Availability evaluation method for extended epidemic model and Markov chain based IoT

To reflect the availability status of the Internet of things (IoT) under malware diffusion, an availability evaluation method of IoT based on the extended epidemic model SEIRD and Markov chain was proposed.According to actual states of IoT nodes, the classic epidemic model SIR was extended to establ...

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Main Authors: Xiaotong YE, Wenfei SUN, Shigen SHEN
Format: Article
Language:zho
Published: Beijing Xintong Media Co., Ltd 2021-04-01
Series:Dianxin kexue
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Online Access:http://www.telecomsci.com/zh/article/doi/10.11959/j.issn.1000-0801.2021063/
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author Xiaotong YE
Wenfei SUN
Shigen SHEN
author_facet Xiaotong YE
Wenfei SUN
Shigen SHEN
author_sort Xiaotong YE
collection DOAJ
description To reflect the availability status of the Internet of things (IoT) under malware diffusion, an availability evaluation method of IoT based on the extended epidemic model SEIRD and Markov chain was proposed.According to actual states of IoT nodes, the classic epidemic model SIR was extended to establish the node state transition model SEIRD.From the dynamic change process of each state of IoT nodes, the dynamic probability equations of IoT nodes belonging to five states were constructed, the Markov matrix reflecting the state transition was obtained, and an availability calculation method of an IoT node was achieved.Taking typical star and cluster IoT topologies as examples, the availability evaluation methods of the whole IoT with different topologies were given.Experiments provide suggestions for administrators how to reasonably deploy the number of normal working nodes and routes.The research results have theoretical significance for improving IoT availability and promoting the successful IoT applications.
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institution Kabale University
issn 1000-0801
language zho
publishDate 2021-04-01
publisher Beijing Xintong Media Co., Ltd
record_format Article
series Dianxin kexue
spelling doaj-art-f9857aa4eebf4b13beadb8c66f4664bd2025-01-15T03:26:05ZzhoBeijing Xintong Media Co., LtdDianxin kexue1000-08012021-04-0137374559807484Availability evaluation method for extended epidemic model and Markov chain based IoTXiaotong YEWenfei SUNShigen SHENTo reflect the availability status of the Internet of things (IoT) under malware diffusion, an availability evaluation method of IoT based on the extended epidemic model SEIRD and Markov chain was proposed.According to actual states of IoT nodes, the classic epidemic model SIR was extended to establish the node state transition model SEIRD.From the dynamic change process of each state of IoT nodes, the dynamic probability equations of IoT nodes belonging to five states were constructed, the Markov matrix reflecting the state transition was obtained, and an availability calculation method of an IoT node was achieved.Taking typical star and cluster IoT topologies as examples, the availability evaluation methods of the whole IoT with different topologies were given.Experiments provide suggestions for administrators how to reasonably deploy the number of normal working nodes and routes.The research results have theoretical significance for improving IoT availability and promoting the successful IoT applications.http://www.telecomsci.com/zh/article/doi/10.11959/j.issn.1000-0801.2021063/IoTmalwareepidemic modelMarkov chainavailability
spellingShingle Xiaotong YE
Wenfei SUN
Shigen SHEN
Availability evaluation method for extended epidemic model and Markov chain based IoT
Dianxin kexue
IoT
malware
epidemic model
Markov chain
availability
title Availability evaluation method for extended epidemic model and Markov chain based IoT
title_full Availability evaluation method for extended epidemic model and Markov chain based IoT
title_fullStr Availability evaluation method for extended epidemic model and Markov chain based IoT
title_full_unstemmed Availability evaluation method for extended epidemic model and Markov chain based IoT
title_short Availability evaluation method for extended epidemic model and Markov chain based IoT
title_sort availability evaluation method for extended epidemic model and markov chain based iot
topic IoT
malware
epidemic model
Markov chain
availability
url http://www.telecomsci.com/zh/article/doi/10.11959/j.issn.1000-0801.2021063/
work_keys_str_mv AT xiaotongye availabilityevaluationmethodforextendedepidemicmodelandmarkovchainbasediot
AT wenfeisun availabilityevaluationmethodforextendedepidemicmodelandmarkovchainbasediot
AT shigenshen availabilityevaluationmethodforextendedepidemicmodelandmarkovchainbasediot