CONCEPT FUNCTIONAL TRANSFORMATIONS FOR FORMATION OF SYNTACTIC DESCRIPTION DIAGONALS TRANSFORMANT

2023;
: 23-31
1
V. N. Karazin Kharkiv National University
2
V. N. Karazin Kharkiv National University
3
Kharkiv National University of Radio Electronics
4
Kharkiv National University of Radio Electronics
5
Taras Shevchenko National University of Kyiv
6
Kharkiv National University of Radio Electronics

The article justifies the existence an imbalance in the provision of video information services using infocommunication networks. It is shown that such an imbalance is due to the destructive actions of the opposing side. Many these attacks relate to the disabling of energy and telecommunications infrastructure. This leads to a significant drop in the bandwidth of the infocommunication network. Accordingly, it is necessary to localize the imbalance between the information load infocommunication network and its bandwidth in the face of crisis factors. To do this, you must use an integrated approach. The article discusses in detail the direction creating technologies for additional reduction of bit load without losing the semantic integrity of video information resources. However, for such technologies in the process of reducing the information load of the network, there is a contradiction. On the one hand, a reduction in the information load of the network is achieved. But on the other hand, there are losses in the integrity video information. So you need to create a new class of encoding methods. Accordingly, to build compression coding technologies, it is necessary to develop an approach concept. A theoretical basis has been created for constructing the technology of encoding transformants in an uneven diagonal format, taking into account its combinatorial configuration. It is based on a system of transformations that is outlined as a two-layer compressive encoding transformer in an uneven-diagonal spectral space.

  1. Barannik V., Jancarczyk D.,Babenko Yu., Stepanko O., Nikodem J., Zawislak S. A Model for Representing Significant Segments of a Video Image Based on Locally Positional Coding on a Structural Basis. Smart and Wireless Systems within the Conferences on Intelligent Data Acquisition and Advanced Computing Systems (IEEE IDAACS-SWS 2020): proceedings of IEEE 5nd International Symposium, 2020, рр. 1–5. DOI: 10.1109/IDAACS-SWS50031.2020.9297068. 
  2. Barannik V.. Fast Coding of Irregular Binary Binomial Numbers with a Set Number of Units Series. Advanced Trends in Information Theory (IEEE ATIT 2020): proceedings of the IEEE 2nd International Conference, 2020, рр. 72–76. DOI: 10.1109/ATIT50783.2020.9349356.
  3. Barannik D. Stegano-Compression Coding in a Non-Equalible Positional Base. Advanced Trends in Information Theory (IEEE ATIT 2020): proceedings of the IEEE 2nd International Conference, 2020, рр. 83–86. DOI: 10.1109/ATIT50783.2020.9349328.
  4. Barannik, V. V., Barannik, D., Tarasenko, D., Podlesny, S., Kulitsa, O. The video stream encoding method in infocommunication systems. IEEE 14th International Conference on Advanced Trends in Radioelecrtronics, Telecommunications and Computer Engineering (IEEE TCSET 2018), 2018, pp. 538541. DOI: 10.1109/TCSET.2018.8336259.
  5. Albert Lekakh, Tatyana Belikova, Oleksii Dovbenko, Oleksandr Dodukh. Method of Increasing the Capacity of Information Threat Detection Filters in Modern Information and Communication Systems. Advanced Information and Communications Technologies (AICT 2019): proceedings of the ІЕЕЕ 3rd International Conference, 2019, рр. 426–429. DОІ: 10.1109/AIACT.2019.8847754.
  6. Kobayashi, H. and Kiya, H.: Bitstream-Based JPEG Image Encryption with File-Size Preserving. In.: IEEE 7th Global Conference on Consumer Electronics (GCCE), pp. 1–4 (2018). DOI: 10.1109/gcce.2018.8574605.
  7. Shamir A., Rivest R. L., Adleman L. M.  A method for obtaining digital signatures and public-key cryptosystems. Communications of the ACM. 1978, Vol. 21, iss. 2, рр. 120–126. DOI: 10.1145/359340.359342.
  8. V. Barannik, V. Tverdokhleb, N. Kharchenko, O. Kulitsa, “The issue of timely delivery of video traffic with controlled loss of quality”, in  13th International Conference on Modern Problems of Radio Engineering, Telecommunications and Computer Science (TCSET), 2016, pp. 902904. DOI: 10.1109/TCSET.2016.7452220.
  9. Belikova T. Decoding Method of Information-Psychological Destructions in the Phonetic Space of Information Resources. Advanced Trends in Information Theory (ATIT): proceedings of the 2nd IEEE International Conference, 2020, рр. 87–91. URL: https://ieeexplore.ieee.org/document/9349300.
  10. Kiya H., Kurihara K., Watanabe O. An encryption-then-compression system for JPEG XR standard.  Broadband Multimedia Systems and Broadcasting (BMSB): proceedings of the IEEE International Symposium, 2016, рр. 1–5. DOI: 10.1109/BMSB.2016.7521997.
  11. X., Au O. C. , Zhou J., Liu Tang Y. Y. Designing an Efficient Image Encryption-Then-Compression System via Prediction Error Clustering and Random Permutation.   IEEE Transactions on Information Forensics and Security. 2014, Vol. 9, No. 1, рр. 39–50. DOI: 10.1109/TIFS.2013.2291625.
  12. Barannik V.,  Gurzhii P., Belikova T., The model of threats to information and psychological security, taking into account the hidden information destructive impact on the subconscious of adolescents.  Advanced Trends in Information Theory (ATIT`2019): proceedings of the IEEE International Conference, 2019, рр. 656–661. DOI: 10.1109/ATIT49449.2019.9030432.
  13. Barannik, V., Barannik, N., Sidchenko, S., Khimenko, A. The method of masking overhead compaction in video compression systems, Radioelectronic and Computer Systems, 2021, No. 2, pp. 51–63. DOI: https://doi.org/10.32620/reks.2021.2.05.
  14. A. Skodras, C. Christopoulos, and T. Ebrahimi, “The jpeg 2000 still image compression standard”, in IEEE Signal processing magazine, 2001, Vol. 18 (5), pp. 36–58.
  15. Minemura, K. and Moayed, Z. and Wong, K. and Qi, X. and Tanaka, K.: JPEG image scrambling without expansion in bitstream size. In.: 19th IEEE International Conference on Image Processing, pp. 261264 (2012) DOI: 10.1109/ICIP.2012.6466845.
  16. JPEG image scrambling without expansion in bitstream size [Text] / K. Minemura, Z. Moayed, K. Wong, X. Qi, K. Tanaka // 19 th IEEE International Conference on Image Processing. 2012, рр. 261–264. DOI: 10.1109/ICIP.2012.6466845.
  17. JPEG image scrambling without expansion in bitstream size [Text] / K. Minemura, Z. Moayed, K. Wong, X. Qi, K. Tanaka. Image Processing: proc. 19 th IEEE Int. Conf., 30 Sept. – 3 Oct. 2012. Orlando, FL, USA, 2012, рр. 261–264. DOI: 10.1109/ICIP.2012.6466845.
  18. Бараннік В. В., Шульгін С. С., Бараннік Н. В., Бабенко Ю. М., Пугачев Р. В. Проблематичні аспекти забезпечення дистанційного відеосервісу в кризовій ситуації. Кібербезпека. освіта, наука, техніка, 2020, № 1(1), С. 13–22.
  19. Deshmukh, M.,  Nain N., Ahmed M.  An (n, n)-Multi Secret Image Sharing Scheme Using Boolean XOR and Modular Arithmetic [Text]. Advanced Information Networking and Applications: proc. IEEE 30 th Int. Conf. (AINA), 2325 March 2016. Crans-Montana, Switzerland, 2016, рр. 690–697. DOI: 10.1109/aina.2016.56.
  20. Rivest, R. L., Shamir A., Adleman L. M. A method for obtaining digital signatures and public-key cryptosystems [Text]. Communications of the ACM, 1978, Vol. 21, Iss. 2, рр. 120–126. DOI: 10.1145/359340.359342.
  21. Barannik V., Barannik D. Barannik N.,  Indirect Steganographic Embedding Method Based On Modifications of The Basis of the Polyadic System. Modern Problems of Radio Engineering, Telecommunications and Computer Science (TCSET’2020): proceedings of 15 th IEEE International Conference, 2020, рр. 699–702. DOI: 10.1109/TCSET49122.2020.235522.
  22. Barannik V., Havrylov D., Barannik V., Sorokun A. Development Second and Third Phase of the Selective Frame Processing Method. Advanced Information and Communications Technologies (AICT`2019): proceedings of the 3rd International Conference, 2019, рр. 54–57. DOI: 10.1109/AIACT.2019.8847897.
  23. Wong K. W. Image encryption using chaotic maps. Intelligent Computing Based on Chaos, 2009, Vol. 184, рр. 333–354. DOI: 10.1007/978-3-540-95972-4_16.
  24. Barannik V., Slobodyanyuk O., Gurzhii P., Shulgin S., Krasnorutsky A.,  Korolyova N. Methodological Fundamentals of Deciphering Coding of Aerophotography Segments on Special Equipment of Unmanned Complex. IEEE Advanced Trends in Information Theory (IEEE ATIT 2020): proceedings IEEE 2nd International Conference, 2020, рр. 38–43. DOI: 10.1109/ATIT50783.2020.9349257.
  25. Wong K., Qi X., Minemura K., Moayed Z., Tanaka K. JPEG image scrambling without expansion in bitstream size. Image Processing: proceedings of the 19 th IEEE International Conference, 2012, pp. 261–264. DOI: 10.1109/ICIP.2012.6466845.
  26. V. Barannik, S. Shulgin, V. Himenko, V. Kolesnyk, P. Hurzhii and S. Podlesny, Method of Encoding Video Frames in Infocommunication Systems. IEEE 16th International Conference on Advanced Trends in Radioelectronics, Telecommunications and Computer Engineering (TCSET 2022), 2022, pp. 521–524. DOI: 10.1109/TCSET55632.2022.9767028.
  27. Bаrаnnіk V. V., Kаrреnkо S. Mеthоd оf thе 3-D іmаgе рrоcеssіng. Mоdеrn Рrоblеms оf Rаdіо Еngіnееrіng, Tеlеcоmmunіcаtіоns аnd Cоmрutеr Scіеncе (ІЕЕЕ TCSЕT 2008): proceedings of  ІЕЕЕ Іntеrnаtіоnаl Cоnfеrеncе,  2008, рр. 378–380.
  28. Шульгін С. С. Технологія кодування трансформованих відеосегментів в нерівноваговому діагонально-позиційному просторі. Наукоємні технології, 2022, № 2(54), С. 147–154.
  29. Barannik V., Khimenko V., Barannik N. Method of indirect information hiding in the process of video compression. Radioelectronic and Computer Systems, 2021, No. 4, рр. 119–131. DOI:  https://doi.org/10.32620/reks.2021.4.
  30. Бараннік В. В., Бараннік Д. В., Шульгін С. С., Колесник В. О. Метод виявлення значимої інформації в просторово-часовій області відеознімку. Сучасна спеціальна техніка, 2022, № 4, С. 22–33.