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Design of a Data Acquisition System on Magnetic Signal for Magnetic Localization and Orientation System

机译:磁定位定向系统的电磁信号数据采集系统设计

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The location and orientation of the wireless capsule endoscope inside the human body is very important for the gastrointestinal (GI) examination. To satisfy the requirement of the position and gesture information of endoscope, a magnetic localization and orientation system is built. The system uses a permanent magnet as excitation source to create the magnetic field, and consists of a magnetic sensor array, high performance analog multiplexers, precise and low noisy instrumentation amplifiers, a 16-bit analog-to-digital converter and an ARM controller. The magnetic field varies with the magnet's position and orientation and is detected by the magnetic sensor array which is around the human body. With the detected data, the position and orientation of the capsule endoscope can be computed by the efficient algorithm, so as to realize the real-time tracking. Obviously, the accuracy of detected data is critical to the tracking precision. However, the magnetic field signal is so weak and attenuates dramatically when the spatial distance between the magnet and the sensor increases. In this paper, we present an effective data acquisition system to accurately detect the weak magnetic signal. The experimental result shows that the average error is below 2.1mm when the distance between permanent magnet and magnetic sensor is up to 500mm, therefore, this data acquisition system can be used for the application of wireless capsule endoscope with the space of 1m×1m×1m.
机译:无线胶囊型内窥镜在人体内部的位置和方向对于胃肠(GI)检查非常重要。为了满足内窥镜位置和姿势信息的要求,建立了磁定位定位系统。该系统使用永磁体作为激励源来产生磁场,并由一个磁传感器阵列,高性能模拟多路复用器,精密和低噪声仪表放大器,一个16位模数转换器和一个ARM控制器组成。磁场随磁体的位置和方向而变化,并由围绕人体的磁传感器阵列检测到。利用检测到的数据,可以通过高效的算法来计算胶囊内窥镜的位置和方向,从而实现实时跟踪。显然,检测数据的准确性对跟踪精度至关重要。但是,磁场信号是如此微弱,并且当磁体和传感器之间的空间距离增加时,磁场信号会急剧衰减。在本文中,我们提出了一种有效的数据采集系统,可以准确地检测弱磁信号。实验结果表明,当永磁体与磁传感器之间的距离达到500mm时,平均误差小于2.1mm,因此该数据采集系统可用于空间为1m×1m×的无线胶囊内窥镜的应用。 1m

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