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Emergency Power Control Technology for Wind Power and Photovoltaic Power to Improve New Energy Consumption Capacity

机译:风能,光伏发电的应急电源控制技术,提高新能源消费能力

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A cluster of renewable energy is formed in China based on UHVDC transmission systems. The renewable energy accommodation is constrained by DC power transmission and grid-connected power of renewable energy. In order to improve the absorption capacity of renewable energy, the fast control characteristics of renewable energy (wind power, photovoltaic) inverters and the necessity of incorporating renewable energy power control into emergency are analyzed. Aiming at the energy equipment control, communication status and active and reactive power control capabilities, the technical requirements of integrating the renewable energy into the communication delay of the emergency control and the real-time sensing of the controllable power are studied. Moreover, based on the actual grid, the effectiveness of the proposed control architecture and control method are verified via the simulation, which can effectively improve the consumption of new energy and maintain grid-connected operation.
机译:中国在特高压直流输电系统的基础上形成了可再生能源集群。可再生能源的住宿受到直流输电和可再生能源并网发电的限制。为了提高可再生能源的吸收能力,分析了可再生能源(风能,光伏)逆变器的快速控制特性以及将可再生能源功率控制纳入紧急情况的必要性。针对能源设备的控制,通信状态以及有功和无功控制能力,研究了将可再生能源纳入应急控制通信延时和可控功率实时检测的技术要求。此外,在实际电网的基础上,通过仿真验证了所提出的控制架构和控制方法的有效性,可以有效地减少新能源的消耗并维持并网运行。

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