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As production scales expand, power supply equipment increases, and the power grid structure becomes more complex, significantly increasing the workload of O&M, with a severe shortage of specialized personnel. The traditional O&M framework urgently needs reform
Numerous, low-coupled electrical business systems result in a "siloed" structure, creating severe information silos, with low density of valuable information and a lack of in-depth data mining
Equipment aging is severe, and it is difficult to supervise the O&M process. Frequent accidents and numerous safety hazards occur, with a lack of online monitoring, supervision, and safety management and control measures, making it difficult to ensure the safety of equipment operations, disconnector operations, and O&M work.switch operations
Operations such as control, supervision, inspection, and maintenance are mainly carried out manually, lacking intelligent operations, closed-loop control, robotic inspection, health status diagnostics, and innovative technology applications such as big data, digital twins, and deep learning
The intelligent O&M system for electrical operations in steel enterprises integrates sub-systems such as comprehensive automation, online monitoring, intelligent inspections, and safety management and control. It achieves intelligent applications like panoramic monitoring, sequence control operations, intelligent alarms, robotic inspections, fault diagnosis decision-making, and equipment health assessments. The system enhances the intelligent power supply O&M management of steel enterprises across five business dimensions: monitoring, operation, measurement, inspection, and maintenance. It builds a panoramic digital intelligent O&M platform handling millions of data points, making the power supply O&M process visible, measurable, preventable, and controllable, which ensures safer, more efficient, and more intelligent O&M management
Panoramic digital platform
Build a multi-business integrated panoramic digital intelligent O&M platform based on a microservices architecture and modular design, supporting the integration of millions of data points, multi-business management, and intelligent O&M services
Intelligent robotic inspection
Leverage advanced technologies such as robotics, image recognition, and IoT for intelligent inspections of electrical equipment, replacing manual on-site inspections, freeing up labor, and improving inspection efficiency and quality
Comprehensive monitoring of main and auxiliary systems
Comprehensively collect data from operation monitoring, online monitoring, inspection, and O&M activities across all business areas. Unified modeling, standardized data integration, and centralized monitoring provide an "O&M dashboard."
Digital O&M
Focusing on O&M tasks as the core, and using digital work permits as the link, the system aims to control the safety of compliance, equipment, environment, and personnel. It achieves comprehensive, full-process, and all-factor digitalized power supply O&M management
One-click sequence control operation
Support one-click sequence control operations, realizing remote control of primary and secondary equipment and full conversion of operating modes, significantly improving operational efficiency. Intelligent anti-misoperation and double confirmation of statuses ensure operation safety
One-stop equipment operation and inspection
Based on a unified platform, integrate multi-business information, standardized modeling, panoramic display, and comprehensive applications. Eliminate information silos and provide a one-stop solution for electrical equipment trend analysis, condition assessment, and full lifecycle management
Intelligent sensor monitoring
Utilize various intelligent sensors such as partial discharge, temperature measurement, thermal imaging, temperature and humidity, gas, safety, and fire protection to comprehensively monitor electrical equipment and their operating environments, helping O&M personnel become "owners" and "general practitioners" for equipment
Applications of innovative technologies
The system integrates advanced technologies such as expert knowledge bases, big data analysis, digital twins, and deep learning, improving the efficiency and accuracy of electrical intelligent O&M, reducing the risk of faults, and extending equipment life
The intelligent energy O&M control system is primarily designed for supply-side energy users, including photovoltaic stations, wind turbines, energy storage stations, charging stations, integrated energy stations, and multi-energy integration stations. It facilitates intelligent O&M and monitoring across these scenarios, enabling intelligent energy O&M on the regional energy production and supply side.
With "safety and efficiency" as the goal, and "business collaboration" and "data integration" as the core, based on the requirements of one-click sequence control, intelligent substations, and centralized control station construction, the system adheres to the new-generation architecture of substation secondary products that are autonomously controllable and compliant with information security standards. It relies on new technologies such as "big data, cloud computing, IoT, AI, and intelligence" and introduces innovative applications such as intelligent sensing, intelligent ticketing, intelligent verification, and intelligent maintenance. This expands anti-misoperation control from primary equipment operations to secondary equipment operations, maintenance tasks, and O&M activities, achieving comprehensive anti-misoperation safety management and control.
The campus energy efficiency management system utilizes digital IoT and other intelligent power technologies to provide comprehensive monitoring and management of power distribution, distributed energy equipment, personnel, and environments for users such as enterprises, factories, hospitals, campuses, and buildings. It enables operational monitoring, energy efficiency management, intelligent O&M energy coordination, transfer supply operations, and full lifecycle management of equipment assets. The system also meets the requirements of government and power regulatory authorities for online energy consumption monitoring and demand-side management, contributing to the goals of "carbon peaking and carbon neutrality."
The intelligent sensor control devices and the energy efficiency management cloud service platform enable power monitoring, analysis, optimized management, and coordinated control. Assist users in improving energy use efficiency and ensuring power supply safety and reliability, reducing energy costs, actively participating in demand response, and avoiding overloads, thus delaying capacity expansion. It promotes energy saving, emission reduction, and electricity substitution, contributing to "carbon peak and carbon neutrality."
Steel enterprises feature large, dense equipment, complex processes, tightly coupled production processes, and operate in high-temperature, high-pressure environments across multiple areas. Traditional "human and institutional" management methods are insufficient to manage on-site work safety. The solution addresses the tasks and risks in each phase of steel enterprise operations, aiming to ensure the safety of personnel, equipment, and processes. It adopts a control approach combining "technical defense, human defense, and physical defense." By integrating digital technology with the operational management processes of steel enterprises, it enables measurable, visible, predictable, and controllable operations. This comprehensive risk management approach enhances operational efficiency and supports the development of an intrinsically safe, digital steel enterprise.