Speed sensorless based adaptive maximum power point tracking control of IPM synchronous wind generator

M. Uddin, N. Patel
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引用次数: 1

Abstract

In the variable speed wind turbine, generator speed can be operated at maximum power operating points by adjusting the shaft speed optimally. This paper presents a speed sensorless based adaptive maximum power point tracking (MPPT) control of interior permanent magnet synchronous wind generator (IPMSWG). For the proposed control system a model reference adaptive system is incorporated to estimate the rotor position. Furthermore, without requiring the knowledge of wind speed, air density or turbine parameters, the MPPT algorithm generates optimum speed command for speed control loop of vector controlled machine side converter. The MPPT algorithm uses the estimated active power output of the generator as its input and generates command speed so that the maximum power is transferred to the dc-link. The performance of the proposed speed sensorless adaptive MPPT control of IPMSWG is tested in both simulation and experiment at variable wind speed conditions.
基于无速度传感器的IPM同步风力发电机自适应最大功率跟踪控制
在变速风力发电机组中,通过对轴转速的优化调整,可以使发电机转速达到最大功率工作点。提出了一种基于无速度传感器的室内永磁同步风力发电机自适应最大功率点跟踪控制方法。在该控制系统中引入了模型参考自适应系统来估计转子位置。此外,MPPT算法在不需要知道风速、空气密度或涡轮参数的情况下,为矢量控制机侧变流器的速度控制回路生成最优速度命令。MPPT算法以发电机输出的估计有功功率作为输入,生成命令速度,将最大功率传输到直流链路。在变风速条件下,对所提出的无速度传感器自适应MPPT控制方法进行了仿真和实验验证。
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