首页> 外文期刊>International Journal of Electrical Power & Energy Systems >Multivariable robust control of a horizontal wind turbine under various operating modes and uncertainties: A comparison on sliding mode and H_∞ control
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Multivariable robust control of a horizontal wind turbine under various operating modes and uncertainties: A comparison on sliding mode and H_∞ control

机译:各种运行模式和不确定性下水平风力发电机的多变量鲁棒控制:滑模和H_∞控制的比较

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Wind turbines are generally controlled for the objectives of the turbine protection and generation of the acceptable power for the utility grid. In this paper, a nonlinear multivariable model of the wind turbine with a DFIG generator is considered. The rotor speed and the d-axis rotor current, as the controlled variables, are controlled via manipulation of the two generator voltages, as the control signals. Two robust control strategies including the sliding mode control and H(infinity )robust control, designed via mu-synthesis based on DK-iteration algorithm, are presented for switching between various operating modes. Development of an acceptable dynamic model and two innovative control strategies that lead to the good performance and stability against various sources of uncertainty and noise rejection, are some of the advantageous points of the designed controllers. Performance of these control strategies are evaluated and compared. During the wind turbine operation, obtaining a maximum active power and suppressing the reactive power are the control objectives. Results are presented for various profiles of the wind velocity. It is observed that the sliding mode controller has a better performance in the transient time response. Moreover, in comparison with H-infinity, sliding mode control approach leads to the less tracking error and settling time, but minor acceptable chattering exists.
机译:通常出于风力涡轮机保护的目的以及为公用电网产生可接受的功率的目的来控制风力涡轮机。在本文中,考虑了带有DFIG发电机的风力涡轮机的非线性多变量模型。通过控制两个发电机电压作为控制信号来控制作为控制变量的转子速度和d轴转子电流。提出了基于DK迭代算法通过mu合成设计的两种鲁棒控制策略,包括滑模控制和H(infinity)鲁棒控制。开发可接受的动态模型和两种创新的控制策略,可以针对各种不确定性和噪声抑制源实现良好的性能和稳定性,这是所设计控制器的一些优势。对这些控制策略的性能进行评估和比较。在风力涡轮机运行期间,获得最大有功功率并抑制无功功率是控制目标。给出了各种风速分布的结果。可以看出,滑模控制器在瞬态时间响应中具有更好的性能。此外,与H-infinity相比,滑模控制方法导致的跟踪误差和建立时间更短,但存在少量可接受的颤动。

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