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Nonlinear Controller with Rotor Crowbar and DC-Chopper Fault Ride Through Technique for Grid-Connected Doubly-Fed Induction Generator

机译:带有转子撬棍的非线性控制器和DC斩波器故障通过技术进行网格连接的双馈感应发电机

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The most significant drawback of the Doubly Fed Induction Generator (DFIG) is its susceptibility to grid fault due to its stator windings being directly connected to the grid. The stator and rotor of the DFIG are electromagnetically coupled, therefore, the resulting stator current surge during low voltage dip provokes inrush current at the delicate back-to-back converters and an overcharge of the DC-link capacitor. In this paper, a robust nonlinear controller, under the context of Lyapunov stability theory, is first employed to control the Rotor and Grid Side Power Converters under normal grid conditions. Under grid fault, the nonlinear controller is then coupled with Active crowbar and DC chopper protection schemes to ameliorate the performance of the DFIG system to ride through fault. Simulation of a 1.5MW wound rotor induction generator under MATLAB/SIMULINK is carried out using the PI-controller (PIC) and Adaptive Backstepping Controller (ABC). Analysis and comparisons are made for different operating scenarios: speed variation, grid fault, grid fault with protection schemes activated.
机译:双馈感应发生器(DFIG)的最显着缺点是由于其定子绕组直接连接到栅格,其对电网故障的易感性。 DFIG的定子和转子被电磁耦合,因此,低电压下的所得定子电流浪涌在精细背对背转换器处引起浪涌电流和DC链路电容的过充电。本文首先采用稳健的非线性控制器,在Lyapunov稳定性理论的上下文中,在普通的网格条件下控制转子和电网侧功率转换器。在电网故障下,非线性控制器然后与活动撬棍和直流斩波器保护方案耦合,以改善DFIG系统的性能才能通过故障。使用PI-Controller(PIC)和自适应BackStepping控制器(ABC)进行MATLAB / Simulink下的1.5MW缠绕转子感应发生器的仿真。采用不同的操作场景进行分析和比较:激活保护方案的速度变化,电网故障,电网故障。

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