论文标题

集成卫星陆网网络中的延迟感知卸载

Latency-Aware Offloading in Integrated Satellite Terrestrial Networks

论文作者

Abderrahim, Wiem, Amin, Osama, Alouini, Mohamed-Slim, Shihada, Basem

论文摘要

预计下一代通信网络将以智能的方式整合新使用的技术,以确保农村地区的连通性连续连通性并减轻密集地区的交通负荷。 6G中的潜在访问网络应铰接在卫星系统上,以利用其广泛的覆盖范围和高容量。但是,由于引入了额外的延迟,因此在6G中采用卫星可能会受到阻碍,所有流量类型都不容忍。因此,我们提出了一种流量卸载方案,该方案同时集成了卫星和地面网络,以巧妙地分配它们之间的流量,同时满足不同的流量要求。具体而言,提议的方案将超可靠的低潜伏期通信(URLLC)流量卸载到陆地回程中,以满足其严格的延迟要求。但是,由于EMBB需要较高的数据速率,因此它将增强的移动宽带(EMBB)流量卸载到卫星上,但并不总是对延迟敏感。我们的方案被证明可以减少URLLC数据包的传输延迟,减少掉落的EMBB数据包的数量,从而改善网络的可用性。我们的发现强调,卫星和地面网络之间的相互作用对于减轻有限的陆地能力的预期高负载至关重要。

Next-generation communication networks are expected to integrate newly-used technologies in a smart way to ensure continuous connectivity in rural areas and to alleviate the traffic load in dense regions. The prospective access network in 6G should hinge on satellite systems to take advantage of their wide coverage and high capacity. However, adopting satellites in 6G could be hindered because of the additional latency introduced, which is not tolerable by all traffic types. Therefore, we propose a traffic offloading scheme that integrates both the satellite and terrestrial networks to smartly allocate the traffic between them while satisfying different traffic requirements. Specifically, the proposed scheme offloads the Ultra-Reliable Low Latency Communication (URLLC) traffic to the terrestrial backhaul to satisfy its stringent latency requirement. However, it offloads the enhanced Mobile Broadband (eMBB) traffic to the satellite since eMBB needs high data rates but is not always sensitive to delay. Our scheme is shown to reduce the transmission delay of URLLC packets, decrease the number of dropped eMBB packets, and hence improve the network's availability. Our findings highlight that the inter-working between satellite and terrestrial networks is crucial to mitigate the expected high load on the limited terrestrial capacity.

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