US2023010402A1PendingUtilityA1
Cased goods inspection system and method
Est. expiryJan 26, 2036(~9.5 yrs left)· nominal 20-yr term from priority
H04N 23/56G06T 2207/10016H04N 5/04G01B 11/04B65G 15/00G06T 7/0006G06T 7/62G06T 7/70G06T 7/0004G06T 5/50G06T 2207/30164H04N 5/2256
63
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Claims
Abstract
A method of inspecting cased goods includes advancing at least one case of goods on a conveyor, generating an illumination sheet of parallel illuminating rays with at least one electromagnetic source, and capturing an image, formed by the illumination sheet passing through a diffuser with at least one camera located so as to capture illumination from diffused parallel rays of the light sheet, where the image case embodies a goods image that is generated by the case goods moving between the light source and the at least one camera, where part of the parallel sheet of light is at least partially blocked by the case of goods, thus generating a gray level image.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1 . An induction station of case goods in a logistic facility, the induction station comprising:
at least one conveyor for advancing a case of goods into the facility; a case inspection apparatus disposed for inspection of the cased goods advanced past the case inspection apparatus by the at least one conveyor; at least one electromagnetic (EM) source configured to transmit an illumination sheet, of parallel illumination rays, having a predetermined width towards a vision system disposed to receive the illumination sheet; the vision system with at least one camera wherein:
the at least one camera is configured so as to capture an image formed by diffused parallel rays of the illumination sheet diffused by a diffuser, and
the image captured by the at least one camera embodies a case of goods image that is generated by the case of goods advanced by the at least one conveyor through the illumination sheet and at least partially blocks the parallel rays of the illumination sheet; and
the image generated spans the predetermined width of the illumination sheet and encompasses a gray scale image of part of the illumination sheet blocked by at least a portion of the case of goods.
2 . The induction station of claim 1 , further comprising a processor operably coupled to the at least one conveyor and vision system and including
an image acquisition component configured to acquire more than one of the digitized images for each of the case of goods as the case of goods is advanced past the at least one camera, and an image combiner configured to selectively combine a number of acquired digitized images, different than the more than one of the digitized images, into a combined image based on sustained input beam spatial intensity reduction below a first threshold over a duration of the more than one of the acquired digitized images; wherein the processor is configured to determine from the combined image a predetermined characteristic intrinsic to the case of goods.
3 . The induction station of claim 1 , wherein the gray scale image is of part of the illumination sheet blocked by and transmitted through the at least a portion of the case of goods.
4 . The induction station of claim 2 , wherein the processor is configured to determine from the combined image dimensional measurements about the case of goods including one or more of length, width, height, angle, “real box, “max box” and ”max bulge”.
5 . The induction station of claim 2 , where the processor is configured to ascertain presence of the case of goods based on sustained input beam spatial intensity reduction below a second threshold discriminating presence of translucent shrink wrap disposed on product in the case of goods.
6 . The induction station of claim 1 , wherein the at least one conveyor is configured to advance the case of goods at a rate of advance, the image acquisition component being configured to acquire the digitized images at an acquisition rate proportional to the rate of advance of the case of goods.
7 . The induction station of claim 6 , wherein the image acquisition rate is synchronized by using an encoder or by a stepper motor drive circuit.
8 . The induction station of claim 1 , wherein the at least one EM source comprises:
a substantially point source lamp having an output light beam; an output beam shaper configured to redirect the output light beam into the sheet of collimated illumination having parallel light rays of the output light beam; and a mirror to reduce a foot print of the apparatus.
9 . The induction station of claim 1 , wherein the image acquisition component comprises an image cache storage.
10 . The induction station of claim 1 , wherein the vision system is configured to determine an ambient light intensity from a sample buffer of cached images.
11 . The induction station of claim 1 , wherein the vision system is configured to identify presence of debris on an input window of the vision system based on common pixels of same intensity across a number of digitized images.
12 . The induction station of claim 1 , wherein the image combiner is configured to selectively combine acquired digitized images into a potential product combined image where a number of pixels digitized in an image having a reduced intensity below the first predetermined threshold define an image width greater than a second threshold.
13 . The induction station of claim 1 , wherein the image combiner is configured to selectively combine acquired digitized images into forming the combined image where a number of pixels digitized across sequential images having reduced intensity below the first predetermined threshold and a second threshold represent a predetermined combined image length.
14 . The induction station of claim 1 , wherein the processor is configured to determine dimensions from the combined image of: a first shape best fitting in the combined image, a second shape circumscribing the combined image, and differences between the first and second shapes.
15 . The induction station of claim 1 , wherein the processor is configured to determine from the combined image an orientation angle of the case of goods with respect to the at least one conveyor.
16 . The induction station of claim 1 , wherein the processor is configured to determine from the combined image a distance of the case of goods from one side of the at least one conveyor.
17 . The induction station of claim 6 , wherein the image acquisition rate is synchronized by using an encoder or by a stepper motor drive circuit.Cited by (0)
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