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首页> 外文期刊>Advances in Mechanical Engineering >Theoretical analysis and finite element method simulations on dynamic sensitivity of hemisphere-shaped electrostatic sensors:
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Theoretical analysis and finite element method simulations on dynamic sensitivity of hemisphere-shaped electrostatic sensors:

机译:半球形静电传感器动态灵敏度的理论分析和有限元模拟:

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Electrostatic sensors are key components of electrostatic monitoring systems. Their sensitivity characteristics have a direct influence on monitoring accuracy. In previous studies, spatial sensitivity, which is called static sensitivity here, was used to describe the sensitivity characteristics. However, it only reflects a basic relationship between static charged particles and induced charges on an electrostatic sensor’s probe. Besides, as a three-dimensional defined parameter, it is difficult to build a unified model if actual boundary conditions are considered. Thus, it is not quite proper for applications that detect moving particles. To solve this problem, dynamic sensitivity is proposed in this article. As for a hemisphere-shaped electrostatic sensor, first, a more accurate model of static sensitivity is built. Based on it, dynamic sensitivity is defined and modeled analytically. Then, a calibration method is proposed to improve the model’s accuracy under actual boundary conditions. In the end, fini...
机译:静电传感器是静电监控系统的关键组件。它们的灵敏度特性直接影响监控精度。在以前的研究中,空间灵敏度(在此称为静态灵敏度)用于描述灵敏度特性。但是,它仅反映出静电粒子与静电传感器探针上的感应电荷之间的基本关系。此外,作为三维定义的参数,如果考虑实际的边界条件,则很难建立统一的模型。因此,它不适用于检测运动粒子的应用程序。为了解决这个问题,本文提出了动态灵敏度。对于半球形静电传感器,首先,建立更精确的静态灵敏度模型。在此基础上,定义了动态灵敏度并对其进行了分析建模。然后,提出了一种校准方法来提高模型在实际边界条件下的准确性。最后,菲尼...

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