首页> 外文会议>2012 4th IEEE RAS amp; EMBS International Conference on Biomedical Robotics and Biomechatronics >Design and experimental characterization of a gas flow generator to calibrate flow meters for neonatal ventilation
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Design and experimental characterization of a gas flow generator to calibrate flow meters for neonatal ventilation

机译:用于新生儿换气的校准流量计的气流发生器的设计和实验特性

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A variable gas flow generator (GFG) for dynamic characterization of flowmeters is described. The GFG is an electromechanical system consisting of a spherical chamber where air, compressed by four cylinder-piston systems, flows through a circular aperture. Experimental data show that the pistons displacement of GFG can accurately follow a sinusoidal waveform up to 22 Hz (RMSE<0.16 mm). Flow rates generated by the above mentioned displacement waveforms can also be assumed sinusoidal. After the experimental characterization, the GFG is used to assess the frequency response of an orifice meter (OM) designed to be used in neonatal ventilation. Experimental data show that the OM has good dynamic response, being able to detect sinusoidal flow rates up to 22 Hz. With reference to the dynamic response, the ad hoc designed OM satisfies the requirements for measuring flow in neonatal ventilation.
机译:描述了用于流量计动态特性的可变气体流量发生器(GFG)。 GFG是一种机电系统,由一个球形腔组成,在该球形腔中,由四个气缸活塞系统压缩的空气流过一个圆形孔。实验数据表明,GFG的活塞位移可以精确地遵循高达22 Hz(RMSE <0.16 mm)的正弦波形。由上述位移波形产生的流量也可以假定为正弦波。经过实验表征后,GFG用于评估设计用于新生儿通气的孔板(OM)的频率响应。实验数据表明,OM具有良好的动态响应,能够检测高达22 Hz的正弦流速。关于动态响应,特设的OM设计满足了新生儿通气中流量测量的要求。

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