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Analyzing Rotor Rotating Error by Using Fractal Theory

Analyzing Rotor Rotating Error by Using Fractal Theory
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摘要 Based on the judgement of fractional Br ow nian motion, this paper analyzes the radial rotating error of a precision rotor. The results indicate that the rotating error motion of the precision rot or is characterized by basic fractional Brownian motions, i.e. randomicity, non -sequencity, and self-simulation insinuation to some extent. Also, this paper calculates the fractal box counting dimension of radial rotating error and judges that the rotor error motion is of stability, indicating that the motion range of the future track of the axes is relatively stable. Based on the judgement of fractional Br ow nian motion, this paper analyzes the radial rotating error of a precision rotor. The results indicate that the rotating error motion of the precision rot or is characterized by basic fractional Brownian motions, i.e. randomicity, non -sequencity, and self-simulation insinuation to some extent. Also, this paper calculates the fractal box counting dimension of radial rotating error and judges that the rotor error motion is of stability, indicating that the motion range of the future track of the axes is relatively stable.
作者 WANGKai LIYan
出处 《International Journal of Plant Engineering and Management》 2004年第4期236-240,共5页 国际设备工程与管理(英文版)
关键词 fractional Brownian motions variance rad ial rotating error fractal box counting dimension fractional Brownian motions, variance, rad ial rotating error, fractal box counting dimension
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参考文献5

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