Technical Overview
Shifting from Local Monitoring to Real-Time Control
Renewable power plant management is evolving from simple monitoring to real-time control of on-site equipment. Remote control requires not only immediate response to commands but also real-time information acquisition, anomaly detection for the control, and other intelligent functionalities.
Advanced Security for Power Market Compliance
As a major player in the power market, a power plant requires a high level of security and may need to use encryption modules certified by the government according to the security grade.
Customized Edge Device Design
We design our edge devices with real-time management, control, and decision-making capabilities tailored to customer requirements.
Features
Secure Communication
Supports mutual authentication and TLS 1.2/1.3 communication based on X.509 digital certificates using PKI encryption technology.
For Linux-based applications and middleware using OpenSSL, we provide technology to switch to encryption modules that meet customer security requirements without modifying the program.
Hardware encryption module is also supported according to customer requirements, with design modifications available as needed.
Intelligence
All collected data is stored and managed in an embedded database, with abnormal data automatically processed according to customer-defined rules.
Utilizing the built-in statistical generation functions of the hardware, on-site data can be rapidly collected, and only statistics and abnormal data are transmitted to a server, significantly reducing server load.
To minimize unnecessary control actions, a single control command for a power plant is distributed and then control outputs for each individual equipment are dispatched by the RTU
Extensibility
We integrate our devices with various types of power plants such as solar, wind, ESS, and fuel cells, as well as demand resources like power meters and electric vehicle charging stations. Additionally, our devices can support various industrial standard protocols such as MODBUS, DNP3, DLMS, MQTT, and custom protocols developed by manufacturers.
Beyond on-site monitoring/control, our device can be adapted and developed to meet customer and market demands, serving as power exchange modems, renewable data acquisition devices for power exchanges, and environmental IoT gateways.
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