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首页> 外文期刊>Indian Journal of Science and Technology >Modified Speed Sensor-less Grid Connected DFIG based WECS
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Modified Speed Sensor-less Grid Connected DFIG based WECS

机译:基于WECS的改进的无速度传感器并网DFIG

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This paper presents a new Phase Locked Loop (PLL) based slip speed estimator for speed sensor less field oriented vector control operation of variable speed grid connected Wind Energy Conversion System (WECS). Three phase rotor current is used to design a PLL based slip estimator for speed sensor-less vector control operation of rotor side converter. The proposed speed sensor-less grid connected Double Fed Induction Generator (DFIG) based WECS is used for decoupled control of stator active and reactive power to ensure maximizing the power generation at unity power factor under varying wind speed. The speed sensor-less Vector control scheme is also incorporated with an optimal speed tracking controller for maximum energy capture in the rated wind speed range and restrict the mechanical output power to the rated value using pitch angle control when the wind velocity crosses rated limit to prevent overloading and outage of the wind turbine. The proposed method does not require the information of rotor speed or position for speed sensor less DFIG based WECS unlike other published methods. Simulation has been carried out in MATLAB/Simulink environment and results have been analyzed. Results show that the proposed speed sensor-less DFIG system can operate at its optimum energy level for a wide range of wind speed and is capable for satisfactory operation of the variable speed WECS.
机译:本文提出了一种新的基于锁相环(PLL)的滑差速度估计器,用于变速风电并网风能转换系统(WECS)的速度传感器无磁场定向矢量控制操作。三相转子电流用于设计基于PLL的滑差估计器,用于转子侧变流器的无速度传感器矢量控制操作。提议的基于速度的无速度传感器并网双馈感应发电机(DFIG)基于WECS用于定子有功和无功功率的解耦控制,以确保在风速变化时以单位功率因数最大化的发电。无速度传感器矢量控制方案还结合了最佳速度跟踪控制器,以在额定风速范围内获得最大的能量捕获,并在风速超过额定极限时使用桨距角控制将机械输出功率限制在额定值,以防止风力涡轮机的过载和停机。与其他已公开的方法不同,该方法不需要基于速度传感器的基于DFIG的WECS的转子速度或位置信息。在MATLAB / Simulink环境中进行了仿真,并对结果进行了分析。结果表明,所提出的无速度传感器DFIG系统可以在最宽的风速范围内以最佳能量运行,并且能够令人满意地运行变速WECS。

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