Design of Layered and Heterogeneous Network Routing Algorithm for Field Observation Instruments

Field stations and observation systems in cold and arid areas are mostly distributed in harsh natural environments which lead to problems such as the poor real-time data collection, transmission and processing, lower accuracy of data and failure to form integrated network observation, etc. To solve...

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Main Authors: Jiuyuan Huo, Jiguang Yang, Hamzah Murad Mohammed Al-Neshmi
Format: Article
Language:English
Published: IEEE 2020-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/9144220/
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spelling doaj-81faba5c02814fe6a042569850ffed272021-03-30T04:25:40ZengIEEEIEEE Access2169-35362020-01-01813586613588210.1109/ACCESS.2020.30103729144220Design of Layered and Heterogeneous Network Routing Algorithm for Field Observation InstrumentsJiuyuan Huo0https://orcid.org/0000-0003-2395-4133Jiguang Yang1https://orcid.org/0000-0001-7877-8566Hamzah Murad Mohammed Al-Neshmi2School of Electronic and Information Engineering, Lanzhou Jiaotong University, Lanzhou, ChinaSchool of Electronic and Information Engineering, Lanzhou Jiaotong University, Lanzhou, ChinaSchool of Electronic and Information Engineering, Lanzhou Jiaotong University, Lanzhou, ChinaField stations and observation systems in cold and arid areas are mostly distributed in harsh natural environments which lead to problems such as the poor real-time data collection, transmission and processing, lower accuracy of data and failure to form integrated network observation, etc. To solve these problems which severely restrict scientific monitoring and research in these areas, a Layered and Heterogeneous Clustering routing algorithm LHC is proposed for field observation instrument networks based on the classical clustering routing algorithm LEACH. First, the LHC algorithm adopts the mechanism of heterogeneous node energy to divide nodes into advanced nodes and normal nodes. The advanced nodes have more initial energy than normal nodes, which increases their probability to be elected as cluster heads (CHs). Then, a hierarchical structure is used to divide the network into several layers, each layer elects a fixed number of CHs, and the distribution of CHs is improved. Finally, by analyzing the influence of the residual energy of the node and the distance between the node and the base station (BS) of the network, the mechanism based on energy and distance factors is introduced into each round of CH election to improve the CH election method. In Matlab experiments, the improved LHC algorithm was compared with LEACH, SEP, and DEEC through analysis and comparison from the aspects of network life cycle, energy consumption and CH number. The experimental results show that the LHC algorithm has the advantages of uniform CH distribution and balanced node energy consumption which effectively improve the energy efficiency and data transmission capacity, and prolong the life cycle of the observing instrument network. The LHC algorithm provides an important routing protocol for observing instrument network and real-time reliable data transmission.https://ieeexplore.ieee.org/document/9144220/Observation instrument networkwireless sensor networkcluster routing algorithmlayered architectureenergy heterogeneous
collection DOAJ
language English
format Article
sources DOAJ
author Jiuyuan Huo
Jiguang Yang
Hamzah Murad Mohammed Al-Neshmi
spellingShingle Jiuyuan Huo
Jiguang Yang
Hamzah Murad Mohammed Al-Neshmi
Design of Layered and Heterogeneous Network Routing Algorithm for Field Observation Instruments
IEEE Access
Observation instrument network
wireless sensor network
cluster routing algorithm
layered architecture
energy heterogeneous
author_facet Jiuyuan Huo
Jiguang Yang
Hamzah Murad Mohammed Al-Neshmi
author_sort Jiuyuan Huo
title Design of Layered and Heterogeneous Network Routing Algorithm for Field Observation Instruments
title_short Design of Layered and Heterogeneous Network Routing Algorithm for Field Observation Instruments
title_full Design of Layered and Heterogeneous Network Routing Algorithm for Field Observation Instruments
title_fullStr Design of Layered and Heterogeneous Network Routing Algorithm for Field Observation Instruments
title_full_unstemmed Design of Layered and Heterogeneous Network Routing Algorithm for Field Observation Instruments
title_sort design of layered and heterogeneous network routing algorithm for field observation instruments
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2020-01-01
description Field stations and observation systems in cold and arid areas are mostly distributed in harsh natural environments which lead to problems such as the poor real-time data collection, transmission and processing, lower accuracy of data and failure to form integrated network observation, etc. To solve these problems which severely restrict scientific monitoring and research in these areas, a Layered and Heterogeneous Clustering routing algorithm LHC is proposed for field observation instrument networks based on the classical clustering routing algorithm LEACH. First, the LHC algorithm adopts the mechanism of heterogeneous node energy to divide nodes into advanced nodes and normal nodes. The advanced nodes have more initial energy than normal nodes, which increases their probability to be elected as cluster heads (CHs). Then, a hierarchical structure is used to divide the network into several layers, each layer elects a fixed number of CHs, and the distribution of CHs is improved. Finally, by analyzing the influence of the residual energy of the node and the distance between the node and the base station (BS) of the network, the mechanism based on energy and distance factors is introduced into each round of CH election to improve the CH election method. In Matlab experiments, the improved LHC algorithm was compared with LEACH, SEP, and DEEC through analysis and comparison from the aspects of network life cycle, energy consumption and CH number. The experimental results show that the LHC algorithm has the advantages of uniform CH distribution and balanced node energy consumption which effectively improve the energy efficiency and data transmission capacity, and prolong the life cycle of the observing instrument network. The LHC algorithm provides an important routing protocol for observing instrument network and real-time reliable data transmission.
topic Observation instrument network
wireless sensor network
cluster routing algorithm
layered architecture
energy heterogeneous
url https://ieeexplore.ieee.org/document/9144220/
work_keys_str_mv AT jiuyuanhuo designoflayeredandheterogeneousnetworkroutingalgorithmforfieldobservationinstruments
AT jiguangyang designoflayeredandheterogeneousnetworkroutingalgorithmforfieldobservationinstruments
AT hamzahmuradmohammedalneshmi designoflayeredandheterogeneousnetworkroutingalgorithmforfieldobservationinstruments
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