一种考虑大气折射与地形遮蔽的雷达可视域精确分析算法

    An Accurate Radar Viewshed Analysis Algorithm Considering Atmospheric Refraction and Terrain Shielding

    • 摘要: 可视域是一种基于地形数据的空间分析方法,在军民领域均有广泛应用。然而,现有算法普遍将观测点与目标点的传播路径建模为直线,这与实际情况中电磁波传播路径因受大气折射而发生弯曲不符,导致现有算法的雷达可视域分析结果存在偏差。针对此问题,文中提出一种考虑大气折射与地形遮蔽的雷达可视域精确分析算法。该算法通过等效地球半径因子,统一衡量不同大气折射对雷达视距及地形遮蔽的影响程度;同时,利用不同大气折射下的视距公式来刻画观测点与目标点之间的电磁波传播路径,并基于此传播路径与地形高程数据进行观测点与目标点之间的通视判别,实现了雷达可视域的精确分析。仿真计算验证了所提算法的有效性,并表明了相较于传统方法,该方法在雷达可视域计算中有更高的准确度。

       

      Abstract: The viewshed analysis is a terrain-based spatial-analysis method, which has been widely applied into both civil and military fields. However, in conventional methods, the propagation path of electromagnetic waves between the observation viewpoint and target point is generally modeled as straight lines. This consideration is inconsistent with the fact that the propagation path is curved due to the atmospheric refraction, leading to an inaccurate radar viewshed analysis result. To solve this issue, in this paper, a radar viewshed analysis algorithm that takes into account the atmospheric refraction and terrain shielding is proposed. In the algorithm, the equivalent earth radius factor is used to uniformly measure the impact of different atmospheric refraction on radar line-of-sight and terrain shielding. At the same time, the line-of-sight formula under different atmospheric refractions is applied to describe the propagation route of electromagnetic waves between the observation viewpoint and target point. Then, based on the propagation route and digital elevation data, the line-of-sight analysis between the observation point and target point is conducted. In this way, the algorithm obtains more accurate results of the viewshed of radar. Simulation calculations validate the effectiveness of the proposed algorithm and show that the proposed method has higher accuracy in radar viewshed calculation than traditional methods.

       

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