Methods, systems, equipment, and computer storage media for setting up the heliostat field.

By obtaining preset parameters to divide the heliostat region and generating heliostat coordinates using a radial staggered method, the problems of low optical efficiency and insufficient space utilization in the multi-tower heliostat field layout are solved, realizing a flexible multi-tower layout and efficient photothermal conversion.

CN121502840BActive Publication Date: 2026-05-26NORTH CHINA ELECTRIC POWER UNIV

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
NORTH CHINA ELECTRIC POWER UNIV
Filing Date
2025-11-06
Publication Date
2026-05-26

AI Technical Summary

Technical Problem

Existing heliostat field layout methods suffer from low optical efficiency, insufficient space utilization, and inadequate ability to handle complex constraints. In particular, the collaborative area division is inflexible in multi-tower layouts, leading to a high risk of failure.

Method used

By acquiring preset parameters, candidate heliostat regions are divided, and candidate heliostat coordinates are generated using a radial staggered method. Based on actual parameters, the actual coordinates of the heliostats are determined, and a multi-tower heliostat field layout map is generated. Distance control coefficients are introduced to adjust the spacing between heliostats and the regional layout.

Benefits of technology

It improves the optical efficiency and space utilization of heliostat fields, adapts to complex intersection scenarios, and realizes the flexibility and operability of heliostat field layout.

✦ Generated by Eureka AI based on patent content.

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Abstract

This application discloses a method, system, device, and computer storage medium for setting up a multi-tower heliostat field. The method includes: acquiring preset parameters; determining the number of candidate heliostat regions, the region parameters within each candidate heliostat region, and the boundary line attribute information between the preset heliostat regions according to the preset parameters through a predetermined region division method, wherein the boundary lines are generated by the intersection of the preset heliostat regions; generating the coordinates of each candidate heliostat corresponding to each collector tower through a radial staggered method based on the number of candidate heliostat regions, the region parameters, and the boundary line attribute information; determining the actual coordinates of each heliostat based on the coordinates of each candidate heliostat and the parameters of the corresponding preset heliostat region, and generating the multi-tower heliostat field layout diagram based on the actual coordinates of each heliostat.
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