A method and system for construction guidance and quality reliable verification of a prefabricated wallboard with built-in gyroscope

By incorporating a built-in MEMS gyroscope sensor and blockchain-based evidence storage technology, the accuracy issues of wall positioning and verticality correction in prefabricated buildings have been resolved, enabling data visualization of the construction process and reliable acceptance, thereby improving construction efficiency and quality reliability.

CN122408754APending Publication Date: 2026-07-17ZHONGYU INT ENG DESIGN CO LTD +2

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
ZHONGYU INT ENG DESIGN CO LTD
Filing Date
2026-04-13
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

In the construction of prefabricated wall panels in prefabricated buildings, the positioning and verticality correction of the walls rely on the experience of the construction personnel, which is time-consuming and difficult to guarantee accuracy. The key posture data is not recorded and solidified in real time, resulting in a lack of reliable basis for acceptance.

Method used

A high-precision microelectromechanical system (MEMS) gyroscope sensor is built into the prefabricated wall panel. Combined with a mobile terminal data acquisition system and blockchain evidence storage technology, it can realize real-time attitude data acquisition, visual guidance and tamper-proof evidence storage.

Benefits of technology

It enables precise data visualization guidance during the construction process, reduces calibration time, ensures that the installation accuracy meets design specifications, provides objective and tamper-proof acceptance criteria, and supports full lifecycle traceability of construction quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

本发明公开一种内置陀螺仪的装配式预制墙板施工引导与质量可信验证系统,包括:内置传感模块,其包括预埋于预制墙板内部的一个或多个MEMS陀螺仪传感器及微处理器单元,用于实时感知墙板的倾角与姿态角变化,生成并输出对应的原始姿态数据;数据采集与显示模块,其为装载有专用应用程序的移动终端,通过无线通信方式与所述内置传感模块连接,所述移动终端接收所述原始姿态数据,并结合墙板的预设几何参数,将其转换为可视化的水平坐标偏差与垂直度数据,并实时显示以引导施工校正;数据存证模块,其基于区块链技术构建,用于接收并不可篡改地存储来自数据采集与显示模块的、在墙板校正完成后生成的最终姿态数据。
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