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摘要

接近传感器是一种检测物体接近程度的传感器。当铁磁性物体以一定速度通过其感应范围时,会影响传感器的磁场分布,根据法拉第电磁感应原理产生输出电压信号。在不同的应用领域,接近传感器的形状和尺寸有很大的差异。一般的设计方法是根据常识根据实际应用场景对参数进行微调。本文采用场路组合的方法对接近传感器进行了系统的研究。通过两种方法的结合,研究了传感器的结构方案,改进了单纯依靠经验的设计方法;从磁场角度进行定量计算,解决了轭架形状不规则时磁路参数难以理论计算的问题。根据设计模型制作了样机和简易实验装置,并通过实验验证了理论分析。
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Research on Passive Proximity Sensor based on Field-Circuit Combination Method
Proximity sensor is a kind of sensor that detects the proximity of objects. When a ferromagnetic object passes through its sensing range at a certain speed, the magnetic field distribution of the sensor will be affected, and an output voltage signal will be generated according to the Faraday Electromagnetic Induction Principle. There are great differences in the shape and size of proximity sensors in different application fields. The general design approach is to fine tune the parameters according to the actual application scenarios according to commonsense. In this paper, the field-circuit combination method is used to systematically study the proximity sensor. Through the combination of the two methods, the sensor structure scheme is studied, and the design method relying solely on experience is improved; The quantitative calculation is carried out from the perspective of magnetic field, which solves the problem that it is difficult to theoretically calculate the magnetic circuit parameters when the yoke shape is irregular. According to the design model, the prototype and simple experimental devices are made, and the theoretical analysis is verified by experiments.
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