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GPIO.setmode(GPIO.BOARD) |
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GPIO.setmode(GPIO.BOARD) |
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GPIO.setup(IR_PIN, GPIO.OUT) |
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GPIO.setup(IR_PIN, GPIO.OUT) |
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# set cameramode to normal; GPIO.LOW would enable infrared mode |
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GPIO.output(IR_PIN, GPIO.HIGH) |
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i = 0 |
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try: |
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while True: |
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print("Gpio Low") |
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GPIO.output(IR_PIN, GPIO.HIGH) |
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time.sleep(2) |
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def person_detect(): |
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# initialize the HOG descriptor/person detector |
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hog = cv2.HOGDescriptor() |
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hog.setSVMDetector(cv2.HOGDescriptor_getDefaultPeopleDetector()) |
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# loop over the image paths |
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for imagePath in paths.list_images(args["images"]): |
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# load the image and resize it to (1) reduce detection time |
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# and (2) improve detection accuracy |
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image = cv2.imread(imagePath) |
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image = imutils.resize(image, width=min(400, image.shape[1])) |
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orig = image.copy() |
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# detect people in the image |
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(rects, weights) = hog.detectMultiScale(image, winStride=(4, 4), |
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padding=(8, 8), scale=1.05) |
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# draw the original bounding boxes |
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for (x, y, w, h) in rects: |
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cv2.rectangle(orig, (x, y), (x + w, y + h), (0, 0, 255), 2) |
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# apply non-maxima suppression to the bounding boxes using a |
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# fairly large overlap threshold to try to maintain overlapping |
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# boxes that are still people |
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rects = np.array([[x, y, x + w, y + h] for (x, y, w, h) in rects]) |
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pick = non_max_suppression(rects, probs=None, overlapThresh=0.65) |
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# draw the final bounding boxes |
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for (xA, yA, xB, yB) in pick: |
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cv2.rectangle(image, (xA, yA), (xB, yB), (0, 255, 0), 2) |
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# show some information on the number of bounding boxes |
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filename = imagePath[imagePath.rfind("/") + 1:] |
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print("[INFO] {}: {} original boxes, {} after suppression".format(filename, len(rects), len(pick))) |
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# take image and scp it to the other pi |
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print("take image...") |
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subprocess.run(['raspistill', '-o', 'images/image' + str(i) + '.jpg']) |
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print("transfer image") |
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#scp('images/image' + str(i) + '.jpg', '~/image' + str(i) + '.jpg', '192.168.252.1', 'pi', 'smarthome') |
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i+=1 |
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def main(): |
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i = 0 |
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if i>10: |
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break |
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#print("Gpio High") |
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#GPIO.output(IR_PIN, GPIO.HIGH) |
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#time.sleep(2) |
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try: |
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while True: |
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print("Gpio Low") |
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time.sleep(2) |
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# take image and scp it to the other pi |
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#print("take image...") |
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#subprocess.run(['raspistill', '-o', 'image2.jpg']) |
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# take image and scp it to the other pi |
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print("take image...") |
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subprocess.run(['raspistill', '-o', 'images/image' + str(i) + '.jpg']) |
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#print("transfer image") |
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#scp('image2.jpg', '~/image2.jpg', '192.168.252.1', 'pi', 'smarthome') |
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#break |
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#print("transfer image") |
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#scp('images/image' + str(i) + '.jpg', '~/image' + str(i) + '.jpg', '192.168.252.1', 'pi', 'smarthome') |
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i+=1 |
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if i>10: |
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break |
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#print("Gpio High") |
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#GPIO.output(IR_PIN, GPIO.HIGH) |
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#time.sleep(2) |
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# take image and scp it to the other pi |
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#print("take image...") |
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#subprocess.run(['raspistill', '-o', 'image2.jpg']) |
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#print("transfer image") |
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#scp('image2.jpg', '~/image2.jpg', '192.168.252.1', 'pi', 'smarthome') |
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#break |
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except Exception as e: |
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print(e) |
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finally: |
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GPIO.cleanup() |
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#person_detect() |
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except Exception as e: |
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print(e) |
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finally: |
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GPIO.cleanup() |
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if __name__ == '__main__': |
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main() |