基于磁场的无线胶囊内窥镜开环控制实验

Cancheng Zhong, Chao Hu, Fei Luo
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引用次数: 1

摘要

提出了一种利用外磁场实现开环控制无线胶囊内窥镜驱动的实验方法。我们用两对矩形线圈来产生旋转磁场。装有永磁体的胶囊随着磁场旋转。借助其表面的旋转,胶囊可以朝着一定的方向移动。通过实验,我们得到了胶囊能够平稳旋转时的临界旋转频率。此外,对现有的线圈磁场数学模型进行了改进。考虑了线圈的厚度。最后进行了MATLAB仿真实验,分析了线圈尺寸与磁场分布特性的关系。结果表明,磁场强度和均匀性不可能同时达到最佳,因此在实际应用中应设置不同的重量来确定线圈的尺寸。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Open-loop control experiment of wireless capsule endoscope based on magnetic field
This paper presents an experiment of using external magnetic field to implement the actuation of wireless capsule endoscope with open-loop control strategy. We use two pairs of rectangle coils to generate rotary magnetic field. The capsule with a permanent magnet rotates along with the magnetic field. With the help of the whirl on its surface, the capsule can move in a certain direction. From the experiment, we find out the critical frequency of rotation when the capsule can rotate smoothly. Besides, we improve the existed mathematical model of the coil's magnetic field. The thickness of the coils is taken into account. Finally, MATLAB simulation experiment is carried out to analyse the relation of the coils' sizes and the character of magnetic field distribution. The result shows the intensity and uniformity of the magnetic field cannot be optimal simultaneously, so different weight should be set to determine coils' sizes in practice.
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