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Image camouflage by reversible image transformation

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Presentation on theme: "Image camouflage by reversible image transformation"β€” Presentation transcript:

1 Image camouflage by reversible image transformation
Source: Journal of Visual Communication and Image Representation, Vol. 40, pp , October 2016. Authors: Dongdong Hou, Weiming Zhang, Nenghai Yu Speaker: Jia-Long Lin Date: 2017/06/01

2 Outline Introduction Related Work Proposed Scheme Experimental Results
- Reversible transformation - Tiles matching Experimental Results Conclusions

3 Introduction Secret image Camouflage image

4 Related Work Οƒ= 1 𝑛 𝑖=1 𝑛 𝑝 𝑖 βˆ’π‘’ 2 128 110 96 141 132 137 152 148 135
Οƒ= 1 𝑛 𝑖=1 𝑛 𝑝 𝑖 βˆ’π‘’ 2 128 110 96 141 132 137 152 148 135 76 84 85 74 66 73 56 62 64 70 63 61 74 71 73 79 78 72 Secret block Target block Camouflage block 𝑒=131 Οƒ=218 𝑒′=71 Οƒβ€²=87 𝑝 𝑖 β€²β€² =π‘ž 𝑝 𝑖 βˆ’π‘’ + 𝑒 β€² β‡’ βˆ’ =70 𝑝 𝑖 =1/π‘ž 𝑝 𝑖 β€²β€² βˆ’ 𝑒 β€² +𝑒 Y.-L. Lee, W.-H. Tsai A new secure image transmission technique via secret-fragment-visible mosaic images by nearly reversible color transformations IEEE Trans. Circ. Syst. Video Technol., 24 (4) (2014), pp. 695–703

5 Related Work accessorial information:π‘ž,𝑒,𝑒′
In the present paper, the authors improved Lee et al.’s method in two aspects: Modify the transformation formula to be reversible Reduce the information for recording tile indexes Improve the quality of camouflage image by setting the smaller tile size

6 Proposed Scheme - Reversible transformation
128 110 96 141 132 137 152 148 135 76 84 85 74 66 73 56 62 64 68 50 36 81 72 77 92 88 75 Secret block Target block Camouflage block 𝑒=131 𝑒′=71 βˆ†π‘’=π‘Ÿπ‘œπ‘’π‘›π‘‘ 𝑒 β€² βˆ’π‘’ =βˆ’60 𝑝 𝑖 β€²β€² = 𝑝 𝑖 +βˆ†π‘’=128βˆ’60=68

7 Proposed Scheme - Reversible transformation
130 100 70 250 255 225 195 Secret block Target block Camouflage block 𝑒=100 𝑒′=250 𝑇=30 Δ𝑒 Δ𝑒+255βˆ’ 𝑂 π‘šπ‘Žπ‘₯ , 𝑖𝑓 𝑂 π‘šπ‘Žπ‘₯ βˆ’255 <𝑇 Ξ”π‘’βˆ’π‘‡, 𝑖𝑓 𝑂 π‘šπ‘Žπ‘₯ βˆ’255 β‰₯𝑇 Δ𝑒=150⇒Δ𝑒=125

8 Proposed Scheme - Reversible transformation
70 200 230 250 100 130 160 180 Secret block Target block Camouflage block 𝑒=200 𝑒′=100 𝑇=30 Δ𝑒 Δ𝑒+ π‘ˆ π‘šπ‘–π‘› , 𝑖𝑓 π‘ˆ π‘šπ‘–π‘› <𝑇 Δ𝑒+𝑇, 𝑖𝑓 π‘ˆ π‘šπ‘–π‘› β‰₯𝑇 Δ𝑒=βˆ’100⇒Δ𝑒=βˆ’70

9 Proposed Scheme - Reversible transformation
π‘Ÿ 𝑖 𝑝 𝑖 β€²β€² βˆ’255, 𝑖𝑓 𝑝 𝑖 β€²β€² β‰₯255 0βˆ’ 𝑝 𝑖 β€²β€² , 𝑖𝑓 𝑝 𝑖 β€²β€² ≀0 Δ𝑒 8Γ—π‘Ÿπ‘œπ‘’π‘›π‘‘ Δ𝑒 8 , 𝑖𝑓Δ𝑒>0 8Γ—π‘Ÿπ‘œπ‘’π‘›π‘‘ Δ𝑒 8 +4, 𝑖𝑓Δ𝑒<0 Ξ” 𝑒 β€² = Δ𝑒 4 accessorial information:Ξ” 𝑒 β€² ,rotation directions,𝑅

10 Proposed Scheme - Tiles matching
10 2 1 3 4 8 5 6 9 3 1 2 π‘˜=3 π‘π‘™π‘Žπ‘ π‘  1, 𝑖𝑓 𝑆𝐷[0,3] 2, 𝑖𝑓 𝑆𝐷[4,6] 3, 𝑖𝑓 𝑆𝐷>6 Secret image (SD) 2 8 3 1 5 6 4 9 1 3 2 1 3 2 1 3 2 SD= 1 𝑛 𝑖=1 𝑛 𝑝 𝑖 βˆ’π‘’ 2 Target image (SD)

11 Proposed Scheme - Tiles matching

12 Experimental Results (a) Secret image. (b) Target image. (c) Camouflage image created from (a) and (b). (d) Recovered secret image using right key. (e) Recovered secret image using a wrong key.

13 Experimental Results Fig. 1 (a) Secret image. (b) Target image. (c) Camouflage image by setting 3Γ—3 block. (d) 4Γ—4 block. (e) 6Γ—6 block. (f) 8Γ—8 block. (g) 12Γ—12 block. (h) 16Γ—16 block.

14 Experimental Results The results by setting the different block size of Fig. 1. Block size Transformed image (RMSE) Camouflage image (RMSE) MAI (bpp) 3Γ—3 13.35 39.09 1.19 4Γ—4 16.67 21.76 0.7013 6Γ—6 21.18 22.92 0.3501 8Γ—8 24.39 24.75 0.2331 12Γ—12 29.14 29.29 0.1580 16Γ—16 32.28 32.36 0.1358 minimum root mean square error (RMSE) the amount of the accessorial information (MAI) 𝑅𝑀𝑆𝐸= 𝑖=1 𝑛 π‘Œ 𝑖 β€² βˆ’ π‘Œ 𝑖 n Transformed image (Before embedding accessorial information.)

15 Experimental Results Fig. 2 (a) Secret image. (b) Target image. (c) Camouflage image created by Lee et al.’s method. (d) Camouflage image created by the proposed method.

16 Experimental Results The similarity comparison of Fig. 2.
Camouflage image RMSE SSIM Fig. 2(c) 28.85 0.4567 Fig. 2(d) 21.22 0.6093 The average results on 100 pairs of test images. Method RMSE of transformed image RMSE of camouflage image MAI Proposed method 13.29 16.03 0.6133 Lee et al.’s method 19.23 22.16 0.5309 mean structural similarity (SSIM) 𝑆𝑆𝐼𝑀 π‘₯,𝑦 = (2 𝑒 π‘₯ 𝑒 𝑦 + 𝑐 1 )(2 Οƒ π‘₯𝑦 + 𝑐 2 ) ( 𝑒 π‘₯ 2 + 𝑒 𝑦 2 + 𝑐 1 )( Οƒ π‘₯ 2 + Οƒ 𝑦 2 + 𝑐 2 )

17 Conclusions Reversible transformation Less extra information
High image quality


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