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  1.  23
    Finite Control Set Model Predictive Control for Complex Energy System with Large-Scale Wind Power.Yang-Wu Shen, Jin-Rong Yuan, Fei-Fan Shen, Jia-Zhu Xu, Chen-Kun Li & Ding Wang - 2019 - Complexity 2019:1-13.
    Complex energy systems can effectively integrate renewable energy sources such as wind and solar power into the information network and coordinate the operation of renewable energy sources to ensure its reliability. In the voltage source converter-based high voltage direct current system, the traditional vector control strategy faces some challenges, such as difficulty in PI parameters tuning and multiobjective optimizations. To overcome these issues, a finite control set model predictive control-based advanced control strategy is proposed. Based on the discrete mathematical model (...)
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  2.  3
    Harmonic Modeling and Experimental Validation of the Converters of DFIG-Based Wind Generation System.Yang-Wu Shen, Ding Wang, Xiang-Tian Deng, Qing Li & Jian Zuo - 2019 - Complexity 2019:1-13.
    The double-fed induction wind generator- based wind generation system contains power electronic converters and filter capacitor and inductor, which will bring about high-frequency harmonics under the influence of controllers. Aiming at this problem, this paper studies the relation between the output current and the harmonic source at grid-side and rotor-side converters based on their control features in the DFIG system. Furthermore, the harmonic equivalent models of these two converters are built, and the influence of different factors on harmonic features is (...)
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  3. Analysis of the Influence of Renewable Generator Frequency Endurance Capability on Low-Frequency Load Shedding: A Hunan Case Study.Yang-Wu Shen, Ding Wang, Hao Chen, Jian Zuo, Min Xu & Wei Cao - 2020 - Complexity 2020:1-9.
    With the rapid development of renewable generators such as distributed photovoltaic and profound changes of the power structure, this paper analyzes the frequency characteristics of the power system with high penetration of renewable generations in the process of low-frequency load shedding and discusses the influence of the distributed renewable generator frequency endurance capabilities on the implementation effect of low-frequency load shedding in detail. Finally, the influences of the distributed renewable generator frequency endurance capability and the capacities of the distributed renewable (...)
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