EP1566958A2

Image signal correction method and image signal correction apparatus

Abstract

The objective of the present invention is to enhance a specific color without changing the hue of an original image. At least two different gray-level correction functions are provided for luminance signals input for three colors, R, G and B, and these functions are used to calculate correction coefficients for the individual colors. Then, the luminance signals input for the three colors are synthesized so that the weighting of the colors is changed in accordance with the input luminance signals, and a correction coefficient is calculated that is used in common. The input signals are then multiplied by the thus obtained correction coefficient.

EP1566958A2, drawing sheet 1
Sheet 1 of 14

Term

Term ended

Projected expiry passed 28 January 2025, 1.7 years ago.

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9 claims: 6 independent, 3 dependent

  1. 1
    An image signal correction method, for correcting luminance signals input for three colors in accordance with at least two different gray-level correction functions, comprising the steps of:employing the gray-level correction functions for the individual three colors to obtain transform values for the luminance signals input for the three colors;calculating a correction coefficient used in common for individual colors that are synthesized with the transform values so as to change the weighting for the colors in accordance with the luminance signals input for the three colors;and multiplying the luminance signals input by the correction coefficient.
  2. 2
    An image signal correction method comprising the steps of:employing the gray-level correction functions for the individual three colors to obtain transform values for the luminance signals input for the three colors;calculating a correction coefficient used in common for individual colors that are synthesized with the transform values so as to change the weighting for the colors in accordance with the luminance signals input for the three colors;multiplying the luminance signals input by the correction coefficient;and limiting the luminance signals input so as to prevent values obtained by multiplying the luminance signals input by the correction coefficient from exceeding available maximum values.
  3. 3
    An image signal correction method, for correcting luminance signals input for three colors in accordance with at least two different gray-level correction functions, comprising the steps of:employing the gray-level correction functions for the individual three colors to obtain transform values for the luminance signals input for the three colors;calculating a correction coefficient used in common for individual colors that are synthesized with the transform values so as to change the weighting for the colors in accordance with the luminance signals input for the three colors;calculating the available maximum value for the correction coefficient;and multiplying the luminance signals input by a smaller value, either the value obtained as the correction coefficient or the available maximum value for the correction coefficient.
  4. 5
    An image signal correction apparatus, for correcting luminance signals input for three colors in accordance with at least two different gray-level correction functions, comprising:a correction unit for employing the gray-level correction functions for the individual three colors to obtain transform values for the luminance signals input for the three colors;a correction coefficient calculation unit for calculating a correction coefficient used in common for individual colors that are synthesized with the transform values so as to change the weighting for the colors in accordance with the luminance signals input for the three colors;and a multiplication unit for multiplying the luminance signals input by the correction coefficient.
  5. 6
    An image signal correction apparatus comprising:a correction unit for employing the gray-level correction functions for the individual three colors to obtain transform values for the luminance signals input for the three colors;a correction coefficient calculation unit for calculating a correction coefficient used in common for individual colors that are synthesized with the transform values so as to change the weighting for the colors in accordance with the luminance signals that are input for the three colors;a multiplication unit for multiplying the luminance signals input by the correction coefficient;and a limitation unit for limiting the luminance signals input so as to prevent values obtained by multiplying the luminance signals input by the correction coefficient from exceeding available maximum values.
  6. 7
    An image signal correction apparatus, for correcting luminance signals input for three colors in accordance with at least two different gray-level correction functions, comprising:a correction unit for employing the gray-level correction functions for the individual three colors to obtain transform values for the luminance signals input for the three colors;a correction coefficient calculation unit for calculating a correction coefficient used in common for individual colors that are synthesized with the transform values so as to change the weighting for the colors in accordance with the luminance signals input for the three colors;a maximum value calculation unit for calculating the available maximum value for the correction coefficient;and a comparison and multiplication unit for multiplying the luminance signals input by a smaller value, either the value obtained as the correction coefficient or the available maximum value for the correction coefficient.