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THz Impulse Radar for Biomedical Sensing: Nonlinear System Behavior

机译:用于生物医学传感的太赫兹脉冲雷达:非线性系统行为

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The THz impulse radar is an "RF-inspired" sensor system that has performed remarkably well since its initial development nearly six years ago. It was developed for ex vivo skin-burn imaging, and has since shown great promise in the sensitive detection of hydration levels in soft tissues of several types, such as in vivo corneal and burn samples. An intriguing aspect of the impulse radar is its hybrid architecture which combines the high-peak-power of photoconductive switches with the high-responsivity and -bandwidth (RF and video) of Schottky-diode rectifiers. The result is a very sensitive sensor system in which the post-detection signal-to-noise ratio depends super-linearly on average signal power up to a point where the diode is "turned on" in the forward direction, and then behaves quasi-linearly beyond that point. This paper reports the first nonlinear systems analysis done on the impulse radar using MATLAB.
机译:太赫兹脉冲雷达是一种“受RF启发”的传感器系统,自将近六年前首次开发以来,其性能一直非常出色。它是为离体皮肤烧伤成像而开发的,此后在灵敏检测几种类型的软组织(例如体内角膜和烧伤样品)中的水合水平方面显示出了巨大的希望。脉冲雷达的一个吸引人的方面是其混合架构,它将光电导开关的高峰值功率与肖特基二极管整流器的高响应性和带宽(RF和视频)结合在一起。结果是一个非常灵敏的传感器系统,其中,检测后的信噪比超线性地取决于平均信号功率,直到二极管正向“导通”,然后表现出准稳态。线性超出该点。本文报告了使用MATLAB在脉冲雷达上进行的首次非线性系统分析。

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