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Design of a Novel Photomultiplier Power Supply for Laser Doppler Velocimetry Measurement in Flow Boundary Layers

机译:流动边界层激光多普勒速度测量新型光电倍增电源的设计

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In the context of fluid dynamics studies for aerospace industry, Laser Doppler Velocimetry (LDV) technique is employed, especially for fluid velocity measurements in the immediate vicinity of aircraft surfaces called Boundary Layer (BL). One of the major problems in this case is caused by high level light intensity reflected by these surfaces, thus disturbing the behavior of photomultipliers (PM), which are the main sensors used for LDV measurements. In this paper, we describe a new PM power supply for LDV in flow boundary layers, specially designed to, firstly, suppress the large DC light intensity caused by reflections and, secondly, to amplify the AC LDV signal. A theoretical model is also proposed to assess the bias and variances of Doppler frequency estimations. This model takes into account the corpuscular nature of light to represent the large level additive shot-noise caused by wall reflections. Furthermore, an experimental setup has been built to validate our theoretical model. Experimental results are given and show that the proposed system makes great improvements, in comparison with classical power supply, in terms of rate of velocity measurements and standard deviation of Doppler frequency estimations.
机译:在用于航空航天工业流体动力学研究的背景下,激光多普勒测速仪(LDV)技术采用,特别是对于在飞机表面的附近称为边界层(BL)的流体速度的测量。一个在此情况下,主要问题是由这些表面反射的高水平的光强度引起的,从而干扰光电倍增管(PM),其是用于测量LDV主传感器的行为。在本文中,我们描述了LDV新PM电源在流边界层,专门设计的,首先,抑制因反射的大的直流光强度,其次,以放大所述AC LDV信号。的理论模型,还提出以评估偏压和多普勒频率估计的方差。该模型考虑了光的微粒性质来表示大水平由添加剂的墙壁反射的散粒噪声导致的。此外,实验装置已建成,以验证我们的理论模型。给出了实验结果,并表明,所提出的系统使很大的改进,在与传统电源相比,在速度测量的速率和多普勒频率估计的标准偏差的条款。

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