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Directed Acyclic Graph Blockchain for Secure Spectrum Sharing and Energy Trading in Power IoT

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摘要 Peer-to-peer(P2P)spectrum sharing and energy trading are promising solutions to locally satisfy spectrum and energy demands in power Internet of Things(IoT).However,implementation of largescale P2P spectrum sharing and energy trading confronts security and privacy challenges.In this paper,we exploit consortium blockchain and Directed Acyclic Graph(DAG)to propose a new secure and distributed spectrum sharing and energy trading framework in power IoT,named spectrum-energy chain,where a set of local aggregators(LAGs)cooperatively confirm the identity of the power devices by utilizing consortium blockchain,so as to form a main chain.Then,the local power devices verify spectrum and energy micro-transactions simultaneously but asynchronously to form local spectrum tangle and local energy tangle,respectively.Moreover,an iterative double auction based micro transactions scheme is designed to solve the spectrum and energy pricing and the amount of shared spectrum and energy among power devices.Security analysis and numerical results illustrate that the developed spectrum-energy chain and the designed iterative double auction based microtransactions scheme are secure and efficient for spectrum sharing and energy trading in power IoT.
出处 《China Communications》 SCIE CSCD 2023年第5期182-197,共16页 中国通信(英文版)
基金 supported by the National Key R&D Program of China(2020YFB1807801,2020YFB1807800) in part by Project Supported by Engineering Research Center of Mobile Communications,Ministry of Education(cqupt-mct-202003) in part by Key Lab of Information Network Security,Ministry of Public Security under Grant C19603 in part by National Natural Science Foundation of China(Grant No.61901067 and 61901013) in part by Chongqing Municipal Natural Science Foundation(Grant No.cstc2020jcyj-msxmX0339).
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