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Grid-connected Control Strategies for a Dual Power Flow Wind Energy Conversion System

机译:双潮流风能转换系统的并网控制策略

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摘要

A novel dual power flow (DPF) wind energy conversion system (WECS) based on an electrical variable transmission (EVT) machine is proposed recently. The structure of the novel EVT-based WECS, especially the grid-connected configuration, is different from any other existing WECSs. In this paper, the grid-connected control strategies of the DPF- WECS are proposed by controlling the DC-link and the inner rotor side converter, where the DC-link with and without the energy storage system (ESS) is considered separately. The relevant control strategies are presented to enhance the grid fault ride through capability of the DPF-WECS. Moreover, the maximum power point tracking control strategy and the pitch control strategy are also studied to implement the complete functionality of the DPF-WECS. The simulation model of the DPF-WECS is developed based on the EVT mathematical models and proposed control strategies. Finally, the simulation results verify the efficiency of the proposed control strategies for the DPF-WECS.
机译:最近,提出了一种新型的基于电力可变传动(EVT)机的双功率流(DPF)风能转换系统(WECS)。新颖的基于EVT的WECS的结构,特别是并网配置,与任何其他现有WECS不同。本文通过控制直流母线和内转子侧变流器,提出了DPF-WECS的并网控制策略,其中分别考虑了带和不带储能系统(ESS)的直流母线。提出了相关的控制策略,以通过DPF-WECS的功能来增强电网故障穿越能力。此外,还研究了最大功率点跟踪控制策略和俯仰控制策略,以实现DPF-WECS的完整功能。基于EVT数学模型和提出的控制策略,开发了DPF-WECS的仿真模型。最后,仿真结果验证了所提出的DPF-WECS控制策略的有效性。

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