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Journal of Graphics ›› 2025, Vol. 46 ›› Issue (3): 655-665.DOI: 10.11996/JG.j.2095-302X.2025030655

• Computer Graphics and Virtual Reality • Previous Articles     Next Articles

Visual analysis system for UAV path planning

HU Yue(), SUN Zhida, HUANG Hui()   

  1. Visual Computing Research Center, College of Computer Science and Software Engineering, Shenzhen University, Shenzhen Guangdong 518060, China
  • Received:2024-07-11 Accepted:2024-10-08 Online:2025-06-30 Published:2025-06-13
  • Contact: HUANG Hui
  • About author:First author contact:

    HU Yue (2000-), master student. His main research interest covers computer graphics. E-mail:hytraveler2000@gmail.com

  • Supported by:
    National Natural Science Foundation Key Project(U21B2023);Guangdong University Innovation Team Project(2022KCXTD025);Shenzhen University Key Teaching Reform Project(JG2024018);Research Excellence Program Project(2035)

Abstract:

Currently, real-world image information have been used to reconstruct geometric models and generate high-quality rendered outcomes using image-based rendering methods, which has become a viable solution for acquiring high-quality art materials. A visual analysis system was designed to support UAV path planning, 3D reconstruction, and image-based rendering. In terms of engineering contributions, a blueprint editor was employed as the platform for this visual analysis system, wherein various visual analysis functions were implemented as function nodes within the editor, thereby enabling users to personalize their visual analysis workflow by simply dragging, connecting, and configuring graphic elements. In terms of algorithm innovation, an enhanced and optimized view selection algorithm based on sampling coverage was proposed. This algorithm offered improved results in terms of both algorithmic time cost and rendering coverage.

Key words: data visualization, unmanned aerial vehicles, 3D reconstruction, image-based render, visual analysis, path planning

CLC Number: