首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Maximum Power Point Tracking of DFIG with DC-Based Converter System Using Coordinated Feedback Linearization Control
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Maximum Power Point Tracking of DFIG with DC-Based Converter System Using Coordinated Feedback Linearization Control

机译:基于协调反馈线性化控制的基于DC的转换器系统DFIG的最大功率点跟踪

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摘要

This paper presents a coordinated feedback linearization strategy (CFLS) for DC-based doubly-fed induction generator (DFIG) system to track the maximum power point. The stator and rotor of DFIG are connected to DC grid directly by two voltage source converters. Compared with a traditional DFIG system, the DC-based DFIG system has more system inputs and coupling, which increases the difficulty of vector control strategy. Accordingly, CFLS is proposed to make DFIG operate at the maximum power point (MPP), and two aspects are improved first a single-loop control is adopted to make DFIG operate steady and accurate under coordinated the control of RSC and SSC. Second system control laws are obtained by the feedback linearization strategy that achieves DC-based DFIG system decoupling fully during the MPPT and system control. Simulations are carried out the comparison between CFLS and conventional vector control (VC), and it shows that the control performance of CFLS is superior.
机译:本文提出了一种基于DC的双馈感应发电机(DFIG)系统的协调反馈线性化策略(CFLS),以跟踪最大功率点。 DFIG的定子和转子通过两个电压源转换器直接连接到DC电网。与传统的DFIG系统相比,基于DC的DFIG系统具有更多的系统输入和耦合,这增加了矢量控制策略的难度。因此,提出了CFLS来使DFIG在最大功率点(MPP)下运行,并且在两个方面进行了改进:首先,采用单环控制使DFIG在RSC和SSC的协调控制下稳定而准确地运行。第二系统控制定律是通过反馈线性化策略获得的,该策略在MPPT和系统控制期间完全实现了基于DC的DFIG系统的去耦。通过仿真比较了CFLS和常规矢量控制(VC),表明CFLS的控制性能优越。

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