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The Nonlinearity Error Analysis of 2D-PSD and Its Application in Medical Engineering

机译:2D-PSD的非线性误差分析及其在医学工程中的应用

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The structure, the characteristic and the principle of Position Sensitive Detector (PSD)are expounded. By thoroughly analyzing the non-linearity provided by 2D-PSD, a new method using bridge theory to analyze the non-linearity is introduced. This method is very simpler in comparison with interpolation algorithms,optimization method of neural network and analytic method. The improved 2D-PSD signal debugging circuit board is designed and debugged by using front-end amplifier with low temperature drift and high precision and high-input impedance, summator, subtracter, divisor and other components. By using the improved 2D-PSD and continuous-emitting laser as optical source, a 3D non-contact optical measuring system with high precision is designed. This system can be used to measure the parameters of 3D object with anomalous form such as the abnormality of man's skin. Furthermore, combined with computer technology, tomography and Chromatography, this high precision photoelectric device can be developed into various medical equipment, which have extremely wide application in the diagnosis of difficult pathological changes, especially in the early diagnosis of parameters for the abnormality of man's skin.
机译:阐述了位置敏感检测器(PSD)的结构,特点和原理。通过全面分析二维PSD提供的非线性,提出了一种利用电桥理论分析非线性的新方法。与插值算法,神经网络的优化方法和解析方法相比,该方法非常简单。改进的2D-PSD信号调试电路板是采用具有低温度漂移和高精度,高输入阻抗的前端放大器,求和器,减法器,除数器和其他元件设计和调试的。通过使用改进的2D-PSD和连续发射激光器作为光源,设计了一种高精度的3D非接触式光学测量系统。该系统可用于测量具有异常形式的3D对象的参数,例如人的皮肤异常。此外,结合计算机技术,断层扫描和色谱分析技术,这种高精度光电设备可以开发成各种医疗设备,在诊断困难的病理变化,尤其是在早期诊断人的皮肤异常参数方面具有极其广泛的应用。 。

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