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首页> 外文期刊>IEEE Transactions on Signal Processing >Magnetometer Modeling and Validation for Tracking Metallic Targets
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Magnetometer Modeling and Validation for Tracking Metallic Targets

机译:跟踪金属目标的磁力计建模与验证

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摘要

With the electromagnetic theory as a basis, we present a sensor model for three-axis magnetometers suitable for localization and tracking as required in intelligent transportation systems and security applications. The model depends on a physical magnetic dipole model of the target and its relative position to the sensor. Both point target and extended target models are provided as well as a heading angle dependent model. The suitability of magnetometers for tracking is analyzed in terms of local observability and the Cramér–Rao lower bound as a function of the sensor positions in a two sensor scenario. The models are validated with real field test data taken from various road vehicles which indicate excellent localization as well as identification of the magnetic target model suitable for target classification. These sensor models can be combined with a standard motion model and a standard nonlinear filter to track metallic objects in a magnetometer network.
机译:以电磁理论为基础,我们提出了一种三轴磁力计的传感器模型,适用于智能交通系统和安全应用中的定位和跟踪。该模型取决于目标的物理磁偶极子模型及其相对于传感器的相对位置。同时提供了点目标模型和扩展目标模型以及与航向角相关的模型。在两个传感器方案中,根据本地可观察性和Cramér-Rao下界作为传感器位置的函数,分析了磁力计是否适合跟踪。通过从各种道路车辆上获得的现场测试数据对模型进行了验证,这些数据表明了出色的定位能力以及对适用于目标分类的磁性目标模型的识别。这些传感器模型可以与标准运动模型和标准非线性滤波器结合使用,以跟踪磁力计网络中的金属物体。

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