INTELLIGENT
MONITORING
SYSTEM
Overview

Intelligent Monitoring
System

Structural Analysis Cloud Platform Sensor Technology Safety Evaluation
Intelligent Monitoring System

Application Overview

Intelligent monitoring is a comprehensive system engineering project that integrates advanced technologies including structural analysis and computation, computer technology, communication technology, and sensor technology. Employing a fully automated monitoring system that combines BIM technology with cloud platform technology, it obtains and analyzes the full-process structural safety status through comparative analysis with numerical simulation models, providing opinions and recommendations for appropriate structural response measures. Additionally, it accounts for uncertainties in the construction process and variable operating conditions, meeting the needs of safety monitoring during the operational phase.

Core Strengths

Advantages

Professional Technology

An intelligent digital display and analysis platform capable of supporting large-volume data publishing with data volumes up to 60T. Effectively prevents large data requests from overwhelming service nodes through microservice unit distributed deployment, flexible configuration, and paginated task packages with uniform distribution. Supports standardized implementation of the OGC WMTS standard, with reconstructed and standardized WMTS metadata implementation; supports image service invocation via REST, KVP, and other service methods; supports invocation by platforms such as ArcGIS, QGIS, Openlayers, Leaflet, MapBox, and Cesium.

  • Comprehensive Qualifications
    Full Class-A qualifications in surveying, mapping, and geoinformation; Class-A engineering investigation qualifications; land planning qualifications, etc.
  • High-Precision Equipment
    Nationally leading precision sensors and monitoring equipment.
  • Dedicated Approach
    Excellent Outcomes: Efficient and high-quality project execution plans.
Core Solutions
Featured
Products

Highlighting key monitoring applications across complex structural engineering scenarios.

Building Main Structure Monitoring
By integrating building main structure monitoring data with 2D GIS visualization technology, we have developed an automated building safety monitoring system—a comprehensive management platform for intelligent safety monitoring and early warning of building main structure usage safety. This system integrates a building safety GIS base map that incorporates vector maps of hazardous buildings and remote sensing satellite imagery. Overlaid on this base map are collected databases related to streets, communities, and buildings, forming a unified "Building Safety Monitoring Map." It provides real-time alerts and SMS warnings, and offers diverse visualization information for round-the-clock building monitoring.
Super-Large Building Monitoring
For venue monitoring, we deploy measurement points for roof cable forces, aluminum alloy lattice shell and steel grid stress-strain, vibration, displacement, environmental conditions, and stress-strain of ultra-long concrete. This enables long-term, real-time monitoring of the venue's stress state, deformation, vibration, and on-site climatic environment. Leveraging the advantages of multi-source heterogeneous data acquisition and integrating various intelligent hardware devices, we have developed a digital display and analysis platform, safeguarding the safety of new urban super-large and unconventional buildings.
Bridge Monitoring
Modern large-scale bridges are critical nodes of major transportation arteries. By establishing a bridge structural health monitoring system, real-time understanding of the bridge's structural condition is achieved, enhancing the capability to handle emergencies. The bridge health monitoring system encompasses three major monitoring modules: environmental load monitoring, bridge characteristic monitoring, and bridge response monitoring. Through data acquisition and monitoring, we grasp the actual stress state and operational performance, providing support for damage assessment and wind/seismic performance evaluation.
Foundation Pit Engineering Intelligent Monitoring
Monitoring contents include station structure settlement monitoring, track geometry monitoring, automated viaduct pier monitoring, and station structure settlement monitoring. The field project team works to identify potential hazards in a timely manner, issue early warnings, and prevent safety accidents.
Metro Structure Viaduct & Tunnel Deformation
Surveying work for road design and construction, including route stakeout, cross-sections and longitudinal profiles, leveling and elevation measurements, and surveys of bridges, culverts, and other structures.
Infrastructure Digitalization
Transportation Hub Project Building Structure Digital Monitoring

Various precision sensors and monitoring equipment are used to conduct real-time monitoring of changes across multiple aspects during the construction process, promptly and accurately providing information related to construction quality, safety, and efficiency. This offers decision-making support and optimization recommendations for on-site command and management personnel. Monitoring items include: horizontal displacement of pile tops and slope tops, vertical settlement of pile tops and slope tops, deep horizontal displacement of support structures, surrounding ground settlement, surrounding pipeline settlement, prestressed anchor cable axial force, groundwater level monitoring, manual inspections, and settlement of surrounding buildings.