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ÔÌÈ / ÊÎÌÏÞÒÚÐÍÀ ÈÍÔÎÐÌÀÒÈÊÀ / Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ
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Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ Ñ èìïàêò ôàêòîð Öèòèðàíèÿ Ivanova, T., Stoyanov, B. and Dobrev, D., 2023, November. Secure text encryption based on clifford attractors. In 2023 31st National conference with international participation (TELECOM) (pp. 1-4). IEEE. Öèòèðà ñå â: Sharma, P.L., Gupta, S., Monga, H., Nayyar, A., Gupta, K. and Sharma, A.K., 2025. TEXCEL: text encryption with elliptic curve cryptography for enhanced security. Multimedia Tools and Applications, 84(13), pp.11503-11531. 01.11.2025
Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ  íàó÷íî ñïèñàíèå Öèòèðàíèÿ Ivanova, T., Stoyanov, B. and Dobrev, D., 2023, November. Secure text encryption based on clifford attractors. In 2023 31st National conference with international participation (TELECOM) (pp. 1-4). IEEE. Öèòèðà ñå â: Kinganga, J., Kasoro, N. and Musesa, A., 2025. Dynamics data encryption based on chaotic functions and elliptic curves: Application to text data. Al-Mustansiriyah Journal of Science, 36(1), pp.56-68. 01.11.2025
Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ Â ðåôåðèðàíè èçäàíèÿ Öèòèðàíèÿ Kardzhiev, R. and Stoyanov, B., 2022, September. New indoor positioning system using ultrasonic. In AIP Conference Proceedings (Vol. 2505, No. 1, p. 060004). AIP Publishing LLC. Öèòèðà ñå â: Öèòèðà ñå â: S. Bian, G. Pirkl, J. Cheng and P. Lukowicz, \"Optimization of An Induced Magnetic Field-Based Positioning System,\" 2025 International Conference on Activity and Behavior Computing (ABC), Al Ain, United Arab Emirates, 2025, pp. 1-9, doi: 10.1109/ABC64332.2025.11118455. 01.11.2025
Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ Â ðåôåðèðàíè èçäàíèÿ Öèòèðàíèÿ Kardzhiev, R. and Stoyanov, B., 2022, September. New indoor positioning system using ultrasonic. In AIP Conference Proceedings (Vol. 2505, No. 1, p. 060004). AIP Publishing LLC. Öèòèðà ñå â: A. E. Cosgun, H. Demir and B. Senol, \"Arduino-Based Indoor Navigation System with Finger Print Method,\" 2025 9th International Symposium on Innovative Approaches in Smart Technologies (ISAS), Gaziantep, Turkiye, 2025, pp. 1-4, doi: 10.1109/ISAS66241.2025.11101840. 01.11.2025
Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ  íàó÷íî ñïèñàíèå Öèòèðàíèÿ Kardzhiev, R. and Stoyanov, B., 2022, September. New indoor positioning system using ultrasonic. In AIP Conference Proceedings (Vol. 2505, No. 1, p. 060004). AIP Publishing LLC. Öèòèðà ñå â: Kalynchuk, T.N. and Shevchyk, V., 2025. INDOOR POSITIONING WITH BLUETOOTH LOW ENERGY: A PRELIMINARY SYSTEM DESIGN AND RESULTS, 10(1), 28-33. 01.11.2025
Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ Â ðåôåðèðàíè èçäàíèÿ Öèòèðàíèÿ Tzoneva, A., Momcheva, G. and Stoyanov, B., 2022, May. Vendor cybersecurity risk assessment in an autonomous mobility ecosystem. In 2022 10th International Scientific Conference on Computer Science (COMSCI) (pp. 1-7). IEEE. Öèòèðà ñå â: H. Asili and S. Bahtiyar, \"GEN-TPRM: An OSINT-Driven Risk Assessment Model for Third-Party Organizations,\" 2025 15th International Conference on Advanced Computer Information Technologies (ACIT), Sibenik, Croatia, 2025, pp. 497-500, doi: 10.1109/ACIT65614.2025.11185738. 01.11.2025
Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ Â ðåôåðèðàíè èçäàíèÿ Öèòèðàíèÿ Tzoneva, A., Momcheva, G. and Stoyanov, B., 2022, May. Vendor cybersecurity risk assessment in an autonomous mobility ecosystem. In 2022 10th International Scientific Conference on Computer Science (COMSCI) (pp. 1-7). IEEE. Öèòèðà ñå â: Fteiha, B. (2025). Autonomous vehicles and cyber-terrorism: A law and economics analysis of the cybersecurity of autonomous vehicles. [Thesis fully internal (DIV), University of Groningen]. University of Groningen. https://doi.org/10.33612/diss.1421669166 01.11.2025
Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ Ñ èìïàêò ôàêòîð Öèòèðàíèÿ Stoyanov, B. and Ivanova, T., 2021. Novel implementation of audio encryption using pseudorandom byte generator. Applied Sciences, 11(21), p.10190. Öèòèðà ñå â: Fotso, S.B.N., Atchoffo, W.N., Nzeukou, A.C. and Talla Mbe, J.H., 2025. Enhanced security in lossless audio encryption using zigzag scrambling, DNA coding, SHA-256, and Hopfield networks: a practical VLC system implementation. Multimedia Tools and Applications, 84(23), pp.27091-27125. 01.11.2025
Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ Ñ èìïàêò ôàêòîð Öèòèðàíèÿ Stoyanov, B. and Ivanova, T., 2021. Novel implementation of audio encryption using pseudorandom byte generator. Applied Sciences, 11(21), p.10190. Öèòèðà ñå â: Lawnik, M., Moysis, L., Garcia-Grimaldo, C., Campos-Canton, E., Fragulis, G.F. and Volos, C., 2025. Generalized Vertigo Maps—A New Family of Chaotic Maps with Robust Chaos but Without Fixed Points. International Journal of Bifurcation and Chaos, 35(05), p.2530012. 01.11.2025
Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ Ñ èìïàêò ôàêòîð Öèòèðàíèÿ Stoyanov, B. and Ivanova, T., 2021. Novel implementation of audio encryption using pseudorandom byte generator. Applied Sciences, 11(21), p.10190. Öèòèðà ñå â: Helmy, M. Audio Transmission Based on Hybrid Crypto-steganography Framework for Efficient Cyber Security in Wireless Communication System. Multimed Tools Appl 84, 18893–18917 (2025). https://doi.org/10.1007/s11042-023-17921-2 01.11.2025
Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ Â ðåôåðèðàíè èçäàíèÿ Öèòèðàíèÿ Stoyanov, B. and Ivanova, T., 2021. Novel implementation of audio encryption using pseudorandom byte generator. Applied Sciences, 11(21), p.10190. Öèòèðà ñå â: M. Nassef, \"An Intelligent Audio Encryption and Compression Algorithm Inspired by the Encoding of Various Biological Sequences,\" in IEEE Access, vol. 13, pp. 126334-126354, 2025, doi: 10.1109/ACCESS.2025.3588764. 01.11.2025
Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ Ñ èìïàêò ôàêòîð Öèòèðàíèÿ Stoyanov, B. and Ivanova, T., 2021. Novel implementation of audio encryption using pseudorandom byte generator. Applied Sciences, 11(21), p.10190. Öèòèðà ñå â: Helmy, M. and Torkey, H., 2025. Secured Audio Framework Based on Chaotic-Steganography Algorithm for Internet of Things Systems. Computers, 14(6), p.207. 01.11.2025
Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ Â ðåôåðèðàíè èçäàíèÿ Öèòèðàíèÿ Stoyanov, B. and Ivanova, T., 2021. Novel implementation of audio encryption using pseudorandom byte generator. Applied Sciences, 11(21), p.10190. Öèòèðà ñå â: Khushal Patil, L. and Popat, K.A., 2025. A Multilayered Encryption for the Robust Design and Implementation of Secure Audio Files. SN Computer Science, 6(5), p.460. 01.11.2025
Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ  íàó÷íî ñïèñàíèå Öèòèðàíèÿ Stoyanov, B. and Ivanova, T., 2021. Novel implementation of audio encryption using pseudorandom byte generator. Applied Sciences, 11(21), p.10190. Öèòèðà ñå â: Mousa, A.N.A., Muhammed, A.A.I. and Salem, A.M., TWO WAYS OF MESSAGE BLOCKS REARRANGEMENT TO PROTECT THE MESSAGE. International Journal of Engineering Technology Research & Management(IJETRM), 9(8), 300-317. 01.11.2025
Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ Â ðåôåðèðàíè èçäàíèÿ Öèòèðàíèÿ Tzoneva, A., Stoyanov, B., 2021. Supplier cybersecurity risk assessment methodology. Presented at the CEUR Workshop Proceedings, pp. 270-281. Öèòèðà ñå â: Pergande, R., 2025. Bridging procurement and cybersecurity: a systematic literature review and research agenda. Supply Management Research: Aktuelle Forschungsergebnisse 2025, pp.123-154. 01.11.2025
Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ Ñ èìïàêò ôàêòîð Öèòèðàíèÿ Spasova, V.G., Georgiev, B.G., Stefanov, P.D. and Stoyanov, B.P., 2021. Prototype of smart monument with IoT-based system of early warning. In IOP Conference Series: Materials Science and Engineering (Vol. 1031, No. 1, p. 012126). IOP Publishing. Öèòèðà ñå â: Dolinska, N., Wojciechowska, G., & Bednarz, L. (2025). Monitoring Environmental and Structural Parameters in Historical Masonry Buildings Using IoT LoRaWAN-Based Wireless Sensors. Buildings, 15(2), 282. https://doi.org/10.3390/buildings15020282 01.11.2025
Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ Ñ èìïàêò ôàêòîð Öèòèðàíèÿ Stoyanov, B. and Stoyanov, B., 2020. BOOST: medical image steganography using nuclear spin generator. Entropy, 22(5), p.501. Öèòèðà ñå â: Ghosh, S., Saha, A. and Pal, T., 2025, January. Synergistic Fusion of Steganography and Cryptography in Medical Imaging: A Comparative Analysis to Enhance. In Intelligent System and Data Analysis: SSIC 2023 Doctoral Symposium (Vol. 398, p. 107). Springer Nature. 01.11.2025
Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ Ñ èìïàêò ôàêòîð Öèòèðàíèÿ Stoyanov , B. and Nedzhibov , G. , Symmetric Key Encryption Based on Rotation-Translation Equation . Symmetry , 12 , 73 , 2020 , doi: 10.3390/sym12010073 . Öèòèðà ñå â: Sai Sreenath Reddy, Y., Thanmai, G., Sri Sai Varma, K.C., Mishra, S., Satapathy, S.K., Chowdhury, A., Mohanty, S.N. and Babu, M.Y., 2025. Securing Secrets: Exploring Diverse Encryption and Decryption Through Cryptography with Deep Dive to AES. Protecting and Mitigating Against Cyber Threats: Deploying Artificial Intelligence and Machine Learning, pp.349-363. 01.11.2025
Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ Ñ èìïàêò ôàêòîð Öèòèðàíèÿ Stoyanov, B. and Ivanova, T., 2019, November. CHAOSA: Chaotic map based random number generator on Arduino platform. In AIP Conference Proceedings (Vol. 2172, No. 1, p. 090001). AIP Publishing LLC. Öèòèðà ñå â: Laskaridis, L., Volos, C., Giakoumis, A.E., Meletlidou, E. and Stouboulos, I., 2025. Dynamical investigation of a modified Cubic map with a discrete memristor using microcontrollers. Electronics, 14(2), p.311. 01.11.2025
Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ Ñ èìïàêò ôàêòîð Öèòèðàíèÿ Stoyanov, B., Ivanova, T.: CHAOSA: Chaotic map-based random number generator on Arduino platform. In: AIP Conf. Proc. 2172(1), 090001 (2019). https://doi.org/10.1063/1.5133578. Öèòèðà ñå â: Ahmad Mir, S., Sharma, P. (2025). Randomness from Deterministic Chaos: A Novel Algorithm for Random Number Generation. In: Gervasi, O., et al. Computational Science and Its Applications – ICCSA 2025. ICCSA 2025. Lecture Notes in Computer Science, vol 15648. Springer, Cham. https://doi.org/10.1007/978-3-031-97000-9_2. 01.11.2025
Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ Ñ èìïàêò ôàêòîð Öèòèðàíèÿ Todorova, M., Stoyanov, B., Szczypiorski, K., Graniszewski, W. and Kordov, K., 2019. BentSign: keyed hash algorithm based on bent Boolean function and chaotic attractor. Bulletin of the Polish Academy of Sciences Technical Sciences, pp.557-569. Öèòèðà ñå â: Ibrahim, M.M., Venkatesan, R., Ali, N., Qureshi, M.I., Siddiqui, H.M.A., Tolasa, F.T. and Abdallah, S.A.O., 2025. Enhanced image hash using cellular automata with sponge construction and elliptic curve cryptography for secure image transaction. Scientific Reports, 15(1), p.14148. 01.11.2025
Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ Ñ èìïàêò ôàêòîð Öèòèðàíèÿ Todorova, M., Stoyanov, B., Szczypiorski, K. and Kordov, K., 2018. SHAH: Hash Function based on Irregularly Decimated Chaotic Map. International Journal of Electronics and Telecommunication, 64(4), pp.457-465. Öèòèðà ñå â: Xing, H., Min, R., Li, S. et al. Hyperchaotic hashing: a chaotic hash function based on 2D linear cross-coupled map with parallel feedback structure. Sci Rep 15, 5462 (2025). https://doi.org/10.1038/s41598-025-88764-0 01.11.2025
Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ  íàó÷íî ñïèñàíèå Öèòèðàíèÿ Kordov, K., & Stoyanov, B. (2017). Least significant bit steganography using Hitzl-Zele chaotic map. International Journal of Electronics and Telecommunications, 63(4), 417-422. Öèòèðà ñå â: Sopian, Miftah Fadillah, Siti Fatimah, and Rini Marwati. (2025) \"Penggunaan Fungsi Hitzl-Zele pada Implementasi Gabungan Secret Sharing Shamir’s (t, w)-Threshold Scheme dan Steganografi Audio Least Significant Bit.\" Jurnal EurekaMatika 13, no. 1: 1-14. 31.10.2025
Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ Ñ èìïàêò ôàêòîð Öèòèðàíèÿ Stoyanov, Borislav P., Stanimir K. Zhelezov, and Krasimir M. Kordov. \"Least significant bit image steganography algorithm based on chaotic rotation equations.\" Comptes rendus de l’Academie bulgare des Sciences 69, no. 7 (2016): 845-850. Öèòèðà ñå â: Khan, A., Sarfaraz, A. Exploring information hiding in images – problems and measures: a survey. Multimed Tools Appl 84, 43013–43075 (2025). https://doi.org/10.1007/s11042-025-20850-x 31.10.2025
Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ Ñ èìïàêò ôàêòîð Öèòèðàíèÿ Stoyanov, B. and Kordov, K., 2015. Image encryption using Chebyshev map and rotation equation. Entropy, 17(4), pp.2117-2139. Öèòèðà ñå â: Kolivand, H., Hamood, S.F., Asadianfam, S. et al. Image encryption framework based on multi-chaotic maps and equal pixel values quantization. Multimed Tools Appl 84, 17769–17804 (2025). https://doi.org/10.1007/s11042-024-19771-y 31.10.2025
Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ Ñ èìïàêò ôàêòîð Öèòèðàíèÿ Stoyanov, B. and Kordov, K., 2015. Image encryption using Chebyshev map and rotation equation. Entropy, 17(4), pp.2117-2139. Öèòèðà ñå â: K. V. Sudheesh, S. Benaka Santhosha, Kiran Puttegowda, Vinayakumar Ravi, Alanoud Al Mazroa (2025) Security and Privacy, Volume 8, Issue 2, https://doi.org/10.1002/spy2.503. 31.10.2025
Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ Ñ èìïàêò ôàêòîð Öèòèðàíèÿ Stoyanov, B. and Kordov, K., 2015. Image encryption using Chebyshev map and rotation equation. Entropy, 17(4), pp.2117-2139. Öèòèðà ñå â: Keshav, Yadav, A.K. Novel fixed-point-free chaotic map for enhanced image encryption. J Opt (2025). https://doi.org/10.1007/s12596-025-02812-6. 31.10.2025
Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ Ñ èìïàêò ôàêòîð Öèòèðàíèÿ Stoyanov, B. and Kordov, K., 2015. Image encryption using Chebyshev map and rotation equation. Entropy, 17(4), pp.2117-2139. Öèòèðà ñå â: Anton, A.A., Csereoka, P., Capota, E.A. and Cioarga, R.D., 2025. SIMECK-T: An Ultra-Lightweight Encryption Scheme for Resource-Constrained Devices. Applied Sciences, 15(3), p.1279. 31.10.2025
Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ  íàó÷íî ñïèñàíèå Öèòèðàíèÿ Stoyanov, B. and Kordov, K., 2015. Image encryption using Chebyshev map and rotation equation. Entropy, 17(4), pp.2117-2139. Öèòèðà ñå â: Chalob, D. F., Hasan, R. H., & Essa, Z. M. (2025). Image cryptography based on chebyshev polynomials and transposition-substitution transformations. International Journal of Scientific Research in Science, Engineering and Technology, 12(1), 70-83. 31.10.2025
Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ Â ðåôåðèðàíè èçäàíèÿ Öèòèðàíèÿ Stoyanov, B. and Kordov, K., 2015. Image encryption using Chebyshev map and rotation equation. Entropy, 17(4), pp.2117-2139. Öèòèðà ñå â: Das, B., Saha, A. & Sikder, S. A Novel Image Compression Technique and Secured Transmission of Compressed Satellite Images Via Optical Fiber Using 6D Hyper Chaos. J Indian Soc Remote Sens 53, 511–530 (2025). https://doi.org/10.1007/s12524-024-01984-1. 31.10.2025
Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ Â ðåôåðèðàíè èçäàíèÿ Öèòèðàíèÿ Stoyanov, B. and Kordov, K., 2015. Image encryption using Chebyshev map and rotation equation. Entropy, 17(4), pp.2117-2139. Öèòèðà ñå â: Ivanova, T., Dobrev, D. and Aleksandrova, M., 2025, September. Applications of Pseudorandom Number Generator in Selected Stochastic Simulations. In 2025 International Conference on Information Technologies (InfoTech) (pp. 1-4). IEEE. 31.10.2025
Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ  íàó÷íî ñïèñàíèå Öèòèðàíèÿ Stoyanov, B. and Kordov, K., 2015. Image encryption using Chebyshev map and rotation equation. Entropy, 17(4), pp.2117-2139. Öèòèðà ñå â: Cardona-Lopez, M.A., Mazzetti-Riveros, J., Del-Rosario-Gonzalez, L., Taba-Diaz, K.D. and Chimal-Eguia, J.C., 2025. Evolution of Encryption Measures. Advances in Computing Science and Applications, Research in Computing Science 154(2), 31-42. 31.10.2025
Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ  íàó÷íî ñïèñàíèå Öèòèðàíèÿ Stoyanov, B. and Kordov, K., 2015. Image encryption using Chebyshev map and rotation equation. Entropy, 17(4), pp.2117-2139. Öèòèðà ñå â: Baalaji, K. D. P. D. K. (2025). Image Encryption and Decryption Algorithm using XOR Operator, International Journal of Innovative Research in Science Engineering and Technology 14 (4):8895-8907. 31.10.2025
Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ Ñ èìïàêò ôàêòîð Öèòèðàíèÿ Stoyanov, B. and Kordov, K., 2015. Novel secure pseudo-random number generation scheme based on two tinkerbell maps. Advanced Studies in Theoretical Physics, 9(9), pp.411-421. Öèòèðà ñå â: Nazish, M., Banday, M.T. e-CM: A novel approach to advancing chaotic dynamics in discrete one-dimensional maps for secure IoT applications. Cybersecurity 8, 71 (2025). https://doi.org/10.1186/s42400-024-00347-0 31.10.2025
Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ Ñ èìïàêò ôàêòîð Öèòèðàíèÿ Stoyanov, B. and Kordov, K., 2015. Novel secure pseudo-random number generation scheme based on two tinkerbell maps. Advanced Studies in Theoretical Physics, 9(9), pp.411-421. Öèòèðà ñå â: Davendra, D. and Herrmann, F., 2025. Scheduling tardiness constrained flow shop with simultaneously loaded stations using the chaos driven discrete Artificial Bee Colony algorithm. Systems and Soft Computing, p.200401. 31.10.2025
Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ Ñ èìïàêò ôàêòîð Öèòèðàíèÿ Stoyanov B, Kordov K (2015) Novel secure pseudo-random number generation scheme based on two tinkerbell maps. Adv Stud Theor Phys 9(9):411–421. Öèòèðà ñå â: Sarkar, A., Singh, M.M. & Sharma, H.S. Artificial recurrent neural network coordinated secured transmission towards safeguarding confidentiality in smart Industrial Internet of Things. Int. J. Mach. Learn. & Cyber. 16, 891–917 (2025). https://doi.org/10.1007/s13042-024-02310-4 31.10.2025
Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ Â ðåôåðèðàíè èçäàíèÿ Öèòèðàíèÿ Stoyanov, B. and Kordov, K., 2015. Novel secure pseudo-random number generation scheme based on two tinkerbell maps. Advanced Studies in Theoretical Physics, 9(9), pp.411-421. Öèòèðà ñå â: Nazish, M. and Banday, M.T., 2025. Resource-Efficient One-Dimensional Discrete Chaotic Map-Based Pseudo-Random Number Generator for IoT Applications: A Practical Analysis. SN Computer Science, 6(7), p.779. 31.10.2025
Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ Ñ èìïàêò ôàêòîð Öèòèðàíèÿ Stoyanov, B. and Kordov, K., 2015. Novel secure pseudo-random number generation scheme based on two tinkerbell maps. Advanced Studies in Theoretical Physics, 9(9), pp.411-421. Öèòèðà ñå â: Zheng, L., Sarkar, A., Noorwali, A. et al. Artificial Complex-Valued Neural Processing Using Memristive Hyperchaotic Synchronization. Neural Process Lett 57, 50 (2025). https://doi.org/10.1007/s11063-025-11772-8 31.10.2025
Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ Â ðåôåðèðàíè èçäàíèÿ Öèòèðàíèÿ Stoyanov, B. and Kordov, K., 2015. Novel secure pseudo-random number generation scheme based on two tinkerbell maps. Advanced Studies in Theoretical Physics, 9(9), pp.411-421. Öèòèðà ñå â: Nazish, M., Tariq Banday, M. Lightweight chaotic map-based pseudo-random bit generator design: enhancing performance for IoT systems. Iran J Comput Sci (2025). https://doi.org/10.1007/s42044-025-00333-w 31.10.2025
Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ Ñ èìïàêò ôàêòîð Öèòèðàíèÿ Stoyanov, B. and Kordov, K., 2015. Novel secure pseudo-random number generation scheme based on two tinkerbell maps. Advanced Studies in Theoretical Physics, 9(9), pp.411-421. Öèòèðà ñå â: Malik, M.G.A., Hayat, M. & Bashir, Z. Construction and application of new classes of higher order chaotic polynomial maps. Comp. Appl. Math. 44, 248 (2025). https://doi.org/10.1007/s40314-025-03211-0 31.10.2025
Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ Â ðåôåðèðàíè èçäàíèÿ Öèòèðàíèÿ Stoyanov, B.P., 2014, November. Using circle map in pseudorandom bit generation. In Application of Mathematics in Technical and Natural Sciences: 6th International Conference for Promoting the Application of Mathematics in Technical and Natural Sciences-AMiTaNS 2014 (Vol. 1629, No. 1, pp. 460-463). Öèòèðà ñå â: Ivanova, T., Dobrev, D. and Aleksandrova, M., 2025, September. Applications of Pseudorandom Number Generator in Selected Stochastic Simulations. In 2025 International Conference on Information Technologies (InfoTech) (pp. 1-4). IEEE. 31.10.2025
Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ Â ðåôåðèðàíè èçäàíèÿ Öèòèðàíèÿ Stoyanov, B., & Kordov, K. (2014). Novel image encryption scheme based on chebyshev polynomial and duffing map. The Scientific World Journal, 2014(1), 283639. Öèòèðà ñå â: Devipriya M, Brindha M. Evaluation Metrics Used For Image Encryption to Analyze the Efficiency Toward Various Attacks. In Multimedia Security 2025 (pp. 57-85). Apple Academic Press. 31.10.2025
Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ Ñ èìïàêò ôàêòîð Öèòèðàíèÿ Stoyanov, B., 2014. Pseudo-random Bit Generation Algorithm Based on Chebyshev Polynomial and Tinkerbell Map. Applied Mathematical Sciences, 8(125), pp.6205-6210. Öèòèðà ñå â: Yogi, B. and Khan, A.K., 2025. Advancements in image encryption: A comprehensive review of design principles and performance metrics. Computer Science Review, 57, p.100759. 31.10.2025
Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ Â ðåôåðèðàíè èçäàíèÿ Öèòèðàíèÿ Stoyanov, B., 2014. Pseudo-random Bit Generation Algorithm Based on Chebyshev Polynomial and Tinkerbell Map. Applied Mathematical Sciences, 8(125), pp.6205-6210. Öèòèðà ñå â: Ivanova, T., Dobrev, D. and Aleksandrova, M., 2025, September. Applications of Pseudorandom Number Generator in Selected Stochastic Simulations. In 2025 International Conference on Information Technologies (InfoTech) (pp. 1-4). IEEE. 31.10.2025
Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ Â ðåôåðèðàíè èçäàíèÿ Öèòèðàíèÿ Stoyanov, B. and Kordov, K., 2013, June. Pseudorandom bit generator with parallel implementation. In International Conference on Large-Scale Scientific Computing (pp. 557-564). Berlin, Heidelberg: Springer Berlin Heidelberg. Öèòèðà ñå â: M. A. Aljohani and H. Al-Barhamtoshy, \"A Method for Assessing the Performance of Cryptographic Pseudorandom Number Generators Utilizing Artificial Neural Networks,\" 2025 2nd International Conference on Advanced Innovations in Smart Cities (ICAISC), Jeddah, Saudi Arabia, 2025, pp. 1-5, doi: 10.1109/ICAISC64594.2025.10959613. 31.10.2025
Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ Ñ èìïàêò ôàêòîð Öèòèðàíèÿ Stoyanov B, Kordov K. Novel Zaslavsky map based pseudorandom bit generation scheme. Appl Math Sci. 2014;8(178):8883–7. Öèòèðà ñå â: Parida, R.N.R., Singh, B.K. & Pradhan, C. A Hybrid Image Encryption Technique for Grayscale and Color Image Using Tinkerbell and Arnold Cat Map. SN COMPUT. SCI. 6, 552 (2025). https://doi.org/10.1007/s42979-025-04059-1 31.10.2025
Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ Ñ èìïàêò ôàêòîð Öèòèðàíèÿ Stoyanov, B.P., 2013, October. Pseudo-random bit generator based on Chebyshev map. In AIP Conference Proceedings (Vol. 1561, No. 1, pp. 369-372). American Institute of Physics. Öèòèðà ñå â: Moysis, L., Lawnik, M., Baptista, M.S. et al. A review of chaotification techniques for discrete-time systems. Nonlinear Dyn 113, 14103–14119 (2025). https://doi.org/10.1007/s11071-025-10934-6 30.10.2025
Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ Â ðåôåðèðàíè èçäàíèÿ Öèòèðàíèÿ Stoyanov, B.P., 2013, October. Pseudo-random bit generator based on Chebyshev map. In AIP Conference Proceedings (Vol. 1561, No. 1, pp. 369-372). American Institute of Physics. Öèòèðà ñå â: Ivanova, T., Dobrev, D. and Aleksandrova, M., 2025, September. Applications of Pseudorandom Number Generator in Selected Stochastic Simulations. In 2025 International Conference on Information Technologies (InfoTech) (pp. 1-4). IEEE. 30.10.2025
Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ Äðóãè Öèòèðàíèÿ Nachev, A., & Stoyanov, B. (2012). Product quality analysis using support vector machines. Information Models and Analyses, 1, 179-192. Öèòèðà ñå â: Ndaba S, Abubakar AM, Ferhoune I, Bilal MT, Sarkinbaka ZM. Case studies in machine learning for design optimization. InDesign Optimization Using Artificial Intelligence 2025 Jun 24 (pp. 31-46). CRC Press, https://www.taylorfrancis.com/chapters/edit/10.1201/9781003589716-3/case-studies-machine-learning-design-optimization-simisani-ndaba-abdulhalim-musa-abubakar-issam-ferhoune-muhammad-tayyab-bilal-zakiyyu-muhammad-sarkinbaka 30.10.2025
Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ Â ðåôåðèðàíè èçäàíèÿ Ñòàòèè B. Stoyanov, T. Ivanova and P. Ivanov, Trikeda: Audio Ciphering Using Triple Ikeda Map, 2025 International Conference on Information Technologies (InfoTech), Sofia, Bulgaria, 2025, pp. 1-4, doi: 10.1109/InfoTech67177.2025.11175949. IEEE Scopus 30.10.2025
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