fix irradiance computation
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7919878582
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dd087bdbb8
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@ -31,8 +31,13 @@ imgs = np.array(imgs)
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print(imgs.shape)
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print(imgs.dtype)
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inv_resp = np.arange(256, dtype=np.float64)
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inv_resp[250:] = -1.0 # Use negative numbers to detect oversaturation
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num_pixels_by_intensity = np.bincount(imgs.flat)
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print('num_pixels_by_intensity', num_pixels_by_intensity)
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inv_resp = np.arange(num_pixels_by_intensity.shape[0], dtype=np.float64)
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inv_resp[-1] = -1.0 # Use negative numbers to detect saturation
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def opt_irradiance():
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@ -43,7 +48,9 @@ def opt_irradiance():
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corrected_imgs[corrected_imgs < 0] = 0
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denom = np.sum(times, axis=0)
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irr = np.sum(corrected_imgs, axis=0) / denom
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idx = (denom != 0)
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irr = np.sum(corrected_imgs, axis=0)
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irr[idx] /= denom[idx]
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irr[denom == 0] = -1.0
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return irr
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@ -51,14 +58,16 @@ def opt_inv_resp():
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generated_imgs = irradiance[np.newaxis, :, :] * exposures[:, np.newaxis, np.newaxis]
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num_pixels_by_intensity = np.bincount(imgs.flat, generated_imgs.flat >= 0)
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generated_imgs[generated_imgs < 0] = 0
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sum_by_intensity = np.bincount(imgs.flat, generated_imgs.flat)
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new_inv_resp = inv_resp
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idx = np.nonzero(num_pixels_by_intensity > 0)
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new_inv_resp[idx] = sum_by_intensity[idx] / num_pixels_by_intensity[idx]
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new_inv_resp[250:] = -1.0
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return new_inv_resp
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new_inv_resp[-1] = -1.0 # Use negative numbers to detect saturation
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return new_inv_resp
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def print_error():
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generated_imgs = irradiance[np.newaxis, :, :] * exposures[:, np.newaxis, np.newaxis]
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@ -66,7 +75,7 @@ def print_error():
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generated_imgs[imgs == 255] = 0
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print(np.sum(generated_imgs**2))
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for iter in range(3):
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for iter in range(5):
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irradiance = opt_irradiance()
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print_error()
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inv_resp = opt_inv_resp()
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@ -75,12 +84,14 @@ for iter in range(3):
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plt.figure()
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plt.plot(inv_resp)
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plt.ylabel('Img Mean')
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plt.xlabel('Exposure')
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plt.plot(inv_resp[:-1])
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plt.ylabel('Irradiance Value')
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plt.xlabel('Image Intensity')
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plt.title('Inverse Responce Function')
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plt.figure()
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plt.imshow(irradiance)
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plt.title('Irradiance Image')
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plt.show()
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