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SIFT
import cv2
import matplotlib.pyplot as plt
%matplotlib inline
# read images
img1 = cv2.imread('eiffel_2.jpeg')
img2 = cv2.imread('eiffel_1.jpg')
img1 = cv2.cvtColor(img1, cv2.COLOR_BGR2GRAY)
img2 = cv2.cvtColor(img2, cv2.COLOR_BGR2GRAY)
#sift
sift = cv2.xfeatures2d.SIFT_create()
keypoints_1, descriptors_1 = sift.detectAndCompute(img1,None)
keypoints_2, descriptors_2 = sift.detectAndCompute(img2,None)
#feature matching
bf = cv2.BFMatcher(cv2.NORM_L1, crossCheck=True)
matches = bf.match(descriptors_1,descriptors_2)
matches = sorted(matches, key = lambda x:x.distance)
img3 = cv2.drawMatches(img1, keypoints_1, img2, keypoints_2, matches[:50], img2, flags=2)
plt.imshow(img3),plt.show()
import cv2
import matplotlib.pyplot as plt
%matplotlib inline
#reading image
img1 = cv2.imread('eiffel_2.jpeg')
gray1 = cv2.cvtColor(img1, cv2.COLOR_BGR2GRAY)
#keypoints
sift = cv2.xfeatures2d.SIFT_create()
keypoints_1, descriptors_1 = sift.detectAndCompute(img1,None)
img_1 = cv2.drawKeypoints(gray1,keypoints_1,img1)
plt.imshow(img_1)
import cv2
import matplotlib.pyplot as plt
%matplotlib inline
# read images
img1 = cv2.imread('eiffel_2.jpeg')
img2 = cv2.imread('eiffel_1.jpg')
img1 = cv2.cvtColor(img1, cv2.COLOR_BGR2GRAY)
img2 = cv2.cvtColor(img2, cv2.COLOR_BGR2GRAY)
#sift
sift = cv2.xfeatures2d.SIFT_create()
keypoints_1, descriptors_1 = sift.detectAndCompute(img1,None)
keypoints_2, descriptors_2 = sift.detectAndCompute(img2,None)
len(keypoints_1), len(keypoints_2)
import cv2
import matplotlib.pyplot as plt
%matplotlib inline
# read images
img1 = cv2.imread('eiffel_2.jpeg')
img2 = cv2.imread('eiffel_1.jpg')
img1 = cv2.cvtColor(img1, cv2.COLOR_BGR2GRAY)
img2 = cv2.cvtColor(img2, cv2.COLOR_BGR2GRAY)
figure, ax = plt.subplots(1, 2, figsize=(16, 8))
ax[0].imshow(img1, cmap='gray')
ax[1].imshow(img2, cmap='gray')
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