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Improving the Performance in an Optical feedback Self-mixing Interferometry System using Digital Signal Pre-processing

机译:使用数字信号预处理提高光学反馈自混合干涉机系统中的性能

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This paper considers the issue of noise reduction associated with Optical Feedback Self-mixing Interferometries (OFSMI). The objective is to develop an effective pre-processing filtering solution that can eliminated the inherent noise disturbances. The characteristics of OFSMI signals are described in some detail and two filter solutions are proposed. The latter includes a non-linear median filter and a Kaiser based FIR filter. The performance of the two types of filters are investigated. It is shown that median filters are capable of removing sparkle-like noise while Kaiser based FIR filters are effective in reducing the high frequency noise as well as the slow time-varying signal envelop fluctuation. Interestingly our results show that the best performance is achieved by combining the two filters, that is, a median filter followed by a Kaiser-based FIR filter. In other words, the estimation accuracy of OFSMI parameters such as the line-width enhancement factor (LEF) of semiconductor lasers is significantly improved with the aid of the proposed pre-processing solution.
机译:本文考虑了与光学反馈相关的降噪问题,自混合干涉干涉剂(OFSMI)。目的是开发一种有效的预处理滤波解决方案,可以消除固有的噪声干扰。在一些细节中描述了OFSMI信号的特性,提出了两个过滤液。后者包括非线性中值滤波器和基于Kaiser的灭菌滤波器。研究了两种类型的过滤器的性能。结果表明,中值过滤器能够而基于凯瑟FIR滤波器有效地减少高频噪声以及缓慢随时间变化的信号包络波动排除火花状的噪声。有趣的是我们的结果表明,最佳的性能是由两个过滤器,即中值滤波,然后基于凯泽的FIR滤波器相结合而实现。换句话说,借助于所提出的预处理解决方案,显着改善了诸如半导体激光器的线宽增强因子(LEF)的诸如线宽增强因子(LEF)的估计精度。

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