自动化与仪器仪表2024,Issue(8) :104-107.DOI:10.14016/j.cnki.1001-9227.2024.08.104

基于全景视频拼接技术和云服务器的数字景观系统设计

Design of Digital Landscape System Based on Panoramic Video Splicing Technology and Cloud Server

刘慧 刘芳
自动化与仪器仪表2024,Issue(8) :104-107.DOI:10.14016/j.cnki.1001-9227.2024.08.104

基于全景视频拼接技术和云服务器的数字景观系统设计

Design of Digital Landscape System Based on Panoramic Video Splicing Technology and Cloud Server

刘慧 1刘芳2
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作者信息

  • 1. 武汉东湖学院,武汉 430212
  • 2. 江陵县医疗保障服务中心,湖北荆州 434100
  • 折叠

摘要

为实现效果更佳数字景观游览体验,提出一种基于全景视频和路径优化的数字景观游览系统.其中,在进行基于模型的虚拟场景搭建的同时,进行基于全景拼接技术的场景搭建,同时构建了基于LeanCloud云服务器的联网游览模块,使得游览更加接近真实游览场景;构建一种游览路径规划方法,并对其中的Cardinal曲线插值法进行优化,进一步提升路径规划质量.结果表明,与二次有理Bézier方法相比,改进的Cardinal曲线插值算法能够进行效果更好的路径优化,所优化后的曲线路径更加平滑;系统测试中,测试者们对游览系统的整体评价良好,验证了构建的系统的合理性.综上,构建的数字景观游览系统性能良好,整体设计合理,具有一定的实际使用价值.

Abstract

To achieve a better digital landscape tourism experience,a digital landscape tourism system based on panoramic video and path optimization is proposed.Among them,while building virtual scenes based on models,scene construction based on pano-ramic stitching technology was also carried out,and a networked tour module based on LeanCloud cloud server was constructed to make the tour closer to real tour scenes;Construct a tourism path planning method and optimize the Cardinal curve interpolation meth-od to further improve the quality of path planning.The results show that compared with the quadratic rational B é zier method,the im-proved Cardinal curve interpolation algorithm can perform better path optimization,and the optimized curve path is smoother;In the system testing,the testers gave a good overall evaluation of the tourism system,verifying the rationality of the constructed system.In summary,the constructed digital landscape tourism system has good performance,reasonable overall design,and certain practical val-ue.

关键词

数字景观/VR技术/全景视频/路径规划/系统搭建

Key words

digital landscape/VR technology/panoramic video/path planning/system setup

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基金项目

湖北省高等学校优秀中青年科技创新团队(T2020037)

出版年

2024
自动化与仪器仪表
重庆工业自动化仪表研究所,重庆市自动化与仪器仪表学会

自动化与仪器仪表

CSTPCD
影响因子:0.327
ISSN:1001-9227
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