用于线性位置传感器的谐振阵列

IF 1.6 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC
Mattia Simonazzi, L. Sandrolini, A. Mariscotti
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引用次数: 0

摘要

讨论了一种基于磁耦合谐振器阵列和外部单线圈单元的非接触式位置传感器,用于静态和动态应用。简单的结构允许传感器适应于其安装的系统,并且可以用于检测运动中的物体的位置,该物体承载不需要电源的外部谐振线圈。通过利用阵列输入阻抗的独特特性,可以通过用外部电压源激励第一阵列单元并测量得到的输入电流来识别外部谐振器的位置。该系统坚固耐用,适用于恶劣环境中的应用。测量的输入阻抗对空间变化的灵敏度可以根据阵列几何形状的定义进行调整,并进行了分析。考虑了阵列和外部谐振器的不同配置,并讨论了各种终止条件的影响以及改变线圈电阻后产生的品质因数。对于边长为15cm的十个相同磁耦合谐振器阵列,对所提出的程序进行了数值验证。对高达20cm的距离进行的模拟表明,在质量因数低于100并且阵列和外部线圈都具有最佳端接的情况下,可以检测后者的位置。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Resonator Arrays for Linear Position Sensors
A contactless position sensor based on an array of magnetically coupled resonators and an external single coil cell is discussed for both stationary and dynamic applications. The simple structure allows the sensor to be adapted to the system in which it is installed and can be used to detect the positions of objects in motion that bear an external resonator coil that does not necessitate a supply. By exploiting the unique behaviour of the array input impedance, it is possible to identify the position of the external resonator by exciting the first array cell with an external voltage source and measuring the resulting input current. The system is robust and suitable for application in harsh environments. The sensitivity of the measured input impedance to the space variation is adjustable with the definition of the array geometry and is analysed. Different configurations of the array and external resonator are considered, and the effects of various termination conditions and the resulting factor of merit after changing the coil resistance are discussed. The proposed procedure is numerically validated for an array of ten identical magnetically coupled resonators with 15 cm side lengths. Simulations carried out for a distance of up to 20 cm show that, with a quality factor lower than 100 and optimal terminations of both the array and external coil, it is possible to detect the position of the latter.
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来源期刊
Journal of Low Power Electronics and Applications
Journal of Low Power Electronics and Applications Engineering-Electrical and Electronic Engineering
CiteScore
3.60
自引率
14.30%
发文量
57
审稿时长
11 weeks
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