THE USE OF INNOVATIVE TECHNOLOGIES FOR THE PREVENTION AND DETECTION OF CRIMES RELATED TO DOCUMENT FORGERY
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| Format: | Recurso digital |
| Sprache: | Englisch |
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2025
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| _version_ | 1866901582498496512 |
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| author | Journal of Theoretical and Applied Information Technology |
| author_facet | Journal of Theoretical and Applied Information Technology |
| contents | <p><span>The relevance of the study is underscored by the proliferation of digital forgery and the need for<span> comprehensive solutions </span>to ensure the authenticity of documents and their legal validity in notarial proceedings. The aim of the study is to substantiate and validate the architecture of preventive forgery detection with increased invariance, compatibility and cryptosecurity. The research employs methods as follows: technological typification, comparative analysis, technical and architectural decomposition, functional enhancement, and simulation prediction. An analysis encompassing 33 services and 7 technology classes revealed that complex SSI solutions exhibit the highest level of completeness. The optimized Microsoft Entra Verified ID demonstrates a reduction of 44.7% in latency, 61.6% in anchoring time, and 57% in cloud usage, alongside a 2.5% enhancement in detection accuracy − thereby substantiating the effectiveness of protocol level forgery resistance. The scientific novelty lies in the development of a SSI architecture that integrates BBS+, ZKP and Edge AI thereby harmonizing crypto resilience, offline validation, and an elevated degree of interoperability. Prospects for future research include the development of a prototype SSI architecture designed for the field testing of efficiency, scalability and resilience under real operational load and variable network conditions, as well as evaluating its suitability for electronic notarial proceedings.</span><span> </span></p> |
| format | Recurso digital |
| id | zenodo_https___doi_org_10_5281_zenodo_18105339 |
| institution | Zenodo |
| language | eng |
| publishDate | 2025 |
| publisher | Zenodo |
| record_format | zenodo |
| spellingShingle | THE USE OF INNOVATIVE TECHNOLOGIES FOR THE PREVENTION AND DETECTION OF CRIMES RELATED TO DOCUMENT FORGERY Journal of Theoretical and Applied Information Technology Cryptographic Signatures; Blockchain Anchoring; Decentralized Identifiers (DID); Zero-Knowledge Proofs; Decentralized Storage <p><span>The relevance of the study is underscored by the proliferation of digital forgery and the need for<span> comprehensive solutions </span>to ensure the authenticity of documents and their legal validity in notarial proceedings. The aim of the study is to substantiate and validate the architecture of preventive forgery detection with increased invariance, compatibility and cryptosecurity. The research employs methods as follows: technological typification, comparative analysis, technical and architectural decomposition, functional enhancement, and simulation prediction. An analysis encompassing 33 services and 7 technology classes revealed that complex SSI solutions exhibit the highest level of completeness. The optimized Microsoft Entra Verified ID demonstrates a reduction of 44.7% in latency, 61.6% in anchoring time, and 57% in cloud usage, alongside a 2.5% enhancement in detection accuracy − thereby substantiating the effectiveness of protocol level forgery resistance. The scientific novelty lies in the development of a SSI architecture that integrates BBS+, ZKP and Edge AI thereby harmonizing crypto resilience, offline validation, and an elevated degree of interoperability. Prospects for future research include the development of a prototype SSI architecture designed for the field testing of efficiency, scalability and resilience under real operational load and variable network conditions, as well as evaluating its suitability for electronic notarial proceedings.</span><span> </span></p> |
| title | THE USE OF INNOVATIVE TECHNOLOGIES FOR THE PREVENTION AND DETECTION OF CRIMES RELATED TO DOCUMENT FORGERY |
| topic | Cryptographic Signatures; Blockchain Anchoring; Decentralized Identifiers (DID); Zero-Knowledge Proofs; Decentralized Storage |
| url | https://doi.org/10.5281/zenodo.18105339 |