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Scientific Reports· 2026Q1

Reliability-oriented edge computation offloading strategy for Internet of Vehicles: based on improved hybrid fox optimization algorithm

Yubao Liu, Quanchao Sun, Binge Yan, Fengru Li et al.

Short summary

A new strategy using the Improved Hybrid Fox Optimization (IHFOX) algorithm achieves over 95% task completion rate in Internet of Vehicles (IoV) edge computing, while reducing system cost, delay, and energy consumption.

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Abstract

Abstract In the Internet of Vehicles (IoV), edge computing supports computation-intensive tasks through roadside unit servers. However, guaranteeing reliable task execution remains challenging in dynamic environments with limited resources. We propose a reliability-oriented computation offloading strategy based on the Improved Hybrid Fox Optimization (IHFOX) algorithm. The algorithm integrates sine chaotic mapping and Lévy flight to balance exploration and exploitation. It further employs a standard normal distribution for position updates, thereby accelerating convergence and avoiding local optima. For model construction, we establish a single-replica reliability model from dual dimensions of transmission reliability and computational reliability, meeting system-level reliability constraints through a multi-replica parallel redundancy mechanism. Meanwhile, vehicle mobility, resource/energy constraints, and joint weight factors are integrated to form a comprehensive optimization model under reliability constraints. Experiments demonstrate that the IHFOX algorithm guarantees high reliability with over 95% task completion rate, while significantly reducing system cost, delay, and energy consumption, exhibiting superior practical value in reliability-sensitive IoV applications.

The authors' abstract, as published at the source. Scientific Reports, 2026 · DOI ↗

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Field: Computer Networks and Communications

Computer Networks and CommunicationsComputer Science