风力发电机基准模型数据驱动和基于模型的控制技术

S. Simani, S. Farsoni, P. Castaldi
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引用次数: 0

摘要

摘要:风力发电机组是一个复杂的动态不确定过程,受随机输入和扰动以及以陀螺、离心力和重力为代表的不同负荷驱动。此外,由于它们的空气动力学模型是非线性的,因此建模和控制都成为具有挑战性的问题。一方面,为了准确地描述系统的主要动态行为,高保真仿真器必须包含不同的参数和变量。因此,风力发电系统建模和控制的发展应考虑这些复杂性方面。另一方面,这些控制方案必须包括主要风力涡轮机的动态特性,而不会变得太复杂。因此,本文的主要观点是提供两个应用于模拟风力发电厂的鲁棒控制策略开发的实际例子。风力涡轮机基准模型和蒙特卡罗工具的扩展仿真代表了在考虑模型与现实不匹配和测量误差时评估所开发控制方法的鲁棒性和可靠性方面的工具。这些调节方法的优点和缺点也强调了不同的控制策略,通过适当的性能指标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Data-Driven and Model-Based Control Techniques for a Wind Turbine Benchmark Model
Abstract: Wind turbine plants are complex dynamic and uncertain processes driven by stochastic inputs and disturbances, as well as different loads represented by gyroscopic, centrifugal, and gravitational forces. Moreover, as their aerodynamic models are nonlinear, both modelling and control become challenging problems. On one hand, high–fidelity simulators should contain different parameters and variables in order to accurately describe the main dynamic system behaviour. Therefore, the development of modelling and control for wind turbine systems should consider these complexity aspects. On the other hand, these control solutions have to include the main wind turbine dynamic characteristics without becoming too complicated. The main point of this paper is thus to provide two practical examples of development of robust control strategies when applied to a simulated wind turbine plant. Extended simulations with the wind turbine benchhmark model and the Monte–Carlo tool represent the instruments for assessing the robustness and reliability aspects of the developed control methodologies when the model–reality mismatch and measurement errors are also considered. Advantages and drawbacks of these regulation methods are also highlighted with respect to different control strategies via proper performance metrics.
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