DICer:网络内计算的分布式协调

Uthra Ambalavanan, Dennis Grewe, N. Nayak, Liming Liu, Nitinder Mohan, J. Ott
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引用次数: 3

摘要

汽车和物联网等应用领域可能受益于网络内计算,以减少数据在网络中的传输距离和响应时间。基于信息中心网络(ICN)的计算框架,如命名功能网络(NFN),由于其位置独立性和松耦合通信模型,是很有前途的选择。然而,与当前的操作不同,这些解决方案可以从跨计算节点的编排中获益,从而更好地利用网络中的可用资源。本文采用ICN中的一种应用数据集同步协议——状态向量同步(SVS),以分布式方式增强网络内计算节点的邻域知识。因此,我们为网络内计算(DICer)设计了分布式协调,通过改进计算请求的解析来帮助服务部署。我们根据NFN评估了DICer的性能,并观察到边缘资源利用率的增加和请求完成时间的减少。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
DICer: distributed coordination for in-network computations
Application domains such as automotive and the Internet of Things may benefit from in-network computing to reduce the distance data travels through the network and the response time. Information Centric Networking (ICN) based compute frameworks such as Named Function Networking (NFN) are promising options due to their location independence and loosely-coupled communication model. However, unlike current operations, such solutions may benefit from orchestration across the compute nodes to use the available resources in the network better. In this paper, we adopt the State Vector Synchronization (SVS), an application dataset synchronization protocol in ICN, to enhance the neighborhood knowledge of in-network compute nodes in a distributed fashion. As such, we design distributed coordination for in-network computation (DICer) that assists the service deployments by improving the resolution of compute requests. We evaluate the performance of DICer against NFN and observe an increase in the resource utilization at the edge and a reduction in the request completion time.
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