CA2019943C

Automatic exposure adjusting apparatus for automatically adjusting exposure by fuzzy inference

Abstract

An automatic exposure adjusting apparatus for use in a video camera automatically adjusts exposure based on a video signal obtained from an image sensing circuit. The automatic exposure adjusting apparatus detects a luminance signal level of the video signal and detects a first mean value which is a simple mean value per unit area of an image sensed picture. The automatic exposure adjusting apparatus also outputs a second mean value weighted every area in accordance with a luminance distribution in the image sensed picture. The automatic exposure adjusting apparatus controls the adjustment of exposure based on the first and second mean values. Such weighting of the luminance level in accordance with the luminance distribution is carried out based on the fussy inference.

CA2019943C, drawing sheet 1
Sheet 1 of 11

Term

Term ended

Expired 27 June 2010, 16.2 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

25 claims: 12 independent, 13 dependent

  1. 1
    WHAT IS CLAIMED IS:1. An automatic exposure adjusting apparatus for automatically adjusting exposure based on a video signal obtained from image sensing means (1, 3), comprising: representative value computing means (22, 31-36, 5 41-46, 68) for detecting a luminance signal level of said video signal and computing a representative value temporarily representing a luminance level of an entire image sensed picture, correction amount determining means (51-57, 61-67) 10 for determining the correction amount of said temporary representative value in accordance with a luminance distribution in the image sensed picture, and exposure controlling means (2, 4, 5, 69-72) for controlling exposure such that the amount of adjustment of 15 exposure is changed in accordance with said temporary representative value and said correction amount, said determination of the correction amount by said correction amount determining means being carried out based on fussy inference.
  2. 2
    An automatic exposure adjusting apparatus for automatically adjusting exposure based on a video signal obtained from image sensing means (1, 3), comprising:means (23, 25, 26) for setting a plurality of divided regions on an image sensed picture, luminance evaluating value detecting means (22, 31-36, 41-46) for detecting a luminance signal level of said video signal in each of said plurality of regions and supplying the same as a luminance evaluating value of the corresponding region, representative value computing means (68) for computing a representative value temporarily representing a luminance level of the entire image sensed picture based on said luminance evaluating values of respective regions, correction amount determining means (51-57, 61-67) for determining a correction amount of said temporary representative value in accordance with a correlation of said luminance evaluating values of the respective regions, and exposure controlling means (2, 4, 5, 69-72) for controlling exposure such that the amount of adjustment of exposure is changed in accordance with said temporary representative value and said correction amount, said determination of the correction amount by said correction amount determining means being carried out based on fuzzy inference with at least said luminance evaluating values of respective regions or a value arithmetically obtained from said luminance evaluating values as an input variable and said correction amount as a conclusion portion.
  3. 3
    An automatic exposure adjusting apparatus for automatically adjusting exposure based on a video signal obtained from image sensing means (1, 3), comprising:representative value computing means (22, 31-36, 41-46, 51-57, 61-67) for detecting a luminance signal level of said video signal and computing a representative value representing a luminance level of an entire image sensed picture, and exposure controlling means (2, 4, 5, 69-72) for controlling exposure such that the amount of adjustment of exposure is changed in accordance with said representative value, said computation of said representative value by said representative value computing means being carried out based on fuzzy inference.
  4. 4
    An automatic exposure adjusting apparatus for automatically adjusting exposure based on a video signal obtained from image sensing means (1, 3), comprising:means (23, 25, 26) for setting a plurality of divided regions on an image sensed picture, 2919943 luminance evaluating value detecting means (22, 31-36, 41-46) for detecting a luminance signal level of said video signal in each of said plurality of regions and supplying the same as a luminance evaluating value of the 10 corresponding region, priority determining means (51-57) for determining a priority of each of said regions, representative value computing means (61-67) for computing a representative value representing a luminance 15 level of the entire image sensed picture by weighting said luminance evaluating values of respective regions with the priorities determined by said priority determining means, and exposure controlling means (2, 4, 69-72) for 20 controlling exposure such that the amount of adjustment of exposure is changed in accordance with said representative value, said determination of priority by said priority determining means being carried out based on fuzzy 25 inference with at least said luminance evaluating values of respective regions or a value arithmetically obtained from said luminance evaluating values as an input variable, and said priorities as a conclusion portion.
  5. 5
    An automatic exposure adjusting apparatus for automatically adjusting exposure based on a video signal obtained from image sensing means (1, 3), comprising:means (23, 25, 26) for setting a plurality of divided 5 regions on an image sensed picture, luminance evaluating value detecting means (22, 31-36, 41-46) for detecting a luminance signal level of said video signal in each of said plurality of regions and supplying the same as a luminance evaluating value of the 10 corresponding region, luminance distribution detecting means (51-57, 61-67) for carrying fuzzy inference with a ratio of luminance evaluating values of the arbitrary two regions among said plurality of regions as an input variable and detecting a 15 luminance distribution of said image sensed picture, and exposure controlling means (2, 4, 5, 69-72) for controlling exposure such that the amount of adjustment of exposure is changed in response to said an output of said luminance distribution detecting means.
  6. 6
    An automatic exposure adjusting apparatus for automatically adjusting exposure based on a video signal obtained from image sensing means (1, 3), comprising:means (23, 25, 26) for setting a plurality of divided 5 regions on an image sensed picture, luminance evaluating value detecting means (22, 31-36, 41-46) for detecting a luminance signal level of said video signal in each of said plurality of regions and supplying the same as a luminance evaluating value of the corresponding region, priority determining means (51-57, 68) for determining a priority of each of said regions, priority processing means (61-67) for weighting said luminance evaluating values of respective regions with the priorities determined by said priority determining mean, exposure controlling means (2, 4, 5, 69-72) for controlling exposure such that the amount of adjustment of exposure is changed in response to an output of said priority processing means, low luminance detecting means (57) for determining the state wherein the amount of an incident light into said image sensing means is small to be a low luminance state, and means (57) for limiting the weighting by said priority processing means when the determination of said low luminance state is made.
  7. 10
    An automatic exposure adjusting apparatus for automatically adjusting exposure based on a video signal obtained from image sensing means (1, 3), comprising:means (23, 25, 26) for setting a plurality of divided 5 regions on an image sensed picture, luminance evaluating value detecting means (22, 31-36, 41-46) for detecting a luminance signal level of said video signal in each of said plurality of regions and supply the same as a luminance evaluating value of the 10 corresponding region, priority determining means (51-57, 68) for determining a priority of each of said regions, priority processing means (61-67) for weighting said luminance evaluating values of respective regions with the 15 priorities determined by said priority determining means, exposure controlling means (2, 4, 5, 69-72) for controlling exposure such that the amount of adjustment of exposure is changed in response to an output of said priority processing means, 20 high luminance detecting means (57) for determining whether a high luminance portion is included in said image sensed picture or not, and means (57) for reducing a priority of a region including said high luminance portion when said high 25 luminance portion is detected.
  8. 13
    An automatic exposure adjusting apparatus for automatically adjusting exposure based on a video signal obtained from image sensing means (1, 3) comprising:means (23, 25, 26) for setting a plurality of divided 5 regions on an image sensed picture, luminance evaluating value detecting means (22, 31-36, 41-46) for detecting a luminance signal level of said video signal in each of said plurality of regions and supplying the same as a luminance evaluating value of the 10 corresponding region, priority determining means (51-57, 68) for determining a priority of each of said regions, priority processing means (61-67) for weighting said luminance evaluating values of respective regions with the 15 priorities determined by said priority determining means, exposure controlling means (2, 4, 5, 69-72) for controlling exposure such that the amount of adjustment of exposure is changed in response to an output of said priority processing means, means (57), when out of said plurality of regions a plurality of specific regions have approximately equal luminance evaluating values, for increasing a priority of each of said specific regions.
  9. 17
    An automatic exposure adjusting apparatus for automatically adjusting exposure based on a video signal obtained from image sensing means (1, 3) comprising:means (23, 25, 26) for providing a plurality of 5 divided regions on a image sensed picture including at least a first region provided at the center of said image sensed picture, a second region provided at the center of said image sensed picture so as to surround said fist region and a third region provided at the lower side of 10 said second region, luminance evaluating value detecting means (22, 31-36, 41-46) for detecting a luminance signal level of said video signal in each of said plurality of regions and supplying the same as a luminance evaluating value of the 15 corresponding region, priority determining means (51-57, 68) for determining a priority of each of said regions, priority processing means (61-67) weighting said luminance evaluating values of respective regions with the 20 priorities determined by said priority determining means, exposure controlling means (2, 4, 5, 69-72) for controlling exposure such that the amount of adjustment of exposure is changed in response to an output of said priority processing means, and means (57) for increasing priorities of said second and third regions priorities when the luminance evaluating value of said first region is at an abnormally high level or an abnormally low level and the luminance evaluating values of said second and third regions are not close to said luminance evaluating value of said first region.
  10. 19
    An automatic exposure adjusting apparatus for automatically adjusting exposure based on a video signal obtained from image sensing means (1, 3) comprising:means (23, 25, 26) for providing at least one major region and a plurality of non-major regions by dividing an image sensed picture, luminance evaluating value detecting means (22, 31-36, 41-46) for detecting a luminance signal level of said video signal in each of said plurality of regions and supplying the same as a luminance evaluating value, a priority determining means (51-57, 68) for determining a priority of each of said regions, priority processing means (61-67) for weighting said luminance evaluating values of respective regions with the 15 priorities determined by said priority determining means, exposure controlling means (2, 4, 5, 69-72) for controlling exposure such that the amount of adjustment of exposure is changed in response to an output of said priority processing means, 20 abnormal luminance portion detecting means (57) for determining as to whether any of said regions includes an abnormal luminance portion or not, and means (57) for giving said major region a priority over that of said non-major regions when said abnormal 25 luminance portion is detected.
  11. 22
    An automatic exposure adjusting apparatus for automatically adjusting exposure based on a video signal obtained from image sensing means (1, 3), comprising:means (23, 25, 26) for setting a plurality of divided 5 regions on an image sensed picture, luminance evaluating value detecting means (22, 31-36, 41-46) for detecting a luminance signal level of said video signal in each of said plurality of regions and supplying the same as a luminance evaluating value of the 10 corresponding region, priority determining means (51-57, 68) for determining a priority of each of said regions, priority processing means (61-67) for weighting said luminance evaluating values of respective regions with the 15 priorities determined by said priority determining means, exposure controlling means (2, 4, 5, 69-72) for controlling exposure such that the amount of adjustment of exposure is changed in response to an output of said priority processing means, 20 means (57) for detecting that said luminance evaluating value of the region having higher priority is larger than the luminance evaluating value of a region having a lower priority, means (57) for limiting the weighting by said 25 priority processing means when said determination is made that said luminance evaluating value of the region having the higher priority is larger than the luminance evaluating value of the region having the lower priority.
  12. 24
    An automatic adjusting apparatus comprising:fuzzy controlling means for performing a predetermined control based on fuzzy inference with a predetermined input variable, and 5 holding means for holding in advance a plurality of functions of different gradients as membership functions for use in the fuzzy inference.
Independent claims12