English

UAV-Empowered Disaster-Resilient Edge Architecture for Delay-Sensitive Communication

Networking and Internet Architecture 2019-01-29 v2

Abstract

The fifth-generation (5G) communication systems will enable enhanced mobile broadband, ultra-reliable low latency, and massive connectivity services. The broadband and low-latency services are indispensable to public safety (PS) communication during natural or man-made disasters. Recently, the third generation partnership project long term evolution (3GPPLTE) has emerged as a promising candidate to enable broadband PS communications. In this article, first we present six major PS-LTE enabling services and the current status of PS-LTE in 3GPP releases. Then, we discuss the spectrum bands allocated for PS-LTE in major countries by international telecommunication union (ITU). Finally, we propose a disaster resilient three-layered architecture for PS-LTE (DR-PSLTE). This architecture consists of a software-defined network (SDN) layer to provide centralized control, an unmanned air vehicle (UAV) cloudlet layer to facilitate edge computing or to enable emergency communication link, and a radio access layer. The proposed architecture is flexible and combines the benefits of SDNs and edge computing to efficiently meet the delay requirements of various PS-LTE services. Numerical results verified that under the proposed DR-PSLTE architecture, delay is reduced by 20% as compared with the conventional centralized computing architecture.

Keywords

Cite

@article{arxiv.1809.09617,
  title  = {UAV-Empowered Disaster-Resilient Edge Architecture for Delay-Sensitive Communication},
  author = {Zeeshan Kaleem and Muhammad Yousaf and Aamir Qamar and Ayaz Ahmad and Trung Q. Duong and Wan Choi and Abbas Jamalipour},
  journal= {arXiv preprint arXiv:1809.09617},
  year   = {2019}
}

Comments

9,5

R2 v1 2026-06-23T04:18:08.414Z