Apparatus and method for recognizing stamped character and system for detecting stamped depth of character using the same
09792515 · 2017-10-17
Assignee
Inventors
Cpc classification
G06V30/1434
PHYSICS
International classification
Abstract
An apparatus and a method recognizes stamped characters, detects stamped depths of characters using the same, and/or accurately recognizes characters even when an image distortion occurs at stamped portion due to different stamped depths of characters.
Claims
1. A system for detecting intaglio characters, comprising: an apparatus for recognizing intaglio characters that segments and synthesizes the intaglio characters photographed using lighting devices having different wavelengths into each wavelength; and an apparatus for detecting intaglio depths that detects widths of characters recognized by the apparatus for recognizing intaglio characters, calculates average values of the detected widths of characters, and detects the intaglio depths of characters corresponding to the calculated average values of the widths of characters based on a table in which the intaglio depths corresponding to the average values of the widths of intaglio characters are written, wherein each of the intaglio depths is a depth below a surface of a top surface of each of the intaglio characters.
2. The system of claim 1, wherein the apparatus for detecting intaglio depths selects a character located at a center of a character string recognized by the apparatus for recognizing intaglio characters.
3. The system of claim 1, wherein the apparatus for detecting intaglio depths deletes widths of characters that are not included in a threshold range.
4. The system of claim 3, wherein the apparatus for detecting intaglio depths arranges the widths of characters in an ascending order, extracts a predetermined number, and calculates an average thereof.
5. The system of claim 4, wherein the apparatus for detecting intaglio depths extracts a value located at the center of the arrangement according to priority, at the time of extracting the predetermined number.
6. The system of claim 1, wherein the apparatus for recognizing intaglio characters configured to: photograph the intaglio characters using lighting devices having different wavelengths; segment images into each wavelength; synthesize binarization images for each wavelength; and recognize the intaglio characters in the image.
7. The system of claim 6, wherein the apparatus for recognizing intaglio characters includes: a first lighting device that irradiates light having a red wavelength based on a plurality of arranged LEDs; a second lighting device that irradiates light having a green wavelength; a third lighting device that irradiates light having a blue wavelength; and a color camera that photographs the intaglio characters.
8. The system of claim 6, wherein the apparatus for recognizing intaglio characters segments a binarization image having an R wavelength, a binarization image having a G wavelength, a binarization image having a B wavelength, respectively, from the images.
9. A system for detecting intaglio characters, comprising: a color camera that photographs the intaglio characters using lighting devices having different wavelengths, wherein a system for detecting intaglio depths of characters segments and synthesizes the intaglio characters photographed by a color camera into each wavelength to recognize the intaglio characters and detects widths of the intaglio characters, calculates average values of the detected widths of characters, and detects the intaglio depths of characters corresponding to the calculated average values of the widths of characters based on a table in which the intaglio depths corresponding to the average values of the widths of intaglio characters are written, wherein each of the intaglio depths is a depth below a surface of a top surface of each of the intaglio characters.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
(4)
(5)
(6)
(7)
(8)
(9)
(10)
(11)
DETAILED DESCRIPTION
(12) Reference will now be made in detail to various embodiments of the present invention(s), examples of which are illustrated in the accompanying drawings and described below. While the invention(s) will be described in conjunction with exemplary embodiments, it will be understood that present description is not intended to limit the invention(s) to those exemplary embodiments. On the contrary, the invention(s) is/are intended to cover not only the exemplary embodiments, but also various alternatives, modifications, equivalents and other embodiments, which may be included within the spirit and scope of the invention as defined by the appended claims.
(13) As illustrated in
(14) Describing each component, the stamped character photographing unit 11 photographs the stamped characters using lighting devices having different wavelengths.
(15) Hereinafter, the stamped character photographing unit 11 will be described with reference to
(16) As illustrated in
(17) In this case, the first lighting device 21 is an illuminator in which a plurality of light emitting diodes are arranged and is disposed so that an LED arrangement direction is parallel with a direction of a stamped character string 25.
(18) Further, the second lighting device 22 is disposed at one side at a predetermined angle (for example, 120)° based on the first lighting device 21.
(19) Further, the third lighting device 23 is disposed at the other side at a predetermined angle (for example, 120°) based on the first lighting device 21.
(20) Further, the color camera 24 is disposed at a center of the character string 25 to photograph the stamped characters.
(21) Meanwhile, as illustrated in
(22) A structure of the stamped character photographing unit 11 is as illustrated in
(23) Next, the image segmentation unit 12 segments images photographed by the stamped character photographing unit 11 for each wavelength. That is, the image segmentation unit 12 segments a binarization image having an R wavelength, a binarization image having a G wavelength, a binarization image having a B wavelength from the images photographed by the stamped character photographing unit 11.
(24) As segmented above, the binarization image having the R wavelength is as illustrated in
(25) It can be appreciated from the binarization images segmented for each wavelength that a distortion of characters due to a wavelength may be changed. For example, in
(26) Next, the image synthesis unit 13 synthesizes the binarization image having the R wavelength, the binarization image having the G wavelength, and the binarization image having the B wavelength that are segmented by the image segmentation unit 12.
(27) A final image synthesized as above is illustrated in
(28) As a result, it can be appreciated that a recognition ratio of stamped characters is increased by using a principle to have the binarization images for each wavelength form a complementary relationship.
(29) Further, the reason for segmenting the binarization image having the R wavelength, the binarization image having the G wavelength, and the binarization image having the B wavelength, respectively, from the images photographed by the stamped character photographing unit 11 and then synthesizing these images is to remove the image distortion occurring due to color blur.
(30) Next, the recognition control unit 14 controls each component to perform their own functions. That is, the recognition control unit 14 controls the stamped character photographing unit 11 to photograph the stamped characters, controls the image segmentation unit 12 to segment the binarization image having the R wavelength, the binarization image having the G wavelength, and the binarization image having the B wavelength from the images photographed by the stamped character photographing unit 11, and controls the image synthesis unit 13 to synthesize the binarization image having the R wavelength, the binarization image having the G wavelength, and the binarization image having the B wavelength that are segmented by the image segmentation unit 12.
(31) In particular, the recognition control unit 14 recognizes the stamped characters in the image synthesized by the image synthesis unit 13.
(32)
(33) First, the stamped character photographing unit 11 uses lighting devices having different wavelengths to photograph the stamped characters (501). In this case, light having a red wavelength, light having a green wavelength, and light having a blue wavelength are each irradiated.
(34) Next, the image segmentation unit 12 segments images photographed by the stamped character photographing unit 11 into each wavelength (502). In this case, the image segmentation unit 12 segments the binarization image having the R wavelength, the binarization image having the G wavelength, the binarization image having the B wavelength from the image photographed by the stamped character photographing unit 11.
(35) Next, the image synthesis unit 13 synthesizes the binarization images for each wavelength that are segmented by the image segmentation unit 12 (503).
(36) Next, the recognition control unit 14 recognizes the stamped characters in the image synthesized by the image synthesis unit 13 (504).
(37) Hereinafter, a technology of detecting the stamped depths will be described based on the stamped characters recognized by the stamped character recognition technology as described above.
(38)
(39) As illustrated in
(40) In this configuration, the apparatus 10 for recognizing stamped characters performs a function as described in
(41) Next, describing each component of the apparatus 60 for detecting stamped depths, first, the storage unit 61 first stores the table in which the stamped depths corresponding to the average values of the widths of stamped characters are written. For example, as illustrated in
(42) Next, the character width detection unit 62 uses a filter having a grating form to detect the widths of characters recognized by the apparatus for recognizing stamped characters. In this case, the widths may be calculated by selecting characters that are located at a position at which the lighting devices of each wavelength is evenly irradiated, that is, a center of the character string. For example, if the character string is ABCDEFGHI, E is selected.
(43) This will be described with reference to
(44)
(45) As illustrated in
(46)
(47) As illustrated in
(48)
(49) As illustrated in
(50) The widths of the alphabet ‘D’ in the line {circle around (2)} each are 1.0 mm and the widths of the alphabet ‘D’ in the line {circle around (3)} each are 1.2 mm.
(51) Therefore, the width of the alphabet ‘D’ calculated in association with the vertical line becomes four in total (two of 1.0 mm and two of 1.2 mm).
(52) As a result, the number of widths of the alphabet ‘D’ calculated by being associated with a 6×4 grating filter becomes 12 in total.
(53) Next, the average calculation unit 63 arranges the widths of characters detected by the character width detection unit 62 in an ascending order and then extracts a predetermined number (for example, six) and calculates the average thereof. In this case, the extracted value may be a value located in a center of the arrangement.
(54) In the foregoing example, the arrangement becomes 1, 1, 1, 1, 1, 1, 1.2, 1.2, 1.2, 1.2, 1.2, and 1.2 and the extracted value becomes 1, 1, 1, 1.2, 1.2, and 1.2.
(55) Therefore, the average value calculated by the average calculation unit 63 becomes 1.1.
(56) Next, the detection control unit 64 controls each component to perform their own functions. That is, the detection control unit 64 controls the storage unit 61 to store the table in which the stamped depths corresponding to the average values of the widths of stamped characters are written, controls the character width detection unit 62 to select the optimal detection character from the character string and calculate the selected widths of characters, and controls the average calculation unit 63 to calculate the average of the widths of characters detected by the character width detection unit 62.
(57) In particular, the detection control unit 64 detects the stamped depths of characters corresponding to the average values of the widths of characters calculated by the average calculation unit 63, based on the table stored in the storage unit 61.
(58)
(59) First, the character width detection unit 62 detects the widths of characters recognized by the apparatus for recognizing stamped characters (hereinafter, a stamped character recognition apparatus) using the lighting devices having different wavelengths, by using the grating filter (901).
(60) Next, the average calculation unit 63 calculates the average values of the widths of characters detected by the character width detection unit 62 (902).
(61) Next, the detection control unit 64 detects the stamped depths of characters corresponding to the average values of the widths of characters calculated by the average calculation unit 63, based on the table in which the stamped depths corresponding to the average values of the widths of stamped characters are written (903).
(62) As set forth above, according to various embodiments of the present invention, even when the stamped depths of characters are different, it is possible to accurately recognize the stamped characters.
(63) Further, according to various embodiments of the present invention, it is possible to detect the stamped depths of stamped characters based on the widths of stamped characters.
(64) In addition, according to various embodiments of the present invention, it is possible to provide the wear information of the stamped pins by detecting the stamped depths of stamped characters based on the widths of stamped characters.
(65) The foregoing descriptions of specific exemplary embodiments of the present invention have been presented for purposes of illustration and description. They are not intended to be exhaustive or to limit the invention to the precise forms disclosed, and obviously many modifications and variations are possible in light of the above teachings. The exemplary embodiments were chosen and described in order to explain certain principles of the invention and their practical application, to thereby enable others skilled in the art to make and utilize various exemplary embodiments of the present invention, as well as various alternatives and modifications thereof. It is intended that the scope of the invention be defined by the Claims appended hereto and their equivalents.