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Distributed multi-objective consumer-centric routing for LoRa-based IoT-enabled FANET

Omer Chughtai, Muhammad Waqas Rehan, Muhammad Naeem*, Ali Hamdan Alenezi, Sajjad Ali Haider

*Korrespondierende/r Autor/-in für diese Arbeit

Abstract

LoRa-enabled Flying Ad Hoc Networks (FANETs) offer long-range and energy-efficient connectivity for next-generation IoT and post-disaster communication infrastructures, yet their performance is fundamentally constrained by limited bandwidth, dynamic topologies, and uneven energy depletion across aerial nodes. This work develops a distributed consumer-centric multi-objective routing framework (Proposed-CCR) that jointly optimizes residual energy, link quality, and flow-level priority through a lightweight utility-driven forwarding mechanism. The design integrates composite cost modeling, two-hop neighbor awareness, adaptive path monitoring, and local repair to ensure scalable, resilient, and delay-aware multi-hop communication. Extensive simulations demonstrate that Proposed-CCR reduces per-packet energy consumption by 28–35%, extends network lifetime by over 35%, and decreases high-priority flow delay by nearly 40% relative to state-of-the-art schemes including MinHop, ACOR, GCCR, and BBCCR. These results confirm the effectiveness of a consumer-centric, LoRa-aware multi-objective heuristic for UAV-IoT integration and emergency communication scenarios, while highlighting practical opportunities for sustainable and resource-efficient airborne networking architectures.

OriginalspracheEnglisch
Aufsatznummer108368
ZeitschriftFuture Generation Computer Systems
Jahrgang179
ISSN0167-739X
DOIs
PublikationsstatusVeröffentlicht - 06.01.2026

Fördermittel

The authors extend their appreciation to the Deanship of Scientific Research at Northern Border University , Arar, KSA for funding this research work through the project number “ NBU-FPEJ-2026-2159-01 ”.

TrägerTrägernummer
Northern Border UniversityNBU-FPEJ-2026-2159-01

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