计算机科学
边缘计算
服务器
计算机网络
背景(考古学)
GSM演进的增强数据速率
移动边缘计算
分布式计算
互联网
电信
生物
万维网
古生物学
作者
Alessandro Traspadini,Marco Giordani,Giovanni Giambene,Michele Zorzi
标识
DOI:10.1109/lwc.2023.3238851
摘要
Non-Terrestrial Networks (NTNs) are expected to be a key component of 6th generation (6G) networks to support broadband seamless Internet connectivity and expand the coverage even in rural and remote areas. In this context, High Altitude Platforms (HAPs) can act as edge servers to process computational tasks offloaded by energy-constrained terrestrial devices such as Internet of Things (IoT) sensors and ground vehicles (GVs). In this letter, we analyze the opportunity to support Vehicular Edge Computing (VEC) via HAP in a rural scenario where GVs can decide whether to process data onboard or offload them to a HAP. We characterize the system as a set of queues in which computational tasks arrive according to a Poisson arrival process. Then, we assess the optimal VEC offloading factor to maximize the probability of real-time service, given latency and computational capacity constraints.
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