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The Application of a Complex Composite Fractal Interpolation Algorithm in the Seabed Terrain Simulation

机译:复合复合分形插值算法在海底地形仿真中的应用

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摘要

Seabed terrain modelling is one of the key technologies in the Subsea Environmental Information System, and this system is critical for underwater vehicle path planning. A composite fractal interpolation algorithm based on improved fractional Brownian motion (FBM) and an improved iterative function system (IFS) is proposed in this paper to increase the precision of the seabed terrain model for submarine topography and to account for the complexity and irregularity of fractal properties in each region. The MATLAB simulation experiment showed that fractal properties of the model built by the complex composite fractal interpolation algorithm were closer to real surface features. After calculation analysis, the model built by the complex composite fractal interpolation algorithm, when compared with the model built by the traditional interpolation algorithm or by the single fractal interpolation algorithm, had higher precision and was more suitable for path planning for underwater vehicles.
机译:海底地形建模是在水下环境信息系统的关键技术之一,而这个系统是水下机器人路径规划的关键。基于改进分数布朗运动(FBM)(IFS)的复合分形插值算法和一种改进的迭代函数系统在本文提出以增加海底地形和以考虑的复杂性和分形的不规则性的海底地形模型的精度在每个区域的属性。 MATLAB仿真实验表明,在复杂的复合分形插值算法所建立的模型的分形特征更接近真实的表面特征。经过计算分析,受复杂的复合分形插值算法建立的模型中,当与传统的插值算法或由单一的分形插值算法所建立的模型相比,具有更高的精度,更适合于水下机器人路径规划。

著录项

  • 作者

    Chongyang Lv; Fei Yu;

  • 作者单位
  • 年度 2018
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  • 原文格式 PDF
  • 正文语种 eng
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