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AI编程能力边界探索:基于 Claude Code 的 Spec Coding 项目实战|得物技术

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Error Correction for Physical Unclonable Functions Using Generalized Concatenated Codes

Physical Unclonable Functions can be used for secure key generation in cryptographic applications. It is explained how methods from coding theory must be applied in order to ensure reliable key regeneration. Based on previous work, we show ways how to obtain better results with respect to error probability and codeword length. Also, an example based on Generalized Concatenated codes is given, which improves upon used coding schemes for PUFs.
arxiv.org

Construction of optimal codes in deletion and insertion metric

We improve Levenshtein's upper bound for the cardinality of a code of length four that is capable of correcting single deletions over an alphabet of even size. We also illustrate that the new upper bound is sharp. Furthermore we construct an optimal perfect code that is capable of correcting single deletions for the same parameters.
arxiv.org