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HYSTERESIS SWITCHING LPV CONTROL OF A WIND TURBINE SYSTEM COVERING PARTIAL AND FULL LOAD CONDITIONS

机译:包含部分和满负荷条件的风轮机系统的迟滞开关LPV控制

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For variable-speed wind energy conversion systems, control objectives may be different in partial and fall load regions (or in low and high wind speed regions). Typical control objectives are to maximize the energy capture at low wind speeds, and to maintain the generated power and the rotational turbine speed within safety limits at high wind speeds. In such a case, it is difficult to design a single robust controller covering, both partial load and full load conditions. This paper presents a systematic switching control method for a variable-speed variable-pitch wind turbine over a wide wind speed region. The whole framework is based on the linear parameter-varying (LPV) control theory, which is an extension of robust control for linear systems to nonlinear ones. Two LPV controllers are designed, each suitable in a different wind speed region. A hysteresis switching logic is applied to guarantee the stability when the switching event occurs between the two controllers. Nonlinear simulations are conducted to demonstrate the proposed control scheme.
机译:对于变速风能转换系统,在部分负荷和秋季负荷区域(或在低风速区域和高风速区域)中,控制目标可能会有所不同。典型的控制目标是在低风速时最大程度地捕获能量,并在高风速时将发电功率和涡轮旋转速度保持在安全范围内。在这种情况下,很难设计一个涵盖部分负载和满负载条件的单一鲁棒控制器。本文提出了一种在宽风速范围内变速变速螺距风力发电机的系统切换控制方法。整个框架基于线性可变参数(LPV)控制理论,该理论将线性系统的鲁棒控制扩展为非线性系统。设计了两个LPV控制器,每个控制器都适用于不同的风速区域。当两个控制器之间发生切换事件时,采用滞后切换逻辑来保证稳定性。进行非线性仿真以证明所提出的控制方案。

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