永磁同步风力发电机组变桨距系统中神经网络预测控制器的设计与仿真

Suyanto, Soedibyo, Aji Akbar Firdaus
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引用次数: 10

摘要

本文研究了风力发电机组的最大功率提取问题。然而,随着风能对配电网的贡献越来越大,风力发电机稳定输出功率的重要性也在增加。这对今后的俯仰角控制问题有一定的指导意义。永磁同步发电机(PMSG)风力发电机组变桨距系统是通过改变发电机的电气特性和改变桨距角来实现的。此外,PMSG风力涡轮机可变螺距系统还配备了用于调节涡轮机轴线对风和对天际线的方向角的系统。概述了PMSG风力发电机组变桨距系统中神经网络预测控制器(NNPC)-桨距角的设计与仿真。在风速为7 ~ 10m /s的范围内,对基线线性控制器的性能设计进行了仿真。为了验证所设计的nnpc -俯仰角性能,对PMSG风力发电机组变俯仰角系统进行了仿真,结果表明该系统的输出功率是恒定的。
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Design and simulation of Neural Network Predictive Controller pitch-angle in permanent magnetic synchronous generator wind turbine variable pitch system
This paper considered maximum power extraction in wind turbines. However, the importance of constant power output of a wind turbine is increasing as the contribution of wind energy to the distribution network / grid grows. This may be considered as a guide of the future pitch angle control problems. The permanent magnetic synchrounous generator (PMSG) wind turbine variable pitch system is done through changing the electrical characteristics of the generator and changing the pitch angle. Also PMSG wind turbine variable pitch system is equipped with systems for regulating the orientation angles of the axis of the turbine against the wind and against the skyline. The design and simulation of Neural Network Predictive Controller (NNPC)-pitch angle involved in PMSG wind turbine variable pitch system is outlined. Its performance design is simulated to baseline linear controller through simulation in the range of wind speed is 7- 10 m/s. To test the designed NNPC-pitch angle performance, PMSG wind turbine variable pitch system has been simulated and results are constant power output.
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