Fairness resource allocation based on blockchain for secure communication in integrated IoT

Abstract The emerging Space-Air-Ground, Artificial intelligence, blockchain and Vehicle-to-everything technology in Integrated Internet of Things (IoT) enables vehicles to communicate with other vehicles and roadside units (RSU), which improves communication efficiency and driving safety. Due to the...

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Main Authors: Wei Liang, Jun Zhao, Yan Liu, Yan Liang, Jingwen Li
Format: Article
Language:English
Published: SpringerOpen 2023-11-01
Series:EURASIP Journal on Advances in Signal Processing
Subjects:
Online Access:https://doi.org/10.1186/s13634-023-01075-2
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author Wei Liang
Jun Zhao
Yan Liu
Yan Liang
Jingwen Li
author_facet Wei Liang
Jun Zhao
Yan Liu
Yan Liang
Jingwen Li
author_sort Wei Liang
collection DOAJ
description Abstract The emerging Space-Air-Ground, Artificial intelligence, blockchain and Vehicle-to-everything technology in Integrated Internet of Things (IoT) enables vehicles to communicate with other vehicles and roadside units (RSU), which improves communication efficiency and driving safety. Due to the rich data in the Integrated IoT, it is easy for illegal persons to steal data or deceive users. While reasonably allocating resources to complete the transmission task, it is still a challenge to ensure the communication security of vehicle users in Integrated IoT. In this paper, we study the cost of vehicle users transmitting tasks by Vehicle to Infrastructure and Vehicle to Vehicle (V2V) in Integrated IoT. In order to protect the information security, we establish the identity authentication and matching model to obtain a better channel environment of Integrated IoT. Moreover, we consider dynamic pricing based on bandwidth resource occupancy to ensure user experience and server load in Integrated IoT. Under the constraints of task tolerable delay, we fix the bandwidth on the V2V side and decouple the task decomposition and bandwidth allocation in Integrated IoT. Then, we propose algorithms Blockchain-based Vehicle Identity Authentication (BVIA) and Delay Weight Fairness Bandwidth Allocation (DWFBA). In this way, vehicle users and RSUs entering the Integrated IoT system are authenticated and matched with devices with good trust value, and the fairness of users resource allocation is guaranteed. Simulation results show that BVIA algorithm can reduce communication overhead, and DWFBA algorithm can control user costs and effectively reduce the number of task failures in Integrated IoT.
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spelling doaj.art-8c0b9103b7544877be0ab3f832b371602023-11-12T12:33:16ZengSpringerOpenEURASIP Journal on Advances in Signal Processing1687-61802023-11-012023112310.1186/s13634-023-01075-2Fairness resource allocation based on blockchain for secure communication in integrated IoTWei Liang0Jun Zhao1Yan Liu2Yan Liang3Jingwen Li4China Telecom Research InstituteChina Telecom Research InstituteChina Telecom Research InstituteSchool of Computer and Communication Engineering, University of Science and Technology BeijingChina Telecom Research InstituteAbstract The emerging Space-Air-Ground, Artificial intelligence, blockchain and Vehicle-to-everything technology in Integrated Internet of Things (IoT) enables vehicles to communicate with other vehicles and roadside units (RSU), which improves communication efficiency and driving safety. Due to the rich data in the Integrated IoT, it is easy for illegal persons to steal data or deceive users. While reasonably allocating resources to complete the transmission task, it is still a challenge to ensure the communication security of vehicle users in Integrated IoT. In this paper, we study the cost of vehicle users transmitting tasks by Vehicle to Infrastructure and Vehicle to Vehicle (V2V) in Integrated IoT. In order to protect the information security, we establish the identity authentication and matching model to obtain a better channel environment of Integrated IoT. Moreover, we consider dynamic pricing based on bandwidth resource occupancy to ensure user experience and server load in Integrated IoT. Under the constraints of task tolerable delay, we fix the bandwidth on the V2V side and decouple the task decomposition and bandwidth allocation in Integrated IoT. Then, we propose algorithms Blockchain-based Vehicle Identity Authentication (BVIA) and Delay Weight Fairness Bandwidth Allocation (DWFBA). In this way, vehicle users and RSUs entering the Integrated IoT system are authenticated and matched with devices with good trust value, and the fairness of users resource allocation is guaranteed. Simulation results show that BVIA algorithm can reduce communication overhead, and DWFBA algorithm can control user costs and effectively reduce the number of task failures in Integrated IoT.https://doi.org/10.1186/s13634-023-01075-2Integrated IoTInformation securityResource allocationBlockchainIdentity authentication
spellingShingle Wei Liang
Jun Zhao
Yan Liu
Yan Liang
Jingwen Li
Fairness resource allocation based on blockchain for secure communication in integrated IoT
EURASIP Journal on Advances in Signal Processing
Integrated IoT
Information security
Resource allocation
Blockchain
Identity authentication
title Fairness resource allocation based on blockchain for secure communication in integrated IoT
title_full Fairness resource allocation based on blockchain for secure communication in integrated IoT
title_fullStr Fairness resource allocation based on blockchain for secure communication in integrated IoT
title_full_unstemmed Fairness resource allocation based on blockchain for secure communication in integrated IoT
title_short Fairness resource allocation based on blockchain for secure communication in integrated IoT
title_sort fairness resource allocation based on blockchain for secure communication in integrated iot
topic Integrated IoT
Information security
Resource allocation
Blockchain
Identity authentication
url https://doi.org/10.1186/s13634-023-01075-2
work_keys_str_mv AT weiliang fairnessresourceallocationbasedonblockchainforsecurecommunicationinintegratediot
AT junzhao fairnessresourceallocationbasedonblockchainforsecurecommunicationinintegratediot
AT yanliu fairnessresourceallocationbasedonblockchainforsecurecommunicationinintegratediot
AT yanliang fairnessresourceallocationbasedonblockchainforsecurecommunicationinintegratediot
AT jingwenli fairnessresourceallocationbasedonblockchainforsecurecommunicationinintegratediot