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A Method to Identify Flight Obstacles on Digital Surface Model

Min ZHAO1,2( )Xinggang LIN2Shouyu SUN2Youzhi WANG1
The Second Institute of the Second Artillery, Beijing 100085, China
Department of Electronic Engineering, Tsinghua University, Beijing 100084, China
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Abstract

In modern low-altitude terrain-following guidance, a constructing method of the digital surface model (DSM) is presented in the paper to reduce the threat to flying vehicles of tall surface features for safe flight. The relationship between an isolated obstacle size and the intervals of vertical- and cross-section in the DSM model is established. The definition and classification of isolated obstacles are proposed, and a method for determining such isolated obstacles in the DSM model is given. The simulation of a typical urban district shows that when the vertical- and cross-section DSM intervals are between 3 m and 25 m, the threat to terrain-following flight at low-altitude is reduced greatly, and the amount of data required by the DSM model for monitoring in real time a flying vehicle is also smaller. Experiments show that the optimal results are for an interval of 12.5 m in the vertical- and cross-sections in the DSM model, with a 1:10000 DSM scale grade.

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Tsinghua Science and Technology
Pages 323-327

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Cite this article:
ZHAO M, LIN X, SUN S, et al. A Method to Identify Flight Obstacles on Digital Surface Model. Tsinghua Science and Technology, 2005, 10(3): 323-327. https://doi.org/10.1016/S1007-0214(05)70076-6

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Received: 20 October 2003
Revised: 21 May 2004
Published: 01 June 2005
© Tsinghua University Press 2005