Newsletter Sign Up
Receive our latest updates about our products and promotions.
The rapid development of the national economy requires strong support from a large number of basic production activities. Automated safety monitoring of mines, geological hazards, bridge deformation, water conservancy and hydropower, and oil and gas pipelines is especially important in production activities. The use of high-precision RTK positioning equipment, multi-functional intelligent sensors, and the Internet of Things can comprehensively improve the safety and supervision levels of relevant enterprises, and enhance the ability of enterprises, society and the government to respond early warnings of safety hazards.
GIS provides a visual way to combine and analyze geographic data with other data sets and tools to help users better understand issues and opportunities in the decision-making process and develop the best solutions. GIS can accurately capture and store geographic location data and combine it with other data sets. This capability is extremely important for various fields of application, such as environmental management, urban planning, emergency response, and agriculture. With the continuous development and innovation of technology, the application scope of GIS will continue to expand and deepen.
By satellite navigation positioning systems, ground-based augmentation systems, real-time kinematic positioning technology and inertial navigation technology, the operating status of various means of transport can be monitored in real time, scientifically dispatched and accurately commanded. At the same time, by using 4G/5G networks, WiFi and Bluetooth communication technologies to update management data in real time, means of transport can enter the era of precise management.
Digital construction enables full life cycle management of engineering projects by integrating high-precision positioning technologies, mechanical control algorithms and AI image recognition capabilities. Through three-dimensional visualization, high-precision maps and other means, complex engineering information is transformed into measurable and displayable digital data. BIM technology and mechanical equipment control technology are used to realize the collection, process supervision, resource scheduling and information release of full-process information of people, objects, vehicles and construction machinery under the construction site scene.
With the advancement of positioning technologies such as WiFi, Bluetooth, UWB and Zigbee, high-precision indoor positioning systems have received widespread attention. A single technology alone can no longer meet the needs of all positioning scenarios. Therefore, the "integration of multiple technologies" has become an inevitable trend in the development of positioning technology. From UWB to Bluetooth AOA/AOD to 5G, positioning technologies continue to derive, driving continuous advances and popularization of positioning technology.
The space and location of mining activities are in a constant state of change, the working environment and safety situation are very complex, so work safety faces great threats.
The complexity of geological and geographical environments, as well as the spatial and temporal differences in climate conditions, make geological hazards such as landslides and mudslides diverse, widely distributed, and greatly harmful. Many environments cannot be monitored manually 24 hours a day, so technological means are needed to improve monitoring and early warning capabilities and reduce the risk of geological hazards.
Modern large-span bridges have a relatively large span. At the same time, when affected by typhoons, the vibration and sway are relatively large, which seriously affects the normal operation of bridges and even threatens the safety of bridges, personnel and vehicles. Therefore, advanced monitoring technologies and early warning systems are needed to timely detect and handle abnormal deformations of bridges and ensure the safe operation of bridges.
Hydropower dams, steep slopes, flood barriers, and sea embankments are all dangerous sources with high potential energy. Under harsh geological conditions and complex climate conditions, the stability of dam structures and slopes is severely tested and urgent safety monitoring is needed. By adopting high-precision monitoring technologies and real-time early warning systems, the safety risks of water conservancy facilities can be effectively identified and assessed, and measures can be taken in time to control them.
The pipeline construction time is early, the service time is long, the pipeline spans a wide area, the pipeline passes through the regional geological disaster sensitive points account for a high proportion, which causes great operation risk to the pipeline. Geological disasters and secondary disasters caused by geological disasters seriously affect the safety of pipeline and surrounding personnel. Therefore, it is necessary to adopt high-precision monitoring technology and real-time early warning system to carry out comprehensive monitoring and early warning on the pipeline and its surrounding environment to ensure the safe operation of the pipeline.
Modern large-span bridges have a relatively large span. At the same time, when affected by typhoons, the vibration and sway are relatively large, which seriously affects the normal operation of bridges and even threatens the safety of bridges, personnel and vehicles. Therefore, advanced monitoring technologies and early warning systems are needed to timely detect and handle abnormal deformations of bridges and ensure the safe operation of bridges.
Hydropower dams, steep slopes, flood barriers, and sea embankments are all dangerous sources with high potential energy. Under harsh geological conditions and complex climate conditions, the stability of dam structures and slopes is severely tested and urgent safety monitoring is needed. By adopting high-precision monitoring technologies and real-time early warning systems, the safety risks of water conservancy facilities can be effectively identified and assessed, and measures can be taken in time to control them.
The pipeline construction time is early, the service time is long, the pipeline spans a wide area, the pipeline passes through the regional geological disaster sensitive points account for a high proportion, which causes great operation risk to the pipeline. Geological disasters and secondary disasters caused by geological disasters seriously affect the safety of pipeline and surrounding personnel. Therefore, it is necessary to adopt high-precision monitoring technology and real-time early warning system to carry out comprehensive monitoring and early warning on the pipeline and its surrounding environment to ensure the safe operation of the pipeline.
Receive our latest updates about our products and promotions.
Thanks for subscribing!
This email has been registered!