Intelligent Centralized Control
System Overview
The Intelligent Hydropower Centralized Control System is a next-generation smart monitoring system developed and designed using IoT and artificial intelligence technologies, aimed at enhancing the operational efficiency of hydropower facilities while reducing energy consumption and maintenance costs. The system integrates multiple functional modules, including an integrated control platform, intelligent operation and monitoring, intelligent analysis and diagnostics, intelligent alarm management, intelligent voice interaction, and intelligent dispatching, to enable real-time remote monitoring, remote control, optimized operation, and data-driven decision-making for hydropower equipment.
The system is designed for flexible, platform-based and modular configuration, allowing users to tailor functional configurations and applications based on their technical requirements and scale.

Customer Value
Value objective: To achieve remote, centralized monitoring and control of numerous unattended, minimally staffed, or fully unmanned small and medium-sized hydropower equipment, plant buildings, reservoir dams, river channels, and watershed areas—covering equipment, facilities, and the surrounding environment—and to realize automated control and intelligent operation of regional and watershed-scale hydropower station clusters.
1) Enhance the efficiency and quality of hydropower operations
2) Reduce energy consumption and operating costs
3) Enhancing Power Generation Efficiency
Product Features
Autonomous Control and Optimized Operation
Multidimensional Data Analysis and Decision-Making
Fault Diagnosis and Maintenance Support
System Security and Data Privacy
Main Functions
| ● Linux-based Distributed System Platform Architecture | ● Complete modeling of primary and secondary equipment information for the monitoring system | ● A massive information integration and processing mechanism for the cache, with avalanche-handling capability. |
| ● A comprehensive data processing platform that integrates security and stability | ● Design of a Distributed Integrated Platform Based on Group-Based Computing | ● Platform-agnostic, portable system architecture that supports various mainstream operating systems |
| ● A network data shuttle model that supports dynamic load balancing | ● A visualization-based, fully vectorized integrated graph-model-library system | ● Employ self-monitoring, self-diagnosis, and self-healing technologies to enhance the operational reliability of automation systems. |
| ● Employs “application drift” technology to support standalone system startup and operation. | ● Accident Recollection and Replay Model Based on “Panoramic Simulation” Technology | ● Alarm Broadcast System Based on Speech Synthesis Technology |
| ● Alarm Information Publication and Query System Based on Electronic On-Duty | ● Six-in-one system permission authentication and streamlined information accountability | ● Security protection mechanism featuring horizontal isolation and vertical authentication |
| ● Dual-web publishing mechanism based on cluster control and security protection |

Selected Application Cases
● Daxin Power Generation Company of Guangxi Agricultural Investment Group’s Smart Hydropower Centralized Control System for the River Basin
● Smart Hydropower Centralized Control System for the Basin of Anhui Yuexi State-Owned Power Generation Co., Ltd.
● Regional Smart Hydropower Integrated Control System of Zhenjiang Electric Power Co., Ltd. in Nanxiong City, Guangdong Province
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