1 1 Pixel 0 n 1 n=8 56 R G B RGB M RGB (1) M = 0.99R G B (1) () 4 π d 4 B = L cos φ () 4 ID B L d ID φ d / ID F R φ (3) R

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I-07 404 137, Email:dsusuki@ipc.shizuoka.ac.jp When preparing the manuscript, read and observe carefully this sample as well as the instruction manual for the manuscript (1) OS of the Transaction of Japan Society of Mechanical Windows Engineers. 000/XP/Vista/7 This sample was prepared using MS-word.------------------------------------------------------------------------------------------------------------------------------------ ------------------------------------------------------------------------------------------------------------------------------------------------ () ------------------------------------------------------------------------------------------------------------------------------------------------ ------------------------------------------------------------------------------------------------------------------------------------------------ (3) ---------------------------------------------------------------------------------------------------------------------------------------------- http://ktm11.eng.shizuoka.ac.jp/experiment.html (4) 1 1. 1. 1 1 1

1 1 Pixel 0 n 1 n=8 56 R G B RGB 56 16771656 3 M RGB (1) M = 0.99R + 0.587G + 0. 114B (1) () 4 π d 4 B = L cos φ () 4 ID B L d ID φ d / ID F R φ (3) R = tan 1 ID φ (3) () 10 3 f ( i, t ( i, (4)ij g t g 1, f ( i, > t i, = t 0, f ( i, j ) t ( (4) 1 4

3 4 1 5 8-4- 4-4 8-8 4-4- 8-8- 5 6 6 1 7 f ( i, g( i, (5) 0, f ( i, 4 8 0 g ( i, = (5) 1, 4-8- 0-1-

1 8 7 3. grayscale.exe 3 bmp txt gazo.bmp bunsho.txt -1 1 1 Windows 8 Windows - f focus.exe f x y 113, 38 113 38Enter

-3 f shading.exe 8 Windows 3-1 histogram.exe () 3- Windows binarization.exe 4-1 isolation.exe

4- labeling.exe 1 4-3 Windows segmentation.exe 5-1 erosion.exe 5- labeling.exe 0 4. (1) () D 1 I 1 D I ()(3) ID D 1 I 1 D I (3) (4) (5)

1.. 9 10 1 1 9 10 11 1 11 1

1 1 13 f ( i, g( i, (6) 1, f ( i, 4 8 1 g ( i, = (6) 0, 14 8 13 e (7) 4πS e = (7) L S L e 1 1 15 (8) ax + bxy + cy + dx + ey + f = 0 (8) (8) 6 5 1 1 5 5 xy(8) 14 15 1

3. 1 5-1 n 1 5- n 5-1 1 5- dilation.exe 5-1 n 1 5-1 n 1 n 1 n () 6-1 edge.exe 6-1 5 7-3 1 Windows 6-3 fitting.exe 7-1 7-7-3 7-1 5 equation.exe

7- ellipse.exe a=1.9b=.0c=3.4d=4.e=5.8f=6.3 1.9.0 3.4 4. 5.8 6.3Enter 7-3 size.exe 6-3 1 6-4. (1) () (3) (4) ax + bxy + cy + dx + ey + f = 0 θ x x ( ) ( ) 0 0 + = 1 A θ = (5) πab y y B 1 1 tan b c a af π A + B (3) size.exe (1) CGCG-ARTS 004 4 009 () CG-ARTS 004 4 009 (3) 00 (4) 1996 004

(1) (1-1) C ImageAnalysis (1-) A 1B A B 1 1 A01.bmp B01.bmp 1 ZIP 1 ZIP (1-3) (1-1) A01.bmp B01.bmp C: ImageAnalysis (1-4) 15 1 (1-5) (1-1) 15 C: ImageAnalysis () cd C: ImageAnalysis (Enter) (1) 1 4. http://ktm11.eng.shizuoka.ac.jp/experiment.html () (3) (4)

1 grayscale a b focus c b d e f shading g b h f i histogram j i k l binarization m i n o isolation p o q labeling r q s t segmentation u t v w erosion x w y z labeling A z B C D grayscale a b focus c b d e f

shading g b h f i histogram j i k l binarization m i n o isolation p o q labeling r q s t segmentation u t v w erosion x w y z dilation A z B C edge D C E fitting F E G H I equation J I K a = b = c = d = e = f = ellipse L b M K N size O E P I1 Q R S T