面向低轨道卫星边缘计算的qos感知资源配置

Tobias Pfandzelter, David Bermbach
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引用次数: 13

摘要

随着提供全球宽带互联网接入的大型LEO卫星通信网络的出现,在LEO网络内提供边缘计算资源的兴趣已经出现。LEO Edge承诺为全球客户和物联网设备提供低延迟、高带宽的计算和存储资源访问,无论其地理位置如何。目前的建议假设每个LEO卫星上都有计算资源或服务副本,这需要很高的前期投资,并可能导致供应过剩。为了有效地实施和使用LEO Edge,需要服务器和服务放置方法,以帮助选择最佳的卫星子集作为服务器或服务副本位置。在本文中,我们展示了如何利用低轨道卫星网络的独特拓扑,将现有的关于二维环面上资源放置的研究应用于这一问题。此外,我们扩展了现有的离散资源放置方法,以允许在QoS约束下放置资源。在对所提出的LEO卫星通信网络的仿真中,我们展示了QoS如何依赖于轨道参数,并且我们提出的方法可以考虑这些影响,而现有方法无法考虑这些影响。
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QoS-Aware Resource Placement for LEO Satellite Edge Computing
With the advent of large LEO satellite communication networks to provide global broadband Internet access, interest in providing edge computing resources within LEO networks has emerged. The LEO Edge promises low-latency, high-bandwidth access to compute and storage resources for a global base of clients and IoT devices regardless of their geographical location.Current proposals assume compute resources or service replicas at every LEO satellite, which requires high upfront investments and can lead to over-provisioning. To implement and use the LEO Edge efficiently, methods for server and service placement are required that help select an optimal subset of satellites as server or service replica locations. In this paper, we show how the existing research on resource placement on a 2D torus can be applied to this problem by leveraging the unique topology of LEO satellite networks. Further, we extend the existing discrete resource placement methods to allow placement with QoS constraints. In simulation of proposed LEO satellite communication networks, we show how QoS depends on orbital parameters and that our proposed method can take these effects into account where the existing approach cannot.
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