.
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