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Potential Accuracy of Methods of Laser Doppler Anemometry in the Single-Particle Scattering Mode

机译:单粒子散射模式中激光多普勒风光测压方法的潜在准确性

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摘要

Potential accuracy of methods of laser Doppler anemometry is determined for the single-particle scattering mode where the only disturbing factor is shot noise generated by the optical signal itself. The problem is solved by means of computer simulations with the maximum likelihood method. The initial parameters of simulations are chosen to be the number of real or virtual interference fringes in the measurement volume of the anemometer, the signal discretization frequency, and some typical values of the signal/shot noise ratio. The parameters to be estimated are the Doppler frequency as the basic parameter carrying information about the process velocity, the signal amplitude containing information about the size and concentration of scattering particles, and the instant when the particles arrive at the center of the measurement volume of the anemometer, which is needed for reconstruction of the examined flow velocity as a function of time. The estimates obtained in this study show that shot noise produces a minor effect (0.004-0.04%) on the frequency determination accuracy in the entire range of chosen values of the initial parameters. For the signal amplitude and the instant when the particles arrive at the center of the measurement volume of the anemometer, the errors induced by shot noise are in the interval of 0.2-3.5%; if the number of interference fringes is sufficiently large (more than 20), the errors do not exceed 0.2% regardless of the shot noise level.
机译:针对单粒子散射模式确定激光多普勒式风皮测定方法的潜在精度,其中唯一干扰因子是由光学信号本身产生的截图噪声。通过计算机仿真解决了具有最大似然法的问题解决了问题。选择的初始参数被选择为风速计计的测量体积,信号离散频率和信号/射线噪声比的一些典型值中的真实或虚拟干扰条纹的数量。要估计的参数是多普勒频率作为携带关于处理速度的基本参数的基本参数,该信号幅度包含关于散射颗粒的尺寸和浓度的信息,以及颗粒到达测量体积的中心时的速度风速计,需要作为时间的函数重建检查的流速。本研究中获得的估计表明,拍摄噪声在初始参数的整个选择值范围内的频率确定精度产生了轻微效果(0.004-0.04%)。对于信号幅度和瞬间当粒子到达风速计的测量体积的中心时,由射击噪声引起的误差为0.2-3.5%;如果干扰条纹的数量足够大(超过20),无论射门噪声水平如何,误差都不会超过0.2%。

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