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基于差动轮系调速的风力发电机的动力学建模与分析
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作者 陆从飞 芮晓明 《机械工程与技术》 2014年第3期91-98,共8页
对基于无级调速原理的风力发电机动力学建模,改变传统风力发电机的齿轮箱传动比固定而采用电子方法实现变速恒频的特性,通过增加差动轮系的自由度,采用机械调速方式进行前端调速,使输出转速与转矩恒定,达到变速恒频的目的。以实现调速... 对基于无级调速原理的风力发电机动力学建模,改变传统风力发电机的齿轮箱传动比固定而采用电子方法实现变速恒频的特性,通过增加差动轮系的自由度,采用机械调速方式进行前端调速,使输出转速与转矩恒定,达到变速恒频的目的。以实现调速功能的差动轮系为主要研究对象,将整个风力发电机传动链简化成三个部分:行星架输入轴、太阳轮输出轴和齿圈调速轴,并运用拉格朗日方程和差动轮系转速约束关系,建立动力学方程。结合风力发电机并网要求,此外还研究了该情形下的动力学关系,将并网后的动力学问题即转化为:输出转速恒定条件时,可变的风轮转矩作用下,调速电机的调速问题。 展开更多
关键词 无级调速 行星架输入 太阳轮输出 调速端 动力学
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Analysis of grid-connected voltage stability of FSCWT based on bifurcation theory
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作者 HE Ai-huan ZHANG Rui-ping DONG Hai-ying 《Journal of Measurement Science and Instrumentation》 CAS CSCD 2018年第1期16-24,共9页
This paper studies on the change mechanisms of the voltage stability caused by the grid connection of front-end speed-controlled wind turbines(FSCWT)integrating into power system.First of all,the differential algebrai... This paper studies on the change mechanisms of the voltage stability caused by the grid connection of front-end speed-controlled wind turbines(FSCWT)integrating into power system.First of all,the differential algebraic equations describing the dynamic characteristics of wind turbines are illustrated.Then,under the guidance of IEEE3 node system model,the influence of the angular velocity of wind turbines,the reactive power and the active power at load bus on the voltage stability of grid-connection has been analyzed by using bifurcation theory.Finally,the method of linear-state feedback control has been applied to the original system in accordance with the bifurcation phenomenon of grid-connected voltage caused by the increase in the active power at load bus.Research shows that voltage at the grid-connected point would be changed with the fluctuation of turbines angular velocity.And increasing its reactive power can enhance voltage at the grid-connected point;problem of bifurcation at the grid-connected point can be delayed when increasing the gain k s of feedback controller within a certain range. 展开更多
关键词 bifurcation theory power system front-end speed controlled wind turbines(FSCWT) voltage stability
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