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The scattered locations of power towers and harsh environments increase the workload, difficulty, and costs of O&M personnel, leading to low O&M efficiency and certain safety risks.
The telecom tower area lacks real-time monitoring. Unauthorized personnel entering tower areas or abnormal operations on electrical equipment may cause equipment malfunctions, creating safety hazards.
The lack of power equipment status monitoring makes it difficult to detect operational faults and abnormalities in a timely manner, leading to the escalation or worsening of problems. This increases the cost and time required for repairs and service restoration.
Inadequate emergency management and the lack of real-time monitoring of backup batteries could lead to a failure in providing continuous power supply during primary power failures or outages, affecting communication and causing cascading effects.
By utilizing sensors, high-definition cameras, and other equipment, the system enables real-time monitoring and data collection to monitor battery status, power environment, and provide intrusion alarms in the telecom tower equipment rooms. It continuously monitors the operational status and environmental information of power towers, allowing for the timely detection of faults and abnormalities, which achieves intelligent, automated, and information-driven management of telecom towers. This improves the management efficiency of power towers, reduces maintenance costs, and ensures the safe and stable supply of electricity.
Information-based management
The back-end management system is built on information technology, enabling centralized data management, sharing, and visualization. O&M personnel can obtain real-time information on the operation status and environmental conditions of the towers, enhancing management convenience and efficiency.
Safety management
Real-time monitoring of the dynamic environment of the towers to ensure their normal operation. Enhance safety measures with an intruder alarm function to prevent unauthorized personnel from entering tower areas. Ensure the safety of tower equipment and maintenance personnel.
Efficient management
Through real-time monitoring, abnormalities can be detected promptly, allowing for fault warnings, reducing unnecessary maintenance and repair occurrences, and lowering O&M costs. In addition, it improves the complexity and efficiency of maintenance work, reducing the waste of human resources.
Emergency management
It ensures the normal operating status of communication towers, supporting the provision of stable and reliable communication services and enhancing societal convenience. The system monitors the status of backup power in real-time, ensuring the smooth execution of emergency tasks such as rescue operations, dispatching, and information transmission.
The auxiliary equipment monitoring system, based on technologies such as IoT, big data, intelligent sensing, artificial intelligence, and 3D modeling, integrates and standardizes the resources of various isolated and scattered auxiliary control subsystems. This achieves optimized system resource allocation, information sharing, and seamless business integration between systems, addressing the complexities of substation auxiliary equipment, scattered operational information, and lack of coordination. It enhances the intelligent O&M of substations and supports the construction of new power systems.
The intelligent auxiliary monitoring system focuses on precise management of auxiliary equipment, and uses IoT, AI, and big data analysis to achieve real-time monitoring of equipment data and in-depth diagnostic analysis. The system provides deep insight into the status of auxiliary equipment, including fire monitoring, safety protection, power environment, and online monitoring subsystems. By remotely controlling and managing equipment, it enhances fault prediction and preventive decision-making capabilities, achieving intelligent O&M and reducing personnel pressure while improving efficiency and safety.
The three-level defense communication safety lock control system uses communication equipment interface locks and mechatronic intelligent door locks to provide multi-layer protection and intelligent control for tower company communication equipment rooms and cabinet doors, as well as communication equipment interfaces. The system offers features like mandatory interface locking, remote door unlocking, real-time status monitoring, and timely abnormal alarms, meeting the needs of inspections, maintenance, emergency repairs, and safety management and control for communication process.
The intelligent lock control system for communication towers is designed for the intelligent management of tower company communication room and cabinet door locks. It uses mechatronic intelligent locks with remote and on-site unlocking, high lock safety, real-time status monitoring, and timely abnormal alarms. This system meets the needs of base station inspections, maintenance, emergency repairs, and process control, ensuring base station safety and improving O&M efficiency.