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User-side microgrid scenario
User-side microgrid scenario

The FEMS9610-WW microgrid dispatching and management control system is specifically designed for user-side microgrid scenarios. It adopts an integrated industrial control hardware architecture and is adaptable to multi-energy hybrid grid operation involving wind, solar, diesel, and energy storage. The system is equipped with intelligent dispatching algorithms, enabling refined and flexible management of multiple energy sources. It supports customized time-slot planned operation to maximize peak-valley revenue. It features comprehensive protection interlocking, millisecond-level grid-connected/off-grid switching, and black-start voltage support functions. It can comprehensively collect and monitor various operational data and generate reports, effectively improving the economic efficiency and security of user-side microgrid operation while ensuring stable and reliable power supply.

Related Products
Livestock microgrid scenario
Livestock microgrid scenario

The FEMS9610-GM2 gas turbine multi-unit energy dispatch and control system is specifically designed for livestock microgrid scenarios, precisely addressing pain points such as the difficulty in dispatching excess photovoltaic power, fluctuating biogas power generation, unstable power supply, poor power quality, and high electricity costs in livestock farms. The system features anti-backflow and anti-islanding protection, enabling precise monitoring and control and unattended operation. It manages power quality through APF (Automatic Power Feeder) and performs real-time power dispatch; it is compatible with multi-energy hybrid networks of wind, solar, biogas, and storage, automatically managing biogas units, smoothly switching energy supply, effectively overcoming resource intermittency issues, and ensuring the stable, safe, and economical operation of the livestock microgrid.

Related Products
Remote grid scenarios
Remote grid scenarios

The "Panda Power Booster" FEMS9610-ZL dispatch management and control system is specifically designed for remote microgrid scenarios, effectively solving problems such as unstable power plant operation, frequent power outages, high electricity costs, unreasonable energy dispatch, and wind and solar curtailment. The system features three boost modes: capacity expansion, ramp-up, and pulse, and is adaptable to gas/methanol generator units to meet various load demands. Relying on a high-performance EMS, it achieves millisecond-level response, coupled with multi-energy complementarity and diversified operating strategies, enabling precise measurement and control, unattended operation, stable power supply, and improved energy economy.

Service Process

  • Requirements Communication

    Requirements Communication

    1
  • Scheme Design

    Scheme Design

    2
  • Sample Testing

    Sample Testing

    3
  • Installation and Debugging

    Installation and Debugging

    4
  • Acceptance and Delivery

    Acceptance and Delivery

    5
  • After-sales Maintenance

    After-sales Maintenance

    6

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Email: chenl@fortrust.cn