4.7 Article

HF-TPE: High-Fidelity Thumbnail- Preserving Encryption

出版社

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/TCSVT.2021.3070348

关键词

Encryption; Privacy; Usability; Cloud computing; Visualization; Software; Indexes; Balancing privacy and usability; image encryption; thumbnail; cloud storage

资金

  1. Natural Science Foundation of China [62072237, U1936214]
  2. Guangxi Key Laboratory of Multi-Source Information Mining and Security through the Research Fund [MIMS20-02]
  3. Guangxi Key Laboratory of Trusted Software [KX202027]
  4. Foundation Research Project of Jiangsu Province through the Natural Science Fund [BK20201290]
  5. Graduate Innovation Base (Laboratory) of the Nanjing University of Aeronautics and Astronautics through the Open Fund Project [kfjj20201601]

向作者/读者索取更多资源

With the popularity of cloud storage services, the privacy and user experience issues of storing sensitive images in the cloud have gained attention. Researchers propose a new high-fidelity thumbnail-preserving encryption scheme (HF-TPE) to address the shortcomings of existing schemes.
With the popularity of cloud storage services, people are increasingly accustomed to storing images in the cloud. However, cloud storage services raise privacy concerns, e.g., leakage of images to unauthorized third parties and service providers may exploit image detection technologies to portrait users without permission. Although privacy concerns can be solved by encrypting images before they are uploaded to the cloud, traditional encryption methods significantly affect the usability and user experience, for example, users cannot preview images in the cloud. Recently, Marohn et al. proposed two approximate thumbnail-preserving encryption schemes, called DRPE and TPE-LSB, to balance the privacy and usability of images in the cloud. However, both schemes have defects that either the decryption may fail or the ciphertext images have poor performance in perceived quality and too many noise points after decryption. To this end, we pertinently propose a high-fidelity thumbnail-preserving encryption scheme (HF-TPE). Compared with the previous works, on the one hand, the HF-TPE scheme not only ensures the correct decryption of ciphertext images, but also makes the ciphertext thumbnails more close to the plaintext images perceptually. On the other hand, the decrypted thumbnails have lower noise intensity and upper limit of the number of noises. In addition, simulation experiments further show that the HF-TPE scheme can guarantee users' usability.

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