Movatterモバイル変換


[0]ホーム

URL:


CN1664848A - Non-contact type self-feedback iris image acquisition device - Google Patents

Non-contact type self-feedback iris image acquisition device
Download PDF

Info

Publication number
CN1664848A
CN1664848ACN 200510024618CN200510024618ACN1664848ACN 1664848 ACN1664848 ACN 1664848ACN 200510024618CN200510024618CN 200510024618CN 200510024618 ACN200510024618 ACN 200510024618ACN 1664848 ACN1664848 ACN 1664848A
Authority
CN
China
Prior art keywords
unit
feedback
infrared
collecting unit
liquid crystal
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
CN 200510024618
Other languages
Chinese (zh)
Other versions
CN1326084C (en
Inventor
宫雅卓
沈文忠
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
SHANGHAI BONVIEW TECHNOLOGY DEVELOPMENT Co Ltd
Original Assignee
SHANGHAI BONVIEW TECHNOLOGY DEVELOPMENT Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by SHANGHAI BONVIEW TECHNOLOGY DEVELOPMENT Co LtdfiledCriticalSHANGHAI BONVIEW TECHNOLOGY DEVELOPMENT Co Ltd
Priority to CNB2005100246182ApriorityCriticalpatent/CN1326084C/en
Publication of CN1664848ApublicationCriticalpatent/CN1664848A/en
Application grantedgrantedCritical
Publication of CN1326084CpublicationCriticalpatent/CN1326084C/en
Anticipated expirationlegal-statusCritical
Expired - Fee Relatedlegal-statusCriticalCurrent

Links

Images

Landscapes

Abstract

This invention directs to a non-contact feedback iris image collecting device, which comprises collecting unit formed by mini CCD cam and a plurality of infrared filtered rays and located in a tubular cavity, lighting unit composed by a set of infrared LED luminotrons in annular arrangement and located behind infrared filtered ray, feedback unit in fact being a high-bright LCD and pitching device. Primary optical axis each of collecting unit, lighting unit, and feedback unit cross at a point 25-35cm away from LCD geometrical center, with the point coinciding with fixed-zoom cam imaging position, and the three integration forms as main body of plate-like collecting device located in pitching device. The collecting device can collect iris images rapidly and accurately.

Description

Non-contact type self-feedback iris image acquisition device
Technical field
The invention belongs to field of optical device technology, be specifically related to a kind of non-contact type self-feedback iris image acquisition device.
Background technology
Traditional iris image acquiring device is divided into contact and contactless.The contact acquisition system generally adopts the shell of the closed cavity of tubular as collecting device, with isolated environment light.In tubular cavity rear end cameras with fixed focus is installed, the front end of tubular cavity is installed visible light and infrared light supply.When gathering iris image, eyes of user abuts against the cavity front end, initiatively triggers the collection button imaging of camera.
The advantage of this contact system is guiding eyes aiming than being easier to, and illumination designs fairly simple, is not easy to be subjected to the influence of external environment light.But there is inborn weakness in this collecting device, and promptly each collection all needs the user to contact with collecting device, and user's fitness is had relatively high expectations, and the contact collection has brought the hidden danger of health aspect simultaneously.Therefore, design a kind of contactless acquisition system, have very important significance so that gather iris image quickly and accurately.
Summary of the invention
The objective of the invention is to design a kind of contactless iris image acquiring device that can gather iris image quickly and accurately.
The contactless iris image acquiring device that the present invention proposes, form by collecting unit, lighting unit, feedback unit and luffing mechanism, wherein, adopt the unit to be made up of highly sensitive starlight level miniature CCD camera and one group of infrared fileter, they are installed in the inside cavity of a tubular.It constitutes as shown in Figure 1.Lighting unit is made up of the infrared LED luminotron of circular array, is installed in the rear end of the infrared fileter in the collecting unit cavity, and infrared beam is parallel with the primary optical axis of CCD camera, and iris region is thrown light on.Collecting unit cooperates with lighting unit to be seen shown in Figure 3ly, and the structure of lighting unit is seen shown in Figure 2.Feedback unit is the high brightness liquid crystal display that a resolution is not less than 640 * 480 pixels, and its structure as shown in Figure 4.Lighting unit and collecting unit be positioned at feedback unit under, three's primary optical axis intersects at the place apart from liquid crystal display geometric center 25-35cm, overlaps with the imaging point of CCD camera, sees shown in Figure 5.Collecting unit, lighting unit, feedback unit three are integrated, constitute flat harvester main body, and this collection main body is installed on the luffing mechanism, and the luffing angle of luffing mechanism is the 0-30 degree.See shown in Figure 6.
This noncontact self-feedback iris image acquisition device adopt with the coaxial infrared LED of camera primary optical axis as lighting source, when taking, the liquid crystal of high brightness shows the dynamic iris image sequence that collects in real time, and relevant information suppliers such as feedback iris position, edge, focusing sharpness, take attitude to adjust, last harvester uses iris quality evaluation algorithm that the iris sequence image is carried out automatic screening, will satisfy the iris image of quality requirements for the main algorithm process of identification.
Description of drawings
Fig. 1 is the collecting unit diagram.
Fig. 2 is a lighting unit annular light source arrange icons.
Fig. 3 is collecting unit and lighting unit combination diagram.
Fig. 4 is feedback unit display effect diagram.
Fig. 5 is feedback unit, collecting unit, lighting unit combination diagram.Wherein, Fig. 5 (a) cooperates diagram for plane diagram, Fig. 5 (b) for three's optical axis.
Fig. 6 is the luffing mechanism diagram.
Number in the figure: 1 is the collecting unit cavity, 2 is the infrared fileter group, and 3 is the CCD camera, and 4 is LCDs, 5 is the two-way video line, 6 is video frequency collection card, and 7 is the Flame Image Process main frame, and 8 is the infrared LED luminotron, 9 is lighting unit, 10 is view-finder, and 11 is luffing mechanism, and 12 is the harvester main body.
Embodiment
Embodiment further describes the present invention, but is not limited to following embodiment.
This iris image acquiring device is divided into four parts: collecting unit, lighting unit, feedback unit, luffing mechanism.
(1) collecting unit:
Be made up of highly sensitive starlight levelminiature CCD camera 3 and one group ofinfrared fileter 2, in order to improve the integration of system, they are installed in the inside of thecavity 1 of atubular.CCD camera 3 adopts tight shot, and focusing is from 25-35cm, and near the distance of distinct vision of naked eyes, infrared fileter selective transmission wave band is the near infrared light of 700~900 nanometers.Optical filter has the 1-3 sheet.
Camera adopts the CCD camera of resolution 600 lines, and vision signal is divided the two-way transmission, and the capture card 6 of leading up to is transferred to Flame Image Process main frame 7, and another road is transferred to feedback unit and shows forliquid crystal display 4, so that the user focuses and take attitude with reference to adjusting.See shown in Figure 1.
(2) lighting unit:
Be made up of one group of infrared LED luminotron 8 of arranging ringwise, the infrared LED luminotron can have 4-8 to prop up.But every infrared LED luminotron is the infrared ray of independent transmission wavelength 800 nanometers all, and angle and brightness are all independent adjustable.This organizes the rear end that annular infrared LED is installed ininfrared fileter 2 in thecollecting unit cavity 1, infrared beam is parallel with the primary optical axis of CCD camera, and distance 25-35cm to the focal plane on converge the infrared light spot that forms the about 50mm of diameter, iris region is thrown light on.See Fig. 2 and shown in Figure 3.
(3) feedback unit:
Feedback unit 4 is high brightness liquid crystal displays that a chip resolution is not less than 640 * 480 pixels.There is a rectangle view-finder 10 for user's aiming at the positive center of this liquid crystal display, and can show the iris sequence image that collecting unit photographs in real time, its refresh rate was not less than for 30 frame/seconds, and provide edge, position and the focusing information of every frame iris image, so that the user adjusts fast according to the sharpness and the information of liquid crystal display image.Around liquid crystal display, the blue led luminotron is housed, when collecting standard compliant high-resolution iris image, the LED luminotron can automatic flash for prompting user image acquisition success.
Lighting unit, collecting unit be installed in feedback unit under, three's primary optical axis intersects at the place apart from liquid crystal display geometric center 25-35cm, overlaps with the imaging point of cameras with fixed focus.See Fig. 4 and shown in Figure 5.
(4) luffing mechanism:
Collecting unit, lighting unit, feedback unit three are integrated, constitute flat collecting device main body 12, and this collecting device main body is installed on the luffing mechanism 11.The luffing angle of this mechanism is 0~30 degree, embeds in the body of wall, and collecting device main body lower limb is apart from floor level 1500mm, and the collecting device main body can be by the manual Autonomous Control luffing angle of user, to adapt to user's needs of 1.5~1.8 meters of heights.See shown in Figure 6.
The flow process that this device is gathered iris image is as follows:
(1) user stands towards iris capturing equipment, the liquid crystal display 300mm of facial dimension collecting device.
(2) the collecting device main body on the manual adjustments luffing mechanism makes the user of different heights can be clear that the iris image of oneself in liquid crystal display.
(3) liquid crystal display shows the image that photographs in real time, and this image is simultaneously by the input of the video frequency collection card collection in image host machine main frame, and whether automatic detection photographs iris in image host machine.
(4) user opens eyes wide, and watches the square view-finder on the liquid crystal display attentively, and adjusts attitude (upper and lower, left and right), allows the shown iris image outward flange of liquid crystal display and view-finder is tangent gets final product.
(5) background host computer can be discerned the outer edge of iris region automatically, adopt iris quality evaluation algorithm that the iris sequence image that collects is assessed simultaneously, automatically extracting top-quality iris image handles, after gathering successfully, the blue led luminotron around the liquid crystal display will glimmer and finish with prompting user collection.
(6) behind iris image acquiring and treated the finishing, sounding prompting client iris identifying finishes.

Claims (4)

1, a kind of non-contact type self-feedback iris image acquisition device, it is characterized in that forming by collecting unit, lighting unit, feedback unit and luffing mechanism, wherein, collecting unit is made up of miniature CCD camera and one group of infrared fileter, and they are installed in the inside cavity of a tubular; Lighting unit is made up of the infrared LED luminotron of circular array, is installed in the rear end of the infrared fileter in the collecting unit cavity, and infrared beam is parallel with the primary optical axis of CCD camera, and iris region is thrown light on; Feedback unit is the high brightness liquid crystal display that a resolution is not less than 640 * 480 pixels, lighting unit and collecting unit be positioned at feedback unit under, three's primary optical axis intersects at the place apart from liquid crystal display geometric center 25-35cm, overlaps with the imaging point of CCD camera; Collecting unit, lighting unit, feedback unit three are integrated, constitute flat harvester main body, and this collection main body is installed on the luffing mechanism, and the luffing angle of luffing mechanism is the 0-30 degree.
CNB2005100246182A2005-03-242005-03-24Non-contact type self-feedback iris image acquisition deviceExpired - Fee RelatedCN1326084C (en)

Priority Applications (1)

Application NumberPriority DateFiling DateTitle
CNB2005100246182ACN1326084C (en)2005-03-242005-03-24Non-contact type self-feedback iris image acquisition device

Applications Claiming Priority (1)

Application NumberPriority DateFiling DateTitle
CNB2005100246182ACN1326084C (en)2005-03-242005-03-24Non-contact type self-feedback iris image acquisition device

Publications (2)

Publication NumberPublication Date
CN1664848Atrue CN1664848A (en)2005-09-07
CN1326084C CN1326084C (en)2007-07-11

Family

ID=35035930

Family Applications (1)

Application NumberTitlePriority DateFiling Date
CNB2005100246182AExpired - Fee RelatedCN1326084C (en)2005-03-242005-03-24Non-contact type self-feedback iris image acquisition device

Country Status (1)

CountryLink
CN (1)CN1326084C (en)

Cited By (5)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
WO2008141535A1 (en)*2007-05-182008-11-27Beijing Irisking Science & Technology Co., Ltd.Double eyes' images acquisition apparatus using an active vision feedback mode for iris recognition
CN101116609B (en)*2007-08-302010-06-16中国科学技术大学 Scanning automatic zoom iris image acquisition system and acquisition method
CN103440483A (en)*2013-09-032013-12-11吉林大学Active auto-focus type iris image capturing device
CN104268533A (en)*2014-10-102015-01-07南昌航空大学Non-contact revocable palm print bimodal authentication method
CN105279490A (en)*2015-10-212016-01-27北京无线电计量测试研究所Man-machine interaction type iris image automatic acquisition apparatus

Family Cites Families (7)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US20020122572A1 (en)*1996-06-062002-09-05Christopher H. SealPersonal identification
JP3212952B2 (en)*1998-10-262001-09-25沖電気工業株式会社 Iris pattern input device
CN2513168Y (en)*2001-12-052002-09-25南宫钟Idnetify confirming device with iris identification function
KR100842501B1 (en)*2002-02-212008-07-01엘지전자 주식회사 Eye position indicator of iris recognition system
KR20040062247A (en)*2003-01-022004-07-07엘지전자 주식회사Structure of iris recognition camera and using method of the same
CN2672768Y (en)*2003-12-072005-01-19倪蔚民Iris optical imaging device
CN1299231C (en)*2004-06-112007-02-07清华大学Living body iris patterns collecting method and collector

Cited By (5)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
WO2008141535A1 (en)*2007-05-182008-11-27Beijing Irisking Science & Technology Co., Ltd.Double eyes' images acquisition apparatus using an active vision feedback mode for iris recognition
CN101116609B (en)*2007-08-302010-06-16中国科学技术大学 Scanning automatic zoom iris image acquisition system and acquisition method
CN103440483A (en)*2013-09-032013-12-11吉林大学Active auto-focus type iris image capturing device
CN104268533A (en)*2014-10-102015-01-07南昌航空大学Non-contact revocable palm print bimodal authentication method
CN105279490A (en)*2015-10-212016-01-27北京无线电计量测试研究所Man-machine interaction type iris image automatic acquisition apparatus

Also Published As

Publication numberPublication date
CN1326084C (en)2007-07-11

Similar Documents

PublicationPublication DateTitle
US7554598B2 (en)Imaging system, and identity authentication system incorporating the same
TWI419551B (en)Solid-state panoramic image capture apparatus
CN101411607B (en) Eye conjunctiva and sclera camera device
US6731326B1 (en)Low vision panning and zooming device
EP2747413B1 (en)Handheld magnification device with a two-camera module
US20170208312A1 (en)Apparatus and method for a dynamic "region of interest" in a display system
US20210044789A1 (en)Electronic visual headset with vision correction
CN102871643B (en)The checkout equipment of taking pictures for main body optical fundus and detection module
JP2001512994A (en) Ophthalmoscope that laser scans a wide field of view
CN108697321B (en)Device for gaze tracking within a defined operating range
CN111630847B (en)Image projection apparatus, image projection method, image display light output control method
CN109964230A (en)Method and apparatus for eyes measurement acquisition
US20150077313A1 (en)Retro-reflectivity array for enabling pupil tracking
KR20090130696A (en) Long Range Iris Image Acquisition System Using Panning and Tilting of Mirrors
CN101273880A (en)Method for examining opto-kinetic reflex and ocular kinetic reflex using virtual vision target
CN109451233A (en)A kind of device acquiring fine definition face-image
JP5484453B2 (en) Optical devices with multiple operating modes
US10375322B2 (en)Optical observation device
CN102609152A (en)Large-field-angle detection image acquisition method for electronic white board and device
CN1558262A (en) 180° Large Field of View Ring Panoramic Staring Imaging Method
CN1664848A (en)Non-contact type self-feedback iris image acquisition device
US7896494B2 (en)Fundus camera
CN108542497A (en)Operation navigation device
CN106990524B (en)The method of intelligent telescope and its adjust automatically multiplying power
US10473908B2 (en)Optical observation device

Legal Events

DateCodeTitleDescription
C06Publication
PB01Publication
C10Entry into substantive examination
SE01Entry into force of request for substantive examination
C14Grant of patent or utility model
GR01Patent grant
C17Cessation of patent right
CF01Termination of patent right due to non-payment of annual fee

Granted publication date:20070711

Termination date:20120324


[8]ページ先頭

©2009-2025 Movatter.jp