人机协作式复杂线缆布局增强智能正向设计方法及系统

By employing a human-machine collaborative cable layout design method, a multi-level weighted region and a three-dimensional pathfinding algorithm were constructed, which solved the efficiency and reliability problems of cable layout design in complex electromechanical equipment and achieved efficient and reliable cable path generation and verification.

CN122263335BActive Publication Date: 2026-07-17ADVANCED POWER RES INST OF NPU TIANFU NEW DISTRICT SICHUAN +1

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
ADVANCED POWER RES INST OF NPU TIANFU NEW DISTRICT SICHUAN
Filing Date
2026-05-20
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing technologies struggle to achieve accurate, manufacturable, assemblable, and serviceable forward design and effective verification in cable layout design for complex electromechanical equipment. Path design relies on static geometric constraints, and automated methods cannot express the true intentions of designers and the constraints of engineering experience, resulting in low design efficiency and results that do not meet engineering usability requirements.

Method used

A human-machine collaborative approach is adopted. By constructing a multi-level weighted region and a 3D pathfinding algorithm driven by human design intent, and combining obstacle proximity penalty cost and existing cable occupation penalty cost, the optimal cable path is generated. The cable control point list is generated through adaptive sampling, and finally a 3D cable entity model is generated.

Benefits of technology

It enables highly efficient and automated design of cable layouts, improves engineering usability and controllability, reduces the need for manual adjustments, and enhances design efficiency and the engineering reliability of the results.

✦ Generated by Eureka AI based on patent content.

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Abstract

本申请涉及线缆装配设计技术领域,具体提供一种人机协作式复杂线缆布局增强智能正向设计方法及系统,方法包括:构建人工设计意图驱动的多层次权重区域,生成针对不同引导区域的人工引导区域权重代价;基于待敷设线缆的物理线径约束构建三维寻路网格,将多层次权重区域统一映射到寻路网格的体素网格节点中,引入障碍邻近惩罚代价;采用基于启发式搜索的三维寻路算法,在体素网格上进行路径搜索确定最优线缆路径;按照线缆直径对最优线缆路径进行采样,生成线缆控制点列表,进而根据线缆控制点列表生成三维线缆实体模型。本申请通过以自动寻路算法为主体、人类设计意图作为引导约束的线缆布局自动设计,实现了大规模复杂线束的高效率自动化设计。
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