A real-time fabric quality inspection system, method, device and medium

The fabric inspection system addresses the inefficiency of manual on-site inspections by implementing a remote quality inspection platform for real-time fabric quality control, enhancing efficiency and accuracy.

CN115729185BActive Publication Date: 2025-07-15CHINA UNITED NETWORK COMM GRP CO LTD +2
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Patent Information

Application Number
CN202211428061.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-11-15
Publication Date
2025-07-15
Estimated Expiration
2042-11-15

AI Technical Summary

Technical Problem

The prior art relies on manual on-site quality inspection of fabrics, which leads to low quality inspection efficiency and requires users to spend a lot of time to arrive next to the cloth inspection machine.

Method used

Real-time fabric quality inspection system is adopted, including fabric inspection machines, edge industrial control systems, quality inspection coordination platform and multiple remote clients. Through the collaborative work of image information acquisition, remote control and quality inspection coordination platforms, remote quality inspection of fabrics is realized.

Benefits of technology

Real-time quality inspection of fabrics is realized, quality inspection efficiency is improved, time consumption is reduced for users to go to the site, and the accuracy and speed of quality inspection results are ensured through competitive mechanisms.

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Patent Text Reader

Abstract

The present application provides a real-time fabric quality inspection system, method, device and medium. The system includes a fabric inspection machine, an edge industrial control system, a quality inspection coordination platform and multiple remote clients. The fabric inspection machine is used to send the image information of the fabric to be inspected collected in real time to the quality inspection coordination platform through the edge industrial control system. The quality inspection coordination platform is used to send the real-time fabric quality inspection task generated according to the image information of the fabric to be inspected to multiple remote clients, determine the main control client according to the response information in the task response feedback by the remote client, and trigger it to realize the control of the fabric inspection machine. The main control client is used to send a control instruction to the fabric inspection machine through the quality inspection coordination platform and the edge industrial control system to make it collect and adjust. The main control client is also used to inspect the image information of the fabric to be inspected obtained after the fabric inspection machine collects and adjusts and feedback the quality inspection result to the quality inspection coordination platform. It solves the problem that the prior art requires users to spend time arriving at the scene beside the fabric inspection machine, resulting in low quality inspection efficiency.
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Description

Technical Field

[0001] This application relates to the field of textile technology, and particularly to a real-time fabric quality inspection system, method, device, and medium. Background Art

[0002] When selling fabrics to customers, fabric manufacturers need to provide fabric quality inspection reports recording the fabric quality inspection results. Therefore, fabric quality inspection, as a link in fabric production, is crucial for the development of the textile technology field.

[0003] In the process of inspecting fabrics in the prior art, employees need to arrive at the fabric inspection machine on-site and rely on eyesight to inspect the fabrics on the fabric inspection machine. However, the method of relying on manual on-site fabric quality inspection in the prior art requires users to spend a lot of time arriving at the fabric inspection machine on-site, resulting in low inspection efficiency. Summary of the Invention

[0004] This application provides a real-time fabric quality inspection system, method, device, and medium, which is used to solve the problem that the method of relying on manual on-site fabric quality inspection in the prior art requires users to spend a lot of time arriving at the fabric inspection machine on-site, resulting in low inspection efficiency.

[0005] In a first aspect, this application provides a real-time fabric quality inspection system, including: a fabric inspection machine, an edge industrial control system, a quality inspection coordination platform, and multiple remote clients; where

[0006] The fabric inspection machine is used to send the image information of the fabric to be inspected, which is acquired in real time, to the quality inspection coordination platform through the edge industrial control system;

[0007] The quality inspection coordination platform is used to generate a real-time fabric quality inspection task according to the image information of the fabric to be inspected, and send the fabric quality inspection task to the multiple remote clients;

[0008] The quality inspection coordination platform is further used to obtain the task responses fed back by the multiple remote clients, and determine the master client from the multiple remote clients according to the response information in the task responses, and trigger the master client to control the fabric inspection machine;

[0009] The master client is used to send control instructions to the fabric inspection machine through the quality inspection coordination platform and the edge industrial control system;

[0010] The fabric inspection machine is further used to perform acquisition adjustment according to the control instructions;

[0011] The master client is further used to perform quality inspection processing on the image information of the fabric to be inspected obtained after the acquisition adjustment of the fabric inspection machine, and feed back the quality inspection results to the quality inspection coordination platform.

[0012] In the preferred technical solution of the above fabric real-time quality inspection system, the master control client is specifically used for:

[0013] Sending a control instruction to the fabric inspection machine through the quality inspection coordination platform and the edge industrial control system to control the start, stop, forward or backward movement of the conveyor belt on the fabric inspection machine, so that the conveyor belt on the fabric inspection machine drives the fabric to be quality inspected to start conveying, stop conveying, convey forward or convey backward.

[0014] In the preferred technical solution of the above fabric real-time quality inspection system, the master control client is specifically used for:

[0015] Sending a control instruction to the fabric inspection machine through the quality inspection coordination platform and the edge industrial control system to control the lights on the fabric inspection machine, so that the intensity and / or irradiation range of the lights on the fabric inspection machine are changed.

[0016] In the preferred technical solution of the above fabric real-time quality inspection system, the quality inspection coordination platform is further used for:

[0017] Setting other remote clients except the master control client among the multiple remote clients as collaborative clients;

[0018] Sending the image information of the fabric to be quality inspected obtained after the master control client adjusts the acquisition of the fabric inspection machine and the quality inspection results fed back by the master control client to the collaborative clients, and receiving the quality inspection results fed back by the collaborative clients.

[0019] In the preferred technical solution of the above fabric real-time quality inspection system, the quality inspection coordination platform is further used for:

[0020] Judging whether the quality inspection results fed back by the master control client are not received within a preset time period;

[0021] When it is judged that the quality inspection results fed back by the master control client are not received within the preset time period, determining the master control client to be switched from the collaborative clients according to the quality inspection results fed back by the collaborative clients, and triggering the master control client to be switched to switch the control of the fabric inspection machine by the master control client.

[0022] In a second aspect, the present application provides a fabric real-time quality inspection method, including:

[0023] The quality inspection coordination platform acquires the image information of the fabric to be quality inspected that is acquired in real time by the fabric inspection machine and sent through the edge industrial control system, generates a fabric real-time quality inspection task according to the image information of the fabric to be quality inspected, and sends the fabric real-time quality inspection task to multiple remote clients;

[0024] The quality inspection coordination platform obtains the task responses fed back by the multiple remote clients, determines the master client from the multiple remote clients according to the response information in the task responses, and triggers the master client to control the fabric inspection machine;

[0025] The quality inspection coordination platform obtains the control instructions sent by the master client, and sends the control instructions to the fabric inspection machine through the edge industrial control system, so that the fabric inspection machine makes acquisition adjustments according to the control instructions;

[0026] The quality inspection system platform obtains the quality inspection results fed back by the master client; wherein, the quality inspection results are obtained by the master client performing quality inspection processing on the image information of the fabric to be quality inspected obtained after the fabric inspection machine makes acquisition adjustments.

[0027] In the preferred technical solution of the above fabric real-time quality inspection method, the quality inspection coordination platform obtains the control instructions sent by the master client, and sends the control instructions to the fabric inspection machine through the edge industrial control system, including:

[0028] The quality inspection coordination platform obtains the control instructions sent by the master client to control the start, stop, forward or backward movement of the conveyor belt on the fabric inspection machine, and sends the control instructions to the fabric inspection machine through the edge industrial control system, so that the conveyor belt on the fabric inspection machine drives the fabric to be quality inspected to start conveying, stop conveying, convey forward or convey backward.

[0029] In the preferred technical solution of the above fabric real-time quality inspection method, the quality inspection coordination platform obtains the control instructions sent by the master client, and sends the control instructions to the fabric inspection machine through the edge industrial control system, including:

[0030] The quality inspection coordination platform obtains the control instructions sent by the master client to control the lights on the fabric inspection machine, and sends the control instructions to the fabric inspection machine through the edge industrial control system, so that the intensity and / or irradiation range of the lights on the fabric inspection machine are changed.

[0031] In the preferred technical solution of the above fabric real-time quality inspection method, it further includes:

[0032] The quality inspection coordination platform sets the other remote clients except the master client among the multiple remote clients as collaborative clients;

[0033] The quality inspection coordination platform sends the image information of the fabric to be quality inspected obtained after the master client makes acquisition adjustments to the fabric inspection machine and the quality inspection results fed back by the master client to the collaborative clients, and receives the quality inspection results fed back by the collaborative clients.

[0034] In the preferred technical solution of the above-mentioned real-time fabric quality inspection method, it further includes:

[0035] The quality inspection coordination platform determines whether it has not received the quality inspection result feedback by the master client within a preset time period;

[0036] When the quality inspection coordination platform determines that it has not received the quality inspection result feedback by the master client within the preset time period, according to the quality inspection result feedback by the collaborative client, it determines the master client to be switched from the collaborative client, and triggers the master client to be switched to control the fabric inspection machine.

[0037] In a third aspect, the present application provides a real-time fabric quality inspection method, including:

[0038] The remote client receives the real-time fabric quality inspection task generated by the quality inspection coordination platform according to the image information of the fabric to be inspected, and generates a corresponding task response according to the real-time fabric quality inspection task, and feeds it back to the quality inspection coordination platform;

[0039] When the remote client is triggered to be the master client, it sends a control instruction to the fabric inspection machine through the quality inspection coordination platform and the edge industrial control system, so that the fabric inspection machine makes acquisition adjustments according to the control instruction;

[0040] The master client performs quality inspection processing on the image information of the fabric to be inspected obtained after the acquisition adjustment of the fabric inspection machine, and feeds back the quality inspection result to the quality inspection coordination platform.

[0041] In a fourth aspect, the present application provides a server, including:

[0042] A processor, and a memory communicatively connected to the processor;

[0043] The memory is used to store computer execution instructions;

[0044] The processor is used to execute the computer execution instructions stored in the memory to implement the real-time fabric quality inspection method described in the second aspect.

[0045] In a fifth aspect, the present application provides an electronic device, including:

[0046] A processor, and a memory communicatively connected to the processor;

[0047] The memory is used to store computer execution instructions;

[0048] The processor is used to execute the computer execution instructions stored in the memory to implement the real-time fabric quality inspection method described in the third aspect.

[0049] Sixth aspect, the present application provides a computer-readable storage medium, in which computer-executable instructions are stored, and when the computer-executable instructions are executed by a processor, they are used to implement the fabric real-time quality inspection method described in the second aspect.

[0050] Seventh aspect, the present application provides a computer-readable storage medium, in which computer-executable instructions are stored, and when the computer-executable instructions are executed by a processor, they are used to implement the fabric real-time quality inspection method described in the third aspect.

[0051] The present application provides a fabric real-time quality inspection system, method, device and medium. The fabric real-time quality inspection system includes a cloth inspection machine, an edge industrial control system, a quality inspection coordination platform and multiple remote clients; among them, the cloth inspection machine is used to send the image information of the fabric to be quality inspected obtained in real time to the quality inspection coordination platform through the edge industrial control system; the quality inspection coordination platform is used to generate a fabric real-time quality inspection task according to the image information of the fabric to be quality inspected, and send the fabric real-time quality inspection task to multiple remote clients; the quality inspection coordination platform is also used to obtain the task responses feedback by multiple remote clients, and determine the master client from multiple remote clients according to the response information in the task responses, and trigger the master client to control the cloth inspection machine; the master client is used to send control instructions to the cloth inspection machine through the quality inspection coordination platform and the edge industrial control system; the cloth inspection machine is used to adjust the acquisition according to the control instructions; the master client is also used to perform quality inspection processing on the image information of the fabric to be quality inspected obtained after the cloth inspection machine adjusts the acquisition, and feedback the quality inspection result to the quality inspection coordination platform. Compared with the method in the prior art that relies on manual on-site quality inspection of fabrics, which requires users to spend a lot of time to reach the cloth inspection machine on site, resulting in low quality inspection efficiency, the present application does not require users to reach the cloth inspection machine for real-time quality inspection of fabrics. Instead, by means of remote clients receiving the fabric real-time quality inspection tasks issued by the quality inspection coordination platform, the real-time quality inspection of fabrics can be realized, solving the problem that the method in the prior art that relies on manual on-site quality inspection of fabrics requires users to spend a lot of time to reach the cloth inspection machine on site, resulting in low quality inspection efficiency. In addition, the present application also sets up a competition mechanism for the control right of the cloth inspection machine. The quality inspection coordination platform in the fabric real-time quality inspection system can determine the master client that can control the cloth inspection machine from multiple remote clients according to the task responses feedback by multiple remote clients after receiving the fabric real-time quality inspection tasks, so as to realize the control of the cloth inspection machine by the master client. Furthermore, the master client can display the image information of the fabric to be quality inspected that is more suitable for users to observe and determine defects on the display interface, thus realizing fast and accurate quality inspection processing of the fabric to be quality inspected. Description of the Drawings

[0052] To more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the accompanying drawings required for the description of the embodiments or the prior art. Obviously, the accompanying drawings in the following description are some embodiments of the present application. For those of ordinary skill in the art, without creative efforts, other accompanying drawings can also be obtained based on these drawings.

[0053] Figure 1 The structural diagram of a real-time fabric quality inspection system provided by the present application;

[0054] Figure 2 The flowchart of the first embodiment of a real-time fabric quality inspection method provided by the present application;

[0055] Figure 3 The flowchart of the second embodiment of a real-time fabric quality inspection method provided by the present application;

[0056] Figure 4 The flowchart of the third embodiment of a real-time fabric quality inspection method provided by the present application;

[0057] Figure 5 The flowchart of the fourth embodiment of a real-time fabric quality inspection method provided by the present application;

[0058] Figure 6 The flowchart of the fifth embodiment of a real-time fabric quality inspection method provided by the present application;

[0059] Figure 7 The structural diagram of a server provided by the present application. Detailed implementation manners

[0060] To make the objectives, technical solutions and advantages of the embodiments of the present application clearer, the following will clearly and completely describe the technical solutions in the embodiments of the present application with reference to the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are some, but not all, of the embodiments of the present application. Based on the embodiments of the present application, all other embodiments made by those of ordinary skill in the art under the inspiration of this embodiment belong to the scope of protection of the present application.

[0061] In the description and claims of this application and the above-mentioned drawings, the terms "first", "second", "third", "fourth", etc. (if any) are used to distinguish similar objects and do not necessarily describe a specific order or sequence. It should be understood that the data used in this way can be interchanged under appropriate circumstances so that the embodiments of this application described here can be implemented in an order other than those illustrated or described here. In addition, the terms "comprising" and "having" and any variations thereof are intended to cover non-exclusive inclusion. For example, a process, method, system, product or device that includes a series of steps or units does not necessarily have to be limited to those steps or units clearly listed, but may include other steps or units that are not clearly listed or are inherent to these processes, methods, products or devices.

[0062] In the prior art, during the process of quality inspection of fabrics, employees need to reach beside the fabric inspection machine and rely on eyesight to inspect the fabrics on the fabric inspection machine. However, the above method requires users to spend a lot of time to reach the fabric inspection machine on site, resulting in low efficiency of quality inspection.

[0063] Based on the above technical problems, the technical concept process of this application is as follows: how to achieve remote quality inspection of fabrics.

[0064] The fabric real-time quality inspection system of this application will be described in detail below.

[0065] Figure 1 It is a structural diagram of a fabric real-time quality inspection system provided for this application. As Figure 1 shown, in the first embodiment, the fabric real-time quality inspection system includes: a fabric inspection machine 101, an edge industrial control system 102, a quality inspection coordination platform 103, and multiple remote clients. Exemplarily, Figure 1 three remote clients are shown in it, which are remote client 104, remote client 105, and remote client 106 respectively.

[0066] In this embodiment, an image information acquisition device is installed on the fabric inspection machine 101 located at the site. Exemplarily, the image information acquisition device can be a camera. The fabric inspection machine 101 can acquire the image information of the fabric to be quality inspected on the conveyor belt of the fabric inspection machine 101 in real time through the image information acquisition device. After the fabric inspection machine 101 acquires the image information of the fabric to be quality inspected, it can send the image information of the fabric to be quality inspected to the edge industrial control system 102 also located at the site.

[0067] The edge industrial control system 102 can forward the received image information of the fabric to be quality inspected to the quality inspection coordination platform 103.

[0068] The quality inspection coordination platform 103 can generate real-time fabric quality inspection tasks based on the image information of the fabric to be inspected, and send the real-time fabric quality inspection tasks to the remote client 104, the remote client 105, and the remote client 106 respectively.

[0069] Taking the remote client 104 as an example, after receiving the real-time fabric quality inspection task sent by the quality inspection coordination platform 103, the remote client 104 can control the display interface of the remote client 104 to display the real-time fabric quality inspection task. After receiving the bidding information input by the user, the remote client 104 can generate a task response and send the task response to the quality inspection coordination platform 103. Among them, the response information in the task response can include any one or more of the following information: time information, defect type, and defect size.

[0070] It should be noted that after receiving the real-time fabric quality inspection task sent by the quality inspection coordination platform 103, the process of the remote client 105 and the remote client 106 generating and sending task responses to the quality inspection coordination platform 103 is the same as that of the remote client 104, and will not be elaborated here.

[0071] After obtaining the task responses sent by the remote client 104, the remote client 105, and the remote client 106, the quality inspection coordination platform 103 can, according to the response information in the task responses, use one of the remote clients among the remote client 104, the remote client 105, and the remote client 106 as the master client.

[0072] When determining the master client, the quality inspection coordination platform 103 can trigger the master client to control the fabric inspection machine 101.

[0073] Specifically, taking the remote client 104 as the master client as an example, since the remote client 104, the remote client 105, and the remote client 106 can send control instructions to the quality inspection coordination platform 103, when the quality inspection coordination platform 103 determines that the remote client 104 is the master client, it can forward the control instructions sent by the remote client 104 to the fabric inspection machine 101 through the edge industrial control system 102.

[0074] When receiving the control instructions, the fabric inspection machine 101 can perform acquisition adjustment on the fabric inspection machine 101 according to the control instructions, so that after the acquisition adjustment, the fabric inspection machine 101 can acquire the image information of the fabric to be inspected that is more suitable for the user to observe and determine defects.

[0075] The fabric inspection machine 101 can send the image information of the fabric to be inspected that is newly acquired after the acquisition adjustment to the master client - the remote client 104 through the edge industrial control system 102 and the quality inspection coordination platform 103.

[0076] After receiving the image information of the cloth to be quality inspected collected and adjusted by the cloth inspection machine 101, the remote client 104 can control the display interface of the remote client 104 to display the image information of the cloth to be quality inspected re - sent after collection and adjustment by the cloth inspection machine 101. After the remote client 104 obtains the quality inspection result input by the user, it can send the quality inspection result to the quality inspection coordination platform 103, so that the quality inspection coordination platform 103 can generate a cloth quality inspection report form recording the quality inspection result of the cloth according to the quality inspection result of the cloth to be quality inspected, so as to facilitate providing the cloth quality inspection report form to the customer subsequently.

[0077] In this embodiment, the cloth real - time quality inspection system includes a cloth inspection machine, an edge industrial control system, a quality inspection coordination platform, and multiple remote clients; among them, the cloth inspection machine is used to send the image information of the cloth to be quality inspected collected in real - time to the quality inspection coordination platform through the edge industrial control system; the quality inspection coordination platform is used to generate a cloth real - time quality inspection task according to the image information of the cloth to be quality inspected and send the cloth real - time quality inspection task to multiple remote clients; the quality inspection coordination platform is also used to obtain the task responses fed back by multiple remote clients, and determine the master client from multiple remote clients according to the response information in the task responses, and trigger the master client to control the cloth inspection machine; the master client is used to send a control instruction to the cloth inspection machine through the quality inspection coordination platform and the edge industrial control system; the cloth inspection machine is used to perform collection adjustment according to the control instruction; the master client is also used to perform quality inspection processing on the image information of the cloth to be quality inspected obtained after the collection adjustment of the cloth inspection machine and feed back the quality inspection result to the quality inspection coordination platform. Compared with the prior - art method that relies on manual on - site quality inspection of cloth, which will cause users to spend a lot of time arriving at the cloth inspection machine on - site, resulting in low quality inspection efficiency, this application does not require users to arrive at the cloth inspection machine on - site for real - time quality inspection of cloth. With the help of remote clients, the cloth real - time quality inspection tasks issued by the quality inspection coordination platform can be received off - site, so as to realize the real - time quality inspection of cloth, and solve the problem that the prior - art method that relies on manual on - site quality inspection of cloth will cause users to spend a lot of time arriving at the cloth inspection machine on - site, resulting in low quality inspection efficiency. In addition, this application also sets up a competition mechanism for the control right of the cloth inspection machine. The quality inspection coordination platform can determine the master client that can control the cloth inspection machine from multiple remote clients according to the task responses fed back by multiple remote clients after receiving the cloth real - time quality inspection tasks, so as to realize the control of the cloth inspection machine by the master client. Furthermore, the master client can display the image information of the cloth to be quality inspected on the display interface, which is more suitable for users to observe and determine defects, thus realizing the fast and accurate quality inspection of the cloth to be quality inspected.

[0078] On the basis of the above - mentioned Embodiment 1, the following uses Embodiment 2 to illustrate the specific implementation method for the quality inspection coordination platform to determine the master client from multiple remote clients when the response information includes time information, defect size, or defect type.

[0079] When the response information in the task response includes time information, after the quality inspection coordination platform 103 obtains the task responses sent by the remote clients 104, 105, and 106, it can compare the time information in the task responses sent by each remote client, and determine the remote client whose time information included in the sent task response is the earliest time information as the master client.

[0080] When the response information in the task response includes the defect size, after the quality inspection coordination platform 103 obtains the task responses sent by the remote clients 104, 105, and 106, it can determine the defect size in the task responses sent by each remote client, and determine the remote client whose defect size included in the sent task response is the largest defect size as the master client.

[0081] When the response information in the task response includes the defect type, after the quality inspection coordination platform 103 obtains the task responses sent by the remote clients 104, 105, and 106, it can determine the defect type in the task responses sent by each remote client, and according to the corresponding relationship between the defect type and the priority pre-stored in the quality inspection coordination platform 103, determine the priority corresponding to the defect type sent by each remote client. The quality inspection coordination platform 103 can determine the remote client whose sent defect type is the defect type with the highest priority among the defect types sent by the three remote clients as the master client. For example, when the defect type sent by the remote client 104 is the defect type with the highest priority among the defect types sent by the three remote clients, the quality inspection coordination platform 103 can determine the remote client 104 as the master client.

[0082] In this embodiment, the quality inspection coordination platform can determine the master client from multiple remote clients according to the response information in the task responses fed back by the multiple remote clients, so as to trigger the remote control of the fabric inspection machine by the remote client determined as the master client subsequently. Compared with the prior art method that relies on manual on-site quality inspection of fabrics, which requires users to spend a lot of time to reach the fabric inspection machine on-site, resulting in low quality inspection efficiency, based on the fact that this application distributes the real-time fabric quality inspection task to the remote clients so that users not located on-site can realize the real-time quality inspection of fabrics with the help of the remote clients, it can determine the master client for controlling the fabric inspection machine from multiple remote clients based on the time information, defect size, or defect type included in the response information in the task responses sent by the remote clients. Thus, the master client can display the image information of the fabric to be quality inspected that is more suitable for users to observe and determine defects on the display interface, realizing the fast and accurate quality inspection of the fabric to be quality inspected.

[0083] Based on the above-mentioned First Embodiment, a specific implementation manner of the master control client for controlling the fabric inspection machine will be described in detail below through the Third Embodiment.

[0084] In this embodiment, the remote client 104 is still taken as the master control client as an example. The remote client 104 can generate a control instruction according to the control information input by the user, and send the control instruction to the fabric inspection machine 101 through the quality inspection coordination platform 103 and the edge industrial control system 102. Among them, the control instruction is a control instruction for starting, stopping, advancing or retreating the conveyor belt on the fabric inspection machine 101.

[0085] After obtaining the control instruction, the fabric inspection machine 101 can control the conveyor belt on the fabric inspection machine 101 to start, stop, advance or retreat according to the control instruction, so as to drive the fabric to be quality inspected to start conveying, stop conveying, convey forward or convey backward. Thus, the image information acquisition device on the fabric inspection machine 101 can obtain the image information of the fabric to be quality inspected on the adjusted conveyor belt of the fabric inspection machine 101.

[0086] After the fabric inspection machine 101 re-acquires the image information of the fabric to be quality inspected after adjustment, it sends the image information of the fabric to be quality inspected to the remote client 104 through the edge industrial control system 102 and the quality inspection coordination platform 103.

[0087] After receiving the image information of the fabric to be quality inspected obtained after the adjustment by the fabric inspection machine 101, the remote client 104 performs display processing on the image information and obtains the quality inspection result input by the user. The remote client 104 can send the quality inspection result to the quality inspection coordination platform 103. Among them, the quality inspection result can include the size and type of defects.

[0088] After obtaining the quality inspection result sent by the remote client 104, the quality inspection coordination platform 103 can generate a fabric quality inspection report form for recording the fabric quality inspection result, so as to facilitate providing the fabric quality inspection report form to the customer subsequently.

[0089] In this embodiment, the master control client sends a control instruction for starting, stopping, advancing or retreating the conveyor belt on the fabric inspection machine to the fabric inspection machine through the quality inspection coordination platform and the edge industrial control system, so that the conveyor belt on the fabric inspection machine drives the fabric to be quality inspected to start conveying, stop conveying, convey forward or convey backward, thereby realizing the control of the fabric inspection machine by the remote client that obtains the control right based on the competition mechanism. Furthermore, the user can, through the remote client that obtains the control right, obtain the image information of the fabric to be quality inspected obtained after the adjustment by the fabric inspection machine, so as to more accurately determine the quality inspection result.

[0090] Based on the above-mentioned First Embodiment, a specific implementation manner of the master control client for controlling the fabric inspection machine will be described in detail below through the Fourth Embodiment.

[0091] In this embodiment, the remote client 104 is still taken as the main control client as an example. The remote client 104 can generate a control instruction according to the control information input by the user, and send the control instruction to the fabric inspection machine 101 through the quality inspection coordination platform 103 and the edge industrial control system 102. Among them, the control instruction is a control instruction for controlling the lights on the fabric inspection machine 101.

[0092] After obtaining the control instruction, the fabric inspection machine 101 can adjust the lights on the fabric inspection machine 101 according to the control instruction, so that the intensity and / or irradiation range of the lights on the fabric inspection machine 101 are changed, so that the image information acquisition device on the fabric inspection machine 101 can obtain the image information of the fabric to be quality inspected on the conveyor belt of the fabric inspection machine after the lights are adjusted.

[0093] After the fabric inspection machine 101 collects and adjusts to obtain the image information of the fabric to be quality inspected, it sends the image information of the fabric to be quality inspected to the remote client 104 through the edge industrial control system 102 and the quality inspection coordination platform 103.

[0094] After receiving the image information of the fabric to be quality inspected obtained after the fabric inspection machine 101 collects and adjusts, the remote client 104 performs display processing on the image information and obtains the quality inspection result input by the user. The remote client 104 can send the quality inspection result to the quality inspection coordination platform 103.

[0095] After obtaining the quality inspection result sent by the remote client 104, the quality inspection coordination platform 103 can generate a fabric quality inspection report form for recording the fabric quality inspection result according to the quality inspection result of the fabric to be quality inspected, so as to provide the fabric quality inspection report form to the customer subsequently.

[0096] In this embodiment, the main control client sends a control instruction for controlling the lights on the fabric inspection machine to the fabric inspection machine through the quality inspection coordination platform and the edge industrial control system, so that the intensity and / or irradiation range of the lights on the fabric inspection machine are changed, so that the image information of the fabric to be quality inspected obtained by the fabric inspection machine is changed. Furthermore, the user can obtain the image information of the fabric to be quality inspected obtained after the fabric inspection machine collects and adjusts through the remote client that obtains the control right, so as to more accurately determine the quality inspection result and improve the accuracy of the quality inspection result.

[0097] On the basis of any one of the foregoing Embodiment 1 to Embodiment 4, the quality inspection coordination platform is further introduced through Embodiment 5 below.

[0098] In this embodiment, the remote client 104 is still taken as the main control client as an example. After determining that the remote client 104 is the main control client, the quality inspection coordination platform 103 can also set other remote clients except the main control client - the remote client 105 and the remote client 106, as collaborative clients.

[0099] After obtaining the image information of the fabric to be inspected, which is collected and adjusted by the fabric inspection machine 101 by the remote client 104 (master client), and the inspection result sent by the remote client 104, the quality inspection coordination platform 103 can send the above information to the remote client 105 and the remote client 106.

[0100] After obtaining the image information of the fabric to be inspected, which is collected and adjusted by the fabric inspection machine, and the inspection result of the remote client 104, the remote client 105 as a collaborative client can control the display interface of the remote client 105 to display the above information. The remote client 105 can obtain the inspection result input by the user and send the inspection result to the quality inspection coordination platform 103.

[0101] After obtaining the image information of the fabric to be inspected, which is collected and adjusted by the fabric inspection machine, and the inspection result of the remote client 104, the remote client 106 as a collaborative client can control the display interface of the remote client 106 to display the above information. The remote client 106 can obtain the inspection result input by the user and send the inspection result to the quality inspection coordination platform 103.

[0102] On the basis of the foregoing embodiment, the quality inspection coordination platform can set other remote clients except the master client among multiple remote clients as collaborative clients, and send the image information of the fabric to be inspected, which is collected and adjusted by the fabric inspection machine by the master client, and the inspection result fed back by the master client to the collaborative clients, and receive the inspection result fed back by the collaborative clients. Compared with the prior art that directly determines the inspection result of the fabric to be inspected as the inspection result input by the user beside the fabric inspection machine, which may have the problem of incorrect inspection results, this application can send the inspection result determined by the master client and the image information of the fabric to be inspected, which is collected and adjusted by the fabric inspection machine, to other remote clients, so that other remote clients can review and correct the inspection result marked by the master client, improving the accuracy of the inspection result.

[0103] On the basis of Embodiment Five, the quality inspection coordination platform will be further introduced through Embodiment Six below.

[0104] This embodiment still takes the remote client 104 as the master client, and the remote clients 105 and 106 as collaborative clients as an example.

[0105] When sending a real-time fabric quality inspection task to the remote client 104, the quality inspection coordination platform 103 can measure time through the clock module to obtain the elapsed time. When the elapsed time reaches the preset time period, the quality inspection coordination platform 103 can determine whether it has not received the quality inspection result feedback from the remote client 104 within the preset time period. When the quality inspection coordination platform 103 determines that it has not received the quality inspection result feedback from the master client within the preset time period, it can determine whether the quality inspection coordination platform 103 has currently received the quality inspection result feedback from the remote client 105 and / or the remote client 106.

[0106] When the quality inspection coordination platform 103 determines that it has received the quality inspection result feedback from the remote client 105 and / or the remote client 106, it can determine the master client to be switched according to the quality inspection result feedback from the remote client 105 and / or the remote client 106.

[0107] Specifically, when the quality inspection coordination platform 103 only receives the quality inspection result feedback from the remote client 105, it can directly determine the remote client 105 as the master client to be switched. When the quality inspection coordination platform 103 only receives the quality inspection result feedback from the remote client 106, it can directly determine the remote client 106 as the master client to be switched. When the quality inspection coordination platform 103 receives the quality inspection result feedback from the remote client 105 and the remote client 106, optionally, the quality inspection coordination platform 103 can determine the remote client to which the earliest received quality inspection result belongs as the master client to be switched according to the time when the quality inspection result is received; optionally, the quality inspection coordination platform 103 can determine the remote client to which the quality inspection result with the largest number of defects included belongs as the master client to be switched according to the number of defects included in the quality inspection result.

[0108] Taking the quality inspection coordination platform 103 determining the remote client 105 as the master client to be switched as an example. When the quality inspection coordination platform 103 determines the remote client 105 as the master client to be switched, it can forward the control instruction previously received from the remote client 105 to the fabric inspection machine 101 through the edge industrial control system 102 to realize the control of the fabric inspection machine 101 by the remote client 105.

[0109] Based on the foregoing embodiment, when it is determined that the quality inspection coordination platform has not received the quality inspection result feedback from the remote client that has snatched the control right of the fabric inspection machine within the preset time period, the master client to be switched can be determined according to the quality inspection result feedback obtained from other remote clients, so as to transfer the control right of the fabric inspection machine to other remote clients, realizing the reasonable control of the fabric inspection machine by the remote client and improving the accuracy of the quality inspection result of the fabric to be inspected obtained by the quality inspection coordination platform.

[0110] Figure 2Schematic flowchart of Embodiment 1 of a real-time quality inspection method for fabrics provided in this application. This method embodiment is applied to Figure 1 the real-time fabric quality inspection system shown in the figure. The real-time fabric quality inspection method specifically includes the following steps:

[0111] Step S201: The quality inspection coordination platform obtains the image information of the fabric to be quality inspected that is collected in real time by the fabric inspection machine and sent through the edge industrial control system, generates a real-time fabric quality inspection task based on the image information of the fabric to be quality inspected, and sends the real-time fabric quality inspection task to multiple remote clients.

[0112] Step S202: The quality inspection coordination platform obtains the task responses feedback by multiple remote clients, determines the master client from the multiple remote clients according to the response information in the task responses, and triggers the master client to control the fabric inspection machine.

[0113] Step S203: The quality inspection coordination platform obtains the control instruction sent by the master client and sends the control instruction to the fabric inspection machine through the edge industrial control system.

[0114] In this embodiment, the quality inspection coordination platform obtains the control instruction sent by the master client and sends the control instruction to the fabric inspection machine through the edge industrial control system, so that the fabric inspection machine makes acquisition adjustments according to the control instruction.

[0115] Step S204: The quality inspection system platform obtains the quality inspection result feedback by the master client.

[0116] Among them, the quality inspection result is obtained by the master client performing quality inspection processing on the image information of the fabric to be quality inspected obtained after the acquisition adjustment of the fabric inspection machine.

[0117] In this embodiment, the quality inspection coordination platform obtains the image information of the cloth to be quality inspected, which is collected in real time by the cloth inspection machine and sent through the edge industrial control system, generates a real-time cloth quality inspection task based on the image information of the cloth to be quality inspected, and sends the real-time cloth quality inspection task to multiple remote clients. The quality inspection coordination platform obtains the task responses feedback by the multiple remote clients, determines the master client from the multiple remote clients according to the response information in the task responses, and triggers the master client to control the cloth inspection machine. The quality inspection coordination platform obtains the control instructions sent by the master client and sends the control instructions to the cloth inspection machine through the edge industrial control system, so that the cloth inspection machine makes acquisition adjustments according to the control instructions. The quality inspection coordination platform can also obtain the quality inspection results feedback by the master client, where the quality inspection results are obtained by the master client through quality inspection processing of the image information of the cloth to be quality inspected after the acquisition adjustment of the cloth inspection machine. Compared with the prior art method that relies on manual on-site quality inspection of cloth, which causes users to spend a lot of time arriving at the cloth inspection machine on-site, resulting in low quality inspection efficiency, this application does not require users to arrive at the cloth inspection machine for real-time cloth quality inspection. With the help of remote clients, the real-time cloth quality inspection tasks issued by the quality inspection coordination platform can be received off-site, thus realizing real-time cloth quality inspection, and solving the problem that the prior art method that relies on manual on-site quality inspection of cloth causes users to spend a lot of time arriving at the cloth inspection machine on-site, resulting in low quality inspection efficiency. In addition, this application also sets up a competition mechanism for the control right of the cloth inspection machine. The quality inspection coordination platform can determine the master client that can control the cloth inspection machine from the multiple remote clients according to the task responses feedback by the multiple remote clients after receiving the real-time cloth quality inspection tasks, so as to realize the control of the cloth inspection machine by the master client. Furthermore, the master client can display the image information of the cloth to be quality inspected on the display interface, which is more suitable for users to observe and determine defects, thus realizing fast and accurate quality inspection of the cloth to be quality inspected.

[0118] Based on the first method embodiment, a specific implementation manner of step S203 will be described in detail below through the second method embodiment.

[0119] Figure 3 The flowchart of the second method embodiment for real-time cloth quality inspection provided by this application. This method embodiment is applied to Figure 1 the cloth real-time quality inspection system shown in the figure. The cloth real-time quality inspection method specifically includes the following steps:

[0120] Step S301: The quality inspection coordination platform obtains the control instructions sent by the master client to start, stop, move forward or backward the conveyor belt on the cloth inspection machine.

[0121] Step S302: The quality inspection coordination platform sends control instructions to the fabric inspection machine through the edge industrial control system, so that the conveyor belt on the fabric inspection machine drives the fabric to be quality inspected to start conveying, stop conveying, convey forward or convey backward.

[0122] In this embodiment, the quality inspection coordination platform can obtain the control instructions for starting, stopping, advancing or retreating the conveyor belt on the fabric inspection machine sent by the main control client, and send the control instructions to the fabric inspection machine through the edge industrial control system, so that the conveyor belt on the fabric inspection machine drives the fabric to be quality inspected to start conveying, stop conveying, convey forward or convey backward, thereby realizing the control of the fabric inspection machine by the remote client that obtains the control right based on the competition mechanism. Furthermore, the user can obtain the image information of the fabric to be quality inspected after collection and adjustment by the fabric inspection machine through the remote client that obtains the control right, so as to more accurately determine the quality inspection result.

[0123] On the basis of Method Embodiment 1, another specific implementation manner of Step S203 will be described in detail below through Method Embodiment 3.

[0124] Figure 4 It is a schematic flowchart of Method Embodiment 3 of a real-time fabric quality inspection method provided by the present application. This method embodiment is applied to Figure 1 the shown real-time fabric quality inspection system. The real-time fabric quality inspection method specifically includes the following steps:

[0125] Step S401: The quality inspection coordination platform obtains the control instructions for controlling the lights on the fabric inspection machine sent by the main control client.

[0126] Step S402: The quality inspection coordination platform sends the control instructions to the fabric inspection machine through the edge industrial control system, so that the intensity and / or irradiation range of the lights on the fabric inspection machine are changed.

[0127] In this embodiment, the quality inspection coordination platform obtains the control instructions for controlling the lights on the fabric inspection machine sent by the main control client, and sends the control instructions to the fabric inspection machine through the edge industrial control system, so that the intensity and / or irradiation range of the lights on the fabric inspection machine are changed, thereby changing the image information of the fabric to be quality inspected obtained by the fabric inspection machine. Furthermore, the user can obtain the image information of the fabric to be quality inspected after collection and adjustment by the fabric inspection machine through the remote client that obtains the control right, so as to more accurately determine the quality inspection result and improve the accuracy rate of the quality inspection result.

[0128] On the basis of the foregoing method embodiments, the process of the quality inspection coordination platform obtaining the quality inspection results sent by other remote clients will be described below through Method Embodiment 4.

[0129] Figure 5 It is a schematic flowchart of Method Embodiment 4 of a real-time fabric quality inspection method provided by the present application. This method embodiment is applied toFigure 1 The cloth real-time quality inspection system shown. The cloth real-time quality inspection method specifically includes the following steps:

[0130] Step S501: The quality inspection coordination platform sets other remote clients except the main control client among multiple remote clients as collaborative clients.

[0131] Step S502: The quality inspection coordination platform sends the image information of the cloth to be quality inspected obtained after the main control client adjusts the acquisition of the cloth inspection machine and the quality inspection results fed back by the main control client to the collaborative clients, and receives the quality inspection results fed back by the collaborative clients.

[0132] Based on the foregoing embodiment, the quality inspection coordination platform can set other remote clients except the main control client among multiple remote clients as collaborative clients, and send the image information of the cloth to be quality inspected obtained after the main control client adjusts the acquisition of the cloth inspection machine and the quality inspection results fed back by the main control client to the collaborative clients, and receive the quality inspection results fed back by the collaborative clients. Compared with the prior art in which the quality inspection results input by the user located beside the cloth inspection machine are directly determined as the quality inspection results of the cloth to be quality inspected, which may have the problem of incorrect quality inspection results, the present application can send the quality inspection results determined by the main control client and the image information of the cloth to be quality inspected obtained after the cloth inspection machine adjusts the acquisition to other remote clients, so that other remote clients can review and correct the quality inspection results marked by the main control client, improving the accuracy of the quality inspection results.

[0133] Based on the foregoing method embodiment four, the process of the quality inspection coordination platform changing the control right of the main control client over the cloth inspection machine will be described below through method embodiment five.

[0134] Figure 6 It is a schematic flowchart of method embodiment five of a cloth real-time quality inspection method provided by the present application. This method embodiment is applied to Figure 1 The cloth real-time quality inspection system shown. The cloth real-time quality inspection method specifically includes the following steps:

[0135] Step S601: The quality inspection coordination platform determines whether it has not received the quality inspection results fed back by the main control client within a preset time period.

[0136] In this embodiment, the quality inspection coordination platform determines whether it has not received the quality inspection results fed back by the main control client within a preset time period. When it is determined that the quality inspection results fed back by the main control client have not been received within the preset time period, step S602 is executed; when it is determined that the quality inspection results fed back by the main control client have been received within the preset time period, step S603 is executed.

[0137] Step S602: According to the quality inspection results fed back by the collaborative client, the quality inspection coordination platform determines the master client to be switched from the collaborative client, and triggers the master client to be switched to control the fabric inspection machine.

[0138] Step S603: The quality inspection coordination platform generates a fabric quality inspection report form recording the fabric quality inspection results according to the quality inspection results fed back by the master client, or the quality inspection results fed back by both the master client and the collaborative client.

[0139] Based on the foregoing embodiment, when the quality inspection coordination platform determines that it has not received the quality inspection results fed back by the remote client that has snatched the control right of the fabric inspection machine within the preset time period, it can determine the master client to be switched according to the quality inspection results fed back by other remote clients obtained, so as to transfer the control right of the fabric inspection machine to other remote clients, realizing the reasonable control of the fabric inspection machine by the remote client and improving the accuracy of the quality inspection results of the fabrics to be inspected obtained by the quality inspection coordination platform.

[0140] The fabric real-time quality inspection method is further described below through Method Embodiment Six.

[0141] In this embodiment, after receiving the fabric real-time quality inspection task generated by the quality inspection coordination platform according to the image information of the fabric to be inspected, the remote client can generate a corresponding task response according to the fabric real-time quality inspection task and feed back the task response to the quality inspection coordination platform.

[0142] When triggered by the quality inspection coordination to be the master client, the remote client can send a control instruction to the fabric inspection machine through the quality inspection coordination platform and the edge industrial control system, so that the fabric inspection machine makes acquisition adjustments according to the control instruction.

[0143] After obtaining the image information of the fabric to be inspected after the acquisition adjustment of the fabric inspection machine, the master client can perform quality inspection processing on the image information and feed back the quality inspection results to the quality inspection coordination platform.

[0144] In this embodiment, the remote client receives the real-time fabric quality inspection task generated by the quality inspection coordination platform according to the image information of the fabric to be inspected, and generates a corresponding task response according to the real-time fabric quality inspection task, and feeds it back to the quality inspection coordination platform. When the remote client is triggered to be the master control client, it sends a control instruction to the fabric inspection machine through the quality inspection coordination platform and the edge industrial control system so that the fabric inspection machine makes acquisition adjustments according to the control instruction. The master control client performs quality inspection processing on the image information of the fabric to be inspected obtained after the acquisition adjustment of the fabric inspection machine, and feeds back the quality inspection result to the quality inspection coordination platform. Compared with the prior art method that relies on manual on-site quality inspection of fabrics, which requires users to spend a lot of time to reach the fabric inspection machine on-site, resulting in low quality inspection efficiency, this application does not require users to reach the fabric inspection machine for real-time fabric quality inspection. Instead, by using the remote client to receive the real-time fabric quality inspection task issued by the quality inspection coordination platform, it can realize real-time fabric quality inspection and remote control of the fabric inspection machine, and solve the problem that the prior art method that relies on manual on-site quality inspection of fabrics requires users to spend a lot of time to reach the fabric inspection machine on-site, resulting in low quality inspection efficiency.

[0145] Figure 7 It is a schematic structural diagram of a server provided by this application. As Figure 7 shown, the server 70 includes: a processor 71 and a memory 72; wherein, the processor 71 is communicatively connected to the memory 72, and the memory 72 is used to store computer execution instructions; the processor 71 is configured to execute the technical solutions in any one of the method embodiments from Method Embodiment 1 to Method Embodiment 5 of the foregoing method by executing the computer execution instructions stored in the memory 72.

[0146] Optionally, the memory 72 can be either independent or integrated with the processor 71. Optionally, when the memory 72 is a device independent of the processor 71, the server 70 may further include: a bus for connecting the above-mentioned devices.

[0147] This server is used to execute the technical solutions in any one of the method embodiments from Method Embodiment 1 to Method Embodiment 5 of the foregoing method, and its implementation principle and technical effects are similar, so they will not be elaborated here.

[0148] This application also provides an electronic device. The electronic device includes: a processor and a memory; wherein, the processor is communicatively connected to the memory, and the memory is used to store computer execution instructions; the processor is configured to execute the technical solutions in Method Embodiment 6 of the foregoing method by executing the computer execution instructions stored in the memory.

[0149] Optionally, the memory can be either independent or integrated with the processor. Optionally, when the memory is a device independent of the processor, the electronic device may further include: a bus for connecting the above-mentioned devices.

[0150] The electronic device is used to execute the technical solution in the sixth method embodiment described above. The implementation principle and technical effect are similar, and will not be elaborated here.

[0151] The embodiment of the present application further provides a computer-readable storage medium. The computer-readable storage medium stores computer-executable instructions, which are used to implement the technical solution provided by any one of the method embodiments from the first method embodiment to the fifth method embodiment described above when executed by a processor.

[0152] The embodiment of the present application further provides a computer-readable storage medium. The computer-readable storage medium stores computer-executable instructions, which are used to implement the technical solution provided by the sixth method embodiment described above when executed by a processor.

[0153] Those of ordinary skill in the art can understand that all or part of the steps to implement the above method embodiments can be completed by hardware related to program instructions. The foregoing program can be stored in a computer-readable storage medium. When the program is executed, it executes the steps including the above method embodiments; and the foregoing storage medium includes: various media such as ROM, RAM, magnetic disk or optical disc that can store program codes.

[0154] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present application, rather than to limit them; although the present application has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that they can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements on some or all of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the scope of the technical solutions of the embodiments of the present application.

Claims

1. A real-time fabric quality inspection system, characterized in that, Including: A fabric inspection machine, an edge industrial control system, a quality inspection coordination platform, and multiple remote clients; among them, The fabric inspection machine is used to send the image information of the fabric to be quality inspected, which is acquired in real time, to the quality inspection coordination platform through the edge industrial control system; The quality inspection coordination platform is used to generate a real-time fabric quality inspection task according to the image information of the fabric to be quality inspected, and send the real-time fabric quality inspection task to the multiple remote clients; The quality inspection coordination platform is further used to obtain the task responses fed back by the multiple remote clients, and determine the master client from the multiple remote clients according to the response information in the task responses, and trigger the master client to control the fabric inspection machine; The master client is used to send a control instruction to the fabric inspection machine through the quality inspection coordination platform and the edge industrial control system; The fabric inspection machine is further used to perform acquisition adjustment according to the control instruction; The master client is further used to perform quality inspection processing on the image information of the fabric to be quality inspected obtained after the acquisition adjustment of the fabric inspection machine, and feed back the quality inspection result to the quality inspection coordination platform.

2. The real-time quality inspection system for fabrics according to claim 1, characterized in that, The master client is specifically used for: Sending, through the quality inspection coordination platform and the edge industrial control system, a control instruction to the fabric inspection machine to control the start, stop, forward or backward movement of the conveyor belt on the fabric inspection machine, so that the conveyor belt on the fabric inspection machine drives the fabric to be quality inspected to start conveying, stop conveying, convey forward or convey backward.

3. The real-time quality inspection system for fabrics according to claim 1, wherein, The master client is specifically used for: Sending, through the quality inspection coordination platform and the edge industrial control system, a control instruction to the fabric inspection machine to control the lights on the fabric inspection machine, so that the intensity and / or irradiation range of the lights on the fabric inspection machine are changed.

4. The real-time quality inspection system for fabrics according to any one of claims 1-3, characterized in that The quality inspection coordination platform is further used for: Setting the other remote clients except the master client among the multiple remote clients as collaborative clients; Sending the image information of the fabric to be quality inspected obtained after the acquisition adjustment of the fabric inspection machine by the master client and the quality inspection result fed back by the master client to the collaborative clients, and receiving the quality inspection results fed back by the collaborative clients.

5. The real-time quality inspection system for fabrics according to claim 4, wherein The quality inspection coordination platform is further used for: Judging whether the quality inspection result fed back by the master client is not received within a preset time period; When it is judged that the quality inspection result fed back by the master client is not received within the preset time period, determining the master client to be switched from the collaborative clients according to the quality inspection result fed back by the collaborative clients, and triggering the master client to be switched to control the fabric inspection machine.

6. A real-time quality inspection method for fabrics, characterized in that, Including: The quality inspection coordination platform obtains the image information of the fabric to be quality inspected that is acquired in real time by the fabric inspection machine and sent through the edge industrial control system, generates a real-time fabric quality inspection task according to the image information of the fabric to be quality inspected, and sends the real-time fabric quality inspection task to multiple remote clients; The quality inspection coordination platform obtains the task responses fed back by the multiple remote clients, determines a master client from the multiple remote clients according to the response information in the task responses, and triggers the master client to control the fabric inspection machine; The quality inspection coordination platform obtains the control instructions sent by the master client, and sends the control instructions to the fabric inspection machine through the edge industrial control system, so that the fabric inspection machine makes acquisition adjustments according to the control instructions; The quality inspection coordination platform obtains the quality inspection results fed back by the master client; wherein, the quality inspection results are obtained by the master client performing quality inspection processing on the image information of the fabric to be quality inspected after the fabric inspection machine makes acquisition adjustments.

7. The real-time quality inspection method for fabrics according to claim 6, characterized in that, The quality inspection coordination platform obtains the control instructions sent by the master client, and sends the control instructions to the fabric inspection machine through the edge industrial control system, including: The quality inspection coordination platform obtains the control instructions sent by the master client to start, stop, move forward or backward the conveyor belt on the fabric inspection machine, and sends the control instructions to the fabric inspection machine through the edge industrial control system, so that the conveyor belt on the fabric inspection machine drives the fabric to be quality inspected to start conveying, stop conveying, convey forward or convey backward.

8. The real-time quality inspection method for fabrics according to claim 6, wherein The quality inspection coordination platform obtains the control instructions sent by the master client, and sends the control instructions to the fabric inspection machine through the edge industrial control system, including: The quality inspection coordination platform obtains the control instructions sent by the master client to control the lights on the fabric inspection machine, and sends the control instructions to the fabric inspection machine through the edge industrial control system, so that the intensity and / or irradiation range of the lights on the fabric inspection machine are changed.

9. The real-time quality inspection method for fabrics according to any one of claims 6-8, characterized in that Further included: The quality inspection coordination platform sets the other remote clients except the master client among the multiple remote clients as collaborative clients; The quality inspection coordination platform sends the image information of the fabric to be quality inspected obtained after the master client makes acquisition adjustments to the fabric inspection machine and the quality inspection results fed back by the master client to the collaborative clients, and receives the quality inspection results fed back by the collaborative clients.

10. The real-time quality inspection method for fabrics according to claim 9, characterized in that, Further included: The quality inspection coordination platform determines whether it has not received the quality inspection results fed back by the master client within a preset time period; When the quality inspection coordination platform determines that it has not received the quality inspection results fed back by the master client within the preset time period, it determines a master client to be switched from the collaborative clients according to the quality inspection results fed back by the collaborative clients, and triggers the master client to be switched to replace the master client to control the fabric inspection machine.

11. A real-time quality inspection method for fabrics, characterized in that, Included: The remote client receives the real-time fabric quality inspection task generated by the quality inspection coordination platform according to the image information of the fabric to be quality inspected, generates a corresponding task response according to the real-time fabric quality inspection task, and feeds it back to the quality inspection coordination platform. The quality inspection coordination platform determines the remote client as the master client according to the response information in the task response, and triggers the master client to control the fabric inspection machine; When the remote client is triggered to be the master control client, it sends control instructions to the fabric inspection machine through the quality inspection coordination platform and the edge industrial control system, so that the fabric inspection machine makes acquisition adjustments according to the control instructions; The master control client performs quality inspection processing on the image information of the fabric to be quality inspected obtained after the fabric inspection machine makes acquisition adjustments, and feeds back the quality inspection results to the quality inspection coordination platform.

12. A server, characterized in that, Comprising: a processor, and a memory communicatively connected to the processor; The memory is used for storing computer execution instructions; The processor is used for executing the computer execution instructions stored in the memory to implement the fabric real-time quality inspection method according to any one of claims 6-10.

13. An electronic device, characterized in that, Comprising: a processor, and a memory communicatively connected to the processor; The memory is used for storing computer execution instructions; The processor is used for executing the computer execution instructions stored in the memory to implement the fabric real-time quality inspection method according to claim 11.

14. A computer-readable storage medium, characterized in that, Computer execution instructions are stored in the computer-readable storage medium, and when the computer execution instructions are executed by a processor, they are used to implement the fabric real-time quality inspection method according to any one of claims 6-10.

15. A computer-readable storage medium, characterized in that, Computer execution instructions are stored in the computer-readable storage medium, and when the computer execution instructions are executed by a processor, they are used to implement the fabric real-time quality inspection method according to claim 11.

Citation Information

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