Paper
27 March 2024 Design of a digital landscape planning system based on visualization technology
Min Ye
Author Affiliations +
Proceedings Volume 13105, International Conference on Computer Graphics, Artificial Intelligence, and Data Processing (ICCAID 2023); 1310508 (2024) https://doi.org/10.1117/12.3026402
Event: 3rd International Conference on Computer Graphics, Artificial Intelligence, and Data Processing (ICCAID 2023), 2023, Qingdao, China
Abstract
The field of landscape architecture and planning urgently requires the use of visualization and intelligent technologies to optimize traditional design processes. In response to the digital landscape planning needs, this research has designed and implemented a digital landscape planning system based on visualization technology. Through the development of visualization techniques, system framework design, and the implementation of key technologies, we have developed an integrated landscape planning system that combines digital scene modeling, interactive design, and intelligent planning optimization. The research has verified that the system achieves a high level of fidelity in digital scene representation and demonstrates effective human-computer interaction. The system enables the rapid construction of highly faithful digital landscape scenes, assisting designers in creative design and proposal assessment. Additionally, it leverages knowledge rules and successful cases to facilitate interactive intelligent optimization of landscape design proposals. The goal of this research is to develop a digital landscape planning system that integrates digital scene construction and intelligent design optimization. This research provides valuable technological support and practical implementation for the intelligent and digital transformation of landscape planning, contributing to innovation in the field.
(2024) Published by SPIE. Downloading of the abstract is permitted for personal use only.
Min Ye "Design of a digital landscape planning system based on visualization technology", Proc. SPIE 13105, International Conference on Computer Graphics, Artificial Intelligence, and Data Processing (ICCAID 2023), 1310508 (27 March 2024); https://doi.org/10.1117/12.3026402
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KEYWORDS
Design

Visualization

Modeling

Virtual reality

3D modeling

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