Intelligent distribution method and system for electronic products

By collecting real-time images of electronic products and defining parameter combinations, and using parameter comparison models to match product grades, the problem of single dimension of weight detection during electronic product distribution in the prior art is solved, and the intelligent distribution of electronic products and the accuracy of product grades is achieved.

CN119358965BActive Publication Date: 2025-07-01深圳市云希谷科技有限公司
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Patent Information

Application Number
CN202411896848.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-12-23
Publication Date
2025-07-01
Estimated Expiration
2044-12-23

AI Technical Summary

Technical Problem

The prior art performs weight detection along a single dimension during the electronic product distribution process, which affects the accuracy of the product grade, resulting in low allocation accuracy and inability to achieve intelligent allocation.

Method used

By collecting real-time images of electronic products at different locations, defining parameter combinations include appearance shape, weight parameters and port parameters, using parameter comparison models to match product grades, and defining dispatch nodes and paths based on product grades and conveying paths to achieve multi-dimensional control.

Benefits of technology

It improves the accuracy of product grades of electronic products, realizes intelligent distribution of electronic products, and ensures the accuracy and efficiency of distribution.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses an intelligent allocation method and system for electronic products, which define the change amount of the appearance form, the change amount of the weight parameter, and the change amount of the port parameter according to the parameter combination and the parameter comparison model; match the corresponding product grades according to the change amount of the appearance form, the change amount of the weight parameter, and the change amount of the port parameter. Further, allocation nodes are defined based on the product grades of the electronic products and the corresponding conveying paths, and the allocation paths of the electronic products are defined according to the allocation nodes, the corresponding moving speeds, and the load capacity of the allocation bins; the allocation progress of each electronic product is defined based on the allocation paths of each electronic product, the corresponding conveying paths, and the current positions of each electronic product, and the intelligent allocation of each electronic product is triggered based on the allocation progress of each electronic product, the detection time difference of the corresponding detection end, and the load capacity of the allocation bin, realizing the intelligent allocation of each electronic product.
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Description

Technical Field

[0001] The present invention relates to the technical field of electronic products, and in particular to an intelligent allocation method and system for electronic products. Background Art

[0002] With the development of science and technology, electronic products are gradually applied to people's lives. Multiple electronic products are ordered on the online platform, and multiple electronic products are dynamically transported under the drive of the conveyor line and delivered to the corresponding dispatching nodes. However, in the dispatching process of multiple electronic products, multiple electronic products are weight-detected along a single dimension, and the product grade of each electronic product is evaluated under a single dimension, which affects the accuracy of the product grade of each electronic product, resulting in low dispatching accuracy of each electronic product, and unable to realize intelligent dispatching of each electronic product. Summary of the invention

[0003] The purpose of the present invention is to overcome the shortcomings of the prior art. The present invention provides an intelligent dispatching method and system for electronic products. When multiple electronic products are in a dynamic conveying state, real-time images of multiple electronic products at different positions are collected; a corresponding parameter combination is defined according to multiple real-time images, the moving speed of the electronic products and the posture of the electronic products, and the parameter combination includes the appearance, weight parameters and port parameters of the electronic products; the change in appearance, the change in weight parameters and the change in port parameters are defined according to the parameter combination and the parameter comparison model; the corresponding product grade is matched according to the change in appearance, the change in weight parameters and the change in port parameters, and the overall consideration of the change in appearance, the change in weight parameters and the change in port parameters is compatible, and multi-dimensional control of the change in appearance, the change in weight parameters and the change in port parameters is realized, thereby ensuring the accuracy of the product grade of each electronic product.

[0004] Furthermore, a dispatch node is defined based on the product grade of the electronic product and the corresponding conveying path, and the dispatch path of the electronic product is defined according to the dispatch node, the corresponding moving speed and the load capacity of the dispatch warehouse; the dispatch progress of each electronic product is defined based on the dispatch path of each electronic product, the corresponding conveying path and the current position of each electronic product, and the intelligent dispatch of each electronic product is triggered based on the dispatch progress of each electronic product, the corresponding detection time difference of the detection end and the load capacity of the dispatch warehouse, so as to dynamically regulate the dispatch action of each electronic product, ensure the dispatch accuracy and efficiency of each electronic product, and realize the intelligent dispatch of each electronic product.

[0005] The embodiment of the present invention provides an intelligent dispatching method for electronic products, which is applied to the intelligent dispatching scenario of electronic products;

[0006] The intelligent distribution method of electronic products comprises:

[0007] When multiple electronic products are in a dynamic conveying state, real-time images of the multiple electronic products at different positions are collected;

[0008] According to the multiple real-time images, the moving speed of the electronic product and the posture of the electronic product, a corresponding parameter combination is defined, where the parameter combination includes an appearance, a weight parameter and a port parameter of the electronic product;

[0009] Define the change amount of the shape, the change amount of the weight parameter and the change amount of the port parameter according to the parameter combination and parameter comparison model;

[0010] Match the corresponding product grade according to the change in appearance, weight parameters and port parameters;

[0011] Defining a dispatch node based on the product grade of the electronic product and the corresponding transport path, and defining a dispatch path of the electronic product according to the dispatch node, the corresponding moving speed, and the load of the dispatch bin;

[0012] The dispatch progress of each electronic product is defined based on its dispatch path, corresponding conveying path and current position of each electronic product. The intelligent dispatch of each electronic product is triggered based on its dispatch progress, corresponding detection time difference of detection terminal and load capacity of dispatch warehouse.

[0013] Optionally, when the multiple electronic products are in a dynamic transport state, collecting real-time images of the multiple electronic products at different positions includes:

[0014] Locate multiple electronic products and place them on corresponding conveyor lines;

[0015] Defining corresponding conveying speeds based on conveying lines, multiple electronic products, and corresponding product types, and conveying multiple electronic products online so that the multiple electronic products are in a dynamic conveying state;

[0016] When multiple electronic products are in a dynamic conveying state, positioning and photographing the multiple electronic products;

[0017] Collecting real-time images of multiple electronic products at different locations according to the positioning shooting of multiple electronic products;

[0018] Based on the comparison of real-time images of multiple electronic products at different positions, difference areas are defined, difference parameters are defined according to the difference areas, corresponding positions and types of the multiple electronic products, and the difference parameters are associated with the corresponding electronic products.

[0019] Optionally, define a corresponding parameter combination based on multiple real-time images, the moving speed of the electronic product, and the posture of the electronic product. The parameter combination includes the external form, weight parameter, and port parameter of the electronic product, including:

[0020] Freeze multiple real-time images;

[0021] Match corresponding difference parameters based on multiple real-time images and the electronic product;

[0022] Define the posture of the electronic product according to the forward comparison of multiple real-time images;

[0023] Associate multiple real-time images, the moving speed of the electronic product, and the posture of the electronic product;

[0024] Define a corresponding parameter combination based on multiple real-time images, the moving speed of the electronic product, and the posture of the electronic product, and add the difference parameters to the parameter combination;

[0025] The parameter combination includes the external form, weight parameter, and port parameter of the electronic product.

[0026] Optionally, define the change amount of the external form, the change amount of the weight parameter, and the change amount of the port parameter according to the parameter combination and the parameter comparison model, including:

[0027] Freeze the parameter combination;

[0028] Match a corresponding parameter comparison model according to the type of the electronic product, the quantity of the electronic product, and the overall size of the electronic product;

[0029] Associate the parameter combination and the parameter comparison model;

[0030] Define multiple change amount spaces according to the parameter combination and the parameter comparison model;

[0031] Define the change amount of the external form, the change amount of the weight parameter, and the change amount of the port parameter according to the synchronous recognition of multiple change amount spaces.

[0032] Optionally, match a corresponding product grade according to the change amount of the external form, the change amount of the weight parameter, and the change amount of the port parameter, including:

[0033] Freeze the change amount of the external form, the change amount of the weight parameter, and the change amount of the port parameter;

[0034] Associate the change amount of the external form, the change amount of the weight parameter, and the change amount of the port parameter;

[0035] Define a first change parameter according to the change amount of the external form and the change amount of the weight parameter;

[0036] Define a second change parameter based on the change amount of the external shape and the change amount of the port parameters;

[0037] Associate the first change parameter, the second change parameter, and the parameter matching table;

[0038] Match the corresponding product grade according to the first change parameter, the second change parameter, and the parameter matching table.

[0039] Optionally, define a dispatch node based on the product grade of the electronic product and the corresponding conveying path, and define the dispatch path of the electronic product according to the dispatch node, the corresponding moving speed, and the load capacity of the dispatch bin, including:

[0040] Freeze the product grade of the electronic product;

[0041] Collect the conveying path of the electronic product relative to the conveying line;

[0042] Define a dispatch node according to the product grade of the electronic product and the corresponding conveying path.

[0043] Optionally, define a dispatch node based on the product grade of the electronic product and the corresponding conveying path, and define the dispatch path of the electronic product according to the dispatch node, the corresponding moving speed, and the load capacity of the dispatch bin, further including:

[0044] Freeze the dispatch node;

[0045] Associate the dispatch node, the corresponding moving speed, and the load capacity of the dispatch bin, and define the dispatch path of the electronic product according to the dispatch node, the corresponding moving speed, and the load capacity of the dispatch bin;

[0046] Gradually adjust the posture of the electronic product along the dispatch path of the electronic product until the posture of the electronic product reaches the preset posture.

[0047] Optionally, define the dispatch progress of each electronic product based on the dispatch path of each electronic product, the corresponding conveying path, and the current position of each electronic product, and trigger the intelligent dispatch of each electronic product based on the dispatch progress of each electronic product, the detection time difference of the corresponding detection end, and the load capacity of the dispatch bin, including:

[0048] Collect the dispatch path of each electronic product;

[0049] Associate the dispatch path of each electronic product, the corresponding conveying path, and the current position of each electronic product;

[0050] Define the dispatch progress of each electronic product according to the dispatch path of each electronic product, the corresponding conveying path, and the current position of each electronic product.

[0051] Optionally, define the dispatching progress of each electronic product based on the dispatching path, corresponding conveying path, and current position of each electronic product, and trigger the intelligent dispatching of each electronic product based on the dispatching progress of each electronic product, the detection time difference of the corresponding detection end, and the load of the dispatching bin. It further includes:

[0052] Monitor the dispatching progress of each electronic product in real time;

[0053] Associate the dispatching progress of each electronic product, the detection time difference of the corresponding detection end, and the load of the dispatching bin;

[0054] Trigger the intelligent dispatching of each electronic product based on the dispatching progress of each electronic product, the detection time difference of the corresponding detection end, and the load of the dispatching bin, so as to dynamically regulate the dispatching actions of each electronic product.

[0055] In addition, an embodiment of the present invention further provides an intelligent dispatching system for electronic products. The intelligent dispatching system for electronic products includes:

[0056] An acquisition module, configured to acquire real-time images of multiple electronic products at different positions when the multiple electronic products are in a dynamic conveying state;

[0057] A parameter module, configured to define a corresponding parameter combination according to the multiple real-time images, the moving speed of the electronic product, and the posture of the electronic product. The parameter combination includes the external shape, weight parameter, and port parameter of the electronic product;

[0058] A change amount module, configured to define the change amount of the external shape, the change amount of the weight parameter, and the change amount of the port parameter according to the parameter combination and the parameter comparison model;

[0059] A product grade module, configured to match the corresponding product grade according to the change amount of the external shape, the change amount of the weight parameter, and the change amount of the port parameter;

[0060] A dispatching path module, configured to define dispatching nodes based on the product grade of the electronic product and the corresponding conveying path, and define the dispatching path of the electronic product according to the dispatching nodes, the corresponding moving speed, and the load of the dispatching bin;

[0061] An intelligent dispatching module, configured to define the dispatching progress of each electronic product based on the dispatching path, corresponding conveying path, and current position of each electronic product, and trigger the intelligent dispatching of each electronic product based on the dispatching progress of each electronic product, the detection time difference of the corresponding detection end, and the load of the dispatching bin.

[0062] In an embodiment of the present invention, by means of the method in the embodiment of the present invention, when multiple electronic products are in a dynamic conveying state, real-time images of the multiple electronic products at different positions are collected; according to the multiple real-time images, the moving speed of the electronic products, and the postures of the electronic products, a corresponding parameter combination is defined, and the parameter combination includes the external shape, weight parameters, and port parameters of the electronic products; according to the parameter combination and the parameter comparison model, the change amount of the external shape, the change amount of the weight parameters, and the change amount of the port parameters are defined; according to the change amount of the external shape, the change amount of the weight parameters, and the change amount of the port parameters, the corresponding product grades are matched, taking into account the overall change amount of the external shape, the change amount of the weight parameters, and the change amount of the port parameters, realizing multi-dimensional control of the change amount of the external shape, the change amount of the weight parameters, and the change amount of the port parameters, and ensuring the accuracy of the product grades of each electronic product.

[0063] Further, based on the product grade of the electronic product and the corresponding conveying path, a dispatching node is defined, and according to the dispatching node, the corresponding moving speed, and the load capacity of the dispatching bin, the dispatching path of the electronic product is defined; based on the dispatching paths of each electronic product, the corresponding conveying paths, and the current positions of each electronic product, the dispatching progress of each electronic product is defined, and based on the dispatching progress of each electronic product, the detection time difference of the corresponding detection end, and the load capacity of the dispatching bin, the intelligent dispatching of each electronic product is triggered to dynamically adjust the dispatching actions of each electronic product, ensuring the accuracy and efficiency of the dispatching of each electronic product and realizing the intelligent dispatching of each electronic product. BRIEF DESCRIPTION OF THE DRAWINGS

[0064] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the following drawings are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can be obtained based on these drawings.

[0065] Figure 1 It is a schematic flowchart of the intelligent dispatching method for electronic products in the embodiment of the present invention;

[0066] Figure 2 It is a schematic flowchart of S11 in the intelligent dispatching method for electronic products in the embodiment of the present invention;

[0067] Figure 3 It is a schematic flowchart of S12 in the intelligent dispatching method for electronic products in the embodiment of the present invention;

[0068] Figure 4 It is a schematic flowchart of S13 in the intelligent dispatching method for electronic products in the embodiment of the present invention;

[0069] Figure 5 is a flow chart of S14 in the intelligent dispatching method for electronic products in an embodiment of the present invention;

[0070] Figure 6 is a flow chart of S15 in the intelligent dispatching method for electronic products in an embodiment of the present invention;

[0071] Figure 7 is a flow chart of S16 in the intelligent dispatching method for electronic products in an embodiment of the present invention;

[0072] Figure 8 It is a schematic diagram of the structure of the intelligent dispatching system for electronic products in an embodiment of the present invention;

[0073] Figure 9 The figure is a hardware diagram of an electronic device according to an exemplary embodiment. DETAILED DESCRIPTION

[0074] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0075] See also Figures 1 to 9 , an intelligent dispatching method for electronic products, applied to the intelligent dispatching scenario of electronic products; the intelligent dispatching method for electronic products includes:

[0076] Step S11: when the multiple electronic products are in a dynamic conveying state, collecting real-time images of the multiple electronic products at different positions;

[0077] Step S12: defining a corresponding parameter combination according to the multiple real-time images, the moving speed of the electronic product and the posture of the electronic product, the parameter combination including the shape, weight parameter and port parameter of the electronic product;

[0078] Step S13: defining the change amount of the shape, the change amount of the weight parameter and the change amount of the port parameter according to the parameter combination and the parameter comparison model;

[0079] Step S14: matching the corresponding product grade according to the change amount of the appearance, the change amount of the weight parameter and the change amount of the port parameter;

[0080] Step S15: Define dispatch nodes based on the product grade of the electronic product and the corresponding conveying path, and define the dispatch path of the electronic product according to the dispatch nodes, the corresponding moving speed, and the load of the dispatch bin;

[0081] Step S16: Define the dispatch progress of each electronic product based on the dispatch path, the corresponding conveying path, and the current position of each electronic product, and trigger the intelligent dispatch of each electronic product based on the dispatch progress of each electronic product, the detection time difference of the corresponding detection end, and the load of the dispatch bin.

[0082] In the embodiment of the present invention, by the method in the embodiment of the present invention, when multiple electronic products are in a dynamic conveying state, real-time images of the multiple electronic products at different positions are collected; according to the multiple real-time images, the moving speed of the electronic product, and the posture of the electronic product, a corresponding parameter combination is defined, and the parameter combination includes the external shape, weight parameter, and port parameter of the electronic product; according to the parameter combination and the parameter comparison model, the change amount of the external shape, the change amount of the weight parameter, and the change amount of the port parameter are defined; according to the change amount of the external shape, the change amount of the weight parameter, and the change amount of the port parameter, the corresponding product grade is matched, which comprehensively considers the change amount of the external shape, the change amount of the weight parameter, and the change amount of the port parameter, realizes the multi-dimensional control of the change amount of the external shape, the change amount of the weight parameter, and the change amount of the port parameter, and ensures the accuracy of the product grade of each electronic product.

[0083] Further, define dispatch nodes based on the product grade of the electronic product and the corresponding conveying path, and define the dispatch path of the electronic product according to the dispatch nodes, the corresponding moving speed, and the load of the dispatch bin; define the dispatch progress of each electronic product based on the dispatch path, the corresponding conveying path, and the current position of each electronic product, and trigger the intelligent dispatch of each electronic product based on the dispatch progress of each electronic product, the detection time difference of the corresponding detection end, and the load of the dispatch bin, so as to dynamically regulate the dispatch actions of each electronic product, ensure the accuracy and efficiency of the dispatch of each electronic product, and realize the intelligent dispatch of each electronic product.

[0084] Reference Figure 2 In step S11, when multiple electronic products are in a dynamic conveying state, real-time images of the multiple electronic products at different positions are collected;

[0085] In the specific implementation process of the present invention, the specific steps may be:

[0086] S111: Locate multiple electronic products and place the multiple electronic products on the corresponding conveyor line;

[0087] S112: Define corresponding conveying speeds based on the conveyor line, multiple electronic products, and their corresponding product types, and convey the multiple electronic products online, so that the multiple electronic products are in a dynamic conveying state;

[0088] S113: When the multiple electronic products are in a dynamic conveying state, perform positioning shooting on the multiple electronic products;

[0089] S114: Collect real-time images of the multiple electronic products at different positions according to the positioning shooting of the multiple electronic products;

[0090] S115: Define a difference area based on the comparison of the real-time images of the multiple electronic products at different positions, define difference parameters according to the difference area, the corresponding positions, and the types of the multiple electronic products, and associate the difference parameters with the corresponding electronic products.

[0091] In the embodiments of the present application, position the multiple electronic products, place the multiple electronic products on the corresponding conveyor line, define the corresponding conveying speeds based on the conveyor line, the multiple electronic products, and their corresponding product types, and convey the multiple electronic products online, so that the multiple electronic products are in a dynamic conveying state, introduce the dynamic conveying state of the multiple electronic products, and synchronously convey the multiple electronic products based on the same conveyor line.

[0092] Furthermore, when the multiple electronic products are in a dynamic conveying state, perform positioning shooting on the multiple electronic products; collect real-time images of the multiple electronic products at different positions according to the positioning shooting of the multiple electronic products, and further control the real-time images of the multiple electronic products at different positions.

[0093] Therefore, define a difference area based on the comparison of the real-time images of the multiple electronic products at different positions, define difference parameters according to the difference area, the corresponding positions, and the types of the multiple electronic products, and associate the difference parameters with the corresponding electronic products, realize the comparison of the real-time images of the multiple electronic products at different positions, and further control the difference area, so as to realize the multi-dimensional control of the difference area, the corresponding positions, and the types of the multiple electronic products, and ensure the accuracy of the difference parameters.

[0094] Reference Figure 3 In step S12, define the corresponding parameter combinations according to the multiple real-time images, the moving speed of the electronic products, and the postures of the electronic products, and the parameter combinations include the external shapes, weight parameters, and port parameters of the electronic products;

[0095] In the specific implementation process of the present invention, the specific steps may be:

[0096] S121: Freeze the multiple real-time images;

[0097] S122: Match corresponding difference parameters based on multiple real-time images and the electronic product.

[0098] S123: Define the posture of the electronic product according to the forward comparison of multiple real-time images.

[0099] S124: Associate multiple real-time images, the moving speed of the electronic product, and the posture of the electronic product.

[0100] S125: Define the corresponding parameter combination according to multiple real-time images, the moving speed of the electronic product, and the posture of the electronic product, and add the difference parameter to the parameter combination.

[0101] S126: The parameter combination includes the external shape, weight parameter, and port parameter of the electronic product.

[0102] In the embodiment of the present application, multiple real-time images are frozen, and multiple real-time images are introduced, so as to match corresponding difference parameters based on multiple real-time images and the electronic product. At the same time, the posture of the electronic product is defined according to the forward comparison of multiple real-time images, realizing the forward comparison of multiple real-time images, so as to perform multi-dimensional control on multiple real-time images and ensure the accuracy of the posture of the electronic product.

[0103] Therefore, associate multiple real-time images, the moving speed of the electronic product, and the posture of the electronic product; define the corresponding parameter combination according to multiple real-time images, the moving speed of the electronic product, and the posture of the electronic product, and add the difference parameter to the parameter combination, which is compatible with the overall consideration of multiple real-time images, the moving speed of the electronic product, and the posture of the electronic product, realizes the multi-dimensional control of multiple real-time images, the moving speed of the electronic product, and the posture of the electronic product, ensures the accuracy of the parameter combination. At the same time, the parameter combination includes the external shape, weight parameter, and port parameter of the electronic product, introducing the external shape, weight parameter, and port parameter of the electronic product, and the external shape, weight parameter, and port parameter of the electronic product are controlled one by one through multiple real-time images, the moving speed of the electronic product, and the posture of the electronic product.

[0104] Reference Figure 4 In step S13, define the change amount of the external shape, the change amount of the weight parameter, and the change amount of the port parameter according to the parameter combination and the parameter comparison model.

[0105] In the specific implementation process of the present invention, the specific steps may be:

[0106] S131: Freeze the parameter combination.

[0107] S132: Match the corresponding parameter comparison model according to the type of the electronic product, the number of the electronic products, and the overall size of the electronic product.

[0108] S133: Associated parameter combination and parameter comparison model;

[0109] S134: Define multiple variation spaces according to the parameter combination and the parameter comparison model;

[0110] S135: Define the variation of the external shape, the variation of the weight parameter, and the variation of the port parameter according to the synchronous recognition of multiple variation spaces.

[0111] In the embodiment of the present application, freeze the parameter combination; match the corresponding parameter comparison model according to the type of electronic product, the number of electronic products, and the overall size of the electronic product. The type of electronic product, the number of electronic products, and the overall size of the electronic product are introduced, and overall matching is performed for the type of electronic product, the number of electronic products, and the overall size of the electronic product, so as to match the corresponding parameter comparison model, ensuring the accuracy of the parameter comparison model. At this time, the parameter comparison model is trained based on past parameter data.

[0112] Therefore, associate the parameter combination and the parameter comparison model; define multiple variation spaces according to the parameter combination and the parameter comparison model; define the variation of the external shape, the variation of the weight parameter, and the variation of the port parameter according to the synchronous recognition of multiple variation spaces. The variation of the external shape, the variation of the weight parameter, and the variation of the port parameter are introduced to facilitate the subsequent processing of the variation of the external shape, the variation of the weight parameter, and the variation of the port parameter.

[0113] Reference Figure 5 S14: Match the corresponding product grade according to the variation of the external shape, the variation of the weight parameter, and the variation of the port parameter;

[0114] In the specific implementation process of the present invention, the specific steps may be:

[0115] S141: Freeze the variation of the external shape, the variation of the weight parameter, and the variation of the port parameter;

[0116] S142: Associate the variation of the external shape, the variation of the weight parameter, and the variation of the port parameter;

[0117] S143: Define the first variation parameter according to the variation of the external shape and the variation of the weight parameter;

[0118] S144: Define the second variation parameter according to the variation of the external shape and the variation of the port parameter;

[0119] S145: Associate the first variation parameter, the second variation parameter, and the parameter matching table;

[0120] S146: Match the corresponding product grade according to the first change parameter, the second change parameter, and the parameter matching table.

[0121] In the embodiments of the present application, when multiple electronic products are in a dynamic conveying state, real-time images of the multiple electronic products at different positions are collected; according to the multiple real-time images, the moving speed of the electronic products, and the postures of the electronic products, a corresponding parameter combination is defined, and the parameter combination includes the external shape, weight parameter, and port parameter of the electronic products; according to the parameter combination and the parameter comparison model, the change amount of the external shape, the change amount of the weight parameter, and the change amount of the port parameter are defined; according to the change amount of the external shape, the change amount of the weight parameter, and the change amount of the port parameter, the corresponding product grade is matched, which takes into account the overall change amount of the external shape, the change amount of the weight parameter, and the change amount of the port parameter, realizes the multi-dimensional control of the change amount of the external shape, the change amount of the weight parameter, and the change amount of the port parameter, and ensures the accuracy of the product grade of each electronic product.

[0122] At this time, freeze the change amount of the external shape, the change amount of the weight parameter, and the change amount of the port parameter; associate the change amount of the external shape, the change amount of the weight parameter, and the change amount of the port parameter, and consider the change amount of the external shape, the change amount of the weight parameter, and the change amount of the port parameter as a whole, realizing the multi-dimensional control of the change amount of the external shape, the change amount of the weight parameter, and the change amount of the port parameter.

[0123] Therefore, define the first change parameter according to the change amount of the external shape and the change amount of the weight parameter; define the second change parameter according to the change amount of the external shape and the change amount of the port parameter. Further, associate the first change parameter, the second change parameter, and the parameter matching table; match the corresponding product grade according to the first change parameter, the second change parameter, and the parameter matching table, which takes into account the overall first change parameter, the second change parameter, and the parameter matching table, ensures the matching accuracy of the product grade, and at the same time, takes into account the overall change amount of the external shape, the change amount of the weight parameter, and the change amount of the port parameter, realizes the multi-dimensional control of the change amount of the external shape, the change amount of the weight parameter, and the change amount of the port parameter, and ensures the accuracy of the product grade of each electronic product.

[0124] Reference Figure 6 , S15: Define a dispatch node based on the product grade of the electronic product and the corresponding conveying path, and define the dispatch path of the electronic product according to the dispatch node, the corresponding moving speed, and the load of the dispatch bin;

[0125] In the specific implementation process of the present invention, the specific steps may be:

[0126] S151: Freeze the product grade of the electronic product;

[0127] S152: Collect the conveying path of the electronic product relative to the conveying line;

[0128] S153: Define the dispatching node according to the product grade of the electronic product and the corresponding conveying path;

[0129] S154: Fix the dispatching node;

[0130] S155: Associate the dispatching node, the corresponding moving speed and the load capacity of the dispatching bin, and define the dispatching path of the electronic product according to the dispatching node, the corresponding moving speed and the load capacity of the dispatching bin;

[0131] S156: Gradually adjust the attitude of the electronic product along the dispatching path of the electronic product until the attitude of the electronic product reaches the preset attitude.

[0132] In the embodiment of the present application, fix the product grade of the electronic product; at the same time, collect the conveying path of the electronic product relative to the conveying line; define the dispatching node according to the product grade of the electronic product and the corresponding conveying path, introduce the product grade of the electronic product and the corresponding conveying path, and perform multi-dimensional control on the product grade of the electronic product and the corresponding conveying path, ensuring the accuracy of the dispatching node.

[0133] Therefore, fix the dispatching node; associate the dispatching node, the corresponding moving speed and the load capacity of the dispatching bin, and define the dispatching path of the electronic product according to the dispatching node, the corresponding moving speed and the load capacity of the dispatching bin, which is compatible with the overall consideration of the dispatching node, the corresponding moving speed and the load capacity of the dispatching bin, realizes the overall control of the dispatching node, the corresponding moving speed and the load capacity of the dispatching bin, ensures the accuracy of the dispatching path of the electronic product, and at the same time, gradually adjust the attitude of the electronic product along the dispatching path of the electronic product until the attitude of the electronic product reaches the preset attitude, realizing the attitude adjustment of the electronic product during the dispatching process.

[0134] Reference Figure 7 S16: Define the dispatching progress of each electronic product based on the dispatching path, the corresponding conveying path and the current position of each electronic product, and trigger the intelligent dispatching of each electronic product based on the dispatching progress of each electronic product, the detection time difference of the corresponding detection end and the load capacity of the dispatching bin;

[0135] In the specific implementation process of the present invention, the specific steps may be:

[0136] S161: Collect the dispatching paths of each electronic product;

[0137] S162: Associate the distribution paths of each electronic product, the corresponding conveying paths, and the current positions of each electronic product;

[0138] S163: Define the distribution progress of each electronic product according to the distribution paths of each electronic product, the corresponding conveying paths, and the current positions of each electronic product;

[0139] S164: Monitor the distribution progress of each electronic product in real time;

[0140] S165: Associate the distribution progress of each electronic product, the detection time difference of the corresponding detection end, and the load of the distribution bin;

[0141] S166: Trigger the intelligent distribution of each electronic product based on the distribution progress of each electronic product, the detection time difference of the corresponding detection end, and the load of the distribution bin, so as to dynamically regulate the distribution actions of each electronic product.

[0142] In the specific implementation process of the present invention, distribution nodes are defined based on the product grade of the electronic product and the corresponding conveying path, and the distribution path of the electronic product is defined according to the distribution nodes, the corresponding moving speed, and the load of the distribution bin; the distribution progress of each electronic product is defined based on the distribution paths of each electronic product, the corresponding conveying paths, and the current positions of each electronic product, and the intelligent distribution of each electronic product is triggered based on the distribution progress of each electronic product, the detection time difference of the corresponding detection end, and the load of the distribution bin, so as to dynamically regulate the distribution actions of each electronic product, ensuring the accuracy and efficiency of the distribution of each electronic product and realizing the intelligent distribution of each electronic product.

[0143] At this time, collect the distribution paths of each electronic product; associate the distribution paths of each electronic product, the corresponding conveying paths, and the current positions of each electronic product; define the distribution progress of each electronic product according to the distribution paths of each electronic product, the corresponding conveying paths, and the current positions of each electronic product, taking into account the overall situation of the distribution paths of each electronic product, the corresponding conveying paths, and the current positions of each electronic product, realizing the multi-dimensional comparison of the distribution paths of each electronic product, the corresponding conveying paths, and the current positions of each electronic product, and ensuring the accuracy of the distribution progress of each electronic product.

[0144] Therefore, the dispatch progress of each electronic product is monitored in real time; the dispatch progress of each electronic product, the detection time difference of the corresponding detection end, and the load of the dispatch warehouse are associated; the intelligent dispatch of each electronic product is triggered based on the dispatch progress of each electronic product, the detection time difference of the corresponding detection end, and the load of the dispatch warehouse to dynamically regulate the dispatch actions of each electronic product. At the same time, the intelligent dispatch of each electronic product is triggered based on the dispatch progress of each electronic product, the detection time difference of the corresponding detection end, and the load of the dispatch warehouse to dynamically regulate the dispatch actions of each electronic product, ensuring the accuracy and efficiency of the dispatch of each electronic product and realizing the intelligent dispatch of each electronic product.

[0145] In the embodiment of the present invention, by the method in the embodiment of the present invention, when multiple electronic products are in a dynamic conveying state, real-time images of the multiple electronic products at different positions are collected; corresponding parameter combinations are defined according to the multiple real-time images, the moving speed of the electronic products, and the postures of the electronic products, and the parameter combinations include the external shape, weight parameters, and port parameters of the electronic products; the change amount of the external shape, the change amount of the weight parameters, and the change amount of the port parameters are defined according to the parameter combinations and the parameter comparison model; corresponding product grades are matched according to the change amount of the external shape, the change amount of the weight parameters, and the change amount of the port parameters, taking into account the overall change amount of the external shape, the change amount of the weight parameters, and the change amount of the port parameters, realizing multi-dimensional control of the change amount of the external shape, the change amount of the weight parameters, and the change amount of the port parameters, and ensuring the accuracy of the product grades of each electronic product.

[0146] Furthermore, dispatch nodes are defined based on the product grade of the electronic product and the corresponding conveying path, and the dispatch path of the electronic product is defined according to the dispatch nodes, the corresponding moving speed, and the load of the dispatch warehouse; the dispatch progress of each electronic product is defined based on the dispatch paths of each electronic product, the corresponding conveying paths, and the current positions of each electronic product, and the intelligent dispatch of each electronic product is triggered based on the dispatch progress of each electronic product, the detection time difference of the corresponding detection end, and the load of the dispatch warehouse to dynamically regulate the dispatch actions of each electronic product, ensuring the accuracy and efficiency of the dispatch of each electronic product and realizing the intelligent dispatch of each electronic product.

[0147] Please refer to Figure 8 , Figure 8 which is a schematic structural diagram of the intelligent dispatch system for electronic products in the embodiment of the present invention.

[0148] As Figure 8 shown, an intelligent dispatch system for electronic products, the intelligent dispatch system for electronic products includes:

[0149] The acquisition module 21 is used to acquire real-time images of multiple electronic products at different positions when the multiple electronic products are in a dynamic conveying state;

[0150] The parameter module 22 is used to define a corresponding parameter combination according to multiple real-time images, the moving speed of the electronic product, and the posture of the electronic product. The parameter combination includes the shape and form, weight parameter, and port parameter of the electronic product;

[0151] The change amount module 23 is used to define the change amount of the shape and form, the change amount of the weight parameter, and the change amount of the port parameter according to the parameter combination and the parameter comparison model;

[0152] The product grade module 24 is used to match a corresponding product grade according to the change amount of the shape and form, the change amount of the weight parameter, and the change amount of the port parameter;

[0153] The distribution path module 25 is used to define a distribution node based on the product grade of the electronic product and the corresponding conveying path, and define the distribution path of the electronic product according to the distribution node, the corresponding moving speed, and the load of the distribution bin;

[0154] The intelligent distribution module 26 is used to define the distribution progress of each electronic product based on the distribution path of each electronic product, the corresponding conveying path, and the current position of each electronic product, and trigger the intelligent distribution of each electronic product based on the distribution progress of each electronic product, the detection time difference of the corresponding detection end, and the load of the distribution bin.

[0155] Please refer to Figure 9 below and refer to Figure 9 to describe the electronic device 40 according to this embodiment of the present invention. Figure 9 The electronic device 40 shown is only an example and should not impose any limitations on the functions and usage scope of the embodiments of the present invention.

[0156] As Figure 9 shown, the electronic device 40 is presented in the form of a general computing device. The components of the electronic device 40 may include, but are not limited to: at least one of the above-mentioned processing units 41, at least one of the above-mentioned storage units 42, and a bus 43 connecting different system components (including the storage unit 42 and the processing unit 41).

[0157] Among them, the storage unit stores program codes, and the program codes can be executed by the processing unit 41, so that the processing unit 41 executes the steps according to various exemplary embodiments of the present invention described in the "Embodiment Method" section of this specification.

[0158] The storage unit 42 may include a readable medium in the form of a volatile storage unit, such as a random access storage unit (RAM) 421 and / or a cache storage unit 422, and may further include a read-only storage unit (ROM) 423.

[0159] The storage unit 42 may also include a program / utilities 424 having a set (at least one) of program modules 425. Such program modules 425 include, but are not limited to: an operating system, one or more application programs, other program modules, and program data. Each or some combination of these examples may include an implementation of a network environment.

[0160] The bus 43 may represent one or more of several types of bus structures, including a memory bus or memory controller, a peripheral bus, an accelerated graphics port, a processing unit, or a local bus using any of a variety of bus structures.

[0161] The electronic device 40 may also communicate with one or more external devices (such as a keyboard, a pointing device, a Bluetooth device, etc.), may also communicate with one or more devices that enable a user to interact with the electronic device 40, and / or may communicate with any device that enables the electronic device 40 to communicate with one or more other computing devices (such as a router, a modem, etc.). Such communication may be through an input / output (I / O) interface 44. And, the electronic device 40 may also communicate with one or more networks (such as a local area network (LAN), a wide area network (WAN), and / or a public network, such as the Internet) through a network adapter 45. As Figure 9 shown, the network adapter 45 communicates with other modules of the electronic device 40 through the bus 43. It should be understood that although Figure 9 not shown in the figure, other hardware and / or software modules may be used in conjunction with the electronic device 40, including but not limited to: microcode, device drivers, redundant processing units, external disk drive arrays, RAID systems, tape drives, and data backup planning systems, etc.

[0162] Through the description of the above embodiments, those skilled in the art can easily understand that the exemplary embodiments described herein can be implemented by software, or can be implemented by a combination of software and necessary hardware. Therefore, the technical solutions according to the embodiments of the present disclosure can be embodied in the form of a software product, which can be stored in a non-volatile storage medium (which can be a CD-ROM, a USB flash drive, a mobile hard disk, etc.) or on a network, including several instructions to enable a computing device (which can be a personal computer, a server, a terminal device, or a network device, etc.) to execute the method according to the embodiments of the present disclosure.

[0163] Those of ordinary skill in the art can understand that all or part of the steps in the various methods of the above embodiments can be completed by instructing relevant hardware through a program, and the program can be stored in a computer-readable storage medium. The storage medium can include: read-only memory (ROM, Read Only Memory), random access memory (RAM, Random Access Memory), magnetic disk or optical disk, etc. Moreover, it stores computer program instructions, and when the computer program instructions are executed by a computer, the computer is caused to execute the method according to the above.

[0164] In addition, the intelligent dispatching method and system of the electronic product provided by the embodiments of the present invention have been introduced in detail above. Specific examples have been used in this article to elaborate on the principle and implementation manner of the present invention. The description of the above embodiments is only used to help understand the method and its core idea of the present invention; at the same time, for those of ordinary skill in the art, according to the idea of the present invention, there will be changes in the specific implementation manner and application scope. In summary, the content of this specification should not be construed as a limitation to the present invention.

Claims

1. An intelligent distribution method for electronic products, characterized in that: Applied to intelligent dispatching scenarios of electronic products; The intelligent distribution method of electronic products comprises: When the multiple electronic products are in a dynamic transport state, real-time images of the multiple electronic products at different positions are collected, including: when the multiple electronic products are in a dynamic transport state, positioning and photographing the multiple electronic products; collecting real-time images of the multiple electronic products at different positions based on the positioning and photographing of the multiple electronic products; defining difference areas based on the comparison of the real-time images of the multiple electronic products at different positions, defining difference parameters according to the difference areas, corresponding positions and types of the multiple electronic products, and associating the difference parameters with the corresponding electronic products; A corresponding parameter combination is defined according to a plurality of real-time images, a moving speed of the electronic product, and a posture of the electronic product, the parameter combination including an appearance, a weight parameter, and a port parameter of the electronic product, including: freezing a plurality of real-time images; matching corresponding difference parameters based on a plurality of real-time images and the electronic product; defining the posture of the electronic product according to a forward comparison of a plurality of real-time images; associating a plurality of real-time images, a moving speed of the electronic product, and a posture of the electronic product; defining a corresponding parameter combination according to a plurality of real-time images, a moving speed of the electronic product, and a posture of the electronic product, and adding the difference parameters to the parameter combination; Defining the change amount of the appearance, the change amount of the weight parameter and the change amount of the port parameter according to the parameter combination and the parameter comparison model, including: fixing the parameter combination; matching the corresponding parameter comparison model according to the type of electronic products, the number of electronic products and the overall size of the electronic products; Match the corresponding product grade according to the change in appearance, weight parameters and port parameters; Defining a dispatch node based on the product grade of the electronic product and the corresponding transport path, and defining a dispatch path of the electronic product according to the dispatch node, the corresponding moving speed, and the load of the dispatch bin; The dispatch progress of each electronic product is defined based on its dispatch path, corresponding conveying path and current position of each electronic product. The intelligent dispatch of each electronic product is triggered based on its dispatch progress, corresponding detection time difference of detection terminal and load capacity of dispatch warehouse.

2. The intelligent distribution method of electronic products according to claim 1, characterized in that: When the multiple electronic products are in a dynamic conveying state, collecting real-time images of the multiple electronic products at different positions includes: Locate multiple electronic products and place them on corresponding conveyor lines; The corresponding conveying speed is defined based on the conveying line, multiple electronic products and corresponding product types, and the multiple electronic products are conveyed online, so that the multiple electronic products are in a dynamic conveying state.

3. The intelligent distribution method of electronic products according to claim 1, characterized in that: The method of defining the change in the shape, the change in the weight parameter and the change in the port parameter according to the parameter combination and the parameter comparison model includes: Correlation parameter combination and parameter comparison model; Define multiple variation spaces based on parameter combinations and parameter comparison models; The variation of the shape, the variation of the weight parameter and the variation of the port parameter are defined based on the synchronous recognition of multiple variation spaces.

4. The intelligent distribution method of electronic products according to claim 3, characterized in that: The matching of the corresponding product grade according to the change in the appearance, the change in the weight parameter and the change in the port parameter includes: The change in the fixed shape, the change in the weight parameters and the change in the port parameters; Correlate the changes in shape, weight parameters, and port parameters; Defining a first change parameter according to the change amount of the shape and the change amount of the weight parameter; Defining a second variation parameter according to the variation of the shape and the variation of the port parameter; Associating the first change parameter, the second change parameter, and the parameter matching table; The corresponding product grade is matched according to the first change parameter, the second change parameter and the parameter matching table.

5. The intelligent distribution method of electronic products according to claim 4, characterized in that: The step of defining a dispatch node based on the product grade of the electronic product and the corresponding transport path, and defining a dispatch path of the electronic product according to the dispatch node, the corresponding moving speed, and the load of the dispatch bin includes: Determine the product grade of the electronic product; Collecting the conveying path of the electronic product relative to the conveying line; The dispatching nodes are defined according to the product grade of the electronic product and the corresponding delivery path.

6. The intelligent distribution method of electronic products according to claim 5, characterized in that: The method of defining a dispatch node based on the product grade of the electronic product and the corresponding transport path, and defining a dispatch path of the electronic product according to the dispatch node, the corresponding moving speed and the load of the dispatch bin, further includes: Fixed frame dispatch node; Associating the dispatching node, the corresponding moving speed and the load of the dispatching bin, and defining the dispatching path of the electronic product according to the dispatching node, the corresponding moving speed and the load of the dispatching bin; The posture of the electronic product is gradually regulated along the dispatch path of the electronic product until the posture of the electronic product reaches a preset posture.

7. The intelligent distribution method of electronic products according to claim 6, characterized in that: The method of defining the dispatch progress of each electronic product based on the dispatch path of each electronic product, the corresponding conveying path and the current position of each electronic product, and triggering the intelligent dispatch of each electronic product based on the dispatch progress of each electronic product, the detection time difference of the corresponding detection terminal and the load of the dispatch warehouse includes: Collect the dispatch paths of each electronic product; Associating the dispatch path of each electronic product, the corresponding delivery path, and the current location of each electronic product; The dispatch progress of each electronic product is defined according to the dispatch path of each electronic product, the corresponding conveying path and the current position of each electronic product.

8. The intelligent distribution method of electronic products according to claim 7, characterized in that: The method further includes: defining the dispatch progress of each electronic product based on the dispatch path of each electronic product, the corresponding conveying path and the current position of each electronic product, triggering the intelligent dispatch of each electronic product based on the dispatch progress of each electronic product, the detection time difference of the corresponding detection terminal and the load of the dispatch warehouse, and further includes: Real-time monitoring of the dispatch progress of each electronic product; Correlate the dispatch progress of each electronic product, the detection time difference of the corresponding detection terminal, and the load of the dispatch warehouse; Based on the dispatch progress of each electronic product, the detection time difference of the corresponding detection terminal and the load of the dispatch warehouse, the intelligent dispatch of each electronic product is triggered to dynamically control the dispatch action of each electronic product.

9. An intelligent distribution system for electronic products, characterized in that: The intelligent dispatching system for electronic products is applied to the intelligent dispatching method for electronic products as claimed in any one of claims 1 to 8, and the intelligent dispatching system for electronic products comprises: A collection module, used for collecting real-time images of multiple electronic products at different positions when the multiple electronic products are in a dynamic conveying state, including: positioning and photographing the multiple electronic products when the multiple electronic products are in a dynamic conveying state; collecting real-time images of the multiple electronic products at different positions based on the positioning and photographing of the multiple electronic products; defining difference areas based on the comparison of the real-time images of the multiple electronic products at different positions, defining difference parameters according to the difference areas, corresponding positions and types of the multiple electronic products, and associating the difference parameters with the corresponding electronic products; A parameter module, used to define a corresponding parameter combination according to a plurality of real-time images, a moving speed of an electronic product, and a posture of the electronic product, the parameter combination including an appearance, a weight parameter, and a port parameter of the electronic product, including: freezing a plurality of real-time images; matching corresponding difference parameters based on a plurality of real-time images and electronic products; defining the posture of the electronic product according to a forward comparison of a plurality of real-time images; associating a plurality of real-time images, a moving speed of an electronic product, and a posture of the electronic product; defining a corresponding parameter combination according to a plurality of real-time images, a moving speed of an electronic product, and a posture of the electronic product, and adding the difference parameters to the parameter combination; The variation module is used to define the variation of the shape, the variation of the weight parameter and the variation of the port parameter according to the parameter combination and the parameter comparison model, including: fixing the parameter combination; matching the corresponding parameter comparison model according to the type of electronic products, the number of electronic products and the overall size of the electronic products; The product grade module is used to match the corresponding product grade according to the change in appearance, weight parameter and port parameter; A dispatch path module, used to define a dispatch node based on the product grade of the electronic product and the corresponding conveying path, and define a dispatch path of the electronic product according to the dispatch node, the corresponding moving speed and the load of the dispatch bin; The intelligent dispatch module is used to define the dispatch progress of each electronic product based on the dispatch path of each electronic product, the corresponding conveying path and the current position of each electronic product, and trigger the intelligent dispatch of each electronic product based on the dispatch progress of each electronic product, the corresponding detection time difference of the detection end and the load capacity of the dispatch warehouse.

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