IMPLEMENTING LOCK-IN DETECTION IN PHOTOMETRY AND SPECTRORADIOMETRY USING TEMPORAL LIGHT MODULATION

C. Martinsons
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引用次数: 2

Abstract

"Lock-in detection is a well-established technique to measure the amplitude and phase of a modulated signal in the presence of noise, background, and parasitic signals. This technique is commonly used in many applications to extract small, modulated signals buried in noise that could not directly be measured otherwise. In most lighting products, temporal light modulation is usually a periodic fluctuation of the light output resulting from the power supply. Lock-in detection is inherently well-suited to the characterisation of these optical oscillations superimposed to a large luminous background. Different methods of lock-in detection are applicable to photometric and spectroradiometric measurements in the presence of temporal light modulation: electrical lock-in detection with a lock-in amplifier, digital lock-in detection based on synchronous sampling, and purely optical lock-in detection. The practical implementations of these methods are detailed, illustrated, and compared. Their respective advantages and drawbacks are presented in the case of photometric and in the case of more complex measurements based on array spectrometers and imaging photometric instruments. New applications enabled by temporal light modulation are given."
利用时间光调制在光度学和光谱辐射学中实现锁定检测
锁相检测是一种成熟的技术,用于测量存在噪声、背景和寄生信号的调制信号的幅度和相位。该技术通常用于提取隐藏在噪声中的小调制信号,否则无法直接测量。在大多数照明产品中,时间光调制通常是由电源引起的光输出的周期性波动。锁定检测本质上非常适合于这些光学振荡叠加到一个大的发光背景的特征。不同的锁相检测方法适用于存在时间光调制的光度和光谱辐射测量:使用锁相放大器的电锁相检测,基于同步采样的数字锁相检测和纯光学锁相检测。对这些方法的具体实现进行了详细的说明和比较。在光度测量和基于阵列光谱仪和成像光度测量仪器的更复杂的测量中,介绍了它们各自的优点和缺点。给出了时间光调制的新应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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