• Laser & Optoelectronics Progress
  • Vol. 59, Issue 18, 1815012 (2022)
Yu Li1、2、3, Liming Zhang1、2、3、*, Hao Wang1、2、3, and Xiaolong Wang1、2、3
Author Affiliations
  • 1Faculty of Geomatics, Lanzhou Jiaotong University, Lanzhou 730070, Gansu , China
  • 2National-Local Joint Engineering Research Center of Technologies and Applications for National Geographic State Monitoring, Lanzhou 730070, Gansu , China
  • 3Gansu Provincial Engineering Laboratory for National Geographic State Monitoring, Lanzhou 730070, Gansu , China
  • show less
    DOI: 10.3788/LOP202259.1815012 Cite this Article Set citation alerts
    Yu Li, Liming Zhang, Hao Wang, Xiaolong Wang. Commutative Encryption and Watermarking Algorithm for High-Resolution Remote Sensing Images Based on Homomorphic Encryption[J]. Laser & Optoelectronics Progress, 2022, 59(18): 1815012 Copy Citation Text show less
    References

    [1] Ding K M, Yang Z D, Wang Y Y et al. An improved perceptual Hash algorithm based on U-net for the authentication of high-resolution remote sensing image[J]. Applied Sciences, 9, 2972(2019).

    [2] Hou X, Min L Q. A robust watermarking algorithm using SURF feature regions[J]. Geomatics and Information Science of Wuhan University, 42, 421-426(2017).

    [3] Zhang X G, Yan H W, Zhang L M et al. High-resolution remote sensing image integrity authentication method considering both global and local features[J]. ISPRS International Journal of Geo-Information, 9, 254(2020).

    [4] Zhu C Q. Research progresses in digital watermarking and encryption control for geographical data[J]. Acta Geodaetica et Cartographica Sinica, 46, 1609-1619(2017).

    [5] Kaur M, Kumar V. A comprehensive review on image encryption techniques[J]. Archives of Computational Methods in Engineering, 27, 15-43(2020).

    [6] Li Y K, Pu T, Zheng J L et al. Realization scheme of quantum noise randomized cypher based on parallel intensity modulation[J]. Chinese Journal of Lasers, 48, 1706002(2021).

    [7] Geng W H, Zhang J, Chen L et al. Hybrid domain encryption method of hyperspectral remote sensing image[M]. Zeng B, Huang Q M, Saddik A E, et al. Advances in multimedia information processing-PCM 2017. Lecture notes in computer science, 10736, 890-899(2018).

    [8] Wu D Y, Zhao J, Wang G P et al. An image zero watermarking technology based on ameliorated singular value and subblock mapping[J]. Acta Optica Sinica, 40, 2010002(2020).

    [9] Wang X, Ren N, Zhu C Q et al. A digital watermarking algorithm based on QR code and quantization DCT for remote sensing image[J]. Geography and Geo-Information Science, 33, 19-24(2017).

    [10] Liu Y, Yang X, Zhu T G. Robust watermarking algorithm based on structured forests edge and SIFT[J]. Laser & Optoelectronics Progress, 58, 0615006(2021).

    [11] Benrhouma O, Mannai O, Hermassi H. Digital images watermarking and partial encryption based on DWT transformation and chaotic maps[C], 15651794(2015).

    [12] Li M, Xiao D, Zhu Y et al. Commutative fragile zero-watermarking and encryption for image integrity protection[J]. Multimedia Tools and Applications, 78, 22727-22742(2019).

    [13] Ren N, Zhu C Q, Tong D Y et al. Commutative encryption and watermarking algorithm based on feature invariants for secure vector map[J]. IEEE Access, 8, 221481-221493(2020).

    [14] Zhang X P. Commutative reversible data hiding and encryption[J]. Security and Communication Networks, 6, 1396-1403(2013).

    [15] Schmitz R. Use of SHDM in commutative watermarking encryption[J]. EURASIP Journal on Information Security, 2021, 1-12(2021).

    [16] Schmitz R, Li S J, Grecos C et al. Towards robust invariant commutative watermarking-encryption based on image histograms[J]. International Journal of Multimedia Data Engineering and Management, 5, 36-52(2014).

    [17] Schmitz R, Li S J, Grecos C et al. A new approach to commutative watermarking-encryption[M]. de Decker B, Chadwick D W. Communications and multimedia security. Lecture notes in computer science, 7394, 117-130(2012).

    [18] Cancellaro M, Battisti F, Carli M et al. A commutative digital image watermarking and encryption method in the tree structured Haar transform domain[J]. Signal Processing: Image Communication, 26, 1-12(2011).

    [19] Jiang L, Xu Z Q, Xu Y Y. Commutative encryption and watermarking based on orthogonal decomposition[J]. Multimedia Tools and Applications, 70, 1617-1635(2014).

    [20] Jiang L. The identical operands commutative encryption and watermarking based on homomorphism[J]. Multimedia Tools and Applications, 77, 30575-30594(2018).

    [21] Yang Y T, Zhao Y, Zhang J M et al. Recent development of theory and application on homomorphic encryption[J]. Journal of Electronics & Information Technology, 43, 475-487(2021).

    [22] Alloghani M, Alani M M, Al-Jumeily D et al. A systematic review on the status and progress of homomorphic encryption technologies[J]. Journal of Information Security and Applications, 48, 102362(2019).

    [23] Meng L Z, Liu L S, Tian G et al. An adaptive reversible watermarking in IWT domain[J]. Multimedia Tools and Applications, 80, 711-735(2021).

    [24] Makbol N M, Khoo B E, Rassem T H et al. A new reliable optimized image watermarking scheme based on the integer wavelet transform and singular value decomposition for copyright protection[J]. Information Sciences, 417, 381-400(2017).

    [25] Xia G S, Bai X, Ding J et al. DOTA: a large-scale dataset for object detection in aerial images[C], 3974-3983(2018).

    [26] Zope-Chaudhari S, Venkatachalam P, Buddhiraju K M. Secure dissemination and protection of multispectral images using crypto-watermarking[J]. IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing, 8, 5388-5394(2015).

    [27] Li Y M, Wei D Y, Zhang L N. Double-encrypted watermarking algorithm based on cosine transform and fractional Fourier transform in invariant wavelet domain[J]. Information Sciences, 551, 205-227(2021).

    Yu Li, Liming Zhang, Hao Wang, Xiaolong Wang. Commutative Encryption and Watermarking Algorithm for High-Resolution Remote Sensing Images Based on Homomorphic Encryption[J]. Laser & Optoelectronics Progress, 2022, 59(18): 1815012
    Download Citation