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Frequency-locked light scattering: real-time Doppler velocimetry with closed-loop feedback control

机译:锁频光散射:带闭环反馈控制的实时多普勒测速仪

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Real-time measurement capability of a frequency-modulated filtered light-scattering- (FM FLS) Doppler velocimeter has been demonstrated. Doppler-shifted light from a frequency-modulated Ti:sapphire laser scattered from a supersonic flow is imaged through a potassium vapor cell and is detected by FM spectroscopy. The FM signal is used in closed-loop feedback control of the laser frequency to lock the Doppler-shifted scattered light to the resonance frequency of the filter. The difference between the filter resonance frequency and the laser frequency when the scattered light is frequency locked to the filter resonance is the flow-induced Doppler shift. Changes in flow velocity are tracked by changes in laser frequency, which is subsequently measured to obtain the Doppler shift. The frequency-locking capability of the technique was achieved with use of a simple analog controller. The random Doppler shift measurement errors (2↓(v)) were approximately 20 MHz, which correspond to velocity measurement errors for the real-time measurement of less than 3% in a 10-Hz bandwidth. # 1998 Optical Society of America OCIS codes: 280.7250, 290.0290, 120.0120.
机译:已经证明了调频滤波光散射(FM FLS)多普勒测速仪的实时测量能力。来自超声波流的调频钛蓝宝石激光器发出的多普勒频移光通过钾蒸气电池成像,并通过FM光谱法进行检测。 FM信号用于激光频率的闭环反馈控制,以将多普勒频移的散射光锁定到滤波器的谐振频率。当散射光被频率锁定到滤波器谐振时,滤波器谐振频率与激光频率之间的差是流动引起的多普勒频移。通过激光频率的变化跟踪流速的变化,随后对其进行测量以获得多普勒频移。该技术的锁频能力是通过使用简单的模拟控制器来实现的。随机多普勒频移测量误差(2↓(v))约为20 MHz,这对应于在10 Hz带宽中实时测量小于3%的速度测量误差。 #1998美国光学学会OCIS编码:280.7250、290.0290、120.0120。

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