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Back EMF detection circuit and method for a sensorless brushless DC (BLDC) motor

机译:用于无传感器无刷直流(BLDC)电机的反电动势检测电路和方法

摘要

A prior art direct back EMF detection method synchronously sampled motor back EMF during PWM “off” time without the need to sense or re-construct the motor neutral in a sensorless brushless DC (BLDC) motor drive system. Since this direct back EMF sensing scheme requires a minimum PWM “off” time to sample the back EMF signal, the duty cycle cannot reach 100%. Also in some applications, for example, high inductance motors, the long settling time of a parasitic resonant between the motor inductance and the parasitic capacitance of power devices can cause false zero crossing detection of back EMF. An improved direct back EMF detection scheme samples the motor back EMF synchronously during PWM “on” time at high speed. In the final system the motor back EMF can be detected during PWM “off” time at low speed, and it is detected during PWM “on” time at high speed. With the combination of the prior art and the improved back EMF sensing schemes, the duty cycle can be extended to a 100% duty cycle, and the impact of the parasitic resonant between motor inductance and the power device capacitance can be minimized.
机译:现有技术的直接反电动势检测方法在PWM“关断”时间内对电动机反电动势进行同步采样,而无需在无传感器无刷直流(BLDC)电动机驱动系统中感应或重建电动机中性点。由于这种直接反向EMF感应方案需要最少的PWM“关闭”时间来采样反向EMF信号,因此占空比不能达到100%。同样在某些应用中,例如,高电感电动机,电动机电感与功率器件的寄生电容之间的寄生谐振的建立时间过长,可能会导致对反电动势的错误过零检测。改进的直接反电动势检测方案可在PWM的“接通”时间内高速同步采样电动机反电动势。在最终系统中,可以在低速PWM“关闭”期间检测到电动机反电动势,而在高速PWM“开启”期间可以检测到电动机反电动势。通过将现有技术和改进的反电动势感测方案相结合,可以将占空比扩展到100%占空比,并且可以使电动机电感和功率器件电容之间的寄生谐振的影响最小化。

著录项

  • 公开/公告号US2006152181A1

    专利类型

  • 公开/公告日2006-07-13

    原文格式PDF

  • 申请/专利权人 JIANWEN SHAO;DENNIS NOLAN;

    申请/专利号US20050082288

  • 发明设计人 JIANWEN SHAO;DENNIS NOLAN;

    申请日2005-03-17

  • 分类号H02P7/06;

  • 国家 US

  • 入库时间 2022-08-21 21:48:29

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