關鍵字查詢 | 類別:會議論文 | | 關鍵字:Instantaneous shaft radial force control with sinusoidal excitations for switched reluctance motors

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序號 學年期 教師動態
1 93/1 機電系 林逢傑 助理教授 會議論文 發佈 Instantaneous shaft radial force control with sinusoidal excitations for switched reluctance motors , [93-1] :Instantaneous shaft radial force control with sinusoidal excitations for switched reluctance motors會議論文Instantaneous shaft radial force control with sinusoidal excitations for switched reluctance motorsLin, Feng-chieh; Yang, Sheng-ming淡江大學機械與機電工程學系Piscataway: Institute of electrical and electronics engineers (IEEE)Industry Applications Conference, 2004. 39th IAS Annual Meeting. Conference Record of the 2004 IEEE, vol.1, pp.424-430In general, unbalanced radial force acting on rotor shaft is undesirable since it causes vibrations. Due to its special structure, the shaft radial force and torque of a three-phase 12/8 switched reluctance motor can be separately controlled by proper selection of pole currents of the energized phase. In this paper, a sinusoidal current excitation scheme is proposed for the torque and radial force control of a 12/8 pole SRM. When controlled with the selected sinusoidal currents the SRM can produce the desired shaft radial force in any direction of the rotation
2 93/1 機電系 楊勝明 教授 會議論文 發佈 Instantaneous shaft radial force control with sinusoidal excitations for switched reluctance motors , [93-1] :Instantaneous shaft radial force control with sinusoidal excitations for switched reluctance motors會議論文Instantaneous shaft radial force control with sinusoidal excitations for switched reluctance motorsLin, Feng-chieh; Yang, Sheng-ming淡江大學機械與機電工程學系Piscataway: Institute of electrical and electronics engineers (IEEE)Industry Applications Conference, 2004. 39th IAS Annual Meeting. Conference Record of the 2004 IEEE, vol.1, pp.424-430In general, unbalanced radial force acting on rotor shaft is undesirable since it causes vibrations. Due to its special structure, the shaft radial force and torque of a three-phase 12/8 switched reluctance motor can be separately controlled by proper selection of pole currents of the energized phase. In this paper, a sinusoidal current excitation scheme is proposed for the torque and radial force control of a 12/8 pole SRM. When controlled with the selected sinusoidal currents the SRM can produce the desired shaft radial force in any direction of the rotation
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