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Power consumption in a piezoceramic transducer for vibrotactile excitation

机译:用于振动触发激励的压电陶瓷传感器中的功耗

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The power consumption is an important factor in the design of vibrotactile displays. An experimental study is presented on the power consumption required to reach tactile thresholds in a piezoceramic transducer as function of the parameters of the excitatory waveform. Two different waveforms are considered: one with an excitatory period formed by a burst of rectangular pulses and the second formed by a burst of sinusoidal pulses. The voltage and current waveforms applied to the piezoceramic transducer to reach sensation thresholds in a group of twelve subjects were sampled and stored in a digital oscilloscope and transferred to a computer. The average power was computed with the voltage and current waveforms for different pulse repetition periods of 1/350, 1/250, 1/150, 1/100, 1/50 s. Results show that the power consumption is smaller using sinusoidal excitation, for the repetition periods of 1/350, 1/250 and 1/150 s, whereas for the rectangular waveform the lowest power consumption was for repetition periods of 1/100 and 1/50 s. The lowest power consumption at threshold was 0.21μW for the sinusoidal excitation and 0.51μW for the rectangular pulse excitation. These results allow to estimate the actual power requirements for tactile displays using piezoceramic transducers.
机译:功耗是振动触觉显示器设计的重要因素。提出了一种实验研究,要求在压电陶瓷换能器中达到触觉阈值所需的功耗,因为兴奋波形参数的功能。考虑了两个不同的波形:一种具有由矩形脉冲突发形成的兴奋时段,并且由脉冲脉冲脉冲突发形成。采样施加到压电传感器的电压和电流波形以在一组十二个受试者中达到感觉阈值,并存储在数字示波器中并传输到计算机。使用电压和电流波形计算平均功率,用于不同脉冲重复周期1/350,1 / 250,1 /150,1 /100,1 / 50 s的电压和电流波形。结果表明,使用正弦励磁功耗较小,用于重复于1/350,1 / 250和1 / 150s的重复期,而对于矩形波形,功耗最低为1/100和1/1 / 50秒。对于正弦励磁的阈值下的最低功耗为0.21μW,矩形脉冲激励为0.51μW。这些结果允许估计使用压电陶瓷换能器的触觉显示器的实际功率要求。

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