Reliability and capability based computation offloading strategy for vehicular ad hoc clouds

被引:0
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作者
Bo Li
Ziyi Peng
Peng Hou
Min He
Marco Anisetti
Gwanggil Jeon
机构
[1] School of Information Science and Engineering,Department of Embedded Systems Engineering
[2] Yunnan University,undefined
[3] Dipartimento di Informatica (DI),undefined
[4] Università degli Studi di Milano,undefined
[5] Via Celoria 18,undefined
[6] School of Electronic Engineering,undefined
[7] Xidian University,undefined
[8] Incheon National University,undefined
关键词
Vehicle self-organizing cloud; Computing offloading; Task waiting time; Resource utilization; Partial flooding;
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摘要
In the Internet of Vehicles (IoV), with the increasing demand for intelligent technologies such as driverless driving, more and more in-vehicle applications have been put into autonomous driving. For the computationally intensive task, the vehicle self-organizing network uses other high-performance nodes in the vehicle driving environment to hand over tasks to these nodes for execution. In this way, the computational load of the cloud alleviated. However, due to the unreliability of the communication link and the dynamic changes of the vehicle environment, lengthy task completion time may lead to the increase of task failure rate. Although the flooding algorithm can improve the success rate of task completion, the offloading expend will be large. Aiming at this problem, we design the partial flooding algorithm, which is a comprehensive evaluation method based on system reliability in the vehicle computing environment without infrastructure. Using V2V link to select some nodes with better performance for partial flooding offloading to reduce the task complete time, improve system reliability and cut down the impact of vehicle mobility on offloading. The results show that the proposed offloading strategy can not only improve the utilization of computing resources, but also promote the offloading performance of the system.
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