考虑距离测量维数损失的扩展目标可观测性分析

IF 4.3 2区 综合性期刊 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
Songyao Dou;Ying Chen;Yaobing Lu
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引用次数: 0

摘要

扩展目标跟踪能够获得物体的形状、大小和方向等丰富的信息,受到了广泛的关注。基于支持函数(SFs)或扩展高斯图像(EGIs)的建模方法需要对目标进行向下和横向测量,以估计目标的范围信息。下距和横距分别指目标沿雷达瞄准线和垂直于雷达瞄准线的投影长度。下程测量可以由高距离分辨率像(HRRP)生成。然而,在某些雷达应用中,受限于跨距离分辨率的限制,无法进行跨距离测量。为了仅使用下距离测量跟踪扩展目标,本文详细分析了扩展目标的可观测性。分析结果表明,扩展目标的可观测性受到距离范围测量尺寸的影响,并且在不同的运动模式下,扩展目标跟踪所需的距离范围测量尺寸不同。根据分析结果,当目标进行坐标旋转运动时,仅使用下距测量即可实现扩展的目标跟踪。仿真实验结果证实了这一结论。本文的分析结果明确了扩展目标跟踪所需的测量条件,扩展了基于SF和EGI建模的跟踪算法的应用范围。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Extended Object Observability Analysis With Range Extent Measurement Dimension Loss
Extended object tracking, which can obtain rich information about the object’s shape, size, and orientation, has received widespread attention. The modeling method based on support functions (SFs) or extended Gaussian images (EGIs) needs the down-range measurement and cross-range measurement of the object to estimate the information about the object’s extent. Down-range and cross-range refer to the projection lengths of the object along and perpendicular to the radar line of sight (LOS), respectively. The down-range measurement can be generated from the high range resolution profile (HRRP). However, in some radar applications, limited by the resolution capability in cross-range, the cross-range measurements are unavailable. To track extended objects only using down-range measurements, this article analyzes the observability of the extended object in detail. The analysis results indicate that the observability of the extended object is affected by the dimensions of range extent measurement, and the required dimensions of the range extent measurement for extended object tracking vary under different motion modes. According to the analysis results, when the object performs coordinate turn motion, extended object tracking can be achieved using only down-range measurements. The results of simulation experiments confirm this conclusion. The analysis results presented in this article clarify the measurement conditions required for extended object tracking and expand the application scope of tracking algorithms based on the SF and EGI modeling.
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来源期刊
IEEE Sensors Journal
IEEE Sensors Journal 工程技术-工程:电子与电气
CiteScore
7.70
自引率
14.00%
发文量
2058
审稿时长
5.2 months
期刊介绍: The fields of interest of the IEEE Sensors Journal are the theory, design , fabrication, manufacturing and applications of devices for sensing and transducing physical, chemical and biological phenomena, with emphasis on the electronics and physics aspect of sensors and integrated sensors-actuators. IEEE Sensors Journal deals with the following: -Sensor Phenomenology, Modelling, and Evaluation -Sensor Materials, Processing, and Fabrication -Chemical and Gas Sensors -Microfluidics and Biosensors -Optical Sensors -Physical Sensors: Temperature, Mechanical, Magnetic, and others -Acoustic and Ultrasonic Sensors -Sensor Packaging -Sensor Networks -Sensor Applications -Sensor Systems: Signals, Processing, and Interfaces -Actuators and Sensor Power Systems -Sensor Signal Processing for high precision and stability (amplification, filtering, linearization, modulation/demodulation) and under harsh conditions (EMC, radiation, humidity, temperature); energy consumption/harvesting -Sensor Data Processing (soft computing with sensor data, e.g., pattern recognition, machine learning, evolutionary computation; sensor data fusion, processing of wave e.g., electromagnetic and acoustic; and non-wave, e.g., chemical, gravity, particle, thermal, radiative and non-radiative sensor data, detection, estimation and classification based on sensor data) -Sensors in Industrial Practice
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