Using electro-inductive sensor to trace moving and non-moving objects tracked

S. Kolmogorova, S. Biryukov
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Abstract

The research carries out a spatial model of path tracking using the dynamic parameters of the object's position, as well as the path of motion of electric field source. The simulation results show high accuracy in estimating the dependence between the electric field components and position modifications. The results are in good agreement with the results of FEM analysis. The connection between the measurement error of the electric field component, horizontal angle, location angle, and tracking accuracy is also used to analyze the tracking performance. In addition, the method can be combined with spatiotemporal coordinates, in which case the configuration becomes appropriate to the current conditions while maintaining maximum efficiency of the estimation system as a whole and allows predicting changes in the position of the object as a field source.
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利用电感性传感器跟踪被跟踪的运动和非运动物体
利用目标位置的动态参数和电场源的运动路径,建立了路径跟踪的空间模型。仿真结果表明,该方法能较准确地估计出电场分量与位置变化之间的相关性。计算结果与有限元分析结果吻合较好。利用电场分量测量误差与水平角、定位角、跟踪精度之间的关系分析跟踪性能。此外,该方法可以与时空坐标相结合,在保持整个估计系统的最大效率的同时,使配置适合于当前条件,并允许预测物体作为场源的位置变化。
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