Device position layout method and apparatus, and electronic device

By using depth occupancy operations to establish a spatial model for equipment in the nuclear island of a nuclear power plant, the problem that traditional occupancy algorithms cannot adapt to the diversity of equipment is solved, and a compact layout between equipment and functional constraints are satisfied, thereby improving space utilization and layout efficiency.

CN122113188APending Publication Date: 2026-05-29CHINA NUCLEAR POWER ENGINEERING CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
CHINA NUCLEAR POWER ENGINEERING CO LTD
Filing Date
2026-03-23
Publication Date
2026-05-29

AI Technical Summary

Technical Problem

In the layout of equipment in the nuclear island of a nuclear power plant, traditional cavity-based algorithms cannot adapt to the diverse types of equipment and the large differences in functional requirements, resulting in low space utilization, repeated layout adjustments, and high costs of boundary expansion.

Method used

A spatial model is created for each device to be deployed using depth occupancy operation. Combining the device itself and the constrained space, the final placement position is determined through depth occupancy operation. The functional requirements and spatial constraints between devices are taken into account to optimize the device layout.

Benefits of technology

It improved the space utilization rate of the nuclear island building of nuclear power plants, reduced the number of layout adjustments, lowered the cost of boundary expansion, and achieved a compact layout of equipment rooms while meeting functional constraints.

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Abstract

The application relates to the technical field of nuclear power plant workshop design, and discloses a device position layout method and device and electronic equipment, the method comprising the following steps: establishing an initial layout environment of a target area according to a set of to-be-laid devices and corresponding layout constraints; establishing a space model for each to-be-laid device; determining the final layout position of each to-be-laid device in the target area based on the initial layout environment through a deep angle-occupying operation; the deep angle-occupying operation comprises the following steps: determining an angle-occupying position for the overall contour of the space model of the current to-be-laid device, and adjusting the position of the device body of the current to-be-laid device in the corresponding constraint space according to the layout constraint; and outputting a target area layout scheme containing the final positions of the to-be-laid devices after all the to-be-laid devices are laid, so that the device layout can be automatically completed under the premise of meeting the constraints of a nuclear power plant, and the space utilization rate is maximized while meeting complex constraint conditions.
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