基于混沌振荡器的电感传感器自动试验台

T. Karimov, A. Karimov, O. Druzhina, V. Kholkin, M. Volkov
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引用次数: 1

摘要

基于混沌振荡器的电感传感器设计是电感传感器发展的一个有前途的方向。这种方法可以增加传感器的范围和灵敏度,线性化它们的响应,提供许多其他有用的特性。对这类感觉系统混沌动力学的研究可以用计算机模拟来进行。然而,具体的电路实现可能与模型不同,因此他们的实验研究是必要的。所提出的测试平台允许通过轴向移动目标自动构建混沌传感器振荡的分岔图,并计算度量。因此,提高了研究和开发的质量和速度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Automated Testbench for Inductive Sensors Based on Chaotic Oscillators
One of the promising directions in the inductive sensors development is their design based on chaotic oscillators. This approach allows increasing the range and sensitivity of sensors, linearizing their response, providing a number of other useful properties. Investigation of chaotic dynamics in such sensory systems can be performed using computer simulation. However, the specific circuit implementations may differ from models, and therefore their experimental study is necessary. The proposed testbench allows automatically building bifurcation diagrams of the chaotic sensor oscillations by axially moving the target, as well as to calculate metrics. Thus, the quality and speed of research and development is increased.
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