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首页> 外文期刊>Revue roumaine des sciences techniques >COMPARATIVE STUDY BETWEEN TWO SENSORLESS METHODS FOR DIRECT POWER CONTROL OF DOUBLY FED INDUCTION GENERATOR
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COMPARATIVE STUDY BETWEEN TWO SENSORLESS METHODS FOR DIRECT POWER CONTROL OF DOUBLY FED INDUCTION GENERATOR

机译:双馈感应发电机直接功率控制的两种无传感器方法的比较研究

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摘要

In this paper two control system proposed and then applied for a DFIG by variable speed wind turbine under unbalanced grid voltage. In this control system the rotor position sensor is eliminated by using two methods for detecting the rotor position. Also, presents an analysis and comparison study of two sensorless methods for the detection of rotor position of the doubly fed induction generator (DFIG). These two methods were compared with each other under different condition Le. various unbalanced voltage, super-synchronous, sub-synchronous and variable speed and in the end, Advantage of any of the methods is expressed. The two methods studied in this paper for rotor position estimation, are rotor current model reference adaptive system (MRAS) and using of a sensorless strategy. Both methods obtained required information for rotor position estimation by measuring stator voltage, stator and rotor current. Till now, has not been used from sensorless algorithms and MRAS observer for DFIGs control when the network voltage is unbalanced. Also, during network unbalance, three selectable control targets are identified for the rotor side converter (RSC), Le. obtaining sinusoidal and symmetrical stator currents, mitigation of active and reactive powers ripples and the cancellation of electromagnetic torque oscillations. A case study on a typical 2 MW DFIG based wind turbine demonstrating the effectiveness of the proposed control methods is verified with simulations in Matlab/Simulink.
机译:本文提出了两种控制系统,然后在变速电网电压不平衡的情况下,将其应用于变速风力发电机的双馈风力发电机。在该控制系统中,通过使用两种检测转子位置的方法来消除转子位置传感器。此外,提出了两种无传感器方法用于双馈感应发电机(DFIG)转子位置检测的分析和比较研究。将这两种方法在不同的条件下进行了比较。各种不平衡电压,超同步,次同步和变速,最后,表达了任何一种方法的优势。本文研究的两种用于转子位置估计的方法是转子电流模型参考自适应系统(MRAS)和使用无传感器策略。两种方法都可以通过测量定子电压,定子和转子电流来获得估计转子位置所需的信息。到目前为止,当网络电压不平衡时,尚未使用无传感器算法和MRAS观察器来进行DFIG的控制。同样,在网络不平衡期间,为转子侧变频器(RSC)Le确定了三个可选的控制目标。获得正弦和对称的定子电流,有功和无功功率脉动的减轻以及电磁转矩振荡的消除。通过在Matlab / Simulink中进行的仿真,验证了一个典型的基于2 MW DFIG的风力发电机的案例研究,证明了所提出的控制方法的有效性。

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