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    Please use this identifier to cite or link to this item: http://ir.lib.ncu.edu.tw/handle/987654321/69061

    Title: 類弦波反電動式無刷直流馬達之SVPWM研究;Non-sinusoidal back electromotive force brushless DC motor of SVPWM research
    Authors: 邱瑋國;Ciou,Wei-Guo
    Contributors: 電機工程學系
    Keywords: SVPWM;反電動勢;諧波分析;切換損耗;無刷馬達;SVPWM;back-EMF;harmonic component;switching loss;BLDC
    Date: 2015-08-28
    Issue Date: 2015-09-23 15:12:50 (UTC+8)
    Publisher: 國立中央大學
    Abstract: 本研究討論馬達只有霍爾傳感器情況下,使用基礎的空間向量脈波寬度調變,相較於六步控制可以提升馬達在各轉速與負載下的效率、並使馬達對於外部負載變化可以有更好的響應、提高馬達最大力矩輸出;另外地提出空間向量脈波寬度調變電壓向量的,排列方式調整以減少反流器切換損耗,並配合三相電流流動方向調整電壓向量的排列方式,藉由電壓向量排列方式與三相電流方向,調控MOS開關切換方式提高馬達運轉時效率。
    ;The study consider the motor only with the Hall sensor motor, and still can use under different the space vector pulse width modulation to improve motor efficiency speed and load infinite compared with six-steps control. The designed SVPWM could increase the maximum torque output. Also, properly arranging the SVPWM voltage vector pattern can reduce switching loss. In accordance with the motor three-phase current, this study adjusts the SVPWM voltage vector pattern. To reducing switching losses and enhance the motor efficiency.
    The back-EMF of brushless DC motor include trapezoidal wave, sine wave, and even sine wave with harmonic components. The study analysis motor back-EMF first, and then add the harmonic components into the space vector pulse width modulation. Thus the adjusted space vector pulse width modulation drive can have more ideal motor phase current. Moreover, a sound meter is used to measure noises induced by six-step control, SVPWM, adjusted SVPWM.
    Appears in Collections:[電機工程研究所] 博碩士論文

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