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通过噪声双稳设备中的停留时间不对称性进行信号检测。

Signal detection via residence-time asymmetry in noisy bistable devices.

作者信息

Bulsara A R, Seberino C, Gammaitoni L, Karlsson M F, Lundqvist B, Robinson J W C

机构信息

Space and Naval Warfare Systems Center, Code 2363, 49590 Lassing Road, San Diego, California 92152-6147, USA.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2003 Jan;67(1 Pt 2):016120. doi: 10.1103/PhysRevE.67.016120. Epub 2003 Jan 31.

Abstract

We introduce a dynamical readout description for a wide class of nonlinear dynamic sensors operating in a noisy environment. The presence of weak unknown signals is assessed via the monitoring of the residence time in the metastable attractors of the system, in the presence of a known, usually time-periodic, bias signal. This operational scenario can mitigate the effects of sensor noise, providing a greatly simplified readout scheme, as well as significantly reduced processing procedures. Such devices can also show a wide variety of interesting dynamical features. This scheme for quantifying the response of a nonlinear dynamic device has been implemented in experiments involving a simple laboratory version of a fluxgate magnetometer. We present the results of the experiments and demonstrate that they match the theoretical predictions reasonably well.

摘要

我们针对在噪声环境中运行的一大类非线性动态传感器引入了一种动态读出描述。在存在已知的、通常为时间周期的偏置信号的情况下,通过监测系统亚稳吸引子中的驻留时间来评估微弱未知信号的存在。这种操作场景可以减轻传感器噪声的影响,提供一种大大简化的读出方案,以及显著减少的处理程序。此类器件还可展现出各种各样有趣的动态特性。这种用于量化非线性动态器件响应的方案已在涉及磁通门磁力计简单实验室版本的实验中得以实现。我们展示了实验结果,并证明它们与理论预测相当吻合。

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