Attribute Based Signature Architecture for Transferring Digital Document

Trishna Panse, Prashant Panse · Research Square · 2022

Abstract Authentication and cryptosystems are two examples of methods for ensuring user identification and data confidentiality. Because of its one-way nature, hashing is used to verify the identity and accuracy of data travelling across an open medium. It detects unlawful modifications and changes made to transmissions. Digital signature, which deals with document uniqueness and creator oneness, are a well-known application of hashing. It is updated by adding more information about the users' attributes and is classified as an attribute-based signature (ABS). We investigated various past approaches to the ABS phenomena and discovered certain unsolved challenges, resulting in a solution that decreases the difficulty level, utilization, and operating expense coupled with signature creation and confirmation. For focusing the method of digital signatures using elements and their first order logic, we suggested a unique Attribute Based Signature Architecture for Transferring Digital Document. The system includes flexible primitives that give signing parties complete control over signature generation as well as policy-based access security constraints. It has a message-based first order logic and protects the secrecy of signatures. After examining the technique logically, various benefits were discovered, which will be confirmed soon by the implementation solution over the recommended framework under the specified key.

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