作者
Nan Cheng, Wei Quan, Weisen Shi, Huaqing Wu, Qiang Ye, Haibo Zhou, Weihua Zhuang, Xuemin Sherman Shen, Bo Bai
发表日期
2020/2/11
期刊
IEEE Wireless Communications
卷号
27
期号
1
页码范围
178-185
出版商
IEEE
简介
Space-air-ground integrated network (SAGIN) is envisioned as a promising solution to provide cost-effective, large-scale, and flexible wireless coverage and communication services. Since realworld deployment for testing of SAGIN is difficult and prohibitive, an efficient SAGIN simulation platform is requisite. In this article, we present our developed SAGIN simulation platform which supports various mobility traces and protocols of space, aerial, and terrestrial networks. Centralized and decentrallized controllers are implemented to optimize the network functions such as access control and resource orchestration. In addition, various interfaces extend the functionality of the platform to facilitate user-defined mobility traces and control algorithms. We also present a case study where highly mobile vehicular users dynamically choose different radio access networks according to their quality of service (QoS) requirements.
引用总数
学术搜索中的文章
N Cheng, W Quan, W Shi, H Wu, Q Ye, H Zhou… - IEEE Wireless Communications, 2020