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Roadlines_Detector_Pic.py
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Roadlines_Detector_Pic.py
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# -*- coding: utf-8 -*-
"""
Created on Tue Jul 14 22:53:44 2020
@author: VARUN SAKUNIA
"""
import matplotlib.pylab as plt
import cv2
import numpy as np
def region_of_interest(img, vertices):
mask = np.zeros_like(img)
#channel_count = img.shape[2]
match_mask_color = 255
cv2.fillPoly(mask, vertices, match_mask_color)
masked_image = cv2.bitwise_and(img, mask)
return masked_image
def draw_the_lines(img, lines):
img = np.copy(img)
blank_image = np.zeros((img.shape[0], img.shape[1], 3), dtype=np.uint8)
for line in lines:
for x1, y1, x2, y2 in line:
cv2.line(blank_image, (x1,y1), (x2,y2), (0, 255, 0), thickness=10)
img = cv2.addWeighted(img, 0.8, blank_image, 1, 0.0)
return img
image = cv2.imread(r"D:\My_Face_DataSet\road.jfif")
image = cv2.cvtColor(image, cv2.COLOR_BGR2RGB)
print(image.shape)
height = image.shape[0]
width = image.shape[1]
region_of_interest_vertices = [
(-650, height),
(width/2.6, height/2.10),
(width+100, height)]
gray_image = cv2.cvtColor(image, cv2.COLOR_RGB2GRAY)
canny_image = cv2.Canny(gray_image, 150, 250)
cropped_image = region_of_interest(canny_image,
np.array([region_of_interest_vertices], np.int32),)
lines = cv2.HoughLinesP(cropped_image,
rho=6,
theta=np.pi/180,
threshold=160,
lines=np.array([]),
minLineLength=40,
maxLineGap=25)
image_with_lines = draw_the_lines(image, lines)
plt.imshow(image_with_lines)
plt.show()