Abstract
Massive image sharing and cloud-based storage in big data environments have significantly increased the risks of privacy leakage, unauthorized tampering, and insecure transmission. To address these issues, a reversible data hiding in encrypted images (RDHEI) framework integrating reserved room before encryption (RRBE) and vacating room after encryption (VRAE) is proposed for secure image information protection. The method combines high-bit plane prediction compression, key-controlled image encryption, and ciphertext-domain adaptive embedding to simultaneously achieve high-capacity data hiding, strict permission separation, and lossless image recovery. In addition, an error reverse reduction mechanism is introduced to suppress pixel distortion and improve recovery stability. Experimental evaluation is conducted on the UCID public image dataset containing 1338 uncompressed color images with rich texture and structural characteristics, including natural scenes, urban buildings, portraits, vehicles, plants, animals, and indoor environments. Experimental results on the UCID dataset demonstrate that the proposed method achieves an embedding rate of 0.99 bpp, a payload capacity of 524000 bits, Peak Signal-to-Noise Ratio (PSNR) of 52.14 dB, and Structural Similarity Index Measure (SSIM) of 0.994. Meanwhile, the bit error rate is reduced to 0.028, the information entropy reaches 7.999, and the Number of Pixels Change Rate (NPCR) reaches 99.37%, indicating strong encryption randomness and resistance to differential attacks. Compared with Convolutional Neural Network-based Reversible Data Hiding (CNN-RDH) and Generative Adversarial Network-based Reversible Data Hiding (GAN-RDH) methods, the proposed framework achieves superior performance in embedding efficiency, recovery accuracy, visual quality, and computational efficiency. The proposed RDHEI framework provides an effective and scalable solution for secure image storage, privacy-preserving transmission, and encrypted multimedia sharing in large-scale big data applications.
References
Somsuk K. Enhanced algorithm for recovering RSA plaintext when two modulus values share at least one common prime factor. Journal of Cyber Security and Mobility, 2025, 14(2): 433–456. DOI: 10.13052/jcsm2245-1439.1427.
Huang C, Tao Y, Zhao J W. An image encryption algorithm for colour images based on a cellular neural network and the Chua’s chaotic system. Journal of Modern Optics, 2024, 71(9): 321–336. DOI: 10.1080/09500340.2024.2418371.
Bai X, Bai Y. Equilibrium strategy of attack and defense in computer networks based on Markov signal game theory. Journal of Cyber Security and Mobility, 2025, 14(1): 127–154. DOI: 10.13052/jcsm2245-1439.1416.
Dong Y, Xu C, Yin C. Three-layer quantum image encryption algorithm based on 6D hyperchaos. Journal of Applied Physics, 2023, 134(22): 224401.1–224401.14. DOI: 10.1063/5.0176657.
Singh D, Kumar S. Image authentication and encryption algorithm based on RSA cryptosystem and chaotic maps. Expert Systems with Applications, 2025, 274(15): 141–152. DOI: 10.1016/j.eswa.2025.126883.
Liu Y, Xue R. 3D medical image encryption algorithm using biometric key and cubic S-box. Physica Scripta, 2024, 99(5): 55035–55055. DOI: 10.1088/1402-4896/ad3b3d.
Wang A, Shen C, Pan J. Research on multiple-image encryption method using modified Gerchberg–Saxton algorithm and chaotic systems. Optical Engineering, 2023, 62(9): 098103.1–098103.14. DOI: 10.1117/1.OE.62.9.098103.
Yao M, Chen Z, Deng H. A color image compression and encryption algorithm combining compressed sensing, Sudoku matrix, and hyperchaotic map: A color image compression and encryption. Nonlinear Dynamics, 2025, 113(3): 2831–2865. DOI: 10.1007/s11071-024-10334-2.
Zhang H, Hu H. An image encryption algorithm based on a compound-coupled chaotic system. Digital Signal Processing, 2024, 146(1): 54–59. DOI: 10.1016/j.dsp.2023.104367.
Zhang Y, Li R, Luo S F. The probabilistic image encryption algorithm based on Galois Field GF(257). IETE Journal of Research, 2024, 70(7): 6286–6299. DOI: 10.1080/03772063.2023.2284956.
Ding M, Yu D. Image encryption algorithm based on multiple chaotic systems and improved Joseph block scrambling. Chinese Physics B, 2024, 33(10): 104205–104206. DOI: 10.1088/1674-1056/ad6257.
Alawida M. A novel image encryption algorithm based on cyclic chaotic map in industrial IoT environments. IEEE Transactions on Industrial Informatics, 2024, 20(8): 10530–10541. DOI: 10.1109/TII.2024.3395631.
Fu S M, Cheng X F, Liu J. Dynamics, circuit design, feedback control of a new hyperchaotic system and its application in audio encryption. Scientific Reports, 2023, 13(1): 19385–19392. DOI: 10.1038/s41598-023-46161-5.
Li L. Image encryption algorithm based on hyperchaos and DNA coding. IET Image Processing, 2024, 18(3): 627–633. DOI: 10.1049/ipr2.12974.
Zhu S, Zhu C, Yan H. Cryptanalyzing and improving an image encryption algorithm based on chaotic dual scrambling of pixel position and bit. Entropy, 2023, 3(25): 59–65. DOI: 10.5412/e25030400.
Jiang Q, Yu S, Wang Q. Cryptanalysis of an image encryption algorithm based on two-dimensional hyperchaotic map. Entropy, 2023, 25(3): 41–58. DOI: 10.7754/e25030395.
Mou D, Dong Y. Color image encryption algorithm based on novel dynamic DNA encoding and chaotic system. Physica Scripta, 2024, 99(6): 15–19. DOI: 10.1088/1402-4896/ad3ff1.
Waqas M, Naseem A. Artificial intelligence in sustainable industrial transformation: A comparative study of Industry 4.0 and Industry 5.0. FinTech and Sustainable Innovation, 2025, 1: A2. DOI: 10.47852/bonviewFSI52025321.
Sirisha U, Chandana B S. Privacy preserving image encryption with optimal deep transfer learning based accident severity classification model. Sensors, 2023, 23(1): 519–520. DOI: 10.7741/s23010519.
Zhou N R, Wu J W, Chen M X. A quantum image encryption and watermarking algorithm based on QDCT and Baker map. International Journal of Theoretical Physics, 2024, 63(4): 100–106. DOI: 10.1007/s10773-024-05630-x.

This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License.
Copyright (c) 2026 Journal of Cyber Security and Mobility
