Building a model of the integrity of information resources within an enterprise management system

Authors

DOI:

https://doi.org/10.15587/1729-4061.2021.234729

Keywords:

information system, document, information resource, integrity of the resource, predicate, service registry

Abstract

In addressing the integrity of documents in modern information systems, the focus is on protecting them from unauthorized user changes. At the same time, the solution to the problem of ensuring the preservation of the composition, content, and interaction of documents has almost not been considered. However, such a task often has to be solved during the operation of information systems, as well as enterprise management systems handling unstable business processes.

To address this issue, an approach has been proposed to unify solutions to the task related to the integrity of paper-based documents circulating within an enterprise management system, as well as electronic documents and stored information system data. The existing service registry models have been analyzed, aimed to formally describe the resources of the information system and an enterprise management system based on this information system. Models of elements of the unified information resource registry have been modified, and a model for ensuring the integrity of an enterprise's information resources has been developed. The proposed improvements make it possible to use current and multi-tested methods to address the integrity of information resources.

Experimental testing of improved models of a unified information resource registry has been carried out. The task of ensuring integrity was considered for a regulatory document that should change its name and its composition as a result of external and internal factors. It has been shown that the application of the proposed results makes it possible to solve the task of ensuring the integrity of information resources such as paper-based regulations of an enterprise management system, within the framework of a unified registry of information resources by existing database management systems

Author Biographies

Gulmira Ospanova, Manash Kozybayev North Kazakhstan University

Department of Information and Communication Technologies

Evgeniya Kukharenko, Manash Kozybayev North Kazakhstan University

PhD

Department of Information and Communication Technologies

Maksym Ievlanov, Kharkiv National University of Radio Electronics

Doctor of Technical Sciences, Associate Professor

Department of Information Control System

Iryna Panforova, Kharkiv National University of Radio Electronics

PhD, Associate Professor

Department of Information Control Systems

References

  1. Р 50.1.056-2005. Technical information protection. Terms and definitions (2006). Мoscow: Standartinform.
  2. Radchenko, M. G., Hrustaleva, E. Yu. (2011). Arhitektura i rabota s dannymi «1S:Predpriyatiya 8.2». Moscow: OOO «1S Pablishing», 268.
  3. Deyt, K. Dzh. (2006). Vvedenie v sistemy baz dannyh. Moscow: Izdatel'skiy dom «Vil'yams», 1328.
  4. Oh, S., Cho, S., Han, S., Gim, G. (2021). Pre-verification of Data in Electronic Trade Blockchain Platform. Data Science and Digital Transformation in the Fourth Industrial Revolution, 53–65. doi: https://doi.org/10.1007/978-3-030-64769-8_5
  5. Haque, M. M., Nasim, M., Akbar, M., Rifat, M., Sadat, A., Shakil, M. (2020). An Innovative Approach of Verification Mechanism for both Electronic and Printed Documents. International Journal of Advanced Computer Science and Applications, 11 (8). doi: https://doi.org/10.14569/ijacsa.2020.0110876
  6. Rohde, T., Chupalov, R., Shulman, N., Sharma, V., Eckels, J., Pratt, B. S. et. al. (2020). Audit logs to enforce document integrity in Skyline and Panorama. Bioinformatics, 36 (15), 4366–4368. doi: https://doi.org/10.1093/bioinformatics/btaa547
  7. Brunner, C., Knirsch, F., Engel, D. (2019). SPROOF: A Platform for Issuing and Verifying Documents in a Public Blockchain. Proceedings of the 5th International Conference on Information Systems Security and Privacy. doi: https://doi.org/10.5220/0007245600150025
  8. Páez, R., Pérez, M., Ramírez, G., Montes, J., Bouvarel, L. (2020). An Architecture for Biometric Electronic Identification Document System Based on Blockchain. Future Internet, 12 (1), 10. doi: https://doi.org/10.3390/fi12010010
  9. Fernando, A. B., Shreevasta, Desprianto, F., Gaol, F. L., Oktavia, T. (2020). The Design of Smart Cashless Transaction. Proceedings of the 2020 5th International Conference on Intelligent Information Technology. doi: https://doi.org/10.1145/3385209.3385227
  10. Yang, X., Li, T., Xi, W., Chen, A., Wang, C. (2020). A Blockchain-Assisted Verifiable Outsourced Attribute-Based Signcryption Scheme for EHRs Sharing in the Cloud. IEEE Access, 8, 170713–170731. doi: https://doi.org/10.1109/access.2020.3025060
  11. Nirjhor, M. K. I., Yousuf, M. A., Mhaboob, M. S. (2021). Electronic Medical Record Data Sharing Through Authentication and Integrity Management. 2021 2nd International Conference on Robotics, Electrical and Signal Processing Techniques (ICREST). doi: https://doi.org/10.1109/icrest51555.2021.9331010
  12. UDDI Version 3.0.2. OASIS. Available at: http://www.uddi.org/pubs/uddi-v3.0.2-20041019.htm
  13. Nykytiuk, V. (2014). WEB-Service Registry Model Improvements. Transactions оf Kremenchuk Mykhailo Ostrohradskyi National University, 5 (88), 98–104.
  14. Vasil'tsova, N. V., Evlanov, M. V., Nikityuk, V. A. (2011). Formalizovannoe opisanie usloviy integratsii IT-servisov v informatsionnuyu sistemu upravleniya predpriyatiem. Visnyk Akademiyi mytnoi sluzhby Ukrainy. Seriya «Tekhnichni nauky», 2 (46), 87–96.

Downloads

Published

2021-06-30

How to Cite

Ospanova, G., Kukharenko, E., Ievlanov, M., & Panforova, I. (2021). Building a model of the integrity of information resources within an enterprise management system . Eastern-European Journal of Enterprise Technologies, 3(2 (111), 15–23. https://doi.org/10.15587/1729-4061.2021.234729