• Title/Summary/Keyword: single phase SRM.

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Torque Characteristic Measurement of Disk Type Single Phase SRM for Fan Drive (팬 구동용 다스크형 단상 SRM의 토오크 특성 측정)

  • Kim, Yong-Heon;Lee, Jong-Han;Lee, Eun-Woong;Lee, Hyeon-Woo
    • Proceedings of the KIEE Conference
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    • 2004.04a
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    • pp.3-5
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    • 2004
  • The single phase SRM has some demerits that has a torque ripple, noise and vibration because of being excited by switching pulse power source. Therefore, to make up for these demerits, it is realized many studies for the structure design used by computer and the operating methods by power electronic technique. On this paper, we will measure the accurate torque characteristics of the disk type single phase SRM, which is designed and manufactured for fan drive through the previous studies. With this results, we'll find the control elements to reduce the torque ripple and then design and manufacture the optimal drive circuit.

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Magnetization Curves Measurement for Fundamental Characteristics Analysis of Disk-type Single Phase SRM (Disk형 단상 SRM의 기본 특성 해석을 위한 자화곡선 측정)

  • Lee, Chung-Won;Lee, Jong-Han;Lee, Eun-Woong;Oh, Young-Woong
    • Proceedings of the KIEE Conference
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    • 2003.04a
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    • pp.91-93
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    • 2003
  • Disk type Single Phase SRM(Switched Reluctance Motor) can be used axial direction magnetic flux and radial direction magnetic flux. In this paper, the flux linkage was measured according as rotor positions of disk-tyre single phase SRM, which is designed and manufactured in previous research. From the measured data, we got the magnetization curves, inductance profile and Co-energy.

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Measuring the Average Torque according to Exciting Region of Single Phase SRM (단상 SRM의 여자구간에 따른 평균 토크 측정)

  • Kim Yong-Heon;Lee Eun-Woong;Lee Jong-Han;Lee Hyeon-Woo;Kim Jun-ho
    • Proceedings of the KIEE Conference
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    • summer
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    • pp.989-991
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    • 2004
  • There are many elements that affect the average torque of the single phase SRM. It is related with the stator and rotor pole arcs, the dwell angle of the exciting current, the turn on/off angle, etc., Most of all, the turn on/off angle is affect the design procedure of the driving and control circuit. So, in this study, it is intend to analyze the effect that the variations of the turn on/off angle affects the average torque. and then this analyses will be used to design the control driver of the single phase SRM.

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Influence of Pole Arc and Salient Pole length on Torque of Salient Pole Rotor Type Single Phase SRM (회전자 돌극형 단상 SRM에서 극호와 돌극 길이가 토오크에 미치는 영향)

  • Kim, Jun-Ho;Lee, Eun-Woong;Oh, Young-Woong;Lee, Min-Myung;Yeo, Sang-Kyom
    • Proceedings of the KIEE Conference
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    • 2001.10a
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    • pp.107-109
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    • 2001
  • The salient pole rotor type single phase SRM has a salient pole in the rotor in order to use axial direction fluxes and radial direction fluxes simultaneously. A flux linkage between the rotor and the stator are increased because of the salient pole in the rotor. But, the inductance at unaligned position and aligned position is increased together. Therefore, the length of pole are and salient pole should be selected that the inductance increment at aligned position is higher than the inductance increment at unaligned position. On this paper, we will be studied the influence of the pole arc and the salient pole length on the torque of the salient pole rotor type single phase SRM.

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The Optimum Design of the Permanent Magnet Starting Device used in the Single-Phase SRM (단상 SRM에 사용되는 영구자석 기동장치의 최적 설계 II)

  • Kim, Jun-Ho;Lee, Eun-Woong;Lee, Jong-Han;Lee, Min-Myung
    • Proceedings of the KIEE Conference
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    • 2005.10c
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    • pp.41-43
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    • 2005
  • The single-phase SRM(switched reluctance motor) has only one inductance variation and the positive torque is not generated in all section. So, the single-phase SRM can be started by itself if the rotor is placed at the positive slope of inductance variation by the starting device. In the previous study, equation of the magnetic force of the starting device at the acting point is derived. This paper describes the calculation of the magnetic force at the acting point by making an experiments.

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Torque Ripple Reduction Drive of Single-Phase SRM with High Power Factor (단상 SRM의 토크리플 저감을 고려한 고역률 구동)

  • Kim B.C.;Park S.J.;Ahn J.W.
    • Proceedings of the KIPE Conference
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    • 2003.07a
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    • pp.481-484
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    • 2003
  • A strategy for a torque ripple reduction drive of single-phase SRM with high power factor is proposed. The drive for switched reluctance motor (SRM) is presented to achieve sinusoidal, near unity power factor input current with low torque ripple. The proposed SRM drive has no additional active switch. And a single-stage approach, which combines a DC link capacitor used as dc source and a drive used for driving the motor into one power stage, has a simple structure and low cost. The characteristics and validity of the proposed circuit is discussed in depth through the experimental results.

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Torque Ripple Reduction Drive of Single-Phase SRM with High Power Factor (고역률 저토크 단상 SRM)

  • Kim Bong-Chul;Park Sung-Jun;Ahn Jin-Woo
    • Proceedings of the KIPE Conference
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    • 2004.07b
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    • pp.959-962
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    • 2004
  • A strategy for a torque ripple reduction drive of single-phase SRM with high power factor is proposed. The drive for switched reluctance motor (SRM) is presented to achieve sinusoidal, near unity power factor input current with low torque ripple. The proposed SRM drive has no additional active switch. And a single-stage approach, which combines a DC link capacitor used as do source and a drive used for driving the motor into one power stage, has a simple structure and low cost. The characteristics and validity of the proposed circuit is discussed in depth through the experimental results.

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The Influence of The Starting Permanent Magnet on Mo-Load Speed of The Salient Pole Rotor Type Single Phase SRM (영구자석 기동장치가 회전자 돌극형 단상 SRM의 무부하 속도에 미치는 영향)

  • Kim, Jun-Ho;Lee, Eun-Woong;Cho, Hyun-Kil;Lee, Seong-Min;Lee, Hwa-Soo
    • Proceedings of the KIEE Conference
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    • 2002.11d
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    • pp.73-75
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    • 2002
  • Single phase SRM(switched reluctance motor) is very simple in structure and in driving circuit than three phase SRM. But it can't be started by itself. The prototype of salient pole rotor type single phase SRM was fabricated in former research and the starting device was installed in bottom of the rotor for generating start torque. The starting device is composed of permanent magnet and it is placed the rotor at specific position which is generated positive torque when the prototype is started. Therefore the prototype was started by itself but it is also affected the torque and the speed in operation. On this paper, the influence of the starting device on no-load speed of the prototype was confirmed by measurement of no-load speed according to installation of the starting device or not.

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Single Phase Switched Reluctance Motor for Vacuum Cleaner (진공청소기용 단상 스위치드 리럭턴스 모터)

  • Lim, Jun-Young;Jung, Yun-Chul;Kim, Sang-Young;Choi, Yong-Won;Kim, Jungn-Chul
    • Proceedings of the KIPE Conference
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    • 2001.07a
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    • pp.247-251
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    • 2001
  • Universal motors are mainly used for vacuum cleaner application. There are a lot of researches on SRM that applys home appliance throughout the world. The manufacturing cost of SRM drive makes it hard to expand its application to home appliance. This paper presents Single Phase SRM for the vacuum cleaner that has advantge in cost and performance over conventional universal motor. This paper proposes new power device driving scheme by using SRM switching characteristic. The driving scheme is very simple and inexpensive. Dwell Time Control method is used for the minimum switching loss of power device. The switching frequency of power device is less than 4.5kHz at 45,000rpm. By use of this scheme, power device based on very small switching losses can be used on SRM drive. Also, the biggest problem in single phase SRM is starting, this paper shows a new starting algorithm with two hall sensors, accelerating and running sensors, respectively. Finally, the proposed Single Phase SRM achieves higher efficiency and long life time compared to universal motor. Its life time is more than 1500 hours. Its life time is extended 4 times than that of conventional motor and its suction power is increased $20\%$ at the same volume of conventional universal motor.

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