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    Home > Chemicals Industry > Chemical Technology > The multi-temporal and spatial scale dispatching system of intermittent energy power generation successfully passed the technical acceptance of the Ministry of Science and Technology

    The multi-temporal and spatial scale dispatching system of intermittent energy power generation successfully passed the technical acceptance of the Ministry of Science and Technology

    • Last Update: 2022-11-18
    • Source: Internet
    • Author: User
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    Recently, the 863 project "Research and Development of Multi-temporal Scale Dispatching System for Intermittent Energy Power Generation" participated by the China Electric Power Research Institute successfully passed the on-site technical acceptance
    organized by the Ministry of Science and Technology.
    After questioning and full discussion, the experts of the acceptance team highly affirmed the research results and demonstration projects, and unanimously agreed that the project completed the technical research tasks specified in the task book, reached the assessment indicators, and agreed that the project passed the technical acceptance
    .

    The topic of "Research and Development of Multi-temporal and Spatial-Scale Dispatching System for Intermittent Energy Power Generation" is the subject task
    of the major project of "Key Technology Research and Development of Smart Grid (Phase I)" in the field of advanced energy technology of the 863 Program.
    As the main R&D, CETC has undertaken technical research work such as new energy resource monitoring and power generation capacity assessment, medium and long-term power forecasting, multi-temporal and spatial scale optimization scheduling, and developed a technical support system
    for intermittent energy power generation dispatching based on the D5000 platform.

    The system developed by the 863 Project has been demonstrated and applied in the Hebei Electric Power Control Center, and is the first all-round coordinated and optimized dispatching system in China covering long-term assisted decision-making of intermittent energy, online plan formulation, real-time control and post-analysis evaluation, realizing the seamless integration and global optimization of intermittent energy and conventional power systems, and comprehensively tapping the intermittent energy absorption capacity
    of Jibei Power Grid.

    Recently, the 863 project "Research and Development of Multi-temporal Scale Dispatching System for Intermittent Energy Power Generation" participated by the China Electric Power Research Institute successfully passed the on-site technical acceptance
    organized by the Ministry of Science and Technology.
    After questioning and full discussion, the experts of the acceptance team highly affirmed the research results and demonstration projects, and unanimously agreed that the project completed the technical research tasks specified in the task book, reached the assessment indicators, and agreed that the project passed the technical acceptance
    .

    Intermittent energy

    The topic of "Research and Development of Multi-temporal and Spatial-Scale Dispatching System for Intermittent Energy Power Generation" is the subject task
    of the major project of "Key Technology Research and Development of Smart Grid (Phase I)" in the field of advanced energy technology of the 863 Program.
    As the main R&D, CETC has undertaken technical research work such as new energy resource monitoring and power generation capacity assessment, medium and long-term power forecasting, multi-temporal and spatial scale optimization scheduling, and developed a technical support system
    for intermittent energy power generation dispatching based on the D5000 platform.

    The system developed by the 863 Project has been demonstrated and applied in the Hebei Electric Power Control Center, and is the first all-round coordinated and optimized dispatching system in China covering long-term assisted decision-making of intermittent energy, online plan formulation, real-time control and post-analysis evaluation, realizing the seamless integration and global optimization of intermittent energy and conventional power systems, and comprehensively tapping the intermittent energy absorption capacity
    of Jibei Power Grid.

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