Imaging device and focusing control method

US9829676B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9829676-B2
Application numberUS-201615214714-A
CountryUS
Kind codeB2
Filing dateJul 20, 2016
Priority dateFeb 13, 2014
Publication dateNov 28, 2017
Grant dateNov 28, 2017

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Abstract

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The present invention provides an imaging device and a focusing control method capable of performing reliability determination of a phase difference AF at high speed. A phase difference AF processing unit ( 19 ) performs a correlation operation with respect to detection signal groups in first pairs P 1 , and performs a correlation operation with respect to detection signal groups in second pairs P 2 . A system control unit ( 11 ) compares a difference between a first correlation amount M 1 which is a minimum correlation amount between the detection signal groups in the first pairs P 1 , among obtained results of the correlation operation with respect to the first pairs P 1 and a second correlation amount M 2 which is a minimum correlation amount between the detection signal groups in the second pairs P 2 , among obtained results of the correlation operation with respect to the second pairs P 2 with a threshold value TH, to thereby determine a reliability of a focusing control based on the phase difference AF method.

First claim

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What is claimed is: 1. An imaging device comprising: an imaging element that includes a first signal detection unit that detects a signal corresponding to one beam among a pair of beams that passes through different portions in a pupil region of an imaging optical system and a second signal detection unit that detects a signal corresponding to the other beam among the pair of beams, and images a subject through the imaging optical system; a focusing control unit that performs a focusing control for the imaging optical system based on a phase difference AF method using a phase difference obtained with a detection signal of the first signal detection unit and a detection signal of the second signal detection unit; a correlation operation unit that performs a correlation operation with respect to detection signal groups in first pairs that include a first signal detection unit group including a plurality of the first signal detection units included in the imaging element which are arranged at an arbitrary pitch in a phase difference detection direction and a second signal detection unit group including a plurality of the second signal detection units included in the imaging element which are arranged at the same distance in the same direction with respect to each of the first signal detection units that form the first signal detection unit group and performs a correlation operation with respect to detection signal groups in second pairs that include a third signal detection unit group including a plurality of the first signal detection units included in the imaging element which are arranged at the same distance in the same direction with respect to each of the first signal detection units that form the first signal detection unit group and are arranged in the detection direction and a fourth signal detection unit group including a plurality of the second signal detection units included in the imaging element which are arranged at the same distance in the same direction with respect to each of the first signal detection units that form the third signal detection unit group; a reliability determination unit that determines a reliability of the focusing control based on the phase difference AF method using the detection signal of each signal detection unit in the respective first pairs and second pairs, using at least a result of comparison between a first correlation amount which is a minimum correlation amount between detection signal groups in the first pairs, among the obtained results of the correlation operation with respect to the first pairs, and a second correlation amount which is a minimum correlation amount between detection signal groups in the second pairs, among the obtained results of the correlation operation with respect to the second pairs; and a phase difference AF determination unit that determines whether to perform the focusing control based on the phase difference AF method based on a determination result in the reliability determination unit. 2. The imaging device according to claim 1 , wherein the reliability determination units determines the reliability of the focusing control based on the phase difference AF method by comparing a difference between the first correlation amount and the second correlation amount or a ratio between the first correlation amount and the second correlation amount with a threshold value. 3. The imaging device according to claim 1 , wherein the reliability determination units calculates a value corresponding to a first contrast of a subject image captured by the first pairs using the correlation operation result with respect to the first pairs, calculates a value corresponding to a second contrast of a subject image captured by the second pairs using the correlation operation result with respect to the second pairs, and determines the reliability of the focusing control based on the phase difference AF method using the result of the comparison between the first correlation amount and the second correlation amount and using the value corresponding to the first contrast and the value corresponding to the second contrast. 4. The imaging device according to claim 3 , wherein the reliability determination units determines the reliability of the focusing control based on the phase difference AF method through magnitude comparison between a value obtained by calculating a difference between the first correlation amount and the second correlation amount or a ratio between the first correlation amount and the second correlation amount according to the value corresponding to the first contrast and the value corresponding to the second contrast and a threshold. 5. The imaging device according to claim 3 , wherein the correlation operation unit calculates a correlation amount between the detection signal groups in the first pairs while shifting a detection signal group of the first signal detection unit group and a detection signal group of the second signal detection unit group by an arbitrary amount in the detection direction, and calculates a correlation amount between the detection signal groups in the second pairs while shifting a detection signal group of the third signal detection unit group and a detection signal group of the fourth signal detection unit group by an arbitrary amount in the detection direction, and wherein the reliability determination unit calculates, as the value corresponding to the first contrast, a difference between the first correlation amount and the correlation amount between the detection signal groups in the first pairs in a shift amount obtained by adding or subtracting the arbitrary amount to or from a shift amount between the detection signal group of the first signal detection unit group and the detection signal group of the second signal detection unit group when the first correlation amount is obtained, and calculates, as the value corresponding to the second contrast, a difference between the second correlation amount and the correlation amount between the detection signal groups in the second pairs in a shift amount obtained by adding or subtracting the arbitrary amount to or from a shift amount between the detection signal group of the third signal detection unit group and the detection signal group of the fourth signal detection unit group when the second correlation amount is obtained. 6. The imaging device according to claim 4 , wherein the correlation operation unit calculates a correlation amount between the detection signal groups in the first pairs while shifting a detection signal group of the first signal detection unit group and a detection signal group of the second signal detection unit group by an arbitrary amount in the detection direction, and calculates a correlation amount between the detection signal groups in the second pairs while shifting a detection signal group of the third signal detection unit group and a detection signal group of the fourth signal detection unit group by an arbitrary amount in the detection direction, and wherein the reliability determination unit calculates, as the value corresponding to the first contrast, a difference between the first correlation amount and the correlation amount between the detection signal groups in the first pairs in a shift amount obtained by adding or subtracting the arbitrary amount to or from a shift amount between the detection signal group of the first signal detection unit group and the detection signal group of the second signal detection unit group when the first correlation amount is obtained, and calculates, as the value corresponding to the second contrast, a difference between the second correlation amount and the correlation amount between the detection signal groups in the second pairs in a shift amount obtained by adding or subtracting the ar

Assignees

Inventors

Classifications

  • based on contrast or high frequency components of image signals, e.g. hill climbing method · CPC title

  • based on three different wavelength filter elements · CPC title

  • based on the phase difference signals · CPC title

  • Pixels specially adapted for focusing, e.g. phase difference pixel sets · CPC title

  • Electricity · mapped topic

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What does patent US9829676B2 cover?
The present invention provides an imaging device and a focusing control method capable of performing reliability determination of a phase difference AF at high speed. A phase difference AF processing unit ( 19 ) performs a correlation operation with respect to detection signal groups in first pairs P 1 , and performs a correlation operation with respect to detection signal groups in second pair…
Who is the assignee on this patent?
Fujifilm Corp
What technology area does this patent fall under?
Primary CPC classification G02B7/285. Mapped technology areas include Physics.
When was this patent published?
Publication date Tue Nov 28 2017 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 2 related publications on this page (citations in our corpus or others sharing the same primary CPC).