IP Library › Granted Patent US 11,303,794
Granted Patent B2
US 11,303,794 · App. 16/928,592 · Granted Apr 12, 2022

Imaging apparatus, imaging method and imaging program

Inventors: Hiroshi Shimizu (Kyoto, JP); Akira Ishiyama (Kyoto, JP); Kazuhiko Yoshizawa (Kyoto, JP); Yasunobu Hashimoto (Kyoto, JP); Motoyuki Suzuki (Kyoto, JP); Mitsunobu Watanabe (Kyoto, JP)
Assignee: MAXELL, LTD.
H04N5/232G06T5/009H04N5/2327H04N5/2353H04N5/2355G06T2207/20208
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Quick Facts
Patent No.
US 11,303,794
App. No.
16/928,592
Granted
Apr 12, 2022
Kind
B2
Abstract

An imaging method is provided that includes: taking an image of an object to generate an image signal of the object; generating a taken image of the object on a basis of the image signal; detecting motion information of the object on the basis of the image signal; taking an image of the object on a basis of the motion information multiple times so as to differentiate an exposure amount thereof; and generating an HDR synthetic image of the object on the basis of a plurality of image signals whose exposure amounts are different from each other.

Claims (53)

1. An imaging method comprising:

taking, by a video input unit, an image of an object to generate an image signal of the object;

generating, by a video signal processor, a taken image of the object based on the image signal;

detecting, by a controller, motion information of the object based on the image signal;

taking, by the video input unit, an image of the object based on the motion information multiple times so as to differentiate an exposure amount thereof;

generating, by the video signal processor, an HDR synthetic image of the object based on a plurality of image signals whose exposure amounts are different from each other,

wherein the video input unit includes:

a first video input unit provided with a first imaging device for first resolution; and

a second video input unit provided with a second imaging device for second resolution, the second resolution being lower than the first resolution,

wherein the controller is configured to:

compare magnitude of the motion information with a first motion threshold value;

cause the first video input unit to take an image of the object in succession so as to differentiate an exposure amount thereof in a case where it is determined that the magnitude of the motion information is less than the first motion threshold value; and

cause the video signal processor to generate the HDR synthetic image with the first resolution, and

wherein, in a case where it is determined that the magnitude of the motion information is equal to or more than the first motion threshold value, the controller is configured to:

cause the first video input unit and the second video input unit to take an image of the object at the same time so as to differentiate exposure amounts thereof;

cause the video signal processor to convert resolution of the image signal generated by the first video input unit into the second resolution;

cause the video signal processor to convert resolution of the image signal generated by the second video input unit into the first resolution; and

cause the video signal processor to generate the HDR synthetic image with the first resolution and the HDR synthetic image with the second resolution.

2. The imaging method according to claim 1 , wherein the method further comprises:

comparing, by the controller, the magnitude of the motion information with the first motion threshold value and a second motion threshold value, the second motion threshold value being larger than the first motion threshold value;

taking, by the first video input unit and the second video input unit, an image of the object at the same time so as to differentiate exposure amounts thereof in a case where it is determined that the magnitude of the motion information is equal to or more than the first motion threshold value and is equal to or less than the second motion threshold value;

taking, by the second video input unit, an image of the object again so as to differentiate an exposure amount thereof; and

generating, by the video signal processor, the HDR synthetic image with the second resolution based on the image signal generated by taking the image again.

3. An imaging method comprising:

taking, by a video input unit, an image of an object to generate an image signal of the object;

generating, by a video signal processor, a taken image of the object based on the image signal;

measuring, by a light quantity sensor, light quantity of periphery;

detecting, by a controller, motion information of the object based on the image signal;

taking, by the video input unit, an image of the object based on the motion information multiple times so as to differentiate an exposure amount thereof;

generating, by the video signal processor, an HDR synthetic image of the object based on a plurality of image signals whose exposure amounts are different from each other, and

taking, by the video input unit, an image of the object multiple times so as to differentiate an exposure amount thereof based on the motion information and the light quantity,

wherein the video input unit includes:

a first video input unit provided with a first imaging device for first resolution;

a second video input unit provided with a second imaging device for the first resolution; and

a resolution converter configured to convert resolution of each of the first imaging device and the second imaging device,

wherein the controller is configured to:

compare magnitude of the motion information with a third motion threshold value;

cause the first video input unit to take an image of the object in succession so as to differentiate an exposure amount thereof in a case where it is determined that the magnitude of the motion information is less than the third motion threshold value;

cause the video signal processor to generate the HDR synthetic image with the first resolution;

compare the light quantity with a first light quantity threshold value and a second light quantity threshold value, which is larger than the first light quantity threshold value, in a case where it is determined that the magnitude of the motion information is equal to or more than the third motion

cause the first video input unit and the second video input unit to take an image of the object at the same time so as to differentiate exposure amounts thereof in a case where it is determined that the light quantity exceeds the second light quantity threshold value;

cause the video signal processor to generate the HDR synthetic image with the first resolution;

cause the resolution converter to convert the resolution of the second imaging device into second resolution in a case where it is determined that the light quantity is equal to or more than the first light quantity threshold value and is equal to or less than the second light quantity threshold value;

cause the first video input unit and the second video input unit to take an image of the object at the same time so as to differentiate exposure amounts thereof;

cause the resolution converter to convert resolution of the image signal generated by the first video input unit into the second resolution;

cause the resolution converter to convert resolution of the image signal generated by the second video input unit into the first resolution;

cause the video signal processor to generate the HDR synthetic image with the first resolution and the HDR synthetic image with the second resolution;

cause the resolution converter to convert resolution of each of the first imaging device and the second imaging device into the second resolution in a case where it is determined that the light quantity is less than the first light quantity threshold value;

cause the first video input unit and the second video input unit to take an image of the object at the same time so as to differentiate exposure amounts thereof; and

cause the video signal processor to generate the HDR synthetic image with the second resolution.

4. The imaging method according to claim 3 , wherein the method further comprises:

converting, by the resolution converter, resolution of each of the first imaging device and the second imaging device from the first resolution to the second resolution by grouping a plurality of pixels; and

converting, by the resolution converter, the resolution of each of the first imaging device and the second imaging device from the second resolution to the first resolution by releasing of the grouping of the plurality of pixels.

Assignments (3)
CHANGE OF NAME Recorded Dec 3, 2021
From: MAXELL HOLDINGS, LTD.
To: MAXELL, LTD.
Reel/Frame 058666/0407 →
MERGER Recorded Nov 29, 2021
From: MAXELL, LTD.
To: MAXELL HOLDINGS, LTD.
Reel/Frame 058255/0579 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 14, 2020
From: SHIMIZU, HIROSHI; ISHIYAMA, AKIRA; YOSHIZAWA, KAZUHIKO; HASHIMOTO, YASUNOBU; SUZUKI, MOTOYUKI; WATANABE, MITSUNOBU
To: MAXELL, LTD.
Reel/Frame 053205/0663 →
Continuity (2)
Continuation 16314478
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