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Symbolic Solution Approach to Wind Turbine based on Doubly Fed Induction Generator Model

机译:基于双馈感应发电机模型的风力涡轮机象征性解

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This paper describes an alternative approach based on symbolic computations to simulate wind turbines equipped with Doubly-Fed induction Generator (DFIG). The actuator disk theory is used to represent the aerodynamic part, and the one-mass model simulates the mechanical part. The 5th-order induction generator is selected to model the electric machine, being this approach suitable to estimate the DFIG performance under transient conditions. The corresponding non-linear integro-differential equation system has been reduced to a linear state-space system by using an ad-hoc local linearization. This novel Symbolic Computation (SYMB) method has been implemented by using two different software-packages, with the purpose of solving simultaneously a remarkable number of individual wind turbines models submitted to different wind speed profiles and/or grid voltage waveforms. The obtained results are compared with traditional Finite Difference Discretization (FDD) method, widely proposed for this type of studies. The results offer a good agreement between the proposed SYMB method and the FDD solutions, considering real wind speed profile and electrical transient event.
机译:本文介绍了一种基于符号计算的替代方法,以模拟配有双馈感应发生器(DFIG)的风力涡轮机。致动器磁盘理论用于表示空气动力学部分,单批模拟模拟机械部件。选择第五级感应发电机以模拟电机,是这种方法,适合估计瞬态条件下的DFIG性能。通过使用Ad-Hoc局部线性化,相应的非线性积分 - 微分方程系统已经减少到线性状态空间系统。通过使用两种不同的软件包实现了这种新颖的符号计算(SYMB)方法,其目的是同时解决提交到不同风速简档和/或电网电压波形的非凡数量的单个风力涡轮机模型。将得到的结果与传统的有限差异离散化(FDD)方法进行比较,广泛提出了这种研究。结果在拟议的SELB方法和FDD解决方案之间提供了良好的一致性,考虑到真正的风速型材和电气瞬态事件。

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