電気学会論文誌D(産業応用部門誌)
Online ISSN : 1348-8163
Print ISSN : 0913-6339
ISSN-L : 0913-6339
PAM方式極数切換誘導電動機のインダクタンス行列と巻線係数の検討
PAM方式によって8極から6極へ切り換える場合
山崎 博之土谷 武士穴澤 義久田島 克文加賀 昭夫小井戸 正之
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1994 年 114 巻 9 号 p. 862-870

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A pole-changing induction motor with pole-amplitude modulation (PAM) has a single-winding system, and has a unique speed ratio other than 1: 2. It provides an excellent energy-saving property when used for the flow control system of pumps and blowers. This, therefore, has attracted considerable attention in a field of flow control design.
However the method of conversion from an 8-pole to a 6-pole induction motor by using this PAM becomes complicated compared with the method of conversion to a 10-pole motor. In addition, the induction motor designed by this approach is likely to be affected by large harmonic magnetomotive forces, and therefore needs careful investigation in the design.
This paper describes the harmonic torque prevention approach done by using the unified theory of electrical machinery for the case of 8-pole to 6-pole conversion by PAM. From the result of analysis and speed-torque experiment, it is shown that this induction motor is driven by the negative-phase revolving magnetic field due to the 3rd order harmonic, and that there appear 13th harmonic asynchronous crawling torque in motor region and 11th harmonic asynchronous torque in braking region. It is also shown that a long-pitch winding with a machine angle of 8/24 is recommended for the motor design so that the 11th and the 13th harmonic torques are removed.
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