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Superheterodyne configuration for two-wavelength interferometry applied to absolute distance measurement

机译:适用于绝对距离测量的两波长干涉仪的超外差配置

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摘要

We present a new superheterodyne technique for long-distance measurements by two-wavelength inter-ferometry (TWI). While conventional systems use two acousto-optic modulators to generate two different heterodyne frequencies, here the two frequencies result from synchronized sweeps of optical and radio frequencies. A distributed feedback laser source is injected in an intensity modulator that is driven at the half-wave voltage mode. A radio-frequency signal is applied to this intensity modulator to generate two optical sidebands around the optical carrier. This applied radio frequency consists of a digital ramp between 13 and 15 GHz, with 1 ms duration and with an accuracy of better than 1 ppm. Simultaneously, the laser source is frequency modulated by a current modulation that is synchronized on the radiofrequency ramp as well as on a triangle waveform. These two frequency-swept optical signals at the output of the modulator illuminate a Michelson interferometer and create two distinct distance-dependent heterodyne frequencies on the photodetector. The superheterodyne signal is then detected and bandpass filtered to retrieve the absolute distance measurement. Experiments between 1 and 15 m confirm the validity of this new concept, leading to a distance accuracy of +-50 (mu)m for a 1 ms acquisition time.
机译:我们提出了一种新的超外差技术,用于通过两波长干涉仪(TWI)进行长距离测量。尽管常规系统使用两个声光调制器来生成两个不同的外差频率,但是在此,这两个频率是由光学和无线电频率的同步扫描产生的。分布式反馈激光源被注入到以半波电压模式驱动的强度调制器中。射频信号被施加到该强度调制器以在光学载波周围产生两个光学边带。该应用的射频包括一个13到15 GHz之间的数字斜坡,持续时间为1毫秒,精度超过1 ppm。同时,通过电流调制对激光源进行频率调制,该电流调制在射频斜坡以及三角波形上同步。调制器输出上的这两个频率扫描光信号照亮了迈克尔逊干涉仪,并在光电检测器上产生了两个不同的,取决于距离的外差频率。然后检测超外差信号并对其进行带通滤波以检索绝对距离测量值。 1到15 m之间的实验证实了这一新概念的有效性,在1 ms的采集时间内,其距离精度为+ -50μm。

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