A switch cabinet opening hole drawing generation method, device, equipment and medium

By automatically identifying the location and type of components, the switch cabinet opening diagram is generated, which solves the problem of low efficiency of manual opening and realizes efficient and accurate opening diagram generation.

CN117709025BActive Publication Date: 2026-08-25GUIZHOU BAIYIXIN REAL ESTATE CO LTD
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Patent Information

Application Number
CN202311873516.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-12-29
Publication Date
2026-08-25
Estimated Expiration
2043-12-29

AI Technical Summary

Technical Problem

In existing technologies, the opening of switch cabinets relies on manual operation, which is inefficient. Engineers need to manually look up component samples and open holes one by one, wasting design time.

Method used

By obtaining the relative positional relationship between the components to be installed in the switch cabinet and the mounting panel, the system automatically identifies the component type and determines the hole type and size, generates an opening diagram and draws the hole position, thus achieving automated opening diagram generation.

Benefits of technology

It greatly saves human resources, improves the efficiency of generating switchgear opening diagrams, enhances the accuracy and flexibility of opening diagrams, and avoids installation failures caused by processing errors.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a switch cabinet opening hole drawing generation method, device, equipment and medium. The method comprises the following steps: obtaining the relative position relationship between the mounting panel of the to-be-installed component in the switch cabinet and the to-be-installed component; obtaining the type of the component; determining the hole type and the hole size according to the type of the component; generating the opening hole drawing of the switch cabinet, and drawing the to-be-processed hole at the opening hole position corresponding to the relative position relationship, wherein the pattern of the to-be-processed hole corresponds to the hole type and the hole size. The embodiment of the application can improve the generation efficiency of the switch cabinet opening hole drawing.
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Description

Technical Field

[0001] This invention relates to the field of image processing technology, and in particular to a method, apparatus, device and medium for generating opening diagrams of switch cabinets. Background Technology

[0002] With the rapid development of modern society, various buildings are equipped with various types of distribution boxes / cabinets and other equipment. Correspondingly, the number of manufacturers producing switch cabinets has also increased. When engineers design distribution boxes, they need to mark the mounting holes of components on the mounting plate to facilitate the drilling by production workers or sheet metal processing equipment.

[0003] Currently, workshop workers drill holes on the mounting plate based on the physical components. Engineers then manually drill the holes using 2D design software based on the component sample information, ultimately generating the drawings.

[0004] However, the hole-making work is done manually by workers based on the actual hole-making pattern, which is inefficient. Engineers need to consult component samples and make holes for each cabinet one by one, which wastes design time. Summary of the Invention

[0005] This invention provides a method, apparatus, device, and medium for generating switchgear opening diagrams, in order to improve the efficiency of generating switchgear opening diagrams.

[0006] In a first aspect, embodiments of the present invention provide a method for generating a switchgear opening diagram, the method comprising:

[0007] Obtain the relative positional relationship between the mounting panel of the component to be installed and the component to be installed in the switch cabinet;

[0008] Obtain the type of the component;

[0009] Determine the hole type and hole size based on the type of component;

[0010] Generate the opening diagram of the switch cabinet, and draw the holes to be processed at the opening positions corresponding to the relative positional relationship. The shape of the holes to be processed corresponds to the hole type and hole size.

[0011] Secondly, embodiments of the present invention also provide a switch cabinet opening diagram generation device, the device comprising:

[0012] The relationship acquisition module is used to obtain the relative positional relationship between the mounting panel of the component to be installed and the component to be installed in the switch cabinet.

[0013] The type acquisition module is used to obtain the type of components.

[0014] The size determination module is used to determine the hole type and hole size based on the type of component;

[0015] The hole drawing module is used to generate the opening diagram of the switch cabinet and draw the holes to be processed at the opening positions corresponding to the relative positional relationship. The graphics of the holes to be processed correspond to the hole type and hole size.

[0016] Thirdly, embodiments of the present invention also provide a switch cabinet opening diagram generation device, the switch cabinet opening diagram generation device comprising:

[0017] At least one processor; and

[0018] A memory that is communicatively connected to at least one processor; wherein,

[0019] The memory stores a computer program that can be executed by at least one processor, such that the at least one processor is able to execute the switch cabinet opening diagram generation method according to any embodiment of the present invention.

[0020] According to another aspect of the present invention, a computer-readable storage medium is provided, which stores computer instructions for causing a processor to execute and implement the switch cabinet opening diagram generation method of any embodiment of the present invention.

[0021] The technical solution of this invention obtains the relative positional relationship between the mounting panel of the component to be installed in the switch cabinet and the component to be installed, obtains the type of component, determines the hole type and hole size, generates the opening diagram of the switch cabinet, and draws the hole to be processed at the opening position corresponding to the relative positional relationship. The opening diagram can be generated according to the type of component, hole type and hole size, eliminating the need for manual drawing of the opening diagram, greatly saving human resources and improving the efficiency of opening diagram generation for switch cabinets.

[0022] It should be understood that the description in this section is not intended to identify key or essential features of the embodiments of the present invention, nor is it intended to limit the scope of the invention. Other features of the invention will become readily apparent from the following description. Attached Figure Description

[0023] To more clearly illustrate the technical solutions in the embodiments of the present invention, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the accompanying drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0024] Figure 1 This is a flowchart of a method for generating a switchgear opening diagram according to an embodiment of the present invention;

[0025] Figure 2 This is a flowchart of a method for generating a switchgear opening diagram according to an embodiment of the present invention;

[0026] Figure 3 This is a schematic diagram of hole information provided according to an embodiment of the present invention;

[0027] Figure 4 This is a schematic diagram of a switch cabinet opening provided according to an embodiment of the present invention;

[0028] Figure 5 This is a schematic diagram of a switch cabinet opening diagram generation device according to an embodiment of the present invention;

[0029] Figure 6 This is a schematic diagram of a switch cabinet opening diagram generation device provided according to an embodiment of the present invention. Detailed Implementation

[0030] To enable those skilled in the art to better understand the present invention, the technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort should fall within the scope of protection of the present invention.

[0031] It should be noted that the terms "first," "second," etc., in the specification, claims, and accompanying drawings of this invention are used to distinguish similar objects and are not necessarily used to describe a specific order or sequence. It should be understood that such data can be interchanged where appropriate so that the embodiments of the invention described herein can be implemented in orders other than those illustrated or described herein. Furthermore, the terms "comprising" and "having," and any variations thereof, are intended to cover a non-exclusive inclusion; for example, a process, method, system, product, or apparatus that comprises a series of steps or units is not necessarily limited to those steps or units explicitly listed, but may include other steps or units not explicitly listed or inherent to such processes, methods, products, or apparatus.

[0032] In the technical solutions of the embodiments of the present invention, the acquisition, storage and application of the types of components involved all comply with the provisions of relevant laws and regulations and do not violate public order and good morals.

[0033] Example 1

[0034] Figure 1This is a flowchart illustrating a method for generating a switchgear opening diagram according to Embodiment 1 of the present invention. This embodiment of the invention is applicable to the generation of switchgear opening diagrams. The method can be executed by a switchgear opening diagram generation device, which can be implemented in hardware and / or software and can be configured within a switchgear opening diagram generation equipment.

[0035] See Figure 1 The method for generating the switchgear opening diagram shown includes:

[0036] S101. Obtain the relative positional relationship between the mounting panel of the component to be installed and the component to be installed in the switch cabinet.

[0037] In this context, a switchgear is a device used in power systems for opening, closing, controlling, and protecting electrical energy during generation, transmission, distribution, and conversion. Components are integral parts of the switchgear and are themselves industrial parts. Mounting panels are flat surfaces on which components can be mounted and are an important component of power switchgear. Relative positional relationships refer to the relative positions between the mounting panel and the components to be mounted within the switchgear. These relative positions can be represented by coordinates, using a point on the mounting panel as a reference to determine whether a point on the component is before, after, to the left, to the right, above, or below that point.

[0038] Specifically, the relative positional relationship between the mounting panel of the component to be installed and the component to be installed in the switch cabinet is obtained. The methods of obtaining this information include, but are not limited to, user input, data capture, or data query. This embodiment of the invention does not impose any restrictions on these methods.

[0039] In one example, if the center coordinates of the mounting panel of the component to be installed are (0,0) and the center coordinates of the component to be installed are (0,0), then the component to be installed is located at the center of the mounting panel.

[0040] S102, Obtain the type of the component.

[0041] Specifically, the types of components include, but are not limited to: conductive components, resistive components, capacitive components, inductive components, semiconductor components, magnetic components, and optoelectronic components. This embodiment of the invention does not impose any limitations on these types. The methods for obtaining the component type can include: user input, data query, or neural networks, etc.

[0042] In one example, the data query algorithm identifies the component type as an optoelectronic component.

[0043] S103. Determine the hole type and hole size according to the type of component.

[0044] The hole type can correspond to the component type, specifying the type of hole required for mounting the component. For example, the hole type could be an embedded mounting hole. The hole size can be the specified numerical value of the hole, in millimeters. It can be the length, width, and height of the hole, or the diameter of the hole, determined according to the hole type.

[0045] Specifically, based on the type of component, the hole type and hole size are determined using a data query algorithm. Data query algorithms include, but are not limited to, depth-first search or breadth-first search algorithms; this embodiment of the invention does not impose any limitations on these algorithms.

[0046] In one example, the component is a button. Based on the component type, the hole type and hole size are queried using a depth-first traversal algorithm.

[0047] S104. Generate the opening diagram of the switch cabinet, and draw the holes to be processed at the opening positions corresponding to the relative positional relationship. The shape of the holes to be processed corresponds to the hole type and hole size.

[0048] The hole diagram can be a plan view showing the hole information corresponding to the components to be installed in the switch cabinet. Hole information includes: hole location, hole type, and hole size. The graphic to be processed can be the shape of the mounting hole corresponding to the hole type; it can be circular or rectangular, depending on the hole type.

[0049] Specifically, generate the opening diagram of the switch cabinet, and draw the holes to be processed at the opening positions corresponding to the relative positional relationship. The shape of the hole to be processed corresponds to the hole type and hole size. For example, the shape of the hole to be processed corresponding to the hole type is a circle, and the hole size is the diameter of the circle; the shape of the hole to be processed corresponding to the hole type is a rectangle, and the hole size is the length and width of the rectangle.

[0050] In one example, the opening diagram of the switch cabinet is generated. The center coordinates of the switch cabinet are (0,0). The component to be installed is a button, whose center coordinates are (0,0). At the center coordinates (0,0) of the switch cabinet, the hole to be processed is drawn. The shape of the hole to be processed corresponding to the hole type is a circle, and the hole size is the diameter of the circle, which is 15 mm.

[0051] The technical solution of this invention obtains the relative positional relationship between the mounting panel of the component to be installed in the switch cabinet and the component to be installed, obtains the type of component, determines the hole type and hole size, generates the opening diagram of the switch cabinet, and draws the hole to be processed at the opening position corresponding to the relative positional relationship. The opening diagram can be generated according to the type of component, hole type and hole size, eliminating the need for manual drawing of the opening diagram, greatly saving human resources and improving the efficiency of opening diagram generation for switch cabinets.

[0052] Optionally, based on the type of the component, determine the hole type and mounting diameter of at least one hole corresponding to the component, including: determining the hole type, mounting diameter, and hole distribution information of at least one hole corresponding to the component; drawing the hole to be processed at the opening position corresponding to the relative position relationship, including: drawing at least one hole to be processed at the opening position corresponding to the relative position relationship, wherein the hole spacing and row number of each hole to be processed correspond to the hole distribution information.

[0053] Here, "mounting hole diameter" refers to the size of the hole that needs to be machined during the installation of the component. "Hole distribution information" refers to the position drawing information of each hole corresponding to the component. "Hole to be machined" refers to the hole to be drawn on the hole drawing. "Hole spacing" refers to the distance between each hole to be machined. "Number of rows" refers to the number of rows to be drawn for the holes to be machined, indicating the distribution of the holes on the rows.

[0054] Specifically, based on the type of component, a data query algorithm is used to retrieve the hole information required for installing the component, determining the hole type, mounting diameter, and hole distribution information for each hole. At the opening positions corresponding to the relative position of the switch cabinet, each hole to be processed is drawn, and the hole spacing and row number of each hole correspond to the hole distribution information. The component type, hole type, mounting diameter, and hole distribution information can all be stored in a database.

[0055] In one example, the component type is a button. Through a data query algorithm, it is found that the mounting hole diameter of this component is 15 mm, there are two holes, distributed in two rows, one hole in each row.

[0056] Based on the type of the component, the hole type, mounting diameter, and hole distribution information of at least one hole corresponding to the component are determined. The hole spacing and row number of each hole to be processed correspond to the hole distribution information. For different types of components, holes corresponding to the component type are drawn, and the drawing corresponds to the hole distribution information, which ensures the reliability of the hole information and improves the accuracy of the switch cabinet opening diagram generation.

[0057] Example 2

[0058] Figure 2 This is a flowchart of a method for generating a switchgear opening diagram according to Embodiment 2 of the present invention. Based on the above embodiments, this embodiment refines the process of "determining the hole type and hole size according to the type of the component" to "determining the hole type and mounting hole diameter of at least one hole corresponding to the component according to the type of the component; determining the hole diameter adjustment information corresponding to the mounting hole diameter according to the hole type; adjusting the mounting hole diameter according to the hole diameter adjustment information to obtain the hole size," thus improving the operation for generating the switchgear opening diagram.

[0059] It should be noted that for parts not described in detail in the embodiments of the present invention, please refer to the descriptions in other embodiments.

[0060] See Figure 2 The method for generating the switchgear opening diagram shown includes:

[0061] S201. Obtain the relative positional relationship between the mounting panel of the component to be installed and the component to be installed in the switch cabinet.

[0062] S202, Obtain the type of the component.

[0063] S203. Based on the type of component, determine the hole type and mounting hole diameter of at least one hole corresponding to the component.

[0064] Specifically, based on the type of the component, the hole type and mounting diameter of at least one hole corresponding to the component are determined by querying. Query methods include, but are not limited to, data query algorithms, string matching algorithms, natural language processing, or neural networks, etc., and this embodiment of the invention does not impose any limitations on these methods.

[0065] In one example, the component is a button. Based on the type of component, a data query algorithm is used to determine that the button corresponds to two holes. The hole type is an embedded mounting hole, and the diameter of the hole is 15 mm.

[0066] S204. Determine the hole diameter adjustment information corresponding to the installation hole diameter based on the hole type.

[0067] Among them, the aperture adjustment information can be aperture size adjustment data.

[0068] Specifically, during component installation, due to processing errors, the corresponding mounting hole diameter may not be able to be installed. Therefore, it is necessary to determine the hole diameter adjustment information according to the hole type. Adjusting the hole size according to different hole types is beneficial to obtaining a suitable hole diameter, which facilitates component installation.

[0069] In one example, such as Figure 3 As shown, the hole type is an embedded mounting hole. If the hole diameter is 15 mm, the hole diameter is increased by 1 mm when the hole is drawn in the hole drawing.

[0070] S205. Adjust the mounting hole diameter according to the hole diameter adjustment information corresponding to the mounting hole diameter to obtain the hole size.

[0071] Specifically, different types of holes have different installation hole diameters. The installation hole diameter is adjusted according to the hole diameter adjustment information corresponding to the installation hole diameter to obtain the hole size, and the adjusted hole size is drawn in the hole drawing.

[0072] In one example, the hole type is an embedded mounting hole. If the hole diameter is 15 mm and the hole diameter adjustment information is 1, when drawing the hole in the hole drawing, the hole diameter is increased by 1 mm, the hole diameter is adjusted to 16 mm, and the hole diameter size is 16 mm.

[0073] S206. Generate the opening diagram of the switch cabinet, and draw the holes to be processed at the opening positions corresponding to the relative positional relationship. The shape of the holes to be processed corresponds to the hole type and hole size.

[0074] In this embodiment of the invention, the hole type, mounting hole diameter, and hole diameter adjustment information corresponding to at least one hole for the component are determined by the type of the component. The mounting hole diameter is adjusted to obtain the hole size. Adaptive adjustments are made for different types of holes, which can avoid component installation failure caused by processing errors and improve the accuracy of switch cabinet opening diagram generation.

[0075] Optionally, based on the hole type, determine the hole diameter adjustment information corresponding to the installation hole diameter, including: obtaining at least one hole diameter range corresponding to the hole type; querying the hole diameter range where the installation hole diameter is located within each hole diameter range; and determining the hole diameter adjustment information corresponding to the installation hole diameter based on the hole diameter range where the installation hole diameter is located.

[0076] The aperture range can be the diameter range of the hole.

[0077] Specifically, users can preset aperture adjustment information based on prior industry knowledge, obtain the aperture corresponding to the hole type, query the aperture range where the installation aperture is located within each aperture range, and determine the aperture adjustment information corresponding to the installation aperture based on the aperture range where the installation aperture is located.

[0078] In one example, such as Figure 3 As shown, the hole type is an embedded mounting hole. If the hole diameter is 15 mm, in the range [15, 25) with an upper limit of 15 and a lower limit of 25, the hole diameter increases, i.e., the hole diameter adjustment information is 1. When drawing the hole in the hole drawing, the hole diameter is increased by 1 mm.

[0079] By obtaining at least one aperture range corresponding to the hole type, the aperture adjustment information corresponding to the installation aperture can be determined, avoiding processing errors that may cause the corresponding installation aperture size of the component to be unable to be installed, avoiding the need to redraw the opening diagram, and improving the efficiency of opening diagram generation for switch cabinets.

[0080] Optionally, the hole type includes: bolt mounting hole; the hole diameter adjustment information includes the actual hole diameter; based on the hole diameter range where the mounting hole diameter is located, determine the hole diameter adjustment information corresponding to the mounting hole diameter, including: obtaining the hole processing technology; based on the hole diameter range where the mounting hole diameter is located and the hole processing technology, determine the hole diameter adjustment information corresponding to the mounting hole diameter; adjust the mounting hole diameter according to the hole diameter adjustment information corresponding to the mounting hole diameter to obtain the hole size, including: determining the actual hole diameter corresponding to the mounting hole diameter as the hole size.

[0081] The processing technology can be the method of processing the hole. For example, the processing technology can be hole enlargement and tapping, riveting, or press riveting.

[0082] Specifically, the hole processing technology is obtained; based on the hole diameter range and hole processing technology, the hole diameter adjustment information corresponding to the installation hole diameter is determined, and the actual hole diameter corresponding to the installation hole diameter is determined as the hole size.

[0083] In one example, the hole machining process is obtained as reaming and tapping; based on the hole diameter range of [0,5), the actual hole diameter corresponding to the installation hole diameter is determined to be 3.2 mm, which is then used as the hole size drawn in the hole-opening diagram, such as... Figure 4 The diagram shown is a schematic of an opening.

[0084] By acquiring the hole processing technology, and based on the hole diameter range and hole processing technology, the actual hole diameter corresponding to the installation hole diameter is determined as the hole size. Adaptive adjustments to the hole are made for different processing technologies, thereby improving the flexibility of generating switchgear opening diagrams.

[0085] Optionally, the hole type includes: embedded mounting hole or wire groove mounting hole; the hole diameter adjustment information includes the hole diameter increase; the mounting hole diameter is adjusted according to the hole diameter adjustment information corresponding to the mounting hole diameter to obtain the hole size, including: increasing the hole diameter corresponding to the mounting hole diameter by the hole diameter increase amount to obtain the hole size.

[0086] Among them, recessed mounting holes can be the holes required to embed components inside the mounting panel. Wire trough mounting holes can be the holes of the required size to complete wire trough installation.

[0087] Specifically, the hole size is obtained by adding the corresponding increase in hole diameter to the mounting hole diameter. If the hole type is an embedded mounting hole, it can be determined whether it is a round or square embedded mounting hole based on the type of component. If the hole type is a wire groove mounting hole, the hole shape is always circular.

[0088] In one example, the hole type is an embedded mounting hole with a mounting hole diameter of 25 mm. The hole diameter adjustment information is a hole diameter increase of 1.5 mm. By increasing the mounting hole diameter by the corresponding hole diameter increase, the hole size becomes 26.5 mm.

[0089] By using hole types, including embedded mounting holes or wire groove mounting holes, the hole size is obtained by increasing the hole diameter by the corresponding increase amount. This increases the hole diameter for different hole types to avoid installation failure due to the material around the hole increasing in volume due to compression.

[0090] Optionally, the hole type includes: micro-fracture type operating hole; the hole diameter adjustment information includes the hole diameter increase amount; the installation hole diameter is adjusted according to the hole diameter adjustment information corresponding to the installation hole diameter to obtain the hole size, including: increasing the hole diameter corresponding to the installation hole diameter in the installation hole diameter to obtain the hole size.

[0091] Among them, the micro-circuit breaker type operating hole can be a hole for installing a micro-circuit breaker, and the hole is usually rectangular.

[0092] Specifically, due to processing errors, the hole size may be unsuitable when installing miniature circuit breakers. The hole diameter adjustment information is obtained, the increase in hole length and width is obtained, and the installation hole diameter is adjusted according to the hole diameter adjustment information corresponding to the installation hole diameter to obtain the hole size.

[0093] In one example, the hole of the miniature circuit breaker is 47 mm long and 13 mm wide. According to the hole diameter adjustment information, the hole diameter is increased by 1 mm on each side. The installation hole diameter is adjusted according to the hole diameter adjustment information corresponding to the installation hole diameter, resulting in a hole size of 48 mm long and 14 mm wide.

[0094] By increasing the corresponding increase in the mounting hole diameter of the miniature circuit breaker operating hole, the hole size is obtained, avoiding the problem of unsuitable installation size of miniature circuit breakers and improving the accuracy of switchgear opening diagram generation.

[0095] Example 3

[0096] Figure 5 This is a schematic diagram of a switchgear opening diagram generation device provided in Embodiment 3 of the present invention. This embodiment of the present invention is applicable to the generation of switchgear opening diagrams. The device can execute a switchgear opening diagram generation method. The device can be implemented in hardware and / or software, and can be configured in a switchgear opening diagram generation device.

[0097] See Figure 5 The switchgear opening diagram generation device shown includes: a relationship acquisition module 501, a type acquisition module 502, a size determination module 503, and a hole drawing module 504, wherein...

[0098] The relationship acquisition module 501 is used to acquire the relative positional relationship between the mounting panel of the component to be installed and the component to be installed in the switch cabinet.

[0099] Type acquisition module 502 is used to acquire the type of components;

[0100] The size determination module 503 is used to determine the hole type and hole size according to the type of component;

[0101] The hole drawing module 504 is used to generate the opening diagram of the switch cabinet and draw the hole to be processed at the opening position corresponding to the relative position relationship. The graphic of the hole to be processed corresponds to the hole type and hole size.

[0102] The technical solution of this invention obtains the relative positional relationship between the mounting panel of the component to be installed in the switch cabinet and the component to be installed, obtains the type of component, determines the hole type and hole size, generates the opening diagram of the switch cabinet, and draws the hole to be processed at the opening position corresponding to the relative positional relationship. The opening diagram can be generated according to the type of component, hole type and hole size, eliminating the need for manual drawing of the opening diagram, greatly saving human resources and improving the efficiency of opening diagram generation for switch cabinets.

[0103] Optionally, the size determination module 503 includes:

[0104] The hole determination unit is used to determine the hole type and mounting hole diameter of at least one hole corresponding to a component based on the type of the component.

[0105] The information determination unit is used to determine the hole diameter adjustment information corresponding to the installation hole diameter based on the hole type;

[0106] The aperture adjustment unit is used to adjust the mounting aperture according to the aperture adjustment information corresponding to the mounting aperture to obtain the hole size.

[0107] Optionally, the information determination unit includes:

[0108] The range acquisition subunit is used to acquire at least one aperture range corresponding to the aperture type;

[0109] The range query subunit is used to query the range of apertures where the installation aperture is located within each aperture range;

[0110] The information adjustment subunit is used to determine the hole diameter adjustment information corresponding to the installation hole diameter based on the hole diameter range in which the installation hole diameter is located.

[0111] Optionally, hole types include: bolt mounting holes; hole diameter adjustment information includes the actual hole diameter.

[0112] Optional, information adjustment subunit, specifically used for:

[0113] Obtain hole processing technology;

[0114] Based on the diameter range of the mounting hole and the hole processing technology, determine the corresponding hole diameter adjustment information.

[0115] Optional, aperture adjustment unit, specifically used for:

[0116] The actual hole diameter corresponding to the installation hole diameter is determined as the hole size.

[0117] Optionally, the hole type includes: recessed mounting hole or wire groove mounting hole; hole diameter adjustment information includes the hole diameter increase;

[0118] Optional, aperture adjustment unit, specifically used for:

[0119] The hole size is obtained by increasing the corresponding hole diameter by the mounting hole diameter.

[0120] Optionally, the hole type includes: micro-fracture type operating hole; the hole diameter adjustment information includes the hole diameter increase amount;

[0121] The aperture adjustment unit is specifically used for:

[0122] The hole size is obtained by increasing the corresponding hole diameter by the mounting hole diameter.

[0123] Optionally, the size determination module 503 includes:

[0124] The hole information determination unit is used to determine the hole type, mounting hole diameter, and hole distribution information of at least one hole corresponding to the component based on the type of the component.

[0125] At the opening positions corresponding to the relative positional relationships, draw the holes to be processed, including:

[0126] At the opening position corresponding to the relative position relationship, draw at least one hole to be processed, and the hole spacing and number of rows of each hole to be processed correspond to the hole distribution information.

[0127] The switchgear opening diagram generation device provided in this embodiment of the invention can execute the switchgear opening diagram generation method provided in any embodiment of the invention, and has the corresponding functional modules and beneficial effects of the method.

[0128] Example 4

[0129] Figure 6A schematic diagram of a switchgear opening diagram generation device 600, which can be used to implement embodiments of the present invention, is shown. The switchgear opening diagram generation device is intended to represent various forms of digital computers, such as laptop computers, desktop computers, workbenches, personal digital assistants, servers, blade servers, mainframe computers, and other suitable computers. The switchgear opening diagram generation device can also represent various forms of mobile devices, such as personal digital processors, cellular phones, smartphones, wearable devices (such as helmets, glasses, watches, etc.), and other similar computing devices. The components shown herein, their connections and relationships, and their functions are merely illustrative and are not intended to limit the implementation of the invention described and / or claimed herein.

[0130] like Figure 6 As shown, the switchgear opening pattern generation device 600 includes at least one processor 601 and a memory, such as a read-only memory (ROM) 602 or a random access memory (RAM) 603, communicatively connected to the at least one processor 601. The memory stores computer programs executable by the at least one processor. The processor 601 can perform various appropriate actions and processes based on the computer program stored in the ROM 602 or loaded into the RAM 603 from storage unit 608. The RAM 603 can also store various programs and data required for the operation of the switchgear opening pattern generation device 600. The processor 601, ROM 602, and RAM 603 are interconnected via a bus 604. An input / output (I / O) interface 605 is also connected to the bus 604.

[0131] Multiple components in the switchgear opening diagram generation device 600 are connected to the I / O interface 605, including: an input unit 606, such as a keyboard, mouse, etc.; an output unit 607, such as various types of displays, speakers, etc.; a storage unit 608, such as a disk, optical disk, etc.; and a communication unit 609, such as a network card, modem, wireless transceiver, etc. The communication unit 609 allows the switchgear opening diagram generation device 600 to exchange information / data with other devices through computer networks such as the Internet and / or various telecommunications networks.

[0132] Processor 601 can be a variety of general-purpose and / or special-purpose processing components with processing and computing capabilities. Some examples of processor 601 include, but are not limited to, a central processing unit (CPU), a graphics processing unit (GPU), various special-purpose artificial intelligence (AI) computing chips, various processors running machine learning model algorithms, a digital signal processor (DSP), and any suitable processor, controller, microcontroller, etc. Processor 601 performs the various methods and processes described above, such as the switch cabinet opening pattern generation method.

[0133] In some embodiments, the switchgear opening diagram generation method may be implemented as a computer program tangibly contained in a computer-readable storage medium, such as storage unit 608. In some embodiments, part or all of the computer program may be loaded and / or installed on the switchgear opening diagram generation device 600 via ROM 602 and / or communication unit 609. When the computer program is loaded into RAM 603 and executed by processor 601, one or more steps of the switchgear opening diagram generation method described above may be performed. Alternatively, in other embodiments, processor 601 may be configured to perform the switchgear opening diagram generation method by any other suitable means (e.g., by means of firmware).

[0134] Various embodiments of the systems and techniques described above herein can be implemented in digital electronic circuit systems, integrated circuit systems, field-programmable gate arrays (FPGAs), application-specific integrated circuits (ASICs), application-specific standard products (ASSPs), systems-on-a-chip (SoCs), complex programmable logic devices (CPLDs), computer hardware, firmware, software, and / or combinations thereof. These various embodiments may include implementations in one or more computer programs that can be executed and / or interpreted on a programmable system including at least one programmable processor, which may be a dedicated or general-purpose programmable processor, capable of receiving data and instructions from a storage system, at least one input device, and at least one output device, and transmitting data and instructions to the storage system, the at least one input device, and the at least one output device.

[0135] Computer programs used to implement the methods of the present invention may be written in any combination of one or more programming languages. These computer programs may be provided to a processor of a general-purpose computer, a special-purpose computer, or other programmable data processing device, such that when executed by the processor, the computer programs cause the functions / operations specified in the flowcharts and / or block diagrams to be performed. The computer programs may be executed entirely on a machine, partially on a machine, or as a standalone software package, partially on a machine and partially on a remote machine, or entirely on a remote machine or server.

[0136] In the context of this invention, a computer-readable storage medium can be a tangible medium that may contain or store a computer program for use by or in conjunction with an instruction execution system, apparatus, or device. A computer-readable storage medium may include, but is not limited to, electronic, magnetic, optical, electromagnetic, infrared, or semiconductor systems, apparatus, or devices, or any suitable combination thereof. Alternatively, a computer-readable storage medium may be a machine-readable signal medium. More specific examples of machine-readable storage media include electrical connections based on one or more wires, portable computer disks, hard disks, random access memory (RAM), read-only memory (ROM), erasable programmable read-only memory (EPROM or flash memory), optical fibers, portable compact disk read-only memory (CD-ROM), optical storage devices, magnetic storage devices, or any suitable combination thereof.

[0137] To provide user interaction, the systems and techniques described herein can be implemented on a switchgear opening diagram generation device. This electronic device includes: a display device (e.g., a CRT (cathode ray tube) or LCD (liquid crystal display) monitor) for displaying information to the user; and a keyboard and pointing device (e.g., a mouse or trackball) through which the user provides input to the switchgear opening diagram generation device. Other types of devices can also be used to provide user interaction; for example, feedback provided to the user can be any form of sensory feedback (e.g., visual feedback, auditory feedback, or tactile feedback); and input from the user can be received in any form (including sound input, voice input, or tactile input).

[0138] The systems and technologies described herein can be implemented in computing systems that include backend components (e.g., as data servers), or computing systems that include middleware components (e.g., application servers), or computing systems that include frontend components (e.g., user computers with graphical user interfaces or web browsers through which users can interact with implementations of the systems and technologies described herein), or any combination of such backend, middleware, or frontend components. The components of the system can be interconnected via digital data communication of any form or medium (e.g., communication networks). Examples of communication networks include local area networks (LANs), wide area networks (WANs), blockchain networks, and the Internet.

[0139] A computing system can include clients and servers. Clients and servers are generally geographically separated and typically interact via communication networks. The client-server relationship is established by computer programs running on the respective computers and having a client-server relationship with each other. The server can be a cloud server, also known as a cloud computing server or cloud host, which is a hosting product within the cloud computing service system. It addresses the shortcomings of traditional physical hosts and VPS (Virtual Private Server) services, such as high management difficulty and weak business scalability.

[0140] It should be understood that the various forms of processes shown above can be used, with steps reordered, added, or deleted. For example, the steps described in this invention can be executed in parallel, sequentially, or in different orders, as long as the desired result of the technical solution of this invention can be achieved, and this is not limited herein.

[0141] The specific embodiments described above do not constitute a limitation on the scope of protection of this invention. Those skilled in the art should understand that various modifications, combinations, sub-combinations, and substitutions can be made according to design requirements and other factors. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of this invention should be included within the scope of protection of this invention.

Claims

1. A method for generating a switchgear opening diagram, characterized in that, The method includes: Obtain the relative positional relationship between the mounting panel of the component to be installed and the component to be installed in the switch cabinet; Obtain the type of the component; The hole type and hole size are determined according to the type of the component; Generate the opening diagram of the switch cabinet, and draw the holes to be processed at the opening positions corresponding to the relative positional relationship. The shape of the holes to be processed corresponds to the hole type and the hole size. Determining the hole type and hole size based on the type of the component includes: Based on the type of the component, determine the hole type and mounting hole diameter of at least one hole corresponding to the component; Based on the hole type, determine the hole diameter adjustment information corresponding to the mounting hole diameter; The mounting hole diameter is adjusted according to the hole diameter adjustment information corresponding to the mounting hole diameter to obtain the hole size; The step of determining the hole diameter adjustment information corresponding to the mounting hole diameter based on the hole type includes: Obtain at least one aperture range corresponding to the aperture type; Within each of the aforementioned aperture ranges, query the aperture range in which the mounting aperture is located; Based on the range of mounting holes, determine the hole diameter adjustment information corresponding to the mounting hole diameter; The hole type includes: bolt mounting holes; the hole diameter adjustment information includes the actual hole diameter; The step of determining the aperture adjustment information corresponding to the mounting aperture based on the aperture range in which the mounting aperture is located includes: Obtain hole processing technology; Based on the hole diameter range where the mounting hole diameter is located and the hole processing technology, determine the hole diameter adjustment information corresponding to the mounting hole diameter; The step of adjusting the mounting hole diameter according to the hole diameter adjustment information corresponding to the mounting hole diameter to obtain the hole size includes: The actual hole diameter corresponding to the aforementioned mounting hole diameter is determined as the hole size; The hole types include: embedded mounting holes or wire groove mounting holes; the hole diameter adjustment information includes the hole diameter increase amount; The step of adjusting the mounting hole diameter according to the hole diameter adjustment information corresponding to the mounting hole diameter to obtain the hole size includes: The hole size is obtained by increasing the corresponding hole diameter by the mounting hole diameter.

2. The method according to claim 1, characterized in that, The hole type includes: micro-fracture type operating hole; the hole diameter adjustment information includes the hole diameter increase amount; The step of adjusting the mounting hole diameter according to the hole diameter adjustment information corresponding to the mounting hole diameter to obtain the hole size includes: The hole size is obtained by increasing the corresponding hole diameter by the mounting hole diameter.

3. The method according to claim 1, characterized in that, The step of determining the hole type and mounting hole diameter of at least one hole corresponding to the component based on the type of the component includes: Based on the type of the component, determine the hole type, mounting hole diameter, and hole distribution information of at least one hole corresponding to the component; The step of drawing the hole to be processed at the opening position corresponding to the relative positional relationship includes: At the opening position corresponding to the relative positional relationship, at least one hole to be processed is drawn, and the hole spacing and row number of each hole to be processed correspond to the hole distribution information.

4. A device for generating opening diagrams for switchgear, characterized in that, The switchgear opening diagram generation device, applicable to the method for generating opening diagrams of switchgear according to any one of claims 1-3, comprises: The relationship acquisition module is used to acquire the relative positional relationship between the mounting panel of the component to be installed and the component to be installed in the switch cabinet. A type acquisition module is used to acquire the type of the component; A size determination module is used to determine the hole type and hole size based on the type of the component; The hole drawing module is used to generate the opening diagram of the switch cabinet and draw the hole to be processed at the opening position corresponding to the relative position relationship. The shape of the hole to be processed corresponds to the hole type and the hole size.

5. A switchgear opening diagram generation device, characterized in that, The switchgear opening diagram generation device includes: At least one processor; and A memory communicatively connected to the at least one processor; wherein, The memory stores a computer program that can be executed by the at least one processor, the computer program being executed by the at least one processor to enable the at least one processor to perform the switch cabinet opening diagram generation method according to any one of claims 1-3.

6. A computer-readable storage medium, characterized in that, The computer-readable storage medium stores computer instructions that, when executed by a processor, implement the switch cabinet opening diagram generation method according to any one of claims 1-3.

Citation Information

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