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Non-linear sliding mode control for frequency regulation with variable-speed wind turbine systems

机译:用于变速风轮机系统的频率调节的非线性滑模控制

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This paper presents a new control strategy to minimize mismatch between the generations and loads in the wind integrated power system. This in turn enhances the integration level smoothly and reduces frequency deviation in the system. The proposed control strategy is able to establish better dynamic response and provide better coordination between conventional two-area and wind power systems. The said objective is achieved by designing a non-linear sliding mode control in two-area thermal system, in addition with droop control and modified pitch angle control for wind generator to provide frequency support. The proposed controller has ability to vary closed-loop system damping property according to uncertainties and load disturbances and thus ensures asymptotic stability. The wind power output and frequency regulation remain insensitive to gusts, changes in wind speed and as well as inertia. Several simulations are performed on two-area with wind integration and IEEE 39 bus system to illustrate the effectiveness of the proposed controller design.
机译:本文提出了一种新的控制策略,以最大程度地减少风力发电系统中发电和负荷之间的不匹配。反过来,这可以平稳地提高集成度并减少系统中的频率偏差。所提出的控制策略能够建立更好的动态响应,并在传统的两区域和风力发电系统之间提供更好的协调。通过设计两区域热系统中的非线性滑模控制以及用于风力发电机的下垂控制和变桨距角控制以提供频率支持,可以实现上述目的。所提出的控制器具有根据不确定性和负载扰动改变闭环系统阻尼特性的能力,从而确保渐近稳定性。风能输出和频率调节对阵风,风速和惯性变化均不敏感。在具有风能集成和IEEE 39总线系统的两个区域上进行了一些仿真,以说明所提出的控制器设计的有效性。

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