一种塔式起重机安全智能防碰撞预警系统及其使用方法

By using 3D simulation and ultrasonic ranging of the surrounding environment of the tower crane, combined with intelligent computing and remote perspective switching, the shortcomings of collision detection during tower crane hoisting are solved, and the safe and stable operation of the tower crane is achieved.

CN116986502BActive Publication Date: 2026-07-17CHINA MCC17 GRP CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
CHINA MCC17 GRP CO LTD
Filing Date
2023-08-03
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

During the hoisting process, tower cranes are prone to collisions between the hoisted object and the building, as well as collisions between adjacent tower cranes. Existing manual observation methods cannot effectively and timely detect collisions.

Method used

A visualization platform is used to simulate the three-dimensional environment around the tower crane, establishing trajectory circles and hoisting rings. Through intelligent calculation, the tangency or intersection of adjacent trajectory circles and hoisting rings is determined. Combined with ultrasonic ranging and remote view switching, collision avoidance warnings are achieved during the operation of the tower crane.

Benefits of technology

It enables intelligent anti-collision warning during tower crane operation, provides sufficient buffer reaction time, improves the operational accuracy of tower crane operators, and ensures the safety and stability of the hoisting process.

✦ Generated by Eureka AI based on patent content.

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Abstract

本发明公开了一种塔式起重机安全智能防碰撞预警系统及其使用方法,包括可视化平台,本发明涉及塔式起重机施工技术领域。该塔式起重机安全智能防碰撞预警系统及其使用方法,通过轨迹圆和吊装圆环的模拟设定,配合塔吊周边环境的三维模拟,实现塔吊运行过程中的运动轨迹的智能判断,结合对相邻两个轨迹圆交互情况的判断,对相邻两个吊装圆环交互情况的判断,实现相邻两个塔吊之间的智能防碰撞预警,在超声测距和远程视角切换的设置下,对吊装物在运行过程中的安全性提供保障,方便塔吊操控人员对塔吊进行精准防碰撞操作的同时,进一步保证吊装物的防碰撞吊装,进而保证塔吊在建筑施工过程中安全稳定。
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Citation Information

Patent Citations

  • Intelligent construction site tower crane operation monitoring system

    CN113184729A

  • Crane 3D workspace spatial techniques for crane operation in proximity of obstacles

    US20180179029A1