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Optical Characterisation of small surface targets

机译:小表面靶的光学表征

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摘要

Present-day naval operations take place in coastal environments as well as narrow straits all over the world. Coastal environments around the world are exhibiting a number of threats to naval forces. In particular a large number of asymmetric threats can be present in environments with cluttered backgrounds as well as rapidly varying atmospheric conditions. In these conditions the threat contrast may be low and varying, and the amount of background clutter can be severe. These conditions require the electro-optical means of detection and classification to be optimized in order to have more time to act against threats. In particular the assessment of classification means is an important issue. Beside short-range coastal paths, long-range horizontal paths with variable atmospheric conditions are of interest. The small differences between types of vessel can help us determine the classification of the vessel type. Different payloads and people on-board can be clues to the classification of the vessel. Operations in wanner environments, limiting the atmospheric transmission due to water vapour absorption, are challenging. Understanding of the impact of the different environments on the optical characteristics of threats is of great importance. For this purpose a trial was planned to assess the optical characteristics of different types of small surface vessels in a coastal environment. During this trial a number of small targets were used during different parts of the day and night. Furthermore positional as well as atmospheric characterisation was performed as ground truth information. From this data a first analysis was performed showing strong intensity fluctuation in target as well as background signal levels. At longer ranges and in coastal environments these target signals may well be hidden within the background clutter. This data is essential to feed models for the assessment of sensor performance in coastal environment.
机译:当今海军行动在沿海环境以及世界各地的狭小海峡。世界各地的沿海环境表现出对海军力量的一些威胁。特别地,在具有杂乱的背景的环境中,可以存在大量不对称威胁,以及迅速变化的大气条件。在这些条件下,威胁对比可能是低且变化的,并且背景杂波的量可能是严重的。这些条件要求优化检测和分类的电光手段,以便有更多时间对抗威胁。特别是对分类意味着的评估是一个重要问题。除了短程沿海路径外,具有可变大气条件的远程水平路径均为感兴趣。船舶类型之间的小差异可以帮助我们确定血管类型的分类。不同的有效载荷和船上的人可以是船舶分类的线索。 WANNER环境中的操作,限制由于水蒸气吸收导致的大气传输,是具有挑战性的。了解不同环境对威胁光学特征的影响是非常重要的。为此目的,计划在沿海环境中评估不同类型的小型表面血管的光学特性。在此期间,在白天和夜间的不同部分使用了许多小目标。此外,作为地面真理信息进行了位置和大气表征。根据该数据,执行第一次分析,显示目标中的强度波动以及背景信号电平。在较长的范围内和沿海环境中,这些目标信号可能会隐藏在背景杂乱中。此数据对于沿海环境中的传感器性能进行评估至关重要。

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