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System level wind turbine controls with seamless transitions between standalone and grid connected mode

机译:系统级风力发电机控制,可在独立模式和并网模式之间进行无缝转换

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The aim of this work is the development of a system-level wind turbine control strategy that allows wind turbines to operate in grid-connected or off-grid mode and transition seamlessly between these modes of operation. Conventional wind turbines with a front-end inverter are designed to work as a grid tie system meaning that the inverter needs the grid voltage to synchronize and the inverter becomes a current source. As opposed to current practice, this paper proposes a wind turbine control strategy designed to work as a controlled voltage source emulating the behavior of large synchronous generators. This mode of operation will allow wind turbines to transition seamlessly from grid-connected to off-grid mode of operation. Furthermore, because of its power sharing features it will allow wind turbines to operate in remote areas without causing power quality or instability issues. The turbine will also be able to interface with microgrid systems or form a microgrid. This paper presents an overview of the proposed control strategies and simulation results demonstrating the feasibility of this approach.
机译:这项工作的目的是开发系统级风力发电机控制策略,该策略允许风力发电机以并网或离网模式运行,并在这些运行模式之间无缝过渡。具有前端逆变器的传统风力涡轮机被设计为并网系统,这意味着逆变器需要电网电压进行同步,并且逆变器成为电流源。与当前实践相反,本文提出了一种风力涡轮机控制策略,该策略设计为可模拟大型同步发电机行为的受控电压源。这种运行模式将允许风力涡轮机从并网无缝过渡到离网运行模式。此外,由于其功率共享功能,它将允许风力涡轮机在偏远地区运行而不会引起功率质量或不稳定问题。涡轮机还将能够与微电网系统接口或形成微电网。本文概述了所提出的控制策略和仿真结果,证明了这种方法的可行性。

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