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Source stabilization for high quality time-domain diffuse optical tomography

机译:高品质时域漫射光学层析成像的光源稳定

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We report a new close-loop feedback control method to keep a Mach-Zehnder electro-optic modulator (MZ-EOM) biased at the quadrature point and simultaneously correct the bias drift caused by the temperature changes as well as the inherent photorefractive effect. The modulator is a key part of our high speed time-domain diffuse optical tomography system. It modulates the dual-wavelength near-infrared light with the high speed pseudorandom bit sequence (PRBS) signal for the temporal point spread function (TPSF) measurements. Our method applies a periodical low frequency square wave with 50% duty cycle as the pilot tone upon the MZ-EOM together with the PRBS and sweep the bias voltage of the MZ-EOM in a self-adaptive step. A constant fraction of the modulated output power is measured by a photodiode via a tap coupler. After demodulation, the modulation depth versus the bias voltage can be measured from which the peak value corresponding to the quadrature point can be located quickly by curve fitting. Our stabilization technique is simple, fast and cost effective and is effective to correct the bias drift caused by the photorefractive and the change of ambient conditions. The experiment results show the TPSFs measurements can be stabilized to within ±2% in an hour duration, which helps improved the image quality.
机译:我们报告了一种新的闭环反馈控制方法,以使Mach-Zehnder电光调制器(MZ-EOM)保持在正交点偏置,同时校正由温度变化和固有的光折射效应引起的偏置漂移。调制器是我们高速时域漫射光学层析成像系统的关键部分。它使用高速伪随机比特序列(PRBS)信号调制双波长近红外光,以进行时间点扩展函数(TPSF)测量。我们的方法将占空比为50%的周期性低频方波与PRBS一起用作MZ-EOM的导频音,并在自适应步骤中扫描MZ-EOM的偏置电压。光电二极管通过抽头耦合器测量恒定比例的调制输出功​​率。解调后,可以测量调制深度与偏置电压的关系,通过曲线拟合可以快速确定与正交点相对应的峰值。我们的稳定技术简单,快速且具有成本效益,可有效校正由光折射和环境条件变化引起的偏置漂移。实验结果表明,TPSFs测量可以在一个小时的时间内稳定在±2%以内,这有助于改善图像质量。

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