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A speed regulating scheme for air-turbine dental handpieces

机译:空气涡轮牙科手机的调速方案

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Air-turbine dental handpieces (ATDH) are used in most of dental practices as the main cutting tool. However, the speed of these handpieces is reduced while cutting a tooth; because no speed controller has been provided for them. This speed-reduction decreases the cutting efficiency of air-turbine handpieces. A review of literature indicated no study concerned with designing a speed controller for ATDH. Thus, in this paper, a control scheme is proposed for regulating the speed including ‘measurement’, ‘actuation’, and ‘controller-design’ stages. An accelerometer was employed to capture vibrations of the handpiece; and the frequency associated with the first peak in the spectrum was indicated to represent the speed. An on/off solenoid valve with pulse-width modulation (PWM) technique was employed to regulate the speed through controlling the input pressure to the handpiece. Changing the duty-cycle of the PWM pulses could vary the speed. A process model from the applied duty-cycle to the measured speed was obtained. This process model includes a linear dynamic and a nonlinear static part. Then, a proportional-integral- (PI) controller was selected, and the gains were tuned. The practicality and efficiency of the proposed control scheme with the PI controller was confirmed by experimental results.
机译:空气涡轮机牙科手机(ATDH)在大多数牙科实践中都被用作主要切削工具。但是,这些机头在切割牙齿时会降低速度。因为没有为他们提供速度控制器。这种减速降低了空气涡轮机手机的切割效率。文献综述表明,没有关于为ATDH设计速度控制器的研究。因此,在本文中,提出了一种用于控制速度的控制方案,包括“测量”,“致动”和“控制器设计”阶段。加速度计用于捕获手机的振动。频谱中第一个峰的频率表示速度。采用具有脉宽调制(PWM)技术的开/关电磁阀通过控制手机的输入压力来调节速度。更改PWM脉冲的占空比可能会改变速度。获得了从应用占空比到测量速度的过程模型。该过程模型包括线性动态部分和非线性静态部分。然后,选择比例积分(PI)控制器,并对增益进行调整。实验结果证实了所提出的PI控制器控制方案的实用性和有效性。

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  • 来源
    《American Control Conference;ACC》|2012年|p.2356- 2361|共6页
  • 会议地点 Montreal(CA)
  • 作者

    Zakeri, Vahid;

  • 作者单位

    Mechatronic Systems Engineering Simon Fraser University Surrey BC Canada;

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