Method, device and system for generating electrical equipment layout plan for nuclear power plant

By obtaining the logical model of electrical equipment attribute requirements and factory modeling information, and generating and verifying the layout plan of electrical equipment, the problem of incommunication between two-dimensional and three-dimensional platform information is solved, and efficient generation and consistency of the layout plan of electrical equipment is achieved.

CN116029034BActive Publication Date: 2025-09-02CHINA NUCLEAR POWER TECH RES INST CO LTD +2
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Patent Information

Application Number
CN202310085422.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-01-16
Publication Date
2025-09-02
Estimated Expiration
2043-01-16

AI Technical Summary

Technical Problem

The information of the traditional two-dimensional electrical platform and the three-dimensional layout platform cannot be communicated interoperable, resulting in the inefficient layout of electrical equipment and the inefficient transmission of changes and information, which can easily lead to the inconsistency between the two-dimensional and three-dimensional platforms.

Method used

By obtaining the logical model of electrical equipment attribute requirements and factory modeling information, generate the appearance size, specification selection and quantity information of electrical equipment, establish a vectorized parameter model, determine the layout position and cable connection relationship, generate and verify the layout plan of the electrical equipment, and realize efficient interaction between two-dimensional and three-dimensional platforms.

Benefits of technology

It realizes efficient generation of electrical equipment layout plans, improves the timeliness and accuracy of information transmission, and ensures consistency between two-dimensional and three-dimensional platforms.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The present application relates to a method, device, system, computer equipment, storage medium, and computer program product for generating an electrical equipment layout plan for a nuclear power plant. The method comprises: obtaining a logical model of electrical equipment attribute requirements and modeling information of the plant where the electrical equipment is located; obtaining the appearance and size information of the electrical equipment, the specification selection information of the electrical equipment, and the quantity information of the electrical equipment based on the logical model of electrical equipment attribute requirements and the modeling information of the plant where the electrical equipment is located; establishing a vectorized parameter model of the electrical equipment; arranging the electrical equipment to obtain the layout position information of the electrical equipment and the cable connection relationship between the electrical equipment; generating an electrical equipment layout plan; and sending the electrical equipment layout plan to a two-dimensional electrical platform, which verifies the electrical equipment layout plan and generates a final electrical equipment layout plan. This method can efficiently generate an electrical equipment layout plan.
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Description

Technical Field

[0001] The present application relates to the field of electrical technology, and in particular to a method, device, system, computer equipment, storage medium, and computer program product for generating an electrical equipment layout plan for a nuclear power plant. Background Art

[0002] With the development of Internet of Things technology, the layout of electrical equipment in nuclear power plants has also become a topic of great concern. It can place electrical equipment in appropriate locations to avoid safety accidents caused by improper layout.

[0003] Traditionally, electrical equipment layout has typically been accomplished through a collaborative approach using a 2D electrical platform and a 3D layout platform. The 2D electrical platform is used for electrical equipment design, while the 3D layout platform is used for electrical equipment placement. However, these platforms operate on separate platforms, preventing information from being transferred or exchanged. After designing electrical equipment on the 2D electrical platform, 2D system design engineers must transfer this information to 3D layout design engineers, creating a complex and labor-intensive process. Furthermore, since these two platforms are independent, changes to the designed electrical system on the 2D electrical platform cannot be promptly transferred to the 3D layout platform, leading to inconsistencies between the two platforms. Consequently, traditional electrical equipment layout methods are inefficient. Summary of the Invention

[0004] Based on this, it is necessary to provide a method, device, system, computer equipment, computer-readable storage medium and computer program product for generating an electrical equipment layout plan for a nuclear power plant that can efficiently generate an electrical equipment layout plan to address the above technical problems.

[0005] In a first aspect, the present application provides a method for generating an electrical equipment layout plan for a nuclear power plant. The method comprises:

[0006] Obtaining a logical model of electrical equipment attribute requirements and modeling information of the plant where the electrical equipment is located, wherein the logical model of electrical equipment attribute requirements is generated by electrical calculations performed by a two-dimensional electrical platform based on power load information;

[0007] According to the electrical equipment attribute requirement logic model and the plant modeling information where the electrical equipment is located, obtaining the appearance and size information of the electrical equipment, the specification selection information of the electrical equipment, and the quantity information of the electrical equipment;

[0008] Establishing a vectorized parameter model of the electrical equipment based on the appearance and size information of the electrical equipment and the specification selection information of the electrical equipment;

[0009] Arrange the electrical equipment according to the vectorized parameter model of the electrical equipment, the modeling information of the plant where the electrical equipment is located, and the quantity information of the electrical equipment, and obtain the layout position information of the electrical equipment and the cable connection relationship between the electrical equipment;

[0010] generating an electrical equipment layout plan based on the vectorized parameter model of the electrical equipment, modeling information of the plant where the electrical equipment is located, layout location information of the electrical equipment, quantity information of the electrical equipment, and cable connection relationships between the electrical equipment;

[0011] The electrical equipment layout plan is sent to the two-dimensional electrical platform, and the two-dimensional electrical platform verifies the electrical equipment layout plan to generate a final electrical equipment layout plan.

[0012] In one embodiment, obtaining the electrical equipment attribute requirement logic model and the modeling information of the plant where the electrical equipment is located includes:

[0013] Obtain the electrical equipment attribute requirement logic model, the electrical equipment building category attributes, and building size information;

[0014] According to the category attribute of the plant where the electrical equipment is located and the size information of the plant, modeling information of the plant where the electrical equipment is located is obtained.

[0015] In one embodiment, obtaining the appearance and size information of the electrical equipment, the specification selection information of the electrical equipment, and the quantity information of the electrical equipment based on the electrical equipment attribute requirement logic model and the plant modeling information where the electrical equipment is located includes:

[0016] According to the electrical equipment attribute requirement logic model, obtaining electrical equipment operation attribute requirement parameters and electrical equipment appearance size requirement parameters;

[0017] Determining the appearance and size information of the electrical equipment according to the appearance and size requirement parameters of the electrical equipment;

[0018] Obtaining target output quantities of the electrical equipment in the plant based on the plant modeling information of the electrical equipment;

[0019] According to the electrical equipment operation attribute requirement parameters and the output target quantity of the electrical equipment in the factory, the specification selection information of the electrical equipment and the quantity information of the electrical equipment are obtained.

[0020] In one embodiment, obtaining the target output quantity of the electrical equipment in the plant based on the plant modeling information where the electrical equipment is located includes:

[0021] Obtaining the type attribute of the plant where the electrical equipment is located based on the modeling information of the plant where the electrical equipment is located;

[0022] According to the type attribute of the plant where the electrical equipment is located, the output target quantity of the electrical equipment in the plant is obtained.

[0023] In one embodiment, arranging the electrical equipment according to the vectorized parameter model of the electrical equipment, the modeling information of the plant where the electrical equipment is located, and the quantity information of the electrical equipment to obtain the arrangement position information of the electrical equipment and the cable connection relationship between the electrical equipment includes:

[0024] Obtaining plant size information based on plant modeling information where the electrical equipment is located;

[0025] Arrange the electrical equipment according to the vectorized parameter model of the electrical equipment, the plant size information, and the quantity information of the electrical equipment to obtain arrangement position information of the electrical equipment;

[0026] The cable connection relationship between the electrical devices is obtained based on the layout position information of the electrical devices.

[0027] In one embodiment, the sending of the electrical equipment layout plan to the two-dimensional electrical platform, and the two-dimensional electrical platform verifying the electrical equipment layout plan to generate a final electrical equipment layout plan includes:

[0028] Sending the electrical equipment layout plan to the two-dimensional electrical platform, and having the two-dimensional electrical platform verify the electrical equipment layout plan and generate a verification result;

[0029] receiving an updated electrical equipment attribute requirement logic model, wherein the updated electrical equipment attribute requirement logic model is generated by the two-dimensional electrical platform according to the verification result when the verification result is abnormal;

[0030] updating the electrical equipment layout plan according to the updated electrical equipment attribute requirement logic model;

[0031] Return to the step of sending the electrical equipment layout plan to the two-dimensional electrical platform, and having the two-dimensional electrical platform verify the electrical equipment layout plan to generate a verification result. When the verification result is normal, the final electrical equipment layout plan is obtained.

[0032] In a second aspect, the present application also provides a device for generating a layout plan for electrical equipment in a nuclear power plant. The device comprises:

[0033] A data acquisition module is used to obtain a logical model of electrical equipment attribute requirements and modeling information of the plant where the electrical equipment is located. The logical model of electrical equipment attribute requirements is generated by electrical calculations performed by a two-dimensional electrical platform based on power load information;

[0034] An equipment selection module is used to obtain the appearance and size information of the electrical equipment, the specification selection information of the electrical equipment, and the quantity information of the electrical equipment according to the electrical equipment attribute requirement logic model and the plant modeling information where the electrical equipment is located;

[0035] A model building module, configured to build a vectorized parameter model of the electrical equipment based on the appearance and size information of the electrical equipment and the specification selection information of the electrical equipment;

[0036] a layout design module, configured to arrange the electrical equipment according to the vectorized parameter model of the electrical equipment, the modeling information of the plant where the electrical equipment is located, and the quantity information of the electrical equipment, and obtain the layout position information of the electrical equipment and the cable connection relationship between the electrical equipment;

[0037] a scheme generating module, configured to generate an electrical equipment layout scheme based on a vectorized parameter model of the electrical equipment, modeling information of a plant where the electrical equipment is located, layout location information of the electrical equipment, quantity information of the electrical equipment, and cable connection relationships between the electrical equipment;

[0038] The scheme verification module is used to send the electrical equipment layout scheme to the two-dimensional electrical platform, and the two-dimensional electrical platform verifies the electrical equipment layout scheme to generate a final electrical equipment layout scheme.

[0039] In a third aspect, the present application also provides a system for generating a layout plan for electrical equipment in a nuclear power plant. The system includes:

[0040] The two-dimensional electrical platform performs electrical calculations based on the power load information to generate a logical model of electrical equipment attribute requirements, and sends the logical model of electrical equipment attribute requirements to the three-dimensional layout platform;

[0041] The three-dimensional layout platform receives the electrical equipment attribute requirement logic model sent by the two-dimensional electrical platform, and obtains the plant modeling information where the electrical equipment is located;

[0042] The three-dimensional layout platform obtains the appearance and size information of the electrical equipment, the specification selection information of the electrical equipment, and the quantity information of the electrical equipment according to the electrical equipment attribute requirement logic model and the plant modeling information where the electrical equipment is located;

[0043] The three-dimensional layout platform establishes a vectorized parameter model of the electrical equipment based on the appearance size information of the electrical equipment and the specification selection information of the electrical equipment;

[0044] The three-dimensional layout platform arranges the electrical equipment according to the vectorized parameter model of the electrical equipment, the modeling information of the plant where the electrical equipment is located, and the quantity information of the electrical equipment, and obtains the layout position information of the electrical equipment and the cable connection relationship between the electrical equipment;

[0045] The three-dimensional layout platform generates an electrical equipment layout plan based on the vectorized parameter model of the electrical equipment, the modeling information of the plant where the electrical equipment is located, the layout location information of the electrical equipment, the quantity information of the electrical equipment, and the cable connection relationship between the electrical equipment;

[0046] The three-dimensional layout platform sends the electrical equipment layout plan to the two-dimensional electrical platform;

[0047] The two-dimensional electrical platform verifies the electrical equipment layout plan and generates a final electrical equipment layout plan.

[0048] In a fourth aspect, the present application further provides a computer device. The computer device includes a memory and a processor, wherein the memory stores a computer program, and when the processor executes the computer program, the following steps are implemented:

[0049] Obtaining a logical model of electrical equipment attribute requirements and modeling information of the plant where the electrical equipment is located, wherein the logical model of electrical equipment attribute requirements is generated by electrical calculations performed by a two-dimensional electrical platform based on power load information;

[0050] According to the electrical equipment attribute requirement logic model and the plant modeling information where the electrical equipment is located, obtaining the appearance and size information of the electrical equipment, the specification selection information of the electrical equipment, and the quantity information of the electrical equipment;

[0051] Establishing a vectorized parameter model of the electrical equipment based on the appearance and size information of the electrical equipment and the specification selection information of the electrical equipment;

[0052] Arrange the electrical equipment according to the vectorized parameter model of the electrical equipment, the modeling information of the plant where the electrical equipment is located, and the quantity information of the electrical equipment, and obtain the layout position information of the electrical equipment and the cable connection relationship between the electrical equipment;

[0053] generating an electrical equipment layout plan based on the vectorized parameter model of the electrical equipment, modeling information of the plant where the electrical equipment is located, layout location information of the electrical equipment, quantity information of the electrical equipment, and cable connection relationships between the electrical equipment;

[0054] The electrical equipment layout plan is sent to the two-dimensional electrical platform, and the two-dimensional electrical platform verifies the electrical equipment layout plan to generate a final electrical equipment layout plan.

[0055] In a fifth aspect, the present application further provides a computer-readable storage medium having a computer program stored thereon, which, when executed by a processor, implements the following steps:

[0056] Obtaining a logical model of electrical equipment attribute requirements and modeling information of the plant where the electrical equipment is located, wherein the logical model of electrical equipment attribute requirements is generated by electrical calculations performed by a two-dimensional electrical platform based on power load information;

[0057] According to the electrical equipment attribute requirement logic model and the plant modeling information where the electrical equipment is located, obtaining the appearance and size information of the electrical equipment, the specification selection information of the electrical equipment, and the quantity information of the electrical equipment;

[0058] Establishing a vectorized parameter model of the electrical equipment based on the appearance and size information of the electrical equipment and the specification selection information of the electrical equipment;

[0059] Arrange the electrical equipment according to the vectorized parameter model of the electrical equipment, the modeling information of the plant where the electrical equipment is located, and the quantity information of the electrical equipment, and obtain the layout position information of the electrical equipment and the cable connection relationship between the electrical equipment;

[0060] generating an electrical equipment layout plan based on the vectorized parameter model of the electrical equipment, modeling information of the plant where the electrical equipment is located, layout location information of the electrical equipment, quantity information of the electrical equipment, and cable connection relationships between the electrical equipment;

[0061] The electrical equipment layout plan is sent to the two-dimensional electrical platform, and the two-dimensional electrical platform verifies the electrical equipment layout plan to generate a final electrical equipment layout plan.

[0062] In a sixth aspect, the present application further provides a computer program product. The computer program product includes a computer program that, when executed by a processor, implements the following steps:

[0063] Obtaining a logical model of electrical equipment attribute requirements and modeling information of the plant where the electrical equipment is located, wherein the logical model of electrical equipment attribute requirements is generated by electrical calculations performed by a two-dimensional electrical platform based on power load information;

[0064] According to the electrical equipment attribute requirement logic model and the plant modeling information where the electrical equipment is located, obtaining the appearance and size information of the electrical equipment, the specification selection information of the electrical equipment, and the quantity information of the electrical equipment;

[0065] Establishing a vectorized parameter model of the electrical equipment based on the appearance and size information of the electrical equipment and the specification selection information of the electrical equipment;

[0066] Arrange the electrical equipment according to the vectorized parameter model of the electrical equipment, the modeling information of the plant where the electrical equipment is located, and the quantity information of the electrical equipment, and obtain the layout position information of the electrical equipment and the cable connection relationship between the electrical equipment;

[0067] generating an electrical equipment layout plan based on the vectorized parameter model of the electrical equipment, modeling information of the plant where the electrical equipment is located, layout location information of the electrical equipment, quantity information of the electrical equipment, and cable connection relationships between the electrical equipment;

[0068] The electrical equipment layout plan is sent to the two-dimensional electrical platform, and the two-dimensional electrical platform verifies the electrical equipment layout plan to generate a final electrical equipment layout plan.

[0069] The above-mentioned method, device, system, computer equipment, storage medium and computer program product for generating an electrical equipment layout plan for a nuclear power plant obtain a logical model of electrical equipment attribute requirements and modeling information of the plant where the electrical equipment is located, wherein the logical model of electrical equipment attribute requirements is generated by a two-dimensional electrical platform through electrical calculation based on power load information; the appearance and size information of the electrical equipment, the specification selection information of the electrical equipment and the quantity information of the electrical equipment are obtained based on the logical model of electrical equipment attribute requirements and the modeling information of the plant where the electrical equipment is located; a vectorized parameter model of the electrical equipment is established based on the appearance and size information of the electrical equipment and the specification selection information of the electrical equipment; the electrical equipment is arranged based on the vectorized parameter model of the electrical equipment, the modeling information of the plant where the electrical equipment is located, and the quantity information of the electrical equipment to obtain the layout position information of the electrical equipment and the cable connection relationship between the electrical equipment; an electrical equipment layout plan is generated based on the vectorized parameter model of the electrical equipment, the modeling information of the plant where the electrical equipment is located, the layout position information of the electrical equipment, the quantity information of the electrical equipment and the cable connection relationship between the electrical equipment; the electrical equipment layout plan is sent to the two-dimensional electrical platform, which verifies the electrical equipment layout plan and generates a final electrical equipment layout plan. During this process, the 2D electrical platform sends the electrical equipment attribute requirement logic model to the 3D layout platform. The 3D layout platform generates an electrical equipment layout plan and sends the electrical equipment layout plan to the 2D electrical platform. The 2D electrical platform verifies the electrical equipment layout plan and generates the final electrical equipment layout plan. The efficient interaction between the 2D electrical platform and the 3D layout platform enables the efficient generation of electrical equipment layout plans. BRIEF DESCRIPTION OF THE DRAWINGS

[0070] Figure 1An application environment diagram of a method for generating an electrical equipment layout plan for a nuclear power plant in one embodiment;

[0071] Figure 2 A schematic flow chart of a method for generating an electrical equipment layout plan for a nuclear power plant in one embodiment;

[0072] Figure 3 This is a front structural diagram of a lighting fixture in a specific application embodiment;

[0073] Figure 4 A schematic flow chart of a method for generating an electrical equipment layout plan for a nuclear power plant in another embodiment;

[0074] Figure 5 A schematic flow chart of a method for generating an electrical equipment layout plan for a nuclear power plant in another embodiment;

[0075] Figure 6 A structural block diagram of an apparatus for generating an electrical equipment layout plan for a nuclear power plant in one embodiment;

[0076] Figure 7 FIG. 1 is a diagram showing the internal structure of a computer device in one embodiment. DETAILED DESCRIPTION

[0077] In order to make the purpose, technical solutions and advantages of this application more clear, the following further describes this application in detail with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain this application and are not intended to limit this application.

[0078] The method for generating an electrical equipment layout plan for a nuclear power plant provided in the embodiment of the present application can be applied to Figure 1In the application environment shown. Among them, the two-dimensional electrical platform 102 communicates with the three-dimensional layout platform 104 through the network. The data storage system can store the data that the three-dimensional layout platform 104 needs to process. The data storage system can be integrated on the server of the three-dimensional layout platform 104, or it can be placed on the cloud or other network servers. First, the two-dimensional electrical platform 102 performs electrical calculations based on the power load information to generate a logical model of electrical equipment attribute requirements, and sends an electrical equipment layout plan generation request to the three-dimensional layout platform 104. The electrical equipment layout plan generation request carries the electrical equipment attribute requirement logical model and the modeling information of the plant where the electrical equipment is located; the three-dimensional layout platform 104 receives the electrical equipment layout plan generation request, extracts the electrical equipment attribute requirement logical model and the modeling information of the plant where the electrical equipment is located in the electrical equipment layout plan generation request; the three-dimensional layout platform 104 obtains the appearance size information of the electrical equipment, the specification selection information of the electrical equipment and the quantity information of the electrical equipment based on the electrical equipment attribute requirement logical model and the modeling information of the plant where the electrical equipment is located; according to the electrical equipment The three-dimensional layout platform 104 sends the electrical equipment layout plan to the two-dimensional electrical platform 102, which verifies the electrical equipment layout plan and generates a final electrical equipment layout plan.

[0079] In one embodiment, Figure 2 As shown, a method for generating a layout plan of electrical equipment in a nuclear power plant is provided. Figure 1 Taking the three-dimensional arrangement platform 104 in FIG. 1 as an example, the method includes the following steps:

[0080] S100, obtaining a logic model of electrical equipment attribute requirements and modeling information of a plant where the electrical equipment is located. The logic model of electrical equipment attribute requirements is generated by a two-dimensional electrical platform through electrical calculation based on power load information.

[0081] Among them, the electrical equipment attribute requirement logic model refers to the logical model established to meet the requirements of electrical equipment operation and electrical equipment appearance and size; the modeling information of the plant where the electrical equipment is located refers to the basic modeling information of the plant where the electrical equipment is required to be arranged, including appearance information and its own attribute information; the two-dimensional electrical platform refers to the software system used for electrical system design, which is independent of the three-dimensional layout platform; the power load refers to the total electric power drawn from the power system by the electrical equipment of the power user at a certain moment.

[0082] Specifically, the two-dimensional electrical platform performs electrical calculations based on the power load information to generate a logical model of electrical equipment attribute requirements, and sends an electrical equipment layout plan generation request to the three-dimensional layout platform. The electrical equipment layout plan generation request carries the logical model of electrical equipment attribute requirements and the modeling information of the plant where the electrical equipment is located; the three-dimensional layout platform receives the electrical equipment layout plan generation request and extracts the logical model of electrical equipment attribute requirements and the modeling information of the plant where the electrical equipment is located from the electrical equipment layout plan generation request.

[0083] Furthermore, the electrical equipment may include electrical cabinets, electrical load equipment, lighting fixtures, cables, etc.

[0084] S200 , obtaining appearance and size information of the electrical equipment, specification and selection information of the electrical equipment, and quantity information of the electrical equipment according to the electrical equipment attribute requirement logic model and the plant modeling information where the electrical equipment is located.

[0085] Specifically, after the three-dimensional layout platform extracts the electrical equipment attribute requirement logic model and the modeling information of the factory where the electrical equipment is located in the electrical equipment layout plan generation request, it can determine the electrical equipment's appearance size information, electrical equipment specification selection information, and electrical equipment quantity information in the factory based on the electrical equipment attribute requirement logic model and the modeling information of the factory where the electrical equipment is located.

[0086] S300: Establish a vector parameter model of the electrical equipment based on the appearance and size information of the electrical equipment and the specification selection information of the electrical equipment.

[0087] Among them, the vectorized parametric model refers to a model whose parameters such as length, width and height can be changed. Objects represented by vectors are easy to enlarge or compress without reducing their display quality in the three-dimensional layout platform. The scaling of vector images can maintain characteristics such as sharp corners and will not cause blurring that affects the display.

[0088] Specifically, the three-dimensional layout platform establishes a vector parameter model of the electrical equipment of this model based on the appearance and size information of the electrical equipment and the specification selection information of the electrical equipment. The vector parameter model can change the final model by changing the input parameters, that is, changing the appearance and size information of the electrical equipment.

[0089] Furthermore, taking an electrical cabinet as an example, the appearance size information of the electrical equipment can be the four dimensions of length, width, height, and depth, and the information of the four dimensions of length, width, height, and depth can be changed; taking a lighting fixture as an example, the front structure diagram of the lighting tool is as follows: Figure 3 As shown, the appearance dimension information of the lighting fixture includes two parameter variables, L1 and L, where L1 refers to the length of the middle light-emitting part of the lighting fixture, and L refers to the longest horizontal length of the lighting fixture as a whole.

[0090] S400 , arranging the electrical equipment according to the vectorized parameter model of the electrical equipment, the modeling information of the plant where the electrical equipment is located, and the quantity information of the electrical equipment, and obtaining the arrangement position information of the electrical equipment and the cable connection relationship between the electrical equipment.

[0091] Specifically, the 3D layout platform arranges electrical equipment in the factory based on the vectorized parameter model of the electrical equipment, the modeling information of the factory where the electrical equipment is located, and the number of electrical equipment. It can obtain the corresponding position of each electrical equipment in the factory and how the electrical equipment is connected to each other, that is, the layout position information of the electrical equipment and the cable connection relationship between the electrical equipment.

[0092] S500 , generating an electrical equipment layout plan based on a vectorized parameter model of the electrical equipment, modeling information of a plant where the electrical equipment is located, layout location information of the electrical equipment, quantity information of the electrical equipment, and cable connection relationships between the electrical equipment.

[0093] Specifically, the electrical equipment layout plan needs to include the dimensions and property information of the plant where the electrical equipment is located, namely, plant modeling information, to ensure that the plant where the electrical equipment is to be arranged is known. In addition, it also needs to include the vector parameter model of the electrical equipment itself, layout location information, and quantity information. Based on the quantity information of the electrical equipment, to generate the electrical equipment layout plan, the cable connection relationship between multiple electrical devices is also required. Therefore, the 3D layout platform can generate the electrical equipment layout plan based on the vector parameter model of the electrical equipment, the plant modeling information where the electrical equipment is located, the layout location information of the electrical equipment, the quantity information of the electrical equipment, and the cable connection relationship between the electrical equipment.

[0094] S600: Send the electrical equipment layout plan to the two-dimensional electrical platform, which verifies the electrical equipment layout plan and generates a final electrical equipment layout plan.

[0095] Specifically, the three-dimensional layout platform sends the electrical equipment layout plan to the two-dimensional electrical platform. The two-dimensional electrical platform receives the electrical equipment layout plan and performs subsequent electrical calculations to verify the electrical equipment layout plan and generate a final electrical equipment layout plan.

[0096] In the above-mentioned method for generating an electrical equipment layout plan, a logical model of electrical equipment attribute requirements and modeling information of the plant where the electrical equipment is located are obtained, and the logical model of electrical equipment attribute requirements is generated by the two-dimensional electrical platform through electrical calculation based on the power load information; the appearance size information of the electrical equipment, the specification selection information of the electrical equipment and the quantity information of the electrical equipment are obtained based on the logical model of electrical equipment attribute requirements and the modeling information of the plant where the electrical equipment is located; a vectorized parameter model of the electrical equipment is established based on the appearance size information of the electrical equipment and the specification selection information of the electrical equipment; the electrical equipment is arranged based on the vectorized parameter model of the electrical equipment, the modeling information of the plant where the electrical equipment is located, and the quantity information of the electrical equipment, and the layout position information of the electrical equipment and the cable connection relationship between the electrical equipment are obtained; the electrical equipment layout plan is generated based on the vectorized parameter model of the electrical equipment, the modeling information of the plant where the electrical equipment is located, the layout position information of the electrical equipment, the quantity information of the electrical equipment and the cable connection relationship between the electrical equipment; the electrical equipment layout plan is sent to the two-dimensional electrical platform, and the two-dimensional electrical platform verifies the electrical equipment layout plan to generate a final electrical equipment layout plan. During this process, the 2D electrical platform sends the electrical equipment attribute requirement logic model to the 3D layout platform. The 3D layout platform generates an electrical equipment layout plan and sends the electrical equipment layout plan to the 2D electrical platform. The 2D electrical platform verifies the electrical equipment layout plan and generates the final electrical equipment layout plan. The efficient interaction between the 2D electrical platform and the 3D layout platform enables the efficient generation of electrical equipment layout plans.

[0097] In one embodiment, obtaining the electrical equipment attribute requirement logic model and the plant modeling information where the electrical equipment is located includes:

[0098] Obtain the logical model of electrical equipment attribute requirements, the category attributes of the plant where the electrical equipment is located, and the plant size information.

[0099] The category attribute of the factory building where the electrical equipment is located refers to the category attribute of the factory building where the electrical equipment needs to be arranged. The category refers to the category of the factory building itself, including offices, living rooms, tea rooms, etc. The attribute refers to the material attributes of walls, ceilings, floors, etc. that will affect the output target of the electrical equipment.

[0100] Specifically, the 3D layout platform obtains the logical model of the electrical equipment attribute requirements, the type attributes of the plant where the electrical equipment is located, and the plant size information. That is, it obtains the requirements for the electrical equipment to ensure its own operation and the appearance dimensions of the electrical equipment, the type of plant where the electrical equipment needs to be arranged, and the material attributes of the walls, ceilings, floors, etc., as well as the appearance dimension information of the plant.

[0101] According to the category attributes and size information of the plant where the electrical equipment is located, obtain the modeling information of the plant where the electrical equipment is located.

[0102] Specifically, the three-dimensional layout platform combines the category attributes and size information of the plant where the electrical equipment is located to obtain modeling information of the plant where the electrical equipment is located, that is, the modeling information of the plant where the electrical equipment is located includes the category attributes and size information of the plant where the electrical equipment is located.

[0103] In this embodiment, the modeling information of the plant where the electrical equipment is located is obtained by using the plant category attributes and plant size information of the electrical equipment, which can pave the way for subsequent use of the plant category attributes and plant size information of the electrical equipment to generate an electrical equipment layout plan.

[0104] In one embodiment, Figure 4 As shown, S200 includes:

[0105] S220 , obtaining electrical equipment operation attribute requirement parameters and electrical equipment appearance size requirement parameters according to the electrical equipment attribute requirement logic model.

[0106] Specifically, since the electrical equipment attribute requirement logic model refers to the requirements for ensuring the operation of electrical equipment and the appearance and size of electrical equipment, the electrical equipment operation attribute requirement parameters and the electrical equipment appearance and size requirement parameters can be obtained based on the electrical equipment attribute requirement logic model. Taking electrical cabinets as an example, the required parameters for the operation properties of electrical equipment may be voltage level, functional item level, compartment, cabin, and power supply train, etc.; taking electrical load equipment as an example, the required parameters for the operation properties of electrical equipment may be safety classification, functional item classification, barrier item classification, mechanical specification level, quality assurance level, seismic classification, shock resistance classification, design pressure, design temperature, room number, flow chart information, whether it is an electrical load, electrical classification, power supply type, voltage level, voltage type, rated power, rated current, motor efficiency, power factor cosφ, operating status, control method, control location, whether the manufacturer provides its own control box, and whether interlocking is required, etc.; taking lighting tools as an example, the required parameters for the operation properties of electrical equipment may be rated voltage, rated power, operating current, luminous flux, color rendering index, color temperature, maintenance factor, utilization factor, installation method, and use environment, etc.; taking cables as an example, the required parameters for the operation properties of electrical equipment may be the number of core wires, cross-sectional area (mm 2), cable nominal outer diameter (mm), bending radius (mm), cable characteristic code, UPC (universal production code), identification level, column / group, safety level, voltage level, length (m), cable status and thermal load, etc., among which the cable cross-sectional area (mm 2 ), cable nominal outer diameter (mm), bending radius (mm), and length (m) can also be used as required parameters for the appearance dimensions of electrical equipment.

[0107] Furthermore, the electrical equipment attribute requirement logical model can also obtain other parameters. Taking the electrical cabinet as an example, the electrical equipment attribute requirement logical model can also obtain the electrical cabinet's equipment code, equipment name, drawer number, predefined part number and weight, etc.; taking the cable as an example, the electrical equipment attribute requirement logical model can also be sheath color, insulation color, unit length weight (kg / km), color, cable number, weight, cable version, laying simulation version and remarks, etc.

[0108] S240: Determine appearance size information of the electrical equipment according to the appearance size requirement parameters of the electrical equipment.

[0109] Specifically, the three-dimensional layout platform obtains the electrical equipment appearance size requirement parameters included in the electrical equipment attribute requirement logic model based on the electrical equipment attribute requirement logic model transmitted from the two-dimensional electrical platform. Therefore, the electrical equipment appearance size requirement parameters can also be regarded as obtained from the two-dimensional electrical platform. Thus, the appearance size information of the electrical equipment required to be arranged in the three-dimensional layout platform is determined based on the electrical equipment appearance size requirement parameters sent by the two-dimensional electrical platform.

[0110] S260: Obtain target output quantities of the electrical equipment in the plant based on the plant modeling information of the electrical equipment.

[0111] Specifically, taking the arranged electrical equipment as lighting fixtures as an example, the output target quantity of the electrical equipment in the factory is the lighting intensity target requirement, and the lighting intensity target requirement is determined by the factory itself. Therefore, the lighting intensity target requirement determined by the factory can be obtained based on the modeling information of the factory where the electrical equipment is located, that is, the output target quantity of the electrical equipment in the factory can be obtained.

[0112] S280: Obtain specification selection information and quantity information of the electrical equipment based on the required parameters of the electrical equipment operation properties and the target output quantity of the electrical equipment in the factory.

[0113] Specifically, under the requirement of ensuring the operation of electrical equipment, the output target of electrical equipment in the factory needs to be met. Therefore, based on the required parameters of the electrical equipment operation properties and the output target of electrical equipment in the factory, the specification selection information of the electrical equipment and the quantity information of the electrical equipment can be obtained to determine the model of the electrical equipment and the number of electrical equipment of this model that can meet the output target of the electrical equipment in the factory.

[0114] In this embodiment, based on the electrical equipment operation attribute requirement parameters obtained from the electrical equipment attribute requirement logic model and the output target quantity of the electrical equipment in the factory obtained from the modeling information of the factory where the electrical equipment is located, the specification selection information of the electrical equipment and the quantity information of the electrical equipment can be determined more efficiently, ensuring the accuracy of the electrical equipment self-simulation, and laying the foundation for the subsequent layout of the electrical equipment in the factory.

[0115] In one embodiment, based on the modeling information of the plant where the electrical equipment is located, obtaining the target output quantity of the electrical equipment in the plant includes:

[0116] According to the modeling information of the plant where the electrical equipment is located, obtain the category attributes of the plant where the electrical equipment is located.

[0117] Specifically, since the three-dimensional layout platform combines the category attributes of the factory where the electrical equipment is located and the factory size information to obtain the modeling information of the factory where the electrical equipment is located, the modeling information of the factory where the electrical equipment is located includes the category attributes of the factory where the electrical equipment is located and the factory size information; that is, based on the modeling information of the factory where the electrical equipment is located, the category attributes of the factory where the electrical equipment is located can be obtained.

[0118] According to the type attributes of the plant where the electrical equipment is located, the output target quantity of the electrical equipment in the plant is obtained.

[0119] Specifically, the category attributes of the factory building where the electrical equipment is located include the category of the factory building itself and the material attributes of the walls, ceilings, floors, etc. The factory building categories themselves include offices, tea rooms, and kitchens, etc., which will have different requirements for the output target quantities of the electrical equipment in the factory building; in addition, the material attributes of the walls, ceilings, floors, etc. also have different requirements for the output target quantities of the electrical equipment in the factory building. Taking lighting fixtures as an example, some materials require high lighting brightness, while other materials require low lighting brightness; therefore, based on the category attributes of the factory building where the electrical equipment is located, the output target quantity of the electrical equipment in the factory building can be determined.

[0120] In this embodiment, by modeling information of the factory where the electrical equipment is located, the category attributes of the factory where the electrical equipment is located can be obtained, and then by analyzing the category attributes of the factory, the output target quantity of the electrical equipment in the factory can be determined, so that the specification selection information of the electrical equipment and the quantity information of the electrical equipment can be obtained by using the output target quantity of the electrical equipment in the factory.

[0121] In one embodiment, Figure 5 As shown, S400 includes:

[0122] S420: Obtain plant size information based on the plant modeling information where the electrical equipment is located.

[0123] Specifically, since the three-dimensional layout platform obtains the modeling information of the plant where the electrical equipment is located by combining the type attributes of the plant where the electrical equipment is located and the plant size information, the plant size information can be obtained based on the modeling information of the plant where the electrical equipment is located.

[0124] S440 , arranging the electrical equipment according to the vectorized parameter model of the electrical equipment, the plant size information, and the quantity information of the electrical equipment to obtain arrangement position information of the electrical equipment.

[0125] Specifically, since the vector parameter model of the electrical equipment is obtained based on the appearance size information and specification selection information of the electrical equipment, the appearance size information and specification selection information of the electrical equipment can be determined based on the vector parameter model of the electrical equipment; based on the size information of the factory building, the electrical equipment is arranged within the area of ​​the factory building according to the vector parameter model of the electrical equipment; in addition, based on the number information of the electrical equipment, it can be known how many electrical equipment there are, so that multiple electrical equipment are arranged, and further the layout location information of all electrical equipment to be arranged is obtained.

[0126] S460: Obtain the cable connection relationship between the electrical devices according to the layout position information of the electrical devices.

[0127] Specifically, each electrical device can be arranged according to the arrangement position information of the electrical devices, and the cable connection relationship between the electrical devices can be determined.

[0128] In this embodiment, by arranging electrical equipment based on their vectorized parameter models, plant size information, and the number of electrical equipment, not only can the layout location information of the electrical equipment be obtained, but also the cable connection relationship between the electrical equipment can be obtained, thereby enabling efficient generation of electrical equipment layout plans.

[0129] In one embodiment, the electrical equipment layout plan is sent to a two-dimensional electrical platform, which verifies the electrical equipment layout plan and generates a final electrical equipment layout plan, including:

[0130] The electrical equipment layout plan is sent to the two-dimensional electrical platform, which verifies the electrical equipment layout plan and generates verification results.

[0131] Specifically, the 3D layout platform sends the electrical equipment layout plan to the 2D electrical platform. The electrical equipment layout plan includes the vectorized parameter model of the electrical equipment, the modeling information of the plant where the electrical equipment is located, the layout location information of the electrical equipment, the number of electrical equipment, and the cable connection relationship between the electrical equipment. The 2D electrical platform verifies the electrical equipment layout plan to determine whether the electrical equipment layout plan is normal and obtains the verification result, which can be normal or abnormal.

[0132] An updated electrical equipment attribute requirement logic model is received, where the updated electrical equipment attribute requirement logic model is generated by the two-dimensional electrical platform based on the verification result when the verification result is abnormal.

[0133] Specifically, when the two-dimensional electrical platform obtains an abnormal verification result, it can determine what factors caused the abnormality based on the verification result, update the electrical equipment attribute requirement logic model, and resend the updated electrical equipment attribute requirement logic model to the three-dimensional layout platform, which receives the updated electrical equipment attribute requirement logic model.

[0134] Update the electrical equipment layout plan based on the updated electrical equipment attribute requirement logic model.

[0135] Specifically, the three-dimensional layout platform can update the electrical equipment layout plan based on the received updated electrical equipment attribute requirement logic model, because the electrical equipment attribute requirement logic model is a condition for generating the electrical equipment layout plan.

[0136] Return to the step of sending the electrical equipment layout plan to the two-dimensional electrical platform, and having the two-dimensional electrical platform verify the electrical equipment layout plan and generate a verification result. When the verification result is normal, the final electrical equipment layout plan is obtained.

[0137] Specifically, the three-dimensional layout platform sends the updated electrical equipment layout plan to the two-dimensional electrical platform. The two-dimensional electrical platform verifies the electrical equipment layout plan again, generates a verification result, and determines whether the verification result is normal. When the two-dimensional electrical platform obtains an abnormal verification result, the three-dimensional layout platform receives the updated electrical equipment attribute requirement logic model, continues to update the electrical equipment layout plan based on the updated electrical equipment attribute requirement logic model, and returns to the step of sending the electrical equipment layout plan to the two-dimensional electrical platform, and the two-dimensional electrical platform verifies the electrical equipment layout plan and generates a verification result. When the two-dimensional electrical platform obtains a normal verification result, the electrical equipment layout plan at this time is the final electrical equipment layout plan.

[0138] In this embodiment, the electrical equipment layout plan is verified by using a two-dimensional electrical platform, which can improve the accuracy of the electrical equipment layout plan.

[0139] It should be understood that, although the various steps in the flowcharts involved in the various embodiments described above are displayed in sequence according to the instructions of the arrows, these steps are not necessarily executed in sequence in the order indicated by the arrows. Unless otherwise specified herein, there is no strict order restriction on the execution of these steps, and these steps can be executed in other orders. Moreover, at least a portion of the steps in the flowcharts involved in the various embodiments described above can include multiple steps or multiple stages, and these steps or stages are not necessarily executed and completed at the same time, but can be executed at different times, and the execution order of these steps or stages is not necessarily to be carried out in sequence, but can be executed in turn or alternately with other steps or at least a portion of steps or stages in other steps.

[0140] Based on the same inventive concept, embodiments of the present application also provide a device for generating a layout plan for electrical equipment in a nuclear power plant, for implementing the aforementioned method for generating a layout plan for electrical equipment in a nuclear power plant. The solution provided by this device is similar to the solution described in the aforementioned method. Therefore, the specific limitations of one or more embodiments of the device for generating a layout plan for electrical equipment in a nuclear power plant provided below can be found in the aforementioned limitations of the method for generating a layout plan for electrical equipment in a nuclear power plant, and will not be further elaborated here.

[0141] In one embodiment, Figure 6 As shown, a device for generating a layout plan of electrical equipment in a nuclear power plant is provided, comprising: a data acquisition module 100, an equipment selection module 200, a model building module 300, a layout design module 400, a plan generation module 500, and a plan verification module 600, wherein:

[0142] The data acquisition module 100 is used to obtain the electrical equipment attribute demand logic model and the plant modeling information where the electrical equipment is located. The electrical equipment attribute demand logic model is generated by the two-dimensional electrical platform through electrical calculation based on the power load information;

[0143] The equipment selection module 200 is used to obtain the appearance and size information, specification selection information and quantity information of the electrical equipment based on the electrical equipment attribute requirement logic model and the plant modeling information where the electrical equipment is located;

[0144] The model building module 300 is used to build a vector parameter model of the electrical equipment based on the appearance and size information of the electrical equipment and the specification selection information of the electrical equipment;

[0145] The layout design module 400 is used to layout the electrical equipment based on the vectorized parameter model of the electrical equipment, the plant modeling information where the electrical equipment is located, and the number of electrical equipment, and obtain the layout location information of the electrical equipment and the cable connection relationship between the electrical equipment;

[0146] A plan generation module 500 is used to generate an electrical equipment layout plan based on a vectorized parameter model of the electrical equipment, modeling information of the plant where the electrical equipment is located, layout location information of the electrical equipment, quantity information of the electrical equipment, and cable connection relationships between the electrical equipment;

[0147] The scheme verification module 600 is used to send the electrical equipment layout scheme to the two-dimensional electrical platform, which verifies the electrical equipment layout scheme and generates a final electrical equipment layout scheme.

[0148] In one embodiment, the data acquisition module 100 is also used to obtain the electrical equipment attribute requirement logic model, the category attributes of the plant where the electrical equipment is located, and the plant size information; and obtain the modeling information of the plant where the electrical equipment is located based on the category attributes of the plant where the electrical equipment is located and the plant size information.

[0149] In one embodiment, the equipment selection module 200 is also used to obtain the electrical equipment operation attribute requirement parameters and the electrical equipment appearance size requirement parameters based on the electrical equipment attribute requirement logic model; determine the appearance size information of the electrical equipment based on the electrical equipment appearance size requirement parameters; obtain the output target quantity of the electrical equipment in the factory based on the modeling information of the factory where the electrical equipment is located; obtain the specification selection information of the electrical equipment and the quantity information of the electrical equipment based on the electrical equipment operation attribute requirement parameters and the output target quantity of the electrical equipment in the factory.

[0150] In one embodiment, the equipment selection module 200 is further configured to obtain the category attributes of the plant where the electrical equipment is located based on the plant modeling information; and obtain the target output quantity of the electrical equipment in the plant based on the category attributes of the plant where the electrical equipment is located.

[0151] In one embodiment, the layout design module 400 is also used to obtain plant size information based on the modeling information of the plant where the electrical equipment is located; arrange the electrical equipment according to the vectorized parameter model of the electrical equipment, the plant size information and the quantity information of the electrical equipment to obtain the layout location information of the electrical equipment; and obtain the cable connection relationship between the electrical equipment based on the layout location information of the electrical equipment.

[0152] In one embodiment, the scheme verification module 600 is also used to send the electrical equipment layout scheme to the two-dimensional electrical platform, and the two-dimensional electrical platform verifies the electrical equipment layout scheme to generate a verification result; receive the updated electrical equipment attribute requirement logic model, and the updated electrical equipment attribute requirement logic model is generated by the two-dimensional electrical platform based on the verification result when the verification result is abnormal; update the electrical equipment layout scheme based on the updated electrical equipment attribute requirement logic model; return to the step of sending the electrical equipment layout scheme to the two-dimensional electrical platform, and the two-dimensional electrical platform verifies the electrical equipment layout scheme to generate a verification result. When the verification result is normal, the final electrical equipment layout scheme is obtained.

[0153] Each module in the apparatus for generating a layout plan for electrical equipment in a nuclear power plant can be implemented in whole or in part through software, hardware, or a combination thereof. Each module can be embedded in or independent of a processor in a computer device in the form of hardware, or can be stored in a memory in the computer device in the form of software, so that the processor can call and execute the corresponding operations of each module.

[0154] In one embodiment, a system for generating a layout plan for electrical equipment in a nuclear power plant is provided, the system comprising:

[0155] The 2D electrical platform performs electrical calculations based on the power load information to generate a logical model of electrical equipment attribute requirements, and sends the logical model of electrical equipment attribute requirements to the 3D layout platform;

[0156] The 3D layout platform receives the electrical equipment attribute requirement logic model sent by the 2D electrical platform and obtains the plant modeling information where the electrical equipment is located;

[0157] The 3D layout platform obtains the appearance and size information, specification selection information, and quantity information of the electrical equipment based on the electrical equipment attribute requirement logic model and the plant modeling information where the electrical equipment is located.

[0158] The 3D layout platform establishes a vectorized parameter model of the electrical equipment based on its appearance and size information and specification selection information;

[0159] The 3D layout platform arranges electrical equipment based on the vectorized parameter model of the electrical equipment, the plant modeling information where the electrical equipment is located, and the number of electrical equipment, obtaining the layout location information of the electrical equipment and the cable connection relationship between the electrical equipment;

[0160] The 3D layout platform generates an electrical equipment layout plan based on the vectorized parameter model of the electrical equipment, the plant modeling information where the electrical equipment is located, the layout location information of the electrical equipment, the number of electrical equipment, and the cable connection relationship between the electrical equipment.

[0161] The 3D layout platform sends the electrical equipment layout plan to the 2D electrical platform;

[0162] The two-dimensional electrical platform verifies the electrical equipment layout plan and generates the final electrical equipment layout plan.

[0163] In one embodiment, a computer device is provided. The computer device may be a server, and its internal structure diagram may be as follows: Figure 7 As shown. The computer device includes a processor, a memory, an input / output interface (Input / Output, abbreviated as I / O) and a communication interface. The processor, memory and input / output interface are connected through a system bus, and the communication interface is connected to the system bus through the input / output interface. The processor of the computer device is used to provide computing and control capabilities. The memory of the computer device includes a non-volatile storage medium and an internal memory. The non-volatile storage medium stores an operating system, a computer program and a database. The internal memory provides an environment for the operation of the operating system and computer program in the non-volatile storage medium. The database of the computer device is used to store data such as a logical model of electrical equipment attribute requirements and modeling information of the plant where the electrical equipment is located. The input / output interface of the computer device is used to exchange information between the processor and an external device. The communication interface of the computer device is used to communicate with an external terminal through a network connection. When the computer program is executed by the processor, a method for generating an electrical equipment layout plan for a nuclear power plant is implemented.

[0164] Those skilled in the art will understand that Figure 7 The structure shown in the figure is merely a block diagram of a portion of the structure related to the present application solution and does not constitute a limitation on the computer device to which the present application solution is applied. A specific computer device may include more or fewer components than shown in the figure, or combine certain components, or have a different component arrangement. In one embodiment, a computer device is also provided, including a memory and a processor, wherein the memory stores a computer program, and when the processor executes the computer program, the steps of the above-mentioned method embodiments are implemented.

[0165] In one embodiment, a computer-readable storage medium is provided, on which a computer program is stored. When the computer program is executed by a processor, the steps in the above-mentioned method embodiments are implemented.

[0166] In one embodiment, a computer program product is provided, including a computer program, which implements the steps in the above method embodiments when executed by a processor.

[0167] Those skilled in the art will appreciate that all or part of the processes in the above-mentioned embodiment methods can be implemented by instructing the relevant hardware through a computer program, and the computer program can be stored in a non-volatile computer-readable storage medium. When the computer program is executed, it can include the processes of the embodiments of the above-mentioned methods. Among them, any reference to memory, database or other media used in the embodiments provided in this application may include at least one of non-volatile and volatile memory. Non-volatile memory may include read-only memory (ROM), magnetic tape, floppy disk, flash memory, optical memory, high-density embedded non-volatile memory, resistive random access memory (ReRAM), magnetic random access memory (MRAM), ferroelectric random access memory (FRAM), phase change memory (PCM), graphene memory, etc. Volatile memory may include random access memory (RAM) or external cache memory, etc. By way of illustration and not limitation, RAM can be in various forms, such as static random access memory (SRAM) or dynamic random access memory (DRAM). The database involved in the various embodiments provided herein may include at least one of a relational database and a non-relational database. Non-relational databases may include, but are not limited to, distributed databases based on blockchains. The processor involved in the various embodiments provided herein may be, but are not limited to, a general-purpose processor, a central processing unit, a graphics processing unit, a digital signal processor, a programmable logic unit, a data processing logic unit based on quantum computing, and the like.

[0168] The technical features of the above embodiments can be combined arbitrarily. To make the description concise, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.

[0169] The above-described embodiments merely represent several implementation methods of the present application. While the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the present application. It should be noted that a person of ordinary skill in the art may make various modifications and improvements without departing from the spirit of the present application, and these modifications and improvements fall within the scope of protection of the present application. Therefore, the scope of protection of the present application shall be determined by the appended claims.

Claims

1. A method for generating a layout plan of electrical equipment in a nuclear power plant, characterized in that: A system for generating an electrical equipment layout plan for a nuclear power plant includes a two-dimensional electrical platform and a three-dimensional layout platform; and a method includes: The two-dimensional electrical platform performs electrical calculations based on the power load information to generate a logical model of electrical equipment attribute requirements, and sends the logical model of electrical equipment attribute requirements to the three-dimensional layout platform; The three-dimensional layout platform obtains the electrical equipment attribute requirement logic model and the plant modeling information where the electrical equipment is located; The three-dimensional layout platform obtains the appearance and size information of the electrical equipment, the specification selection information of the electrical equipment, and the quantity information of the electrical equipment according to the electrical equipment attribute requirement logic model and the plant modeling information where the electrical equipment is located; The three-dimensional layout platform establishes a vectorized parameter model of the electrical equipment based on the appearance size information of the electrical equipment and the specification selection information of the electrical equipment; The three-dimensional layout platform arranges the electrical equipment according to the vectorized parameter model of the electrical equipment, the modeling information of the plant where the electrical equipment is located, and the quantity information of the electrical equipment, and obtains the layout position information of the electrical equipment and the cable connection relationship between the electrical equipment; The three-dimensional layout platform generates an electrical equipment layout plan based on the vectorized parameter model of the electrical equipment, the modeling information of the plant where the electrical equipment is located, the layout location information of the electrical equipment, the quantity information of the electrical equipment, and the cable connection relationship between the electrical equipment; The three-dimensional layout platform sends the electrical equipment layout plan to the two-dimensional electrical platform; The two-dimensional electrical platform verifies the electrical equipment layout plan and generates a final electrical equipment layout plan.

2. The method according to claim 1, characterized in that The three-dimensional layout platform obtains the electrical equipment attribute requirement logic model and the plant modeling information where the electrical equipment is located, including: The three-dimensional layout platform obtains the electrical equipment attribute requirement logic model, the electrical equipment's plant category attributes, and the plant size information; The three-dimensional layout platform obtains modeling information of the plant where the electrical equipment is located based on the type attribute of the plant where the electrical equipment is located and the plant size information.

3. The method according to claim 1, characterized in that The three-dimensional layout platform obtains the appearance and size information of the electrical equipment, the specification selection information of the electrical equipment, and the quantity information of the electrical equipment according to the electrical equipment attribute requirement logic model and the plant modeling information where the electrical equipment is located, including: The three-dimensional layout platform obtains the electrical equipment operation attribute requirement parameters and the electrical equipment appearance size requirement parameters according to the electrical equipment attribute requirement logic model; The three-dimensional layout platform determines the appearance size information of the electrical equipment according to the appearance size requirement parameters of the electrical equipment; The three-dimensional layout platform obtains the output target quantity of the electrical equipment in the plant based on the modeling information of the plant where the electrical equipment is located; The three-dimensional layout platform obtains specification selection information and quantity information of the electrical equipment based on the required parameters of the electrical equipment operation properties and the output target quantity of the electrical equipment in the factory building.

4. The method according to claim 3, characterized in that The three-dimensional layout platform obtains the output target quantity of the electrical equipment in the plant based on the modeling information of the plant where the electrical equipment is located, including: The three-dimensional layout platform obtains the category attributes of the plant where the electrical equipment is located based on the modeling information of the plant where the electrical equipment is located; The three-dimensional layout platform obtains the output target quantity of the electrical equipment in the factory building according to the type attribute of the factory building where the electrical equipment is located.

5. The method according to claim 1, wherein The three-dimensional layout platform arranges the electrical equipment according to the vectorized parameter model of the electrical equipment, the modeling information of the plant where the electrical equipment is located, and the quantity information of the electrical equipment, and obtains the layout position information of the electrical equipment and the cable connection relationship between the electrical equipment, including: The three-dimensional layout platform obtains plant size information based on the plant modeling information where the electrical equipment is located; The three-dimensional layout platform arranges the electrical equipment according to the vectorized parameter model of the electrical equipment, the plant size information, and the quantity information of the electrical equipment to obtain the layout position information of the electrical equipment; The cable connection relationship between the electrical devices is obtained based on the layout position information of the electrical devices.

6. The method according to claim 1, wherein The three-dimensional layout platform sends the electrical equipment layout plan to the two-dimensional electrical platform, and the two-dimensional electrical platform verifies the electrical equipment layout plan. Generating a final electrical equipment layout plan includes: The three-dimensional layout platform sends the electrical equipment layout plan to the two-dimensional electrical platform, and the two-dimensional electrical platform verifies the electrical equipment layout plan and generates a verification result; The three-dimensional layout platform receives an updated electrical equipment attribute requirement logic model, wherein the updated electrical equipment attribute requirement logic model is generated by the two-dimensional electrical platform according to the verification result when the verification result is abnormal; The three-dimensional layout platform updates the electrical equipment layout plan according to the updated electrical equipment attribute requirement logic model; The three-dimensional layout platform returns and sends the electrical equipment layout plan to the two-dimensional electrical platform, and the two-dimensional electrical platform verifies the electrical equipment layout plan to generate a verification result. When the verification result is normal, the final electrical equipment layout plan is obtained.

7. A device for generating a layout plan of electrical equipment in a nuclear power plant, characterized in that: An electrical equipment layout scheme generation system for a nuclear power plant, comprising a two-dimensional electrical platform and a three-dimensional layout platform; The device includes: the two-dimensional electrical platform performs electrical calculations based on power load information to generate an electrical equipment attribute demand logic model, and sends the electrical equipment attribute demand logic model to the three-dimensional layout platform; The device further comprises: A data acquisition module, used for the three-dimensional layout platform to obtain the electrical equipment attribute demand logic model and the plant modeling information where the electrical equipment is located; An equipment selection module is used for the three-dimensional layout platform to obtain the appearance and size information of the electrical equipment, the specification selection information of the electrical equipment, and the quantity information of the electrical equipment based on the electrical equipment attribute requirement logic model and the plant modeling information where the electrical equipment is located; A model building module, configured to build a vectorized parameter model of the electrical equipment on the three-dimensional layout platform based on the appearance and size information of the electrical equipment and the specification selection information of the electrical equipment; a layout design module, configured to arrange the electrical equipment on the three-dimensional layout platform based on the vectorized parameter model of the electrical equipment, the modeling information of the plant where the electrical equipment is located, and the quantity information of the electrical equipment, and obtain the layout position information of the electrical equipment and the cable connection relationship between the electrical equipment; a scheme generation module, configured for the three-dimensional layout platform to generate an electrical equipment layout scheme based on a vectorized parameter model of the electrical equipment, modeling information of a plant where the electrical equipment is located, layout location information of the electrical equipment, quantity information of the electrical equipment, and cable connection relationships between the electrical equipment; A scheme verification module, configured for the three-dimensional layout platform to send the electrical equipment layout scheme to the two-dimensional electrical platform; The device further includes: the two-dimensional electrical platform verifies the electrical equipment layout plan to generate a final electrical equipment layout plan.

8. The device according to claim 7, characterized in that The data acquisition module is also used for the three-dimensional layout platform to obtain the electrical equipment attribute requirement logic model, the category attributes of the plant where the electrical equipment is located, and the plant size information; the three-dimensional layout platform obtains the modeling information of the plant where the electrical equipment is located based on the category attributes of the plant where the electrical equipment is located and the plant size information.

9. The device according to claim 7, characterized in that The equipment selection module is further configured to enable the three-dimensional layout platform to obtain electrical equipment operation attribute requirement parameters and electrical equipment appearance dimension requirement parameters based on the electrical equipment attribute requirement logic model; the three-dimensional layout platform determines the appearance dimension information of the electrical equipment based on the electrical equipment appearance dimension requirement parameters; The three-dimensional layout platform obtains the output target quantity of the electrical equipment in the factory based on the modeling information of the factory where the electrical equipment is located; the three-dimensional layout platform obtains the specification selection information and quantity information of the electrical equipment based on the electrical equipment operation attribute requirement parameters and the output target quantity of the electrical equipment in the factory.

10. A system for generating a layout plan for electrical equipment in a nuclear power plant, characterized in that: The system includes a two-dimensional electrical platform and a three-dimensional layout platform: The two-dimensional electrical platform performs electrical calculations based on the power load information to generate a logical model of electrical equipment attribute requirements, and sends the logical model of electrical equipment attribute requirements to the three-dimensional layout platform; The three-dimensional layout platform receives the electrical equipment attribute requirement logic model sent by the two-dimensional electrical platform, and obtains the plant modeling information where the electrical equipment is located; The three-dimensional layout platform obtains the appearance and size information of the electrical equipment, the specification selection information of the electrical equipment, and the quantity information of the electrical equipment according to the electrical equipment attribute requirement logic model and the plant modeling information where the electrical equipment is located; The three-dimensional layout platform establishes a vectorized parameter model of the electrical equipment based on the appearance size information of the electrical equipment and the specification selection information of the electrical equipment; The three-dimensional layout platform arranges the electrical equipment according to the vectorized parameter model of the electrical equipment, the modeling information of the plant where the electrical equipment is located, and the quantity information of the electrical equipment, and obtains the layout position information of the electrical equipment and the cable connection relationship between the electrical equipment; The three-dimensional layout platform generates an electrical equipment layout plan based on the vectorized parameter model of the electrical equipment, the modeling information of the plant where the electrical equipment is located, the layout location information of the electrical equipment, the quantity information of the electrical equipment, and the cable connection relationship between the electrical equipment; The three-dimensional layout platform sends the electrical equipment layout plan to the two-dimensional electrical platform; The two-dimensional electrical platform verifies the electrical equipment layout plan and generates a final electrical equipment layout plan.

Citation Information

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