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Impact of load models on the static and dynamic performances of grid-connected wind power plants: A comparative analysis

机译:负荷模型对并网风电厂静态和动态性能的影响:比较分析

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The integration of renewable energy technologies in power systems causes a significant change in the electromechanical, and electromagnetic properties of the hosting systems. Consequently, the overall steady state, and dynamic performances of power systems are altered due to the presence of these technologies. Therefore, the conclusions derived from the conventional system structures need to be updated. Recently, wind energy presented a worldwide major source of renewable energy. The performance of the generating subsystem is not only affected by the technologies of the generators, but also by the dynamics of the network and load components. Since the majority of network components is passive elements, the loads present the most impacting subsystems on the performance of power systems. Investigation of the impact of load models on the performance of power systems hosting wind energy is the main objective of this paper. This paper presents a detailed analysis of the steady state and dynamic performances of power systems as affected by popular WECTs, and composite load structures and models. The results are compared with the performances of the conventional synchronous generators. The results presented in the paper provide evidences of the strengths and weaknesses in power systems caused by the presence of various WECTs. In addition, the results show the levels of capability of various WECTs to match the classical distinct performances of conventional synchronous generators.
机译:电力系统中可再生能源技术的集成导致主机系统的机电和电磁特性发生重大变化。因此,由于这些技术的存在,电力系统的整体稳态和动态性能会发生变化。因此,需要更新从常规系统结构得出的结论。最近,风能成为全球可再生能源的主要来源。生成子系统的性能不仅受生成器技术的影响,而且还受网络和负载组件的动态影响。由于大多数网络组件是无源元件,因此负载对电力系统的性能影响最大。研究负荷模型对承载风能的电力系统性能的影响是本文的主要目标。本文介绍了受流行的WECT,复合负载结构和模型影响的电力系统的稳态和动态性能的详细分析。将结果与常规同步发电机的性能进行比较。本文介绍的结果提供了各种WECT的存在所导致的电力系统优缺点的证据。此外,结果显示了各种WECT的能力水平,可与常规同步发电机的经典独特性能相匹配。

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