A Combined Environmental Monitoring Framework based on WSN Clustering and VANET Edge Computation Offloading

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Hauptverfasser: Mamalis, Basilis, Gerakidis, Sergios
Format: Preprint
Veröffentlicht: 2024
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author Mamalis, Basilis
Gerakidis, Sergios
author_facet Mamalis, Basilis
Gerakidis, Sergios
contents Wireless Sensor Networks (WSN) and Vehicular Ad-hoc Networks (VANET) have been extensively used in IoT applications for environmental monitoring, especially in rural and agricultural areas. In this paper we present a novel combined approach which uses both WSN and VANET clustered structures for the efficient gathering and processing of environmental parameters in long eNodeB/RSU-enabled roads/highways, which cross large rural areas. The former (WSNs) is used for traditional sensing and data gathering, whereas the latter (VANET) is used for both (a) performing intermediate processing based on modern edge computation offloading techniques, and (b) propagating the data (either raw data or computed results) to the residing eNodeB/RSUs. Extended experimental measurements, taken via the combined use of SUMO and Veins simulation platforms (and focusing in the air quality monitoring experimental case), demonstrate the high efficiency and scalability of the presented approach over very large deployment areas.
format Preprint
id arxiv_https___arxiv_org_abs_2411_10560
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle A Combined Environmental Monitoring Framework based on WSN Clustering and VANET Edge Computation Offloading
Mamalis, Basilis
Gerakidis, Sergios
Networking and Internet Architecture
Distributed, Parallel, and Cluster Computing
Wireless Sensor Networks (WSN) and Vehicular Ad-hoc Networks (VANET) have been extensively used in IoT applications for environmental monitoring, especially in rural and agricultural areas. In this paper we present a novel combined approach which uses both WSN and VANET clustered structures for the efficient gathering and processing of environmental parameters in long eNodeB/RSU-enabled roads/highways, which cross large rural areas. The former (WSNs) is used for traditional sensing and data gathering, whereas the latter (VANET) is used for both (a) performing intermediate processing based on modern edge computation offloading techniques, and (b) propagating the data (either raw data or computed results) to the residing eNodeB/RSUs. Extended experimental measurements, taken via the combined use of SUMO and Veins simulation platforms (and focusing in the air quality monitoring experimental case), demonstrate the high efficiency and scalability of the presented approach over very large deployment areas.
title A Combined Environmental Monitoring Framework based on WSN Clustering and VANET Edge Computation Offloading
topic Networking and Internet Architecture
Distributed, Parallel, and Cluster Computing
url https://arxiv.org/abs/2411.10560