CN104766314B - Fabric reading machine and fabric read method with flaw mark function - Google Patents

Fabric reading machine and fabric read method with flaw mark function Download PDF

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Publication number
CN104766314B
CN104766314B CN201510141423.XA CN201510141423A CN104766314B CN 104766314 B CN104766314 B CN 104766314B CN 201510141423 A CN201510141423 A CN 201510141423A CN 104766314 B CN104766314 B CN 104766314B
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fabric
flaw
control module
defect areas
read
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CN104766314A (en
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尹智勇
凌军
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Changyuan Heying Technology Henan Co ltd
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Long Park And Eagle Intelligent Technology Co Ltd
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Abstract

The present invention relates to fabric identification technologies, disclose a kind of fabric reading machine and fabric read method with flaw mark function.Fabric reading machine with flaw mark function includes:Stone platform, flaw read module, fabric read module and control module with sensing region, flaw read module include sensor and sensed part;Sensor senses movement on fabric of the sensed part and generates sensing signal;Control module records defect areas according to sensing signal;Fabric read module reads the material picture of fabric;Material picture and defect areas are integrated into fabric image by control module.Fabric reading machine and fabric read method provided by the invention with flaw mark function, can mark the defect areas on fabric so that computer can appropriately handle defect areas when Automatic Typesetting fashion plate on fabric, improve the quality of ready-made clothes.

Description

Fabric reading machine and fabric read method with flaw mark function
Technical field
The present invention relates to fabric identification technology, more particularly to a kind of fabric reading machine and fabric with flaw mark function Read method.
Background technology
At present, the degree of automation of garment making industry is higher and higher, Automatic Typesetting to fabric, it is automatic cut out gradually instead of Artificial typesetting is with cutting out so that the producing efficiency of clothes is continuously improved.
However, the typesetting for cortex fabric can not but realize automation always.Reason is:Natural cortex has Irregular flaw, for example, some zone-texture compared with it is thick, gloss is dark or has surface fracture, and computer during Automatic Typesetting Those flaws of None- identified can cause the obvious shortcoming for the ready-made clothes made.Similarly, some (are being produced with flaw It is middle occur flaw or for recycle) other types of fabric, can not also use Automatic Typesetting.
Invention content
The purpose of the present invention is to provide a kind of fabric reading machine and fabric read method with flaw mark function, energy Enough mark the defect areas on fabric so that computer can appropriately handle flaw area when Automatic Typesetting fashion plate on fabric The quality of ready-made clothes is improved in domain.
It is read in order to solve the above technical problems, embodiments of the present invention provide a kind of fabric with flaw mark function Machine is taken, comprising:Stone platform, flaw read module, fabric read module and control module with sensing region, the flaw Defect read module includes sensor and sensed part, and the sensor is set to the stone platform and corresponding to the sensing area Domain, the fabric read module are set to the stone platform, and the control module is connected to the sensor and the fabric Read module;Wherein, the fabric is layed in stone platform and in the sensing region, and the sensed part is used to indicate An at least defect areas on the fabric;The sensor senses movement and generation of the sensed part on the fabric Sensing signal;The control module records the defect areas according to the sensing signal;The fabric read module reads institute State the material picture of fabric;The material picture and the defect areas are integrated into fabric image by the control module.
Embodiments of the present invention additionally provide a kind of fabric read method, comprise the steps of:The sensor sensing Movement of the sensed part on the fabric simultaneously generates sensing signal;The control module is recorded according to the sensing signal The defect areas;The fabric read module reads the material picture of the fabric;The control module is by the pictorial diagram As being integrated into fabric image with the defect areas.
In terms of existing technologies, fabric reading machine includes flaw read module, the flaw to embodiment of the present invention Read module includes sensor and sensed part, and the sensor senses movement and production of the sensed part on the fabric Raw sensing signal;The control module records the defect areas according to the sensing signal;The fabric read module is read The material picture of the fabric;The material picture and the defect areas are integrated into fabric image by the control module.From And the defect areas on fabric can be marked so that computer can be handled appropriately when Automatic Typesetting fashion plate on fabric Defect areas improves the quality of ready-made clothes.
In addition, the flaw read module is connected to the control module, the projecting apparatus also comprising an at least projecting apparatus It is set to the stone platform and corresponding to the sensing region, the projecting apparatus is by multiple flaws of the control module internal reservoir Defect grade is projected on the fabric, and the control module records the defect areas or record institute according to the sensing signal State the corresponding flaw grade of defect areas.That is, fabric reading machine also sets flaw grade for each defect areas, with to each flaw area Domain is classified, and so as to for Automatic Typesetting when takes each defect areas Different treatments to provide according to (for example, by more apparent Flaw be set as higher level, when typesetting, evades those regions;Distant flaw is set as lower grade, Ke Yipai The certain fashion plates of version).
Description of the drawings
Figure 1A is illustrated according to the whole of the fabric reading machine with flaw mark function of first embodiment of the invention Figure;
Figure 1B is the connection block diagram according to the fabric reading machine with flaw mark function of first embodiment of the invention;
Fig. 2 is illustrated according to the whole of the fabric reading machine with flaw mark function of second embodiment of the invention Figure;
Fig. 3 is the flow chart according to the fabric read method of third embodiment of the invention;
Fig. 4 is the flow chart according to the fabric read method of four embodiment of the invention.
Specific embodiment
To make the object, technical solutions and advantages of the present invention clearer, below in conjunction with attached drawing to each reality of the present invention The mode of applying is explained in detail.However, it will be understood by those skilled in the art that in each embodiment of the present invention, In order to make the reader understand this application better, many technical details are proposed.But even if without these technical details and base In the various changes and modifications of following embodiment, each claim of the application technical side claimed can also be realized Case.
The first embodiment of the present invention is related to a kind of fabric reading machines with flaw mark function, appear for marking Defect areas on material.For example, natural cortex fabric (being subsequently referred to as cladding) surface often has multiple defect areas, this The fabric reading machine of embodiment can record the defect areas on each cladding so that computer is on this cladding When carrying out typesetting to fashion plate, defect areas can be avoided automatically.
As shown in Figure 1A, 1B, fabric reading machine 1 includes stone platform 10, supporting rack 11, flaw read module 12, fabric Read module 13, control module 14 and display 15.
In present embodiment, stone platform 10 includes pedestal 101, transfer assembly and driver (not shown), transmission Component is set to pedestal and comprising conveyer belt 102 and gear set (not shown), and driver is, for example, motor, is connected to gear set. Stone platform 10 has sensing region 10a, which is, for example, rectangular area.Always the conveyer belt 102 for having part corresponds to In sensing region 10a, cladding is placed on conveyer belt 102 and in sensing region 10a.
In present embodiment, supporting rack is set to the pedestal 101 of stone platform 10.Specifically, supporting rack 11 is for example ForType, two montants of supporting rack 11 are individually fixed in the both sides of pedestal 101, and the cross bar of supporting rack 11 is located at conveyer belt Above in the of 102 and across conveyer belt 102.Preferably, the cross bar corresponds to the sideline 10a-1 of sensing region 10a.
In present embodiment, flaw read module 12 includes sensor 121 and sensed part (not shown).Sensor 121 are set on the cross bar of supporting rack 11 and corresponding to sensing region 10a.That is, the sensing range covering induction zone of sensor 121 Domain 10a.Sensed part is used to indicate the defect areas on cladding, that is, the sensed part of operating personnel's operation is gone out with " drawing " on cladding Defect areas.Sensor 121 can sense when movement of the sensed part on cladding and generate sensing signal.Wherein, it senses Device 121 is, for example, infrared sensor, and sensed part is, for example, lip pencil structure, and the material of nib can be by infrared sensor It senses.
In present embodiment, fabric read module 13 includes multiple cameras, is in turn secured to the cross bar of supporting rack 11 Above and in face of conveyer belt.Preferably, sideline 10a-1 of multiple camera forward directions in face of the sensing region 10a corresponding to the cross bar, And the width of the shooting area of multiple cameras is not less than the length of sideline 10a-1.When conveyer belt is along direction shown in FIG. 1 When D is moved, cladding gradually crosses the sideline 10a-1 of sensing region 10a, and multiple cameras shoot the material object of cladding along direction D Image.
In present embodiment, control module 14 includes processor 141 and memory 142, and processor 141 is connected to stone Driver, memory 142, sensor 121, multiple cameras 131 and the display 15 of platform 10.
When starting to work, after cladding is positioned over the sensing region 10a of stone platform 10 by operating personnel, using sensed Part " is drawn " on cladding goes out defect areas.At this point, sensor 121 senses movement of the sensed part on cladding and generates sensing Signal.Wherein, sensing signal includes the movement locus of sensed part.
Processor 141 records defect areas according to the sensing signal, that is, after processor 141 receives the sensing signal, from this The movement locus of the sensed part is obtained in sensing signal, and the graphic recording that the movement locus is formed is defect areas.Tool For body, preset inside processor 141 there are one plane coordinate system, which corresponds in the plane coordinate system One coordinates regional.The plane coordinates for the multiple points for forming movement locus is contained in sensing signal, processor 141 is believed from sensing The plane coordinates of those points is obtained and recorded in number, that is, records the movement locus of sensed pen.Wherein, which can be Arbitrary curve.For example, when the movement locus is a line segment, the figure which forms is this line segment;When this Movement locus is a closed curve, then the figure that the movement locus is formed is a closed figure (as round), however, this The figure that embodiment forms movement locus and the movement locus is not intended to be limited in any.
Processor 141 also controls display 15 in showing those plane coordinates in the corresponding coordinates regional of the sensing region Those represented points so as to show the movement locus of the sensed pen, that is, show the defect areas of the cladding.
After the defect areas on the cladding is all marked, operating personnel can operate programmable button (such as face Material reading machine 1 can also include the input unit for being connected to processor or display includes touch-sensitive display screen) to generate one A flaw marks end signal.Processor 141 judges whether that receiving flaw label terminates, if it is not, then processor 141 waits for Receive next sensing signal;If so, processor 141 controls driver start, while multiple cameras 131 is controlled to shoot the skin The material picture of material.That is, conveyer belt 102 drives cladding to be moved along direction D, the side of sensing region 10a is gradually passed through in cladding In line 10a-1, multiple cameras shoot cladding.When the cladding positioned at sensing region 10a crosses the side of sensing region 10a During line 10a-1, processor 141 controls driver to stop start and the multiple cameras stopping shootings of control;At this point, multiple cameras The shooting to the material picture of cladding is completed, which is temporarily stored into memory 142 by processor 141.Wherein, the material object Image is also located in the corresponding coordinates regional of sensing region, that is, multiple pixels correspond respectively to the coordinate area on material picture Multiple plane coordinates in domain.And then multiple defect areas and the material picture are integrated into fabric image by processor 141, that is, The fabric image is the material picture that multiple defect areas are marked.Processor 141 also controls display 15 in the sensing region The fabric image is shown in corresponding coordinates regional.
Present embodiment is not intended to be limited in any the method for camera shooting material picture;For example, multiple cameras may be used also To be configured to covering sensing region, so as to which when cladding is placed on sensing region, multiple cameras can shoot the skin The material picture of material.Present embodiment is also not intended to be limited in any the generation of flaw label end signal;For example, inside processor A waiting time can also be preset, if in being not received by next sensing signal in the waiting time, generates the flaw Mark end signal.
Fabric identification code is pasted in present embodiment, on cladding, which is, for example, bar code or two Tie up code.Processor 141 identifies fabric identification code from the material picture of shooting, and by the fabric identification code and the face of the cladding Material image establishes correspondence.That is, processor 141 establishes fabric identification code-fabric image contrast table and is stored at storing Device 142.So as to which fabric reading machine can store the flaw label situation of multiple claddings, for subsequently being carried out on each cladding The Automatic Typesetting of fashion plate.
It is noted that each module involved in present embodiment is logic module, and in practical applications, one A logic unit can be a part for a physical unit or a physical unit, can also be with multiple physics lists The combination of member is realized.In addition, in order to protrude the innovative part of the present invention, it will not be with solving institute of the present invention in present embodiment The technical issues of proposition, the less close unit of relationship introduced, but this does not indicate that there is no other single in present embodiment Member.
Second embodiment of the invention is related to a kind of fabric reading machine with flaw mark function, as shown in Figure 2.Second Embodiment is roughly the same with first embodiment, is in place of the main distinction:In second embodiment of the invention, flaw is read Modulus block 12 also comprising two projecting apparatus 122, is connected to processor 141;Also, it is also stored inside memory 142 more A flaw grade.Two projecting apparatus 122 are set on the cross bar of supporting rack 11 and corresponding to sensing region 10a.That is, two projections The total drop shadow spread of instrument can cover induction region 10a.Wherein, present embodiment does not make any limit to the specific number of projecting apparatus System, those skilled in the art can be set according to actual needs.Projecting apparatus 122 is used to multiple flaw grades being projected on cladding On, so that operating personnel select corresponding flaw grade for defect areas.Wherein, multiple flaw grades are used to represent different degrees of Defect areas, such as include level-one flaw, two level flaw, three-level flaw etc..
Specifically, there are one the flaw selectors with enabled status or disabled state for 141 inner setting of processor. Wherein, flaw selector is in enabled status, represents the defect areas to be received such as just of processor 141;Flaw selector is in non- Enabled status represents the flaw grade to be received such as just of processor 141.
After sensing signal is received, processor 141 judges whether the flaw selector is enabled status.If judging result It is yes, then the flaw selector is revised as disabled state by processor 141, while the graphic recording that movement locus is formed is Defect areas.Also, processor 141 controls multiple flaw grades that one of projecting apparatus 122 will store in the memory 142 It is projected on cladding.Wherein, the view field of multiple flaw grades follows current defect areas to move;For example, in processor Portion can preset projection rule:The view field of multiple flaw grades be apart from current defect areas leftmost side point (or most Right-hand point or top side point or lowermost point) specified distance.According to current defect areas position, processor can be with Calculate the view field of current multiple flaw grades;Processor selects corresponding projecting apparatus (throwing according to the view field The drop shadow spread of shadow instrument includes the view field of current multiple flaw grades) the multiple flaw grades of projection.So as to operating personnel Can the corresponding flaw grade of the defect areas be selected conveniently.However, present embodiment is not intended to be limited in any this, multiple flaws The view field of grade can also be preset by processor 141, that is, multiple flaw grades are projected always in the pre- of sensing region If position.
If judging result is no, i.e., the flaw selector is disabled state, then processor 141 judges that movement locus is formed Figure whether be located in one of in the view field of flaw grade.That is, whether the sensed part of the identification of processor 141 selects it In a flaw grade.If so, it is the flaw grade that current defect areas corresponds to that processor 141, which records the flaw grade,; If it is not, representing that current sensing signal may be the maloperation by operating personnel, processor abandons the sensing signal, and waits waiting Receive next sensing signal.
Third embodiment of the present invention is related to a kind of fabric read method, applied to the fabric with flaw mark function Reading machine.Fabric reading machine includes stone platform, flaw read module, fabric read module and control with sensing region Module, flaw read module include sensor and sensed part, and sensor is set to stone platform and corresponding to sensing region, face Material is layed in stone platform and in sensing region, and sensed part is used to indicate the defect areas on fabric.As shown in figure 3, Fabric read method comprises the steps of S1 to step S7.
Step S1:Movement of the sensed part of sensor sensing on fabric simultaneously generates sensing signal.
Step S2:Control module records defect areas according to sensing signal.Step S2 includes sub-step S21 and sub-step S24。
Sub-step S21:Control module calculates the movement locus of sensed part according to sensing signal.
Sub-step S24:The graphic recording that control module forms movement locus is defect areas.
Step S3:Whether control module receives flaw label end signal.If so, enter step S4;If it is not, return to step Rapid S1.
Step S4:Fabric read module reads the material picture of fabric.
Step S5:Control module obtains fabric identification code from material picture.
Step S6:Material picture and defect areas are integrated into fabric image by control module.Wherein, present embodiment is to step The sequencing of rapid S5 and step S6 are not intended to be limited in any.
Step S7:Control module establishes fabric identification code-fabric image contrast table.
The step of various methods divide above, be intended merely to describe it is clear, when realization can be merged into a step or Certain steps are split, are decomposed into multiple steps, as long as comprising identical logical relation, all in the protection domain of this patent It is interior;To inessential modification is either added in algorithm in flow or introduces inessential design, but do not change its algorithm Core design with flow is all in the protection domain of the patent.
Four embodiment of the invention is related to a kind of fabric read method, as shown in Figure 4.4th embodiment is real with third It is roughly the same to apply mode, is in place of the main distinction:In four embodiment of the invention, flaw read module includes at least one Projecting apparatus;In step S2, sub-step S22 and sub-step S23 is also included after sub-step S21, sub-step is also included after sub-step S24 Rapid S25 to sub-step S28.
Sub-step S22:Control module judges whether the flaw selector of the control module inner setting is enabled status.If It is, into sub-step S23;If it is not, into sub-step S26.
Sub-step S23:Flaw selector is revised as disabled state by control module;And enter sub-step S24.
Sub-step S25:The multiple flaw grades stored in the control module are projected on fabric by projecting apparatus.
Sub-step S26:Control module judges whether the figure that movement locus is formed is located in one of the throwing of flaw grade In the domain of shadow zone.
Sub-step S27:If so, it is the flaw grade that the defect areas corresponds to that control module, which records the flaw grade, and Into sub-step S28;If it is not, return to step S1.
Sub-step S28:Flaw selector is revised as enabled status by control module.
It is not difficult to find that third, the 4th embodiment be with the corresponding embodiment of the method for first, second embodiment, the 3rd, the 4th embodiment can work in coordination implementation with first, second embodiment.The phase mentioned in first, second embodiment It is still effective in third, the 4th embodiment to close technical detail, in order to reduce repetition, which is not described herein again.Correspondingly, this reality The relevant technical details mentioned in mode are applied to be also applicable in first, second embodiment.
It will be understood by those skilled in the art that the respective embodiments described above are to realize specific embodiments of the present invention, And in practical applications, can to it, various changes can be made in the form and details, without departing from the spirit and scope of the present invention.

Claims (12)

1. a kind of fabric reading machine with flaw mark function, which is characterized in that include:
Stone platform, flaw read module, fabric read module and control module with sensing region, the flaw are read Module includes sensor and sensed part, and the sensor is set to the stone platform and corresponding to the sensing region, institute It states fabric read module and is set to the stone platform, the control module is connected to the sensor and reads mould with the fabric Block;Wherein, the fabric is layed in the stone platform and in the sensing region, and the sensed part is used to indicate institute State at least defect areas on fabric;
The sensor senses movement of the sensed part on the fabric and generates sensing signal;The control module root The defect areas is recorded according to the sensing signal;The fabric read module reads the material picture of the fabric;The control The material picture and the defect areas are integrated into fabric image by molding block.
2. the fabric reading machine according to claim 1 with flaw mark function, which is characterized in that the flaw is read Module also comprising an at least projecting apparatus, is connected to the control module, the projecting apparatus is set to the stone platform and correspondence In the sensing region, multiple flaw grades of the control module internal reservoir are projected on the fabric by the projecting apparatus, The control module records the defect areas according to the sensing signal or records corresponding flaw of the defect areas etc. Grade.
3. the fabric reading machine according to claim 2 with flaw mark function, which is characterized in that the control module Comprising processor and memory, the processor is connected to the memory, the sensor, the projecting apparatus and the face Expect read module, the memory storage has the multiple flaw grade.
4. the fabric reading machine according to claim 1 with flaw mark function, which is characterized in that described to carry flaw Also comprising display, the display is used to show the defect areas or the fabric figure fabric reading machine of mark function Picture.
5. the fabric reading machine according to claim 1 with flaw mark function, which is characterized in that the sensor is Infrared sensor.
6. the fabric reading machine according to claim 1 with flaw mark function, which is characterized in that the fabric is read Module includes an at least camera.
7. a kind of fabric read method, which is characterized in that applied to the fabric reading machine with flaw mark function, the fabric Reading machine includes stone platform, flaw read module, fabric read module and control module with sensing region, the flaw Defect read module includes sensor and sensed part, and the fabric is layed in stone platform and in the sensing region, institute It states sensor and is set to the stone platform and corresponding to the sensing region, the sensed part is used to indicate on the fabric An at least defect areas, the fabric read method comprises the steps of:
The sensor senses movement of the sensed part on the fabric and generates sensing signal;
The control module records the defect areas according to the sensing signal;
The fabric read module reads the material picture of the fabric;
The material picture and the defect areas are integrated into fabric image by the control module.
8. fabric read method according to claim 7, which is characterized in that the control module is according to the sensing signal The step of recording the defect areas includes following sub-step:
The control module calculates the movement locus of the sensed part according to the sensing signal;
The graphic recording that the control module forms the movement locus is the defect areas.
9. fabric read method according to claim 8, which is characterized in that the flaw read module also includes at least one Projecting apparatus, is connected to the control module, and the control module calculates the movement of the sensed part according to the sensing signal After the step of track, also include:
The control module judges whether the flaw selector of the control module inner setting is enabled status;
If so, the flaw selector is revised as disabled state by the control module;And enter the control module by institute The step of graphic recording for stating movement locus formation is the defect areas;
The multiple flaw grades stored in the control module are projected on the fabric by the projecting apparatus;
If it is not, the control module judges whether the figure that the movement locus is formed is located in one of the projection of flaw grade In region;
If so, it is the flaw grade that the defect areas corresponds to that the control module, which records the flaw grade,;
The flaw selector is revised as enabled status by the control module;And enter described in fabric read module reading The step of material picture of fabric.
10. fabric read method according to claim 7, which is characterized in that the fabric acquisition module reads the face Before the step of material picture of material, also comprising step:
The control module judges whether to receive flaw label end signal;If so, it is read into the fabric acquisition module The step of material picture of the fabric.
11. fabric read method according to claim 7, which is characterized in that fabric identification code is pasted on the fabric,
Before the step of material picture and the defect areas are integrated into fabric image by the control module, also comprising step Suddenly:The control module obtains the fabric identification code from the material picture;
After the step of material picture and the defect areas are integrated into fabric image by the control module, also comprising step Suddenly:The control module establishes fabric identification code-fabric image contrast table.
12. fabric read method according to claim 7, which is characterized in that the fabric with flaw mark function Reading machine also includes display,
After the step of control module records the defect areas according to the sensing signal, also comprising step:It is described aobvious Show that device shows the defect areas;
After the step of material picture and the defect areas are integrated into fabric image by the control module, also comprising step Suddenly:The display shows the fabric image.
CN201510141423.XA 2015-03-27 2015-03-27 Fabric reading machine and fabric read method with flaw mark function Expired - Fee Related CN104766314B (en)

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TWI818235B (en) * 2018-05-22 2023-10-11 荷蘭商耐克創新有限合夥公司 Leather inspection apparatus and method for detecting inconsistencies on a surface of hide
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CN112270687A (en) * 2020-10-16 2021-01-26 鲸斛(上海)智能科技有限公司 Cloth flaw identification model training method and cloth flaw detection method

Citations (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE3417564A1 (en) * 1984-05-11 1985-11-14 G. O. Stumpf GmbH & Co KG, 7421 Mehrstetten Method and apparatus for detecting a material defect in the blank or cut of a material layer, especially cloth layer, laid out on a laying surface for the purpose of cutting according to a cutting pattern
JP2004093486A (en) * 2002-09-03 2004-03-25 Tookai:Kk Defective level information setting method for defective cloth piece detection device
CN1735722A (en) * 2003-01-08 2006-02-15 乌斯特技术股份公司 Method and device for recognizing defects in textile structures
CN101315337A (en) * 2008-07-07 2008-12-03 湖北工业大学 On-line testing apparatus for surface fault of grey cloth
CN202119724U (en) * 2011-06-09 2012-01-18 洛阳方智测控股份有限公司 Charge coupled device (CCD) detecting device of automatic cloth inspecting machine
CN203128907U (en) * 2012-12-18 2013-08-14 华侨大学 Automatic control device of cloth inspecting machine
CN103336014A (en) * 2013-07-25 2013-10-02 罗中玉 Textile fabric double-side contaminant detection system
CN103413314A (en) * 2013-08-19 2013-11-27 合肥师范学院 Textile defect detecting algorithm based on texture gradients
CN103529051A (en) * 2013-11-01 2014-01-22 南通大学 Method for automatic on-line detection of detects of woven textile
CN104264434A (en) * 2014-08-06 2015-01-07 杭州开源电脑技术有限公司 Cloth defect marking device and cloth producing device
CN204138980U (en) * 2014-08-12 2015-02-04 童杨益 A kind of automatic cloth inspection labelling apparatus

Patent Citations (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE3417564A1 (en) * 1984-05-11 1985-11-14 G. O. Stumpf GmbH & Co KG, 7421 Mehrstetten Method and apparatus for detecting a material defect in the blank or cut of a material layer, especially cloth layer, laid out on a laying surface for the purpose of cutting according to a cutting pattern
JP2004093486A (en) * 2002-09-03 2004-03-25 Tookai:Kk Defective level information setting method for defective cloth piece detection device
CN1735722A (en) * 2003-01-08 2006-02-15 乌斯特技术股份公司 Method and device for recognizing defects in textile structures
CN101315337A (en) * 2008-07-07 2008-12-03 湖北工业大学 On-line testing apparatus for surface fault of grey cloth
CN202119724U (en) * 2011-06-09 2012-01-18 洛阳方智测控股份有限公司 Charge coupled device (CCD) detecting device of automatic cloth inspecting machine
CN203128907U (en) * 2012-12-18 2013-08-14 华侨大学 Automatic control device of cloth inspecting machine
CN103336014A (en) * 2013-07-25 2013-10-02 罗中玉 Textile fabric double-side contaminant detection system
CN103413314A (en) * 2013-08-19 2013-11-27 合肥师范学院 Textile defect detecting algorithm based on texture gradients
CN103529051A (en) * 2013-11-01 2014-01-22 南通大学 Method for automatic on-line detection of detects of woven textile
CN104264434A (en) * 2014-08-06 2015-01-07 杭州开源电脑技术有限公司 Cloth defect marking device and cloth producing device
CN204138980U (en) * 2014-08-12 2015-02-04 童杨益 A kind of automatic cloth inspection labelling apparatus

Non-Patent Citations (2)

* Cited by examiner, † Cited by third party
Title
"基于机器视觉的织物瑕疵自动检测硬件***设计";李宁等;《轻工科技》;20140731(第7期);87-88、100 *
"基于计算机视觉的织物疵点检测的近期进站";步红刚等;《东华大学学报(自然科学版)》;20060630;第32卷(第3期);128-133 *

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