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Improvements to the JPEG-LS prediction scheme Authors: S. Bedi, E. A. Edirisinghe, and G. Grecos Source : Image and Vision Computing. Vol. 22, No. 1, 2004,

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Presentation on theme: "Improvements to the JPEG-LS prediction scheme Authors: S. Bedi, E. A. Edirisinghe, and G. Grecos Source : Image and Vision Computing. Vol. 22, No. 1, 2004,"— Presentation transcript:

1 Improvements to the JPEG-LS prediction scheme Authors: S. Bedi, E. A. Edirisinghe, and G. Grecos Source : Image and Vision Computing. Vol. 22, No. 1, 2004, pp. 9-14 Speaker: Chia-Chun Wu ( 吳佳駿 ) Date : 2004/09/08

2 2 Outline Introduction to JPEG-LS JPEG-LS prediction scheme Improvements JPEG-LS prediction scheme Experimental results Conclusions Comments

3 3 Introduction to JPEG-LS cbd a Pixel value x in original image Compute difference = x - cbd ax Encode using entropy coding  Determine predictive value for x with prediction scheme Determine predictive value for x with prediction scheme

4 4 JPEG-LS prediction scheme cbd ax 50 312040 3020  JPEG-LS predictive template

5 5 JPEG-LS prediction scheme ca bx ca ba ca bb 10099 5052 10050 9950 10099 50 10050 9952 Horizontal edge Vertical edge

6 6 JPEG-LS prediction scheme ca bx ca bb ca ba 40100 4160 4041 100 40100 41100 4041 10060 Vertical edge Horizontal edge

7 7 JPEG-LS prediction scheme ca bx ca ba+b-c 10099 10150 10099 101100 49 10151 10049 10150

8 8 Improvements JPEG-LS cbd ax 2005053 5052 2005053 5051 200505 30 200508 36 Diagonal edge T1=20, T2=0

9 9 Experimental results 789074 64145142 1006397 708776 60140135 1005999  Predictive mean squared error N = 9

10 10 Experimental results Table 1 PMSE values and lossless compression ratios of all test images, when compressed using JPEG-LS

11 11 Experimental results Fig. 1. Performance at T1 = 11

12 12 Experimental results Fig. 2. Performance at T1 = 19

13 13 Experimental results Fig. 3. Optimum performance graphs

14 14 Experimental results Table 2 Optimum performance and settings for proposed algorithm

15 15 Experimental results Fig. 4. Predictive error images (a) using JPEG-LS, (b) using proposed scheme

16 16 Conclusions It maintains the low complexity requirement of JPEG-LS standard. The proposed a modifications reduce the PMSE up to 15%.

17 17 Comments 如何根據影像不同的特性,動態的去調 整門檻值 T1 及 T2 ? 是否可以利用統計分析的方法,去找出 適用於一般影像的門檻值 T1 及 T2 ?

18 18 Sample images Lena Baboon


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