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An improved sensorless decoupled power control scheme of grid connected variable speed wind turbine generator

机译:改进型并网变速风力发电机无传感器解耦功率控制方案

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摘要

This paper proposes an improved sensorless control for a variable speed-constant frequency generation system based on a doubly fed induction generator (DFIG). The rotor position and speed estimation method is based on a modified phase-locked-loop (MPLL). Using the measured stator voltages and rotor currents, the proposed algorithm can directly generates the rotor position and speed by simple arithmetic operations using the PLL basis. The speed is estimated independently of the machine parameters and the algorithm avoids using differentiation, which results in a substantial improvement in control robustness and improves its immunity to noise. This paper also presents the design of a space-vector-based hysteresis current control (SVBHCC) technique applied to a three level neutral-point-clamped (NPC) inverter to enhance the control system performance and achieve high power quality. The algorithm allows a systematic application of zero-voltage vectors that leads in reducing the average switching frequency. Furthermore, the space-vector-based approach reduces the interference between the commutations of the three phases. Simulation results confirm the effectiveness and validity of the proposed control approach.
机译:本文提出了一种基于双馈感应发电机(DFIG)的变速恒频发电系统的改进的无传感器控制。转子位置和速度估算方法基于改进的锁相环(MPLL)。利用所测得的定子电压和转子电流,所提出的算法可以使用基于PLL的简单算术运算直接生成转子位置和速度。速度的估计与机器参数无关,并且算法避免了使用微分,从而大大提高了控制鲁棒性并提高了其抗噪性。本文还提出了一种基于空间矢量的磁滞电流控制(SVBHCC)技术的设计,该技术应用于三电平中点钳位(NPC)逆变器,以增强控制系统性能并实现高功率质量。该算法允许零电压矢量的系统应用,从而降低平均开关频率。此外,基于空间矢量的方法减少了三相换相之间的干扰。仿真结果证实了所提出的控制方法的有效性和有效性。

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