WO2011157245A2 - 自动曝光方法、装置和成像设备 - Google Patents

自动曝光方法、装置和成像设备 Download PDF

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Publication number
WO2011157245A2
WO2011157245A2 PCT/CN2011/079036 CN2011079036W WO2011157245A2 WO 2011157245 A2 WO2011157245 A2 WO 2011157245A2 CN 2011079036 W CN2011079036 W CN 2011079036W WO 2011157245 A2 WO2011157245 A2 WO 2011157245A2
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WIPO (PCT)
Prior art keywords
value
exposure
current
exposure value
brightness
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PCT/CN2011/079036
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English (en)
French (fr)
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WO2011157245A3 (zh
Inventor
李娟�
范勇
王爱翠
方超
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华为终端有限公司
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Application filed by 华为终端有限公司 filed Critical 华为终端有限公司
Priority to PCT/CN2011/079036 priority Critical patent/WO2011157245A2/zh
Priority to CN201180001530.2A priority patent/CN102369723B/zh
Publication of WO2011157245A2 publication Critical patent/WO2011157245A2/zh
Publication of WO2011157245A3 publication Critical patent/WO2011157245A3/zh

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    • GPHYSICS
    • G03PHOTOGRAPHY; CINEMATOGRAPHY; ANALOGOUS TECHNIQUES USING WAVES OTHER THAN OPTICAL WAVES; ELECTROGRAPHY; HOLOGRAPHY
    • G03BAPPARATUS OR ARRANGEMENTS FOR TAKING PHOTOGRAPHS OR FOR PROJECTING OR VIEWING THEM; APPARATUS OR ARRANGEMENTS EMPLOYING ANALOGOUS TECHNIQUES USING WAVES OTHER THAN OPTICAL WAVES; ACCESSORIES THEREFOR
    • G03B7/00Control of exposure by setting shutters, diaphragms or filters, separately or conjointly
    • G03B7/08Control effected solely on the basis of the response, to the intensity of the light received by the camera, of a built-in light-sensitive device
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N23/00Cameras or camera modules comprising electronic image sensors; Control thereof
    • H04N23/70Circuitry for compensating brightness variation in the scene
    • H04N23/71Circuitry for evaluating the brightness variation

Definitions

  • the present invention relates to the field of image processing technology, and more particularly to an automatic exposure method, apparatus, and imaging apparatus. Background technique
  • Auto exposure refers to automatically setting the shutter value and aperture value based on the acquired exposure value, including the brightness gain value and the value of the exposure light, to adjust the camera's sensor gain and exposure time to achieve the exposure required for imaging.
  • the existing imaging device can achieve effective photographing because the imaging interface has an unstable process when the camera is activated, so automatic exposure is required, so that the image brightness value of the captured image reaches the target brightness. Value, in order to make the imaging interface stable.
  • each exposure value includes a brightness gain value and an exposure light value, etc.
  • the existing automatic exposure method performs a full range search from all exposure values to finally determine the correct one.
  • the exposure value is automatically exposed, and the number of exposure values is large.
  • the correct exposure value is selected from the method of trying to select an exposure value for an automatic exposure. If the brightness of the currently taken image is still not in compliance, Continue to select other exposure values for automatic exposure. Therefore, the existing automatic exposure method requires multiple automatic exposures. For example, if there are 500 exposure values, it is possible to perform 500 automatic exposures to stabilize the imaging interface.
  • Target brightness which takes at least 1 second, increases the time for automatic exposure and increases the amount of device computation, which affects device performance.
  • the present invention provides an automatic exposure method for solving the problem that the automatic exposure time is long, the amount of calculation of the device is large, and the performance of the device is degraded.
  • the invention also provides an automatic exposure device and an imaging device for ensuring the implementation and application of the above method in practice.
  • the present invention provides the following technical solutions:
  • an automatic exposure method comprising:
  • An optimum exposure value is determined from the current exposure value search range, and automatic exposure is performed according to the optimal exposure value.
  • an automatic exposure apparatus comprising:
  • a first acquiring unit configured to acquire a current ambient brightness value
  • a range determining unit configured to determine, according to a preset correspondence relationship between the ambient brightness range and the exposure value search range, a current exposure value search range corresponding to the current ambient brightness value from all the exposure values; an exposure value determining unit, configured to The optimal exposure value is determined in the current exposure value search range, and the automatic exposure is performed according to the exposure value.
  • an image forming apparatus includes an ambient light sensor and an image processor, wherein the ambient light sensor is configured to detect ambient light brightness;
  • the image processor is configured to acquire a current ambient brightness value detected by the ambient light sensor, and determine a current ambient brightness value from all the exposure values according to a correspondence between a preset ambient brightness range and an exposure value search range.
  • the current exposure value search range determining an optimal exposure value from the current exposure value search range, and performing automatic exposure according to the exposure value.
  • the present invention provides an automatic exposure method, device and imaging device.
  • the brightness value of the current environment is obtained, according to a preset ambient brightness range.
  • Embodiment 1 is a flow chart of Embodiment 1 of an automatic exposure method according to the present invention.
  • Embodiment 2 is a flow chart of Embodiment 2 of an automatic exposure method according to the present invention.
  • Embodiment 3 is a flow chart of Embodiment 3 of an automatic exposure method according to the present invention.
  • Embodiment 4 is a flow chart of Embodiment 1 of an automatic exposure apparatus according to the present invention.
  • FIG. 5 is a flow chart of Embodiment 2 of an automatic exposure apparatus according to the present invention.
  • FIG. 6 is a flow chart of Embodiment 3 of an automatic exposure apparatus according to the present invention.
  • FIG. 7 is a schematic structural view of an embodiment of an image forming apparatus according to the present invention.
  • One of the main ideas of the present invention may include: acquiring a current ambient brightness value, and determining a current exposure value search range corresponding to the current ambient brightness value according to a preset correspondence between the ambient brightness range and the exposure value range, where the exposure value is Search search in the search range determines the optimal exposure value, and the automatic exposure is performed according to the value. Since it is not necessary to search within the entire range of the exposure value, the exposure value search range is reduced, thereby reducing the number of times of searching and reducing the automatic exposure time. Therefore, the amount of calculation of the device can be reduced, and the performance of the device can be improved.
  • the embodiments of the present invention are described in detail below with reference to the accompanying drawings.
  • FIG. 1 is a flowchart of Embodiment 1 of an automatic exposure method according to the present invention, which may include: Step 101: Acquire a current ambient brightness value.
  • the embodiment of the present invention is applied to a device having a camera function, such as a digital camera, a video camera, a mobile phone with a camera, and other camera devices having a photographing function.
  • a camera function such as a digital camera, a video camera, a mobile phone with a camera, and other camera devices having a photographing function.
  • the automatic exposure is related to the brightness of the captured image
  • the external environment of the camera will have an imaging effect.
  • the influence for example, when taking pictures on sunny days and cloudy days, the brightness of the image taken by the camera is significantly different. Therefore, in this embodiment, the current ambient brightness value is first obtained before the automatic exposure is performed.
  • Current ambient brightness can be detected by an ambient light sensor or other photosensor that detects ambient brightness.
  • Step 102 Determine a current exposure value search range corresponding to the current ambient brightness value according to a correspondence between a preset ambient brightness range and an exposure value search range.
  • the shutter value and the aperture value are automatically set according to the exposure value, thereby adjusting the camera sensor gain or controlling the exposure time. Controls the amount of light entering the camera, making the brightness of the captured image darker or brighter.
  • the exposure value may include a brightness gain value and an exposure light value such that a shutter value and a pupil value may be set according to the brightness gain and the exposure light, the brightness gain being a gain of the camera sensor.
  • the exposure values in the system are usually stored in a predetermined order, for example, in order of increasing the brightness of the image after the automatic exposure according to the exposure value, see Table 1, showing the exposure values stored in the exposure table according to the arrangement order. .
  • each line corresponds to an exposure value, including brightness gain, exposure light, brightness gain * exposure light.
  • the exposure value is arranged in the order in which the brightness of the image is increased by 3% of the brightness, that is, when the automatic exposure is sequentially performed in accordance with the exposure value in the exposure table, the brightness can be gradually increased by 3% by adjusting the camera gain or the exposure light.
  • the corresponding relationship between the ambient brightness range and the exposure value search range is established according to the actual application. For example, suppose that there are 356 exposure values stored in the exposure table. These exposure values are arranged in the order of increasing the brightness of the image by 3%. It is assumed that the ambient light range that can be obtained is llux (Lukes) ⁇ 6400001ux, and the environment can be specified. When the brightness is the lowest, it is llux, corresponding to the maximum value of the exposure value, that is, the 356th exposure value, then the correspondence between the brightness range and the exposure value search range can be set as follows:
  • Llux ⁇ 501ux corresponds to the 320th to the 356th exposure value
  • 1001ux ⁇ 2001ux corresponds to the 280th to the 300th exposure value
  • the corresponding relationship may also be established according to the result of the specific test, for example, according to the exposure value corresponding to the image of the all-black object, the corresponding exposure value when imaging the all-white object, and the corresponding exposure when shooting the ordinary scene. Values, etc., and then establish the correspondence according to the corresponding ambient brightness under these different conditions.
  • the above example is only an implementation manner.
  • the search range of the exposure value is also changed accordingly.
  • the exposure values are arranged in a decreasing manner, and the ambient brightness is llux ⁇ For 501ux, it may correspond to the first to 100th exposure value search range.
  • the establishment of the correspondence relationship is based on the relationship between the ambient brightness and the actual exposure value.
  • the search range of the current exposure value may be determined to be the 200th to 280th exposure value according to the above correspondence.
  • Step 103 Determine an optimal exposure value from the current exposure value search range, and perform automatic exposure. After determining the current exposure value search range, the search may be performed from the exposure value search range to determine an optimal exposure value, which is an automatic exposure after the exposure value is performed, and the image can be taken. The brightness reaches the target brightness value.
  • the specific determination process will be described in detail in the following embodiments.
  • the search range of the exposure value is reduced, the number of automatic exposures is reduced, for example, the exposure value has a total range of 500 exposure values, and the current exposure value determined by the embodiment has a search range of 100, even if adopted - The method determines the optimal exposure value.
  • This embodiment greatly reduces the number of search lookups and reduces the total time required for automatic exposure, thereby reducing the amount of device calculation.
  • the ambient light brightness value is first obtained, and according to the preset relationship between the ambient light brightness range and the exposure value search range, the current exposure value search range corresponding to the current ambient light brightness value is determined, and only Searching within the current exposure value search range determines the optimal exposure value. Since it is not necessary to search within the full range of all exposure values, the number of searches can be reduced, and the automatic exposure time can be reduced, thereby reducing the calculation amount of the device and improving Equipment performance.
  • 2 is a flowchart of Embodiment 2 of an automatic exposure method according to the present invention. The method may include: Step 201: Acquire a current ambient brightness value.
  • Step 202 Determine a current exposure value search range corresponding to the current ambient brightness value according to a preset relationship between the preset ambient brightness range and the exposure value search range.
  • step 201 and step 202 For the operations of step 201 and step 202, refer to step 101 and step of method embodiment 1 in detail. 102.
  • Step 203 Determine an exposure value from the current exposure value search range, and perform automatic exposure according to the exposure value.
  • an exposure value may be arbitrarily selected from the current exposure value search range, or the first exposure value located in the current exposure value search range may be selected, or the current exposure value may be located at the current exposure value.
  • the exposure value in the middle of the sort order in the search range is used for initial auto exposure.
  • Step 204 Obtain a brightness value of the current image.
  • the brightness value of the current image is obtained according to the image information of the currently captured image, specifically, the brightness value of each pixel of the current image is counted, and then the brightness average of the pixel is calculated according to the brightness average calculation formula.
  • the average brightness value can be used as the brightness value of the current image.
  • Step 205 Determine whether the current image brightness value meets a preset condition, and if not, enter the step
  • the preset condition is that the absolute value of the difference between the current image brightness value and the target brightness value is less than or equal to a predetermined value.
  • the predetermined value is set according to actual conditions, for example, may be 0, that is, the preset condition is that the current brightness value needs to reach the target brightness value.
  • the imaging interface is unstable after the camera is activated, there will be a process of bright and dark flickering.
  • Auto exposure is required to make the interface stable, and the system presets the target brightness value. Since the automatic exposure itself has a certain error, when the absolute value of the difference between the current image brightness value and the target brightness value is less than or equal to a predetermined value, it is considered that the interface after the automatic exposure is stable.
  • Step 206 Determine another exposure value from the current exposure value search range, perform automatic exposure according to the exposure value, and return to step 204.
  • the automatic exposure process is ended until it is determined that the current image brightness value satisfies the preset condition.
  • the brightness value of the current image may be larger than the target value or smaller than the target value. Therefore, when the current image brightness value is greater than the target value, the determined other exposure value needs to be smaller than the exposure according to the previous automatic exposure. The value is used to reduce the exposure and reduce the brightness of the image. When the current image brightness value is less than the target value, the determined other exposure value needs to be greater than the exposure value according to the previous automatic exposure to increase the exposure amount and increase the image brightness.
  • the process of determining another exposure value from the current exposure value search range may specifically be: First, determining a search start position from the current exposure value search range.
  • the exposure values are stored in the form of an exposure meter and arranged in a predetermined order.
  • the image brightness is stable and needs to be subjected to multiple automatic exposures.
  • the search rate is increased. First, the search start position is determined in the exposure table, which is the number of lines of the exposure table.
  • the search start position may be the location of the exposure value selected in the previous automatic exposure.
  • the search start position may also be the position where the first exposure value in the search range is located, or the position in the search range where the exposure value is in the middle of the arrangement order.
  • N is an integer.
  • the number of searches refers to the determined search start position and the determined The number of exposure values at which the exposure value is located.
  • the number of searches is preset according to the difference between the current image brightness value and the target brightness value, and is related to the search start position. For example, if the search start position is the position of the first exposure value in the search range, when the current brightness value is greater than the target brightness value, the search number N value is small, and if the current brightness value is less than the target brightness value, the number of searches is The value of N is large.
  • an exposure value at a position different from the search start position by N exposure values is determined, and automatic exposure is performed in accordance with the exposure value.
  • the system presets different thresholds, each threshold corresponds to a different number of searches, and the current map is The difference between the brightness value and the target brightness value is compared with a threshold value, and based on the difference obtained by the comparison, the number N of searches corresponding to the difference between the current image brightness value and the target brightness value is determined, where N is an integer.
  • the search start position is the position of the exposure value selected when the previous automatic exposure is performed, or the position where the exposure value is located in the middle of the arrangement order, according to the current
  • the difference between the image brightness value and the target brightness value is a positive value or a negative value, and it is determined to search upward or downward from the searched starting position. That is, if the current brightness value is greater than the target brightness value, an exposure value at a position where the N exposure values are different is searched from the search start position (the brightness gain reduction direction), if the current brightness value is less than
  • the target brightness value searches for an exposure value at a position different from the N exposure values from the search start position downward (the brightness gain increase direction).
  • the current exposure value search range is first determined according to the acquired ambient brightness value, and only the current exposure value search range is searched to determine the exposure value, and the automatic exposure is performed according to the exposure value, if the captured image brightness is still not If the preset condition is met, the exposure value is continuously determined from the current exposure value search range until the current image brightness satisfies the preset condition, and the embodiment of the present invention reduces the number of automatic exposures because the search is not performed over the entire range of all exposure values. Reduces the amount of device calculations, improves device performance, and reduces the total time used for automatic exposure, increasing the speed at which the camera is activated.
  • FIG. 3 is a flowchart of Embodiment 3 of an automatic exposure method according to the present invention, which may include: Step 301: Acquire a current ambient brightness value.
  • Step 302 Determine, according to a preset relationship between the preset ambient brightness range and the exposure value search range, a current exposure value search range corresponding to the current ambient brightness value.
  • Step 303 Determine an exposure value from the current exposure value search range, and perform automatic exposure according to the exposure value.
  • Step 304 Obtain a brightness value of the current image.
  • Step 305 Determine whether the current image brightness value meets a preset condition, and if not, enter the step
  • Step 306 Determine whether the current ambient brightness value has changed. If yes, return to step 302. If no, proceed to step 307.
  • the exposure value when the current image brightness value does not satisfy the preset condition, in this embodiment, when the exposure value is reselected, it is first determined whether the current ambient brightness value has changed. If a change has occurred, it is necessary to re-determine the search range of the exposure value based on the current ambient lightness value, and repeat the steps after step 302.
  • the brightness of the current environment may be changed. Therefore, in order to further determine the exposure search range corresponding to the current environment to improve the accuracy of the search, thereby improving the search efficiency, the current image brightness in this embodiment.
  • the current ambient brightness value may be reacquired to determine whether it has changed. If yes, return to step 302 to continue.
  • Step 307 Determine another exposure value from the current exposure value search range, perform automatic exposure according to the exposure value, and return to step 304.
  • the exposure value search range is first determined according to the acquired ambient brightness value, and only the search range is used to perform the search to determine the exposure value, and the automatic exposure is performed according to the exposure value, if the captured image brightness still does not satisfy the preset condition. And continuing to determine another exposure value from the search range until the current image brightness satisfies the preset condition, and the embodiment reduces the number of automatic exposures and reduces the amount of calculation of the device because the search is not performed over the entire range of all exposure values. , improve device performance, and also reduce the automatic exposure time, increasing the speed of starting the camera.
  • the present invention further provides an automatic exposure apparatus embodiment 1.
  • the apparatus may include:
  • a first obtaining unit 401 configured to acquire a current ambient brightness value
  • the automatic exposure is related to the brightness of the captured image, and the external environment of the photographing has an influence on the imaging effect, for example, when photographing on a sunny day and a cloudy day, the brightness of the image taken by the camera is significantly different, so before the automatic exposure is performed, , first get the current ambient brightness value.
  • the first obtaining unit 401 is configured to acquire an ambient brightness detected by the ambient light sensor Value.
  • the range determining unit 402 is configured to determine, according to a preset correspondence relationship between the ambient brightness range and the exposure value search range, a current exposure value search range corresponding to the current ambient brightness value from all the exposure values;
  • the system pre-stores different exposure values, and the exposure values are arranged in a predetermined order.
  • it is necessary to search from the saved exposure values to find an optimal exposure value.
  • all exposure values are used. According to different ambient brightness, it is divided into multiple exposure value search ranges, and each exposure value search range corresponds to different ambient brightness ranges.
  • the range determining unit 402 determines the exposure value search range corresponding to the current ambient brightness value according to the correspondence between the preset ambient brightness range and the exposure value search range, that is, the current exposure value search range.
  • the exposure value determining unit 403 is configured to determine an optimal exposure value from the determined current exposure value search range, and perform automatic exposure according to the exposure value.
  • the optimal exposure value can be determined only within the range, thereby eliminating the need to search through the entire range of exposure values, thereby reducing the number of searches and reducing the total time required for automatic exposure. Reduced device calculations.
  • the first acquiring unit acquires the ambient light brightness value
  • the range determining unit determines the current exposure value search range corresponding to the current ambient light brightness value according to the corresponding relationship between the preset ambient light brightness range and the exposure value search range.
  • the present invention further provides an embodiment 2 of the automatic exposure apparatus.
  • the apparatus may include:
  • the first obtaining unit 501 is configured to acquire a current ambient brightness value.
  • the range determining unit 502 is configured to determine, according to a preset correspondence relationship between the ambient brightness range and the exposure value search range, a current exposure value search range corresponding to the current ambient brightness value from all the exposure values;
  • the first exposure value determining unit 503 is configured to determine an exposure value from the current exposure value search range, and perform automatic exposure according to the value.
  • Selecting an exposure value from the current exposure value search range or selecting a first exposure value located in the exposure value search range, or an exposure value located in the middle of the arrangement order in the exposure value search range, for initializing Automatic exposure.
  • a second obtaining unit 504 configured to acquire a brightness value of the current image
  • the brightness value of the current image is obtained according to the image information of the currently captured image, specifically, the brightness value of each pixel of the current image is counted, and then the brightness average of the pixel is calculated according to the brightness average calculation formula.
  • the average brightness value can be used as the brightness value of the current image. Therefore, the first obtaining unit 504 may specifically include:
  • An extracting unit 5041 configured to extract a brightness value of each pixel in the current image
  • the brightness value calculation unit 5042 is configured to calculate an average brightness value of the pixel as the current image brightness value.
  • the first determining unit 505 is configured to determine whether the current image brightness value meets a preset condition; the preset condition is that the absolute value of the difference between the current image brightness value and the target brightness value is less than or equal to a predetermined value, when currently When the image brightness value meets the preset condition, the automatic exposure process ends, and the photographing program can be started.
  • the predetermined value is set according to actual conditions, for example, may be 0, that is, the preset condition is that the current brightness value needs to reach the target brightness value.
  • the second exposure value determining unit 506 is configured to: when the first determining unit result 505 is no, determine another exposure value from the current exposure value search range, perform automatic exposure according to the value, and trigger the second acquisition unit. Since there is a difference between the current brightness value and the target brightness value, it indicates that the brightness of the image after exposure does not reach the preset condition, and automatic exposure needs to be performed again.
  • the second exposure value determining unit 506 specifically includes:
  • the position determining unit 5061 is configured to determine a search start position in the current exposure value search range.
  • the search start position may be the position of the exposure value selected in the previous automatic exposure.
  • the search start position may also be the location of the first exposure value in the search range, or search The position of the exposure value in the middle of the arrangement order.
  • the calculating unit 5062 is configured to determine, according to the difference value between the image brightness value and the target brightness value, the number of searches corresponding to the current difference N, N is an integer.
  • the second exposure value determining sub-unit 5063 is configured to determine an exposure value at a position different from the search start position by N exposure values in accordance with the arrangement order, and perform automatic exposure.
  • the exposure values are arranged in an order that gradually increases the brightness gain. If the current brightness value is greater than the target brightness value, the N exposure values are searched for from the search start position (the brightness gain reduction direction). An exposure value at the position, if the current brightness value is less than the target brightness value, searching for an exposure value at a position different from the N exposure values from the search start position downward (the brightness gain increase direction).
  • the current exposure value search range is determined according to the obtained ambient brightness value, and only the search range is used to perform the search to determine the exposure value, and the automatic exposure is performed according to the exposure value, and if the captured image brightness still does not satisfy the preset condition, Then, the exposure value is continuously determined from the search range until the current image brightness satisfies the preset condition. Since the search is not performed within the full range of all the exposure values, the embodiment of the present invention reduces the number of automatic exposures, reduces the calculation amount of the device, and improves the calculation. Equipment performance, and also reduces the total time used for automatic exposure.
  • the present invention further provides an automatic exposure apparatus embodiment 3, and referring to FIG. 6, the apparatus may include:
  • a first obtaining unit 601 configured to acquire a current ambient brightness value
  • the range determining unit 602 is configured to determine, according to a preset correspondence relationship between the ambient brightness range and the exposure value search range, a current exposure value search range corresponding to the current ambient brightness value from all the exposure values;
  • the first exposure value determining unit 603 is configured to determine an exposure value from the current exposure value search range, and perform automatic exposure according to the value;
  • the second obtaining unit 604 is configured to acquire a brightness value of the current image.
  • the second obtaining unit 604 may include:
  • An extracting unit 6041 configured to extract a brightness value of each pixel in the current image
  • the brightness value calculation unit 6042 is configured to calculate an average brightness value of the pixel point as the current image brightness value.
  • the first determining unit 605 is configured to determine whether the current image brightness value meets a preset condition.
  • the preset condition means that the absolute value of the difference between the current image brightness value and the target brightness value is less than or equal to a predetermined value.
  • the second exposure value determining unit 606 is configured to: when the first determining unit 605 is negative, determine another exposure value from the exposure value search range, perform automatic exposure according to the value, and trigger the second acquiring unit .
  • the second exposure value determining unit may include:
  • the position determining unit 6061 is configured to determine a search start position in the current exposure value search range.
  • the search start position may be the position of the exposure value selected in the previous automatic exposure.
  • the search start position may also be the position where the first exposure value in the search range is located, or the position in the search range where the exposure value is in the middle of the arrangement order.
  • the calculating unit 6062 is configured to determine, according to the difference value between the image brightness value and the target brightness value, the number of searches corresponding to the current difference N, N is an integer.
  • the second exposure value determining sub-unit 6063 is configured to determine an exposure value at a position different from the search start position by N exposure values according to the arrangement order, and perform automatic exposure.
  • the second determining unit 607 is configured to: when the result of the first determining unit 605 is negative, determine whether the current ambient brightness value changes, if yes, trigger the range determining unit 602, if not, trigger the second Exposure value determination unit.
  • the current environment brightness may change due to scene switching, etc., so in order to further determine the exposure search range corresponding to the current environment to improve the search rate, in this embodiment, when the current image brightness does not satisfy the preset condition, The current ambient brightness value may be reacquired, and the second determining unit 607 determines whether the current ambient brightness value is sent or not.
  • the current exposure value search range is determined according to the obtained ambient brightness value, and only the search range is used to perform the search to determine the exposure value, and the automatic exposure is performed according to the exposure value, and if the captured image brightness still does not satisfy the preset condition, Continue to determine another exposure value from the search range until the current image The brightness satisfies the preset condition, and since the search is not performed over the full range of all exposure values, the embodiment of the present invention reduces the number of automatic exposures, reduces the amount of calculation of the device, improves the performance of the device, and also reduces the total time for automatic exposure.
  • the automatic exposure apparatus provided by the present invention may specifically be an image processor in an image forming apparatus, or an apparatus integrated by an image processor and other amplifiers, flip-flops, signal converters, and the like. Further, the automatic exposure device may be integrated into the image forming apparatus or connected to the image forming apparatus as a separate component.
  • the present invention also provides an imaging device.
  • the imaging device may include an ambient light sensor 701 and an image processor 702.
  • the imaging device necessarily includes a signal conversion circuit, an amplifier, and the like. The same as the prior art, and details are not described herein again.
  • the ambient light sensor 701 is configured to detect ambient light brightness.
  • the ambient light sensor is a photoelectric sensor for detecting the intensity of ambient light, and converts the detected change in the amount of light into a change in the amount of electricity.
  • the image processor 702 is configured to acquire a current ambient brightness value detected by the ambient light sensor 701, and determine a current ambient brightness from all the exposure values according to a preset relationship between the preset ambient brightness range and the exposure value search range.
  • the exposure value search range corresponding to the value, the optimal exposure value is determined from the exposure value search range, and the automatic exposure is performed according to the exposure value.
  • the imaging device may further include a camera sensor 703 for detecting image brightness.
  • the image processor 702 is specifically configured to acquire a current ambient brightness value detected by the ambient light sensor 701, according to a preset relationship between a preset ambient brightness range and an exposure value search range; and a search range from the current exposure value. Determining an exposure value, performing automatic exposure according to the exposure value; obtaining a brightness value of the current image detected by the camera sensor 703; determining whether the current image brightness value satisfies a preset condition, and if not, from the current exposure Another exposure value is determined in the value search range, automatic exposure is performed according to the exposure value, and the step of obtaining the brightness value of the current image detected by the camera sensor is performed until the current image brightness value satisfies the preset condition.
  • the camera sensor is an image sensor, and can extract image information of the captured image.
  • the image information includes image brightness.
  • the camera sensor may be, for example, a CCD (Charge Coupled Device) image sensor or a COMS (Complementary Metal-Oxide Semiconductor) image sensor.
  • the ambient light sensor and the camera sensor transmit the detected information to the image processor, and the image processor processes the brightness value according to the ambient light and the brightness value of the image to determine the search range of the exposure value, and determines the optimal exposure value from the automatic image. exposure.
  • the image forming apparatus of the present invention may specifically be a digital camera having an automatic exposure function, various types of mobile phones having a photographing function, or other image forming apparatuses having a camera.
  • the various embodiments in the present specification are described in a progressive manner, and each embodiment focuses on differences from other embodiments, and the same similar parts between the various embodiments may be referred to each other.
  • the comparison is described, and the relevant part can be referred to the method part.

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Abstract

本发明提供了一种自动曝光方法、装置和成像设备,所述方法包括:获取当前环境亮度值;根据预先设置的环境亮度范围与曝光值搜索范围的对应关系,确定当前环境亮度值对应的当前曝光值搜索范围;从所述当前曝光值搜索范围中确定最优曝光值,依据所述最优曝光值进行自动曝光。本发明无需在曝光值全范围内查找确定曝光值,缩小了曝光值的查找范围,因而减少了查找次数,减少了自动曝光时间,从而可减少设备的计算量,提高了设备性能。

Description

自动曝光方法、 装置和成像设备 技术领域
本发明涉及图像处理技术领域, 更具体的说是涉及一种自动曝光方法、装 置和成像设备。 背景技术
自动曝光是指根据获取的曝光值, 包括亮度增益值以及曝光的光线值等, 自动设定快门值和光圏值, 以调整摄像头的传感器增益和曝光时间, 达到摄像 所需的曝光量。
现有的成像设备, 特别是具有拍照功能的手机, 在启动摄像头时, 由于成 像界面会有一个不稳定的过程, 不能实现有效拍照, 因此需要进行自动曝光, 使得摄取的图像亮度值达到目标亮度值, 才能使得成像界面稳定。
成像设备中,通常预先设置有不同的曝光值,每一曝光值包括亮度增益值 和曝光光线值等, 现有的自动曝光方法, 是从所有曝光值中进行全范围搜索, 最终确定出正确的曝光值进行自动曝光, 而曝光值数量庞大,从中选择正确的 曝光值采用的是——尝试的方式, 即任意选一个曝光值进行一次自动曝光, 如 果当前摄取的图像亮度仍不符合规定, 则继续选择其他曝光值进行自动曝光, 因此现有的自动曝光方法,需要经过多次自动曝光,例如如果有 500个曝光值, 则有可能进行 500次的自动曝光, 才能使得成像界面稳定, 并达到目标亮度, 这至少需要 1秒的时间, 因此增加了自动曝光的时间, 且增加了设备计算量, 从而影响了设备性能。
发明内容
有鉴于与此,本发明提供了一种自动曝光方法,用以解决自动曝光时间长, 设备计算量大, 而导致设备性能下降的问题。
本发明还提供了一种自动曝光装置和成像设备,用以保证上述方法在实际 中的实现及应用。 为实现上述目的, 本发明提供如下技术方案:
本发明的一方面, 提供了一种自动曝光方法, 包括:
获取当前环境亮度值;
根据预先设置的环境亮度范围与曝光值搜索范围的对应关系,确定当前环 境亮度值对应的当前曝光值搜索范围;
从所述当前曝光值搜索范围中确定最优曝光值,依据所述最优曝光值进行 自动曝光。
本发明另一方面, 提供了一种自动曝光装置, 包括:
第一获取单元, 用于获取当前环境亮度值;
范围确定单元,用于根据预先设置的环境亮度范围与曝光值搜索范围的对 应关系, 从所有曝光值中确定出当前环境亮度值对应的当前曝光值搜索范围; 曝光值确定单元, 用于从所述当前曝光值搜索范围中确定最优曝光值,依 据所述曝光值进行自动曝光。
本发明又一方面,提供了一种成像设备,包括环境光传感器和图像处理器, 所述环境光传感器, 用于检测环境光亮度;
所述图像处理器, 用于获取所述环境光传感器检测到的当前环境亮度值, 根据预先设置的环境亮度范围与曝光值搜索范围的对应关系,从所有曝光值中 确定出当前环境亮度值对应的当前曝光值搜索范围,从所述当前曝光值搜索范 围中确定最优曝光值, 依据所述曝光值进行自动曝光。
经由上述的技术方案可知, 与现有技术相比, 本发明提供了一种自动曝光 方法、 装置和成像设备, 在进行自动曝光时, 首先获取当前环境的亮度值, 根 据预设的环境亮度范围与曝光值搜索范围对应关系,确定出当前环境亮度值对 应的当前曝光值搜索范围, 并在该当前曝光值搜索范围内确定最优曝光值, 而 无需在曝光值全范围内查找, 从而可减少查找次数, 减少了自动曝光时间, 因 而减少了设备计算量, 提高了设备性能。
附图说明 为了更清楚地说明本发明实施例或现有技术中的技术方案,下面将对实施 例或现有技术描述中所需要使用的附图作筒单地介绍,显而易见地, 下面描述 中的附图仅仅是本发明的实施例,对于本领域普通技术人员来讲,在不付出创 造性劳动的前提下, 还可以根据提供的附图获得其他的附图。
图 1为本发明一种自动曝光方法实施例 1的流程图;
图 2为本发明一种自动曝光方法实施例 2的流程图;
图 3为本发明一种自动曝光方法实施例 3的流程图;
图 4为本发明一种自动曝光装置实施例 1的流程图;
图 5为本发明一种自动曝光装置实施例 2的流程图;
图 6为本发明一种自动曝光装置实施例 3的流程图;
图 7为本发明一种成像设备一个实施例的结构示意图。
具体实施方式 下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清 楚、 完整地描述, 显然, 所描述的实施例仅仅是本发明一部分实施例, 而不是 全部的实施例。基于本发明中的实施例, 本领域普通技术人员在没有做出创造 性劳动前提下所获得的所有其他实施例, 都属于本发明保护的范围。
本发明主要思想之一可以包括: 获取当前环境亮度值, 并根据预设的环境 亮度范围与曝光值范围的对应关系,确定所述当前环境亮度值对应的当前曝光 值搜索范围,在此曝光值搜索范围中进行搜索查找确定出最优曝光值,依据该 值进行自动曝光, 由于无需在曝光值全范围内进行查找, 缩小了曝光值查找范 围, 从而减少了查找次数, 减少了自动曝光时间, 因而可减少设备的计算量, 提高了设备性能。 下面结合附图, 对本发明实施方案进行详细描述。
图 1示出了本发明一种自动曝光方法实施例 1的流程图, 可以包括: 步骤 101 : 获取当前环境亮度值。
本发明实施例应用于具有摄像功能的设备中, 例如数码相机、摄像机、 带 有摄像头的手机以及其他具有拍照功能的摄像装置。
启动摄像头时, 需要进行曝光,待成像界面稳定没有明暗闪烁时才可进行 有效拍照,现有的很多摄像设备均包括自动曝光功能, 本发明所提供的技术方 案即是一种自动曝光方法。
由于自动曝光与摄取的图像亮度有关,而拍照的外界环境对成像效果会有 影响, 例如分别在晴天和阴天进行拍照时,摄像头所摄取的图像亮暗度明显不 同, 因此本实施例在进行自动曝光之前, 首先获取当前的环境亮度值。
当前环境亮度的检测可以通过一环境光传感器或者其他可探测环境亮度 的光电传感器。
步骤 102: 根据预先设置的环境亮度范围与曝光值搜索范围的对应关系, 确定所述当前环境亮度值对应的当前曝光值搜索范围。
本发明所述的具有自动曝光功能的摄像装置中, 预先设置有不同曝光值, 在进行自动曝光时, 依据曝光值, 自动设定快门值和光圏值, 从而调整摄像头 传感器增益或者控制曝光时间,控制进入摄像头的光线量,使得摄取的图像亮 度变暗或者变亮。
曝光值可以包括亮度增益值和曝光光线值, 从而根据亮度增益和曝光光 线, 即可设定快门值和光圏值, 所述亮度增益是指摄像头传感器的增益。
系统中的曝光值通常按照预定的顺序进行存储,例如按照依据曝光值自动 曝光后使得图像亮度逐步增加的顺序进行排列, 参见表 1 , 示出了按照该排列 顺序存储在曝光表中的曝光值。
表 1
Figure imgf000006_0001
1 1280 1280 3%
1.03 1280 1318.4 3% 由表 1可知, 每一行均对应一曝光值, 包括亮度增益、 曝光光线、 亮度增 益 *曝光光线。曝光值按照能够使得图像亮度按照 3%的亮度增加的顺序进行的 排列, 即按照该曝光表中的曝光值依次进行自动曝光时,通过调整摄像头增益 或者曝光光线, 能够使得亮度逐步增加 3%。
由表 1还可以得知, 曝光值的数量很大,现有技术中若要从该曝光值的全 范围中确定出最优的曝光值, 则需要一一进行尝试, 因此本实施例预先将曝光 值全范围划分为不同的曝光值搜索范围,建立环境亮度范围与曝光值搜索范围 的对应关系,根据该环境亮度范围与曝光值搜索范围的对应关系,确定当前环 境亮度值所对应的曝光值搜索范围, 即当前曝光值搜索范围。
其中环境亮度范围和曝光值搜索范围的对应关系,也即某一个环境亮度范 围对应一曝光值搜索范围,是根据实际应用情况建立的。例如假设曝光表中存 储有 356个曝光值, 这些曝光值按照上述能够使得图像亮度逐步增加 3%的顺 序进行排列, 假设可以获取的环境光亮度范围为 llux (勒克司) ~6400001ux, 可以指定环境亮度最低时, 为 llux, 对应曝光值的最大值, 也即第 356个曝光 值, 则可设定亮度范围和曝光值搜索范围的对应关系如下:
llux~501ux: 对应第 320个~第 356个曝光值;
511ux~1001ux: 对应第 300个~第 320个曝光值;
1001ux~2001ux: 对应第 280个~第 300个曝光值;
2001ux~5001ux: 对应第 200个~第 280个曝光值;
5001ux~10001ux: 对应第 100个~第 200个曝光值;
大于 lOOOlux: 对应第 1个~第 100个曝光值。
当然也可根据具体测试的结果来建立该对应关系, 例如,根据对全黑的物 体摄像时对应的曝光值,对全白的物体摄像时对应的曝光值, 以及对普通场景 摄像时对应的曝光值等, 然后再根据这些不同条件下对应的环境亮度, 来建立 该对应关系。 需要说明的是, 上述实例只是一种实现方式,存储的曝光值按照其它顺序 进行排列时, 曝光值搜索范围也会相应改变, 例如, 曝光值按照亮度递减的方 式排列, 则环境亮度为 llux~501ux时, 可能对应第 1个~第 100个曝光值搜索 范围。 对应关系的建立, 是根据环境亮度与实际的曝光值的关系建立的。
在实际应用中, 获取到当前环境亮度值后, 首先确定其位于哪一个亮度范 围内, 然后在根据该亮度范围对应的曝光值搜索范围,确定当前环境亮度值对 应的当前曝光值搜索范围, 例如以上述对应关系为例,假设获取的当前环境亮 度为 3001ux, 则根据上述对应关系即可确定当前曝光值的搜索范围为第 200 个~第 280个曝光值。
步骤 103:从所述当前曝光值搜索范围中确定最优曝光值,进行自动曝光。 确定出当前曝光值搜索范围后,即可从该曝光值搜索范围中进行搜索确定 出最优的曝光值, 该最优曝光值即是指按照该曝光值进行自动曝光后, 能够使 得摄取图像的亮度达到目标亮度值。具体的确定过程,在下面的实施例会详细 描述。
本实施例中由于减少了曝光值搜索范围,使得自动曝光次数减少, 例如曝 光值全范围有 500 个曝光值, 而本实施例确定的当前曝光值搜索范围为 100 个, 即便采用——尝试的方式确定最优曝光值, 本实施例大大减少搜索查找次 数, 减少了自动曝光所需的总时间, 因而减少了设备计算量。
在本实施例中, 首先获取环境光亮度值, 并根据预先设置的环境光亮度范 围与曝光值搜索范围的对应关系,确定出当前环境光亮度值对应的当前曝光值 搜索范围, 只需在该当前曝光值搜索范围内进行搜索确定出最优曝光值即可, 由于无需在所有曝光值的全范围内进行查找, 可减少查找次数, 减少了自动曝 光时间, 从而减少了设备的计算量, 提高了设备性能。 图 2为本发明一种自动曝光方法实施例 2的流程图, 所述方法可以包括: 步骤 201 : 获取当前环境亮度值。
步骤 202: 根据预先设置的环境亮度范围与曝光值搜索范围的对应关系, 确定出当前环境亮度值对应的当前曝光值搜索范围。
步骤 201和步骤 202的操作可具体参见方法实施例 1的步骤 101和步骤 102。
步骤 203: 从所述当前曝光值搜索范围中确定一曝光值, 依据所述曝光值 进行自动曝光。
确定出当前曝光值搜索范围后,即可从所述当前曝光值搜索范围中任意选 择一曝光值,也可以选择位于该当前曝光值搜索范围中的第一个曝光值, 或者 位于该当前曝光值搜索范围中的位于排列顺序中间的曝光值,进行初始自动曝 光。
步骤 204: 获取当前图像的亮度值。
进行一次自动曝光后,根据当前摄取的一帧图像的图像信息, 获取当前图 像的亮度值, 具体是统计当前图像每个像素点的亮度值, 然后根据亮度平均计 算公式计算像素点的亮度平均值, 所述亮度平均值即可作为当前图像的亮度 值。
v r .,— ∑ y [ ί ]
亮度平均计算公式可以具体为: [ l ] = ^ n ^ i=0、 1、 2…… n, 其中, n代表一帧图像中的像素个数。
步骤 205: 判断所述当前图像亮度值是否满足预设条件, 若否, 进入步骤
204, 若是, 则结束流程。
所述的预设条件是指当前图像亮度值与目标亮度值之差的绝对值小于或 等于预定值, 当当前图像亮度值满足预设条件时, 则结束自动曝光流程, 可以 启动拍照程序。 所述预定值根据实际情况设定, 例如可以为 0, 即预设条件为 当前亮度值需达到目标亮度值。
由于摄像头启动后, 成像界面不稳定, 会出现亮暗闪烁的过程, 需要进行 自动曝光使得界面稳定, 系统预先设置目标亮度值。 由于自动曝光本身存在一 定误差,因此当当前图像亮度值和目标亮度值之差的绝对值小于或等于预定值 时, 则认为自动曝光后界面稳定。
步骤 206: 从所述当前曝光值搜索范围中确定另一曝光值, 依据该曝光值 进行自动曝光, 并返回步骤 204。
由于当前亮度值与目标亮度值存在差异,说明曝光后的图像亮度没有达到 预设条件, 需要再次进行自动曝光,从步骤 202确定的当前曝光值搜索范围中 确定另一个曝光值,依据该曝光值进行自动曝光, 然后再返回步骤 204继续执 行。 直至判断出当前图像亮度值满足预设条件, 则结束自动曝光流程。
进行自动曝光后, 当前图像的亮度值可能比目标值大, 或者比目标值小, 因此, 当当前图像亮度值大于目标值, 所确定的另一曝光值需小于前一次自动 曝光所依据的曝光值, 来减少曝光量, 降低图像亮度, 当当前图像亮度值小于 目标值, 所确定的另一曝光值需大于前一次自动曝光所依据的曝光值, 以增加 曝光量, 提升图像亮度。
所述从所述当前曝光值搜索范围中确定另一曝光值的过程具体可以是: 首先, 从所述当前曝光值搜索范围中确定搜索起始位置。
在实际应用中, 曝光值以曝光表的形式存储, 并按照预定的顺序排列, 图 像亮度稳定需要经过多次自动曝光,为保证每次自动曝光时所确定的曝光值不 重复, 提高查找速率, 首先在曝光表中确定搜索起始位置, 所述搜索起始位置 即是指曝光表的行数。
具体的,所述搜索起始位置可以为前一次自动曝光时选取的曝光值所在位 置。
所述搜索起始位置还可以是搜索范围中第一个曝光值所在的位置,或者搜 索范围中位于排列顺序中间的曝光值所在的位置。
其次,根据所述当前图像亮度值和目标亮度值的差值大小,确定当前差值 对应的搜索个数 N, N为整数。
由于曝光值在曝光值搜索范围中按照预定顺序排列,例如按照上文所述的 能够使得图像亮度逐渐增大的顺序,所述的搜索个数即是指所确定的搜索起始 位置与所确定的曝光值所在位置相隔的曝光值个数。
搜索个数根据当前图像亮度值和目标亮度值的差值大小预先设置的,同时 跟所述搜索起始位置相关。例如若搜索起始位置为搜索范围中的第一曝光值所 在位置, 则当当前亮度值大于目标亮度值, 则搜索个数 N值较小, 若当前亮 度值小于目标亮度值, 则搜索个数 N值较大。
最后, 按照所述排列顺序, 确定与所述搜索起始位置相差 N个曝光值的 位置处的一曝光值, 依据该曝光值进行自动曝光。
系统预先设置不同的门限值,每个门限值对应不同的搜索个数,将当前图 像亮度值和目标亮度值的差值与门限值进行比较,根据比较得到的差值,确定 当前图像亮度值和目标亮度值的差值对应的搜索个数 N, 其中 N为整数。
仍以曝光值按照使得图像亮度逐渐增大的顺序排列为例,当搜索起始位置 为前一次自动曝光时选取的曝光值所在位置,或者位于排列顺序中间的曝光值 所在的位置时, 根据当前图像亮度值与目标亮度值的差值, 为正值或者负值, 确定从所述所搜起始位置向上或者向下搜索。也就是说, 若当前亮度值大于所 述目标亮度值, 则从所述搜索起始位置向上(亮度增益减小方向 )搜索相差 N 个曝光值的位置处的一曝光值, 若当前亮度值小于所述目标亮度值, 则从所述 搜索起始位置向下 (亮度增益增大方向)搜索相差 N个曝光值的位置处的一 曝光值。
在本实施例中, 首先根据获取的环境亮度值确定当前曝光值搜索范围, 只 在该当前曝光值搜索范围中进行搜索确定曝光值, 依据该曝光值进行自动曝 光, 若摄取的图像亮度仍不满足预设条件, 则继续从该当前曝光值搜索范围中 确定曝光值, 直至当前图像亮度满足预设条件, 由于不是在所有曝光值全范围 内进行搜索, 本发明实施例减少了自动曝光次数, 减少了设备计算量, 提高了 设备性能, 且还减少自动曝光所用的总时间, 提高了启动摄像头的速率。 图 3为本发明一种自动曝光方法实施例 3的流程图, 可以包括: 步骤 301 : 获取当前环境亮度值。
步骤 302: 根据预先设置的环境亮度范围与曝光值搜索范围的对应关系, 确定出当前环境亮度值对应的当前曝光值搜索范围。
步骤 303: 从所述当前曝光值搜索范围中确定一曝光值, 依据该曝光值进 行自动曝光。
步骤 304: 获取当前图像的亮度值。
步骤 305: 判断所述当前图像亮度值是否满足预设条件, 若否, 进入步骤
304, 若是, 则结束流程。
所述预设条件是指当前图像亮度值与目标亮度值之差的绝对值小于或等 于预定值。 步骤 306: 判断当前环境亮度值是否发生变化, 若是, 则返回步骤 302, 若否, 则进入步骤 307。
当当前图像亮度值不满足预设条件时, 本实施例在重新选择曝光值时, 首 先判断当前环境亮度值是否发生了变化。若发生了变化, 则需要根据当前的环 境光亮度值重新确定曝光值的搜索范围, 再重复执行步骤 302之后的步骤。
在实际应用中,由于场景切换等原因,可能会导致当前环境亮度发生变化, 因此为了进一步确定当前环境对应的曝光搜索范围以提高搜索的准确性,进而 提高搜索效率, 本实施例在当前图像亮度不满足预设条件时, 可重新获取当前 的环境亮度值, 判断其是否发生了变化, 若是, 则返回步骤 302继续执行。
步骤 307: 从所述当前曝光值搜索范围中确定另一曝光值, 依据该曝光值 进行自动曝光, 并返回步骤 304。
从所述当前曝光值搜索范围中确定另一曝光值的具体操作可参见上述方 法实施例 2中所述, 在此不再——赘述。
在本实施例中, 首先根据获取的环境亮度值确定曝光值搜索范围, 只在该 搜索范围中进行搜索确定曝光值,依据该曝光值进行自动曝光, 若摄取的图像 亮度仍不满足预设条件, 则继续从该搜索范围中确定另一曝光值, 直至当前图 像亮度满足预设条件, 由于不是在所有曝光值全范围内进行搜索, 本发明实施 例减少了自动曝光次数, 减少了设备计算量, 提高了设备性能, 且还减少自动 曝光时间, 提高了启动摄像头的速率。 与上述方法实施例 1所对应,本发明还提供了一种自动曝光装置实施例 1 , 参见图 4, 所述装置可以包括:
第一获取单元 401 , 用于获取当前环境亮度值;
由于自动曝光与摄取的图像亮度有关,而拍照的外界环境对成像效果会有 影响, 例如分别在晴天和阴天进行拍照时,摄像头所摄取的图像亮暗度明显不 同, 因此在进行自动曝光之前, 首先获取当前的环境亮度值。
当前环境亮度的检测可以通过一环境光传感器或者其他可探测环境亮度 的光电传感器。第一获取单元 401用于获取所述环境光传感器检测的环境亮度 值。
范围确定单元 402 , 用于根据预先设置的环境亮度范围与曝光值搜索范围 的对应关系,从所有曝光值中确定出当前环境亮度值对应的当前曝光值搜索范 围;
系统预先保存不同曝光值, 所述曝光值按照预定顺序排列,在确定曝光值 时,需要从所述保存的曝光值中进行搜索查找最优的曝光值,本发明实施例中, 将所有曝光值根据不同环境亮度, 划分为多个曝光值搜索范围,每一个曝光值 搜索范围对应不同的环境亮度范围。
所述范围确定单元 402 即是根据预先设置的环境亮度范围与曝光值搜索 范围的对应关系,确定出当前环境亮度值对应的曝光值搜索范围, 即为当前曝 光值搜索范围。
曝光值确定单元 403 , 用于从所述确定的当前曝光值搜索范围中确定最优 曝光值, 依据所述曝光值进行自动曝光。
确定出当前曝光值搜索范围, 即可只在该范围内确定最优曝光值,从而无 需在曝光值的整个范围中进行查找,从而可减少搜索次数, 减少了自动曝光所 需的总时间, 因而减少了设备计算量。
本实施例中, 第一获取单元获取环境光亮度值, 由范围确定单元根据预先 设置的环境光亮度范围与曝光值搜索范围的对应关系,确定出当前环境光亮度 值对应的当前曝光值搜索范围,只需在该曝光值搜索范围内进行搜索确定出最 优曝光值即可,由于无需在所有曝光值的全范围内进行搜索,可减少查找次数, 减少了自动曝光时间, 从而减少了设备的计算量, 提高了设备性能。
与上述方法实施例 2所对应,本发明还提供了一种自动曝光装置实施例 2, 参见图 5 , 所述装置可以包括:
第一获取单元 501 , 用于获取当前环境亮度值;
范围确定单元 502, 用于根据预先设置的环境亮度范围与曝光值搜索范围 的对应关系,从所有曝光值中确定出当前环境亮度值对应的当前曝光值搜索范 围; 第一曝光值确定单元 503 , 用于从所述当前曝光值搜索范围中确定一曝光 值, 依据该值进行自动曝光。
从所述当前曝光值搜索范围中任意选择一曝光值,或者选择位于该曝光值 搜索范围中的第一个曝光值,或者位于该曝光值搜索范围中的位于排列顺序中 间的曝光值, 进行初始自动曝光。
第二获取单元 504, 用于获取当前图像的亮度值;
进行一次自动曝光后,根据当前摄取的一帧图像的图像信息, 获取当前图 像的亮度值, 具体是统计当前图像每个像素点的亮度值, 然后根据亮度平均计 算公式计算像素点的亮度平均值, 所述亮度平均值即可作为当前图像的亮度 值。 因此, 所述的第一获取单元 504可以具体包括:
提取单元 5041 , 用于提取当前图像中每个像素点的亮度值;
亮度值计算单元 5042, 用于计算像素点的平均亮度值, 作为当前图像亮 度值。
第一判断单元 505 , 用于判断所述当前图像亮度值是否满足预设条件; 所述的预设条件是指当前图像亮度值与目标亮度值之差的绝对值小于或 等于预定值, 当当前图像亮度值满足预设条件时, 则结束自动曝光流程, 可以 启动拍照程序。 所述预定值根据实际情况设定, 例如可以为 0, 即预设条件为 当前亮度值需达到目标亮度值。
第二曝光值确定单元 506, 用于当所述第一判断单元结果 505为否时, 从 所述当前曝光值搜索范围中确定另一曝光值,依据该值进行自动曝光, 并触发 第二获取单元。 由于当前亮度值与目标亮度值存在差异,说明曝光后的图像亮度没有达到 预设条件, 需要再次进行自动曝光。
其中, 所述第二曝光值确定单元 506具体包括:
位置确定单元 5061 , 用于在所述当前曝光值搜索范围中确定搜索起始位 置。
所述搜索起始位置可以为前一次自动曝光时选取的曝光值所在位置。 所述搜索起始位置还可以是搜索范围中第一个曝光值所在的位置,或者搜 索范围中位于排列顺序中间的曝光值所在的位置。
计算单元 5062, 用于根据所述图像亮度值和目标亮度值的差值大小, 确 定当前差值对应的搜索个数 N, N为整数。
第二曝光值确定子单元 5063 , 用于按照所述排列顺序, 确定与所述搜索 起始位置相差 N个曝光值的位置处的一曝光值, 进行自动曝光。
以曝光值按照使得亮度增益逐渐增大的顺序排列为例,若当前亮度值大于 所述目标亮度值, 则从所述搜索起始位置向上(亮度增益减小方向 )搜索相差 N个曝光值的位置处的一曝光值, 若当前亮度值小于所述目标亮度值, 则从所 述搜索起始位置向下 (亮度增益增大方向)搜索相差 N个曝光值的位置处的 一曝光值。
本实施例中,根据获取的环境亮度值确定当前曝光值搜索范围, 只在该搜 索范围中进行搜索确定曝光值,依据该曝光值进行自动曝光, 若摄取的图像亮 度仍不满足预设条件, 则继续从该搜索范围中确定曝光值, 直至当前图像亮度 满足预设条件, 由于不是在所有曝光值全范围内进行搜索, 本发明实施例减少 了自动曝光次数, 减少了设备计算量, 提高了设备性能, 且还减少自动曝光所 用的总时间。
与上述方法实施例 3所对应,本发明还提供了一种自动曝光装置实施例 3 , 参见图 6, 所述装置可以包括:
第一获取单元 601 , 用于获取当前环境亮度值;
范围确定单元 602, 用于根据预先设置的环境亮度范围与曝光值搜索范围 的对应关系,从所有曝光值中确定出当前环境亮度值对应的当前曝光值搜索范 围;
第一曝光值确定单元 603 , 用于从所述当前曝光值搜索范围中确定一曝光 值, 依据该值进行自动曝光;
第二获取单元 604, 用于获取当前图像的亮度值。
其中, 所述第二获取单元 604可以包括:
提取单元 6041 , 用于提取当前图像中每个像素点的亮度值; 亮度值计算单元 6042, 用于计算像素点的平均亮度值, 作为当前图像亮 度值。
第一判断单元 605 , 用于判断所述当前图像亮度值是否满足预设条件。 所述预设条件是指当前图像亮度值与目标亮度值之差的绝对值小于或等 于预定值。
第二曝光值确定单元 606, 用于当所述第一判断单元 605结果为否时, 从 所述曝光值搜索范围中确定另一曝光值,依据该值进行自动曝光, 并触发第二 获取单元。
其中, 所述第二曝光值确定单元可以包括:
位置确定单元 6061 , 用于在所述当前曝光值搜索范围中确定搜索起始位 置。
所述搜索起始位置可以为前一次自动曝光时选取的曝光值所在位置。
所述搜索起始位置还可以是搜索范围中第一个曝光值所在的位置,或者搜 索范围中位于排列顺序中间的曝光值所在的位置。
计算单元 6062, 用于根据所述图像亮度值和目标亮度值的差值大小, 确 定当前差值对应的搜索个数 N, N为整数。
第二曝光值确定子单元 6063 , 用于按照所述排列顺序, 确定与所述搜索 起始位置相差 N个曝光值的位置处的一曝光值, 进行自动曝光。
第二判断单元 607, 用于当所述第一判断单元 605结果为否时, 判断当前 环境亮度值是否发生变化, 若是, 则触发所述范围确定单元 602, 若否, 则触 发所述第二曝光值确定单元。
在实际应用中,由于场景切换等原因,可能会导致当前环境亮度发生变化, 因此为了进一步确定当前环境对应的曝光搜索范围以提高搜索速率,本实施例 在当前图像亮度不满足预设条件时, 可重新获取当前的环境亮度值, 由第二判 断单元 607判断当前环境亮度值是否发送变化。
本实施例中,根据获取的环境亮度值确定当前曝光值搜索范围, 只在该搜 索范围中进行搜索确定曝光值,依据该曝光值进行自动曝光, 若摄取的图像亮 度仍不满足预设条件, 则继续从该搜索范围中确定另一曝光值, 直至当前图像 亮度满足预设条件, 由于不是在所有曝光值全范围内进行搜索, 本发明实施例 减少了自动曝光次数, 减少了设备计算量, 提高了设备性能, 且还减少自动曝 光所用的总时间。
本发明所提供的自动曝光装置可以具体是成像设备中的图像处理器,或者 由图像处理器以及其他放大器、 触发器、 信号转换器等集成的装置。 另外所述 自动曝光装置还可以是集成到成像设备中,或者是作为单独的部件与成像设备 相连。
本发明还提供了一种成像设备, 参见图 7, 所述成像设备可以包括环境光 传感器 701以及图像处理器 702, 当然所述的成像设备其必然还包括信号转换 电路, 放大器等基本部件, 由于与现有技术相同, 在此不再赘述。 其中, 所述环境光传感器 701 , 用于检测环境光亮度。
所述环境光传感器是用于检测环境光强度的光电传感器,并将检测的光量 变化转换为电量变化。
所述图像处理器 702, 用于获取所述环境光传感器 701检测到的当前环境 亮度值,根据预先设置的环境亮度范围与曝光值搜索范围的对应关系,从所有 曝光值中确定出当前环境亮度值对应的曝光值搜索范围,从所述曝光值搜索范 围中确定最优曝光值, 依据所述曝光值进行自动曝光。
另外, 所述的成像设备还可以包括摄像头传感器 703 , 所述摄像头传感器 703 , 用于检测图像亮度。
则所述图像处理器 702, 具体用于获取所述环境光传感器 701检测到的当 前环境亮度值, 根据预先设置的环境亮度范围与曝光值搜索范围的对应关系; 从所述当前曝光值搜索范围中确定一曝光值, 依据所述曝光值进行自动曝光; 获取摄像头传感器 703检测到的当前图像的亮度值;判断所述当前图像亮度值 是否满足预设条件, 若否, 则从所述当前曝光值搜索范围中确定另一曝光值, 依据该曝光值进行自动曝光,并执行获取摄像头传感器检测到的当前图像的亮 度值之后的步骤, 直至当前图像亮度值满足预设条件。
所述摄像头传感器即为图像传感器, 可以提取摄取的图像的图像信息, 所 述图像信息包括图像亮度。所述摄像头传感器例如可以是 CCD( Charge-coupled Device, 电荷耦合元件 )图像传感器,或者 COMS ( Complementary Metal-Oxide Semiconductor, 金属氧化物半导体元件) 图像传感器。
环境光传感器和摄像头传感器将检测到的信息传输至图像处理器,由图像 处理器根据环境光亮度值和图像的亮度值, 进行处理, 确定曝光值搜索范围, 从中确定最优曝光值, 进行自动曝光。
本发明的成像设备可以具体是具有自动曝光功能的数码相机,各种具有拍 照功能的手机、 或者具有摄像头的其他影像设备。 本说明书中各个实施例采用递进的方式描述,每个实施例重点说明的都是 与其他实施例的不同之处,各个实施例之间相同相似部分互相参见即可。对于 实施例公开的装置而言, 由于其与实施例公开的方法相对应, 所以描述的比较 筒单, 相关之处参见方法部分说明即可。
需要说明的是,在本文中,诸如第一和第二等之类的关系术语仅仅用来将 一个实体或者操作与另一个实体或操作区分开来,而不一定要求或者暗示这些 实体或操作之间存在任何这种实际的关系或者顺序。 而且, 术语 "包括"、 "包 含"或者其任何其他变体意在涵盖非排他性的包含,从而使得包括一系列要素 的过程、 方法、 物品或者设备不仅包括那些要素, 而且还包括没有明确列出的 其他要素, 或者是还包括为这种过程、 方法、 物品或者设备所固有的要素。 在 没有更多限制的情况下, 由语句 "包括一个…… " 限定的要素, 并不排除在包 括所述要素的过程、 方法、 物品或者设备中还存在另外的相同要素。
为了描述的方便, 描述以上装置时以功能分为各种模块分别描述。 当然, 在实施本发明时可以把各模块的功能在同一个或多个硬件设备中实现。
对所公开的实施例的上述说明,使本领域专业技术人员能够实现或使用本 发明。 对这些实施例的多种修改对本领域的专业技术人员来说将是显而易见 的, 本文中所定义的一般原理可以在不脱离本发明的精神或范围的情况下, 在 其它实施例中实现。 因此, 本发明将不会被限制于本文所示的这些实施例, 而 是要符合与本文所公开的原理和新颖特点相一致的最宽的范围。

Claims

权 利 要 求
1、 一种自动曝光方法, 其特征在于, 所述方法包括:
获取当前环境亮度值;
根据预先设置的环境亮度范围与曝光值搜索范围的对应关系,确定当前环 境亮度值对应的当前曝光值搜索范围;
从所述当前曝光值搜索范围中确定最优曝光值,依据所述最优曝光值进行 自动曝光。
2、 根据权利要求 1所述的方法, 其特征在于, 所述从所述确定的当前曝 光值搜索范围中确定最优曝光值, 依据所述最优曝光值进行自动曝光包括: 从所述当前曝光值搜索范围中确定一曝光值,依据所述曝光值进行自动曝 光;
获取当前图像的亮度值;
判断所述当前图像亮度值是否满足预设条件, 若否, 则从所述当前曝光值 搜索范围中确定另一曝光值,依据该曝光值进行自动曝光, 并执行获取当前图 像的亮度值之后的步骤, 直至当前图像亮度值满足预设条件。
3、 根据权利要求 2所述的方法, 其特征在于, 所述当当前图像亮度值不 满足预设条件时, 所述方法还包括:
判断当前环境亮度值是否发生变化, 若是, 则返回执行所述根据预先设置 的环境亮度范围与曝光值搜索范围的对应关系,确定出当前环境亮度值对应的 当前曝光值搜索范围的步骤, 若否, 则执行所述从所述曝光值搜索范围中确定 另一曝光值的步骤。
4、 根据权利要求 2至 3任一项所述的方法, 其特征在于, 所述预设条件 为所述当前图像亮度值与目标亮度值之差的绝对值小于或等于预定值。
5、 根据权利要求 2或 3所述的方法, 其特征在于, 曝光值按照预定顺序 排列;则从所述当前曝光值搜索范围中确定另一曝光值, 依据该曝光值进行自 动曝光具体为:
在所述当前曝光值搜索范围中确定搜索起始位置; 根据所述图像亮度值和目标亮度值的差值大小,确定当前差值对应的搜索 个数 N, N为整数;
按照所述排列顺序, 确定与所述搜索起始位置相差 N个曝光值的位置处 的一曝光值, 依据该曝光值进行自动曝光。
6、 根据权利要求 5所述的方法, 其特征在于, 所述搜索起始位置具体为 前一次自动曝光时选取的曝光值所在位置。
7、 根据权利要求 5所述的方法, 其特征在于, 所述搜索起始位置具体为 所述曝光值搜索范围中位于排列顺序中第一个曝光值所在位置, 或者,位于排 列顺序中间的曝光值所在的位置。
8、 根据权利要求 2所述的方法, 其特征在于, 所述获取当前图像的亮度 值包括:
提取当前图像中每个像素点的亮度值;
计算像素点的平均亮度值, 作为当前图像亮度值。
9、 一种自动曝光装置, 其特征在于, 包括:
第一获取单元, 用于获取当前环境亮度值;
范围确定单元,用于根据预先设置的环境亮度范围与曝光值搜索范围的对 应关系, 从所有曝光值中确定出当前环境亮度值对应的当前曝光值搜索范围; 曝光值确定单元, 用于从所述当前曝光值搜索范围中确定最优曝光值,依 据所述曝光值进行自动曝光。
10、 根据权利要求 9所述装置, 其特征在于, 所述曝光值确定单元包括: 第一曝光值确定单元, 用于从所述当前曝光值搜索范围中确定一曝光值, 依据该值进行自动曝光;
第二获取单元, 用于获取当前图像的亮度值;
第一判断单元, 用于判断所述当前图像亮度值是否满足预设条件; 第二曝光值确定单元, 用于当所述第一判断单元结果为否时,从所述当前 曝光值搜索范围中确定另一曝光值,依据该值进行自动曝光, 并触发第二获取 单元。
11、 根据权利要求 10所述的装置, 其特征在于, 所述曝光值确定单元还 包括:
第二判断单元, 用于当所述第一判断单元结果为否时, 判断当前环境亮度 值是否发生变化, 若是, 则触发所述范围确定单元, 若否, 则触发所述第二曝 光值确定单元。
12、 根据权利要求 10或 11所述的装置, 其特征在于, 曝光值按照预定顺 序排列, 则第二曝光值确定单元包括:
位置确定单元, 用于在所述当前曝光值搜索范围中确定搜索起始位置; 计算单元, 用于根据所述图像亮度值和目标亮度值的差值大小,确定当前 差值对应的搜索个数 N, N为整数;
第二曝光值确定子单元, 用于按照所述排列顺序,确定与所述搜索起始位 置相差 N个曝光值的位置处的一曝光值, 依据该曝光值进行自动曝光。
13、 根据权利要求 9所述的装置, 其特征在于, 所述第二获取单元包括: 提取单元, 用于提取当前图像中每个像素点的亮度值;
亮度值计算单元, 用于计算像素点的平均亮度值, 作为当前图像亮度值。
14、 一种成像设备, 其特征在于, 包括环境光传感器和图像处理器, 所述环境光传感器, 用于检测环境光亮度;
所述图像处理器, 用于获取所述环境光传感器检测到的当前环境亮度值, 根据预先设置的环境亮度范围与曝光值搜索范围的对应关系,从所有曝光值中 确定出当前环境亮度值对应的曝光值搜索范围,从所述曝光值搜索范围中确定 最优曝光值, 依据所述曝光值进行自动曝光。
15、 根据权利要求 14所述的设备, 其特征在于, 还包括:
摄像头传感器, 用于检测图像亮度;
则所述图像处理器,具体用于获取所述环境光传感器检测到的当前环境亮 度值,根据预先设置的环境亮度范围与曝光值搜索范围的对应关系; 从所述当 前曝光值搜索范围中确定一曝光值,依据所述曝光值进行自动曝光; 获取摄像 头传感器检测到的当前图像的亮度值;判断所述当前图像亮度值是否满足预设 条件, 若否, 则从所述当前曝光值搜索范围中确定另一曝光值, 依据该曝光值 进行自动曝光,并执行获取所述摄像头传感器检测到的当前图像的亮度值之后 的步骤, 直至当前图像亮度值满足预设条件。
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