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首页> 外文期刊>Selected Topics in Applied Earth Observations and Remote Sensing, IEEE Journal of >Geolocation of Fast-Moving Objects From Satellite-Based Angle-of-Arrival Measurements
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Geolocation of Fast-Moving Objects From Satellite-Based Angle-of-Arrival Measurements

机译:从基于卫星的到达角测量中快速移动物体的地理位置

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摘要

Recently, satellite-based systems have been introduced that utilize angle-of-arrival (AOA) measurements to geo-locate objects of interest. In the previous work, we considered the application of nonlinear optimization to AoA-based geolocation to these systems. This previous work, however, assumed that all noise sources were independent. In the case of fast-moving objects, however, there is a significant source of error due to the propagation time inherent in satellite-based observation of objects due to the difference between the location of the object when it is observed by a satellite, and the location of the object when it emitted the signal that is being measured. This introduces a systematic error into the system that cannot be resolved by the system proposed by Burchett In this paper, we extend our prior work to account for the time-delay inherent in satellite-based geolocation systems, making this system accurate for fast-movers as well as fixed or slow-moving objects. Results demonstrating significant improvement in geolocation performance both in terms of accuracy and estimated error bounds are presented.
机译:近来,已经引入了基于卫星的系统,该系统利用到达角(AOA)测量来对感兴趣的对象进行地理定位。在先前的工作中,我们考虑了将非线性优化应用于这些系统的基于AoA的地理位置。但是,以前的工作假定所有噪声源都是独立的。但是,在快速移动的物体的情况下,由于基于卫星的物体观察中固有的传播时间,这是一个重要的误差源,这是由于当物体被卫星观察时,物体的位置之间存在差异而造成的。物体发出正在测量的信号时的位置。这将系统误差引入到系统中,而Burchett提出的系统无法解决。在本文中,我们扩展了先前的工作以解决基于卫星的地理定位系统固有的时间延迟,从而使该系统对于快速移动的人来说是准确的以及固定或移动缓慢的物体。结果表明,在精度和估计误差范围方面,地理位置性能均得到了显着改善。

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