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Enhancing Signal Resolution in a Noisy Nonlinear Sensor

机译:增强噪声非线性传感器中的信号分辨率

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It is well known that the resolution (defined as the smallest change in the signal being detected or quantified) of a sensor can be improved by increasing the observation time T of the measurement; typically, the resolution scales as 1/T~a. Typically a = 0.5, or a < 0.5 if low frequency noise is present. We show that a neuronal system can display an enhanced scaling in the resolution, with the parameter a = 1; this occurs when the "inter spike intervals" are negatively correlated. We also show that, by introducing negative correlations into the time domain response of a nonlinear dynamical sensor, it is possible to replicate this enhanced scaling. This affords us the possibility of designing a novel class of biomimetic sensors that results in improved signal resolution by functionally utilizing negative correlations.
机译:众所周知,通过增加测量的观察时间t,可以提高传感器的分辨率(定义为检测到或定量信号的最小变化);通常,分辨率缩放为1 / t〜a。如果存在低频噪声,通常a = 0.5或<0.5。我们表明,神经元系统可以在分辨率中显示增强缩放,参数a = 1;当“跨峰间隔”呈负相关时发生这种情况。我们还表明,通过将负相关性引入非线性动态传感器的时域响应,可以复制这种增强的缩放。这为我们提供设计一种新颖的仿生传感器的可能性,这通过功能地利用负相关性导致信号分辨率改善。

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