Communication and Network Laboratory, Dalian University, Dalian, China.
College of Environment and Chemical Engineering, Dalian University, Dalian, China.
PLoS One. 2024 Sep 12;19(9):e0310379. doi: 10.1371/journal.pone.0310379. eCollection 2024.
The Named Data Networking (NDN) is currently an important future network framework, and the mobility issue of producers within NDN is a primary challenge. However, in environments characterized by frequent producers mobility, traditional producer mobility support schemes still encounter issues such as excessive consumer delays and interest packet loss. With the development of The 6th generation communication technology (6G), integrating ground networks with satellites has emerged as a potential solution to address the aforementioned problems. In this paper, we propose an NDN producer mobility support scheme based on multi-satellite data depot, named MsDD. The proposed scheme proactively caches producer data into a data depot built on a low-earth orbit satellite constellation to minimize the impact of NDN producer mobility on network performance. We design data depot construction strategy, in-network caching strategy, and routing strategy based on forwarding hint to facilitate effective communication in satellite networks. Experimental results using ndnSIM demonstrate that compared with other existing schemes, MsDD can effectively shield the impact of producer mobility on consumer delay, delivery ratio, and signaling overhead, and MsDD has a clear advantage in terms of consumer delay and delivery ratio.
命名数据网络(NDN)目前是一个重要的未来网络框架,而 NDN 中生产者的移动性问题是一个主要挑战。然而,在生产者频繁移动的环境中,传统的生产者移动性支持方案仍然存在消费者延迟过大和兴趣包丢失等问题。随着第 6 代通信技术(6G)的发展,将地面网络与卫星相结合已成为解决上述问题的一种潜在解决方案。在本文中,我们提出了一种基于多卫星数据仓库的 NDN 生产者移动性支持方案,命名为 MsDD。该方案主动将生产者数据缓存在基于低地球轨道卫星星座构建的数据仓库中,以最小化 NDN 生产者移动性对网络性能的影响。我们设计了数据仓库构建策略、网络内缓存策略和基于转发提示的路由策略,以促进卫星网络中的有效通信。使用 ndnSIM 的实验结果表明,与其他现有方案相比,MsDD 可以有效地屏蔽生产者移动性对消费者延迟、交付率和信令开销的影响,并且在消费者延迟和交付率方面具有明显优势。