文件名称:Maxwell
-
所属分类:
- 标签属性:
- 上传时间:2017-03-15
-
文件大小:1.31mb
-
已下载:0次
-
提 供 者:
-
相关连接:无下载说明:别用迅雷下载,失败请重下,重下不扣分!
介绍说明--下载内容来自于网络,使用问题请自行百度
Starting Maxwell’s equations, we derive a sensor model for three-axis magnetometers
suitable for localization and tracking applications. The model depends
on the relative position between the sensor and the target, orientation of the target
and its magnetic signature. Both point targets and extended target models
are provided. The models are validated on data taken various road vehicles.
The suitability of magnetometers for tracking is analyzed in terms of local observability
and Cramér Rao lower bound as a function of the sensor positions in a
two sensor scenario. Also the signal to noise ratio is computed to determine the
effective range of the magnetometer. Results field test data indicate excellent
tracking of position and velocity of the target, as well as identification of the
magnetic target model suitable for target classification.-Starting Maxwell’s equations, we derive a sensor model for three-axis magnetometers
suitable for localization and tracking applications. The model depends
on the relative position between the sensor and the target, orientation of the target
and its magnetic signature. Both point targets and extended target models
are provided. The models are validated on data taken various road vehicles.
The suitability of magnetometers for tracking is analyzed in terms of local observability
and Cramér Rao lower bound as a function of the sensor positions in a
two sensor scenario. Also the signal to noise ratio is computed to determine the
effective range of the magnetometer. Results field test data indicate excellent
tracking of position and velocity of the target, as well as identification of the
magnetic target model suitable for target classification.
suitable for localization and tracking applications. The model depends
on the relative position between the sensor and the target, orientation of the target
and its magnetic signature. Both point targets and extended target models
are provided. The models are validated on data taken various road vehicles.
The suitability of magnetometers for tracking is analyzed in terms of local observability
and Cramér Rao lower bound as a function of the sensor positions in a
two sensor scenario. Also the signal to noise ratio is computed to determine the
effective range of the magnetometer. Results field test data indicate excellent
tracking of position and velocity of the target, as well as identification of the
magnetic target model suitable for target classification.-Starting Maxwell’s equations, we derive a sensor model for three-axis magnetometers
suitable for localization and tracking applications. The model depends
on the relative position between the sensor and the target, orientation of the target
and its magnetic signature. Both point targets and extended target models
are provided. The models are validated on data taken various road vehicles.
The suitability of magnetometers for tracking is analyzed in terms of local observability
and Cramér Rao lower bound as a function of the sensor positions in a
two sensor scenario. Also the signal to noise ratio is computed to determine the
effective range of the magnetometer. Results field test data indicate excellent
tracking of position and velocity of the target, as well as identification of the
magnetic target model suitable for target classification.
(系统自动生成,下载前可以参看下载内容)
下载文件列表
Target Tracking using Maxwell’s Equations.pdf
本网站为编程资源及源代码搜集、介绍的搜索网站,版权归原作者所有! 粤ICP备11031372号
1999-2046 搜珍网 All Rights Reserved.