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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 |
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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 |
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Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ
|
 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
|
 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 |
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Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ
|
 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
|
 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 |
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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 |
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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 |
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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 |
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Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ
|
 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 |
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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
|
 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 |
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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 |
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Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ
|
 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 |
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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 |
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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 |
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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 |
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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 |
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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 |
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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 |
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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 |
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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 |
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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 |
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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 |
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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 |
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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 |
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Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ
|
 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
|
 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 |
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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 |
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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 |
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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 |
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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
|
 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 |
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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 |
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Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ
|
 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 |
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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 |
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Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ
|
 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 |
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Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ
|
 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 |
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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 |
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Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ
|
 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 |
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Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ
|
 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 |
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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 |
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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 |
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Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ
|
 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 |
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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 |
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Ïðîô. ä.í. Áîðèñëàâ Ïàíàéîòîâ Ñòîÿíîâ
|
 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 |