浏览全部资源
扫码关注微信
1. 东南大学移动通信国家重点实验室,江苏 南京 210096
2. 深圳大学区块链技术研究中心,广东 深圳 518060
[ "左益平(1993- ),女,东南大学移动通信国家重点实验室博士生,主要研究方向为移动通信关键技术、区块链技术等。" ]
[ "金石(1974- ),男,东南大学移动通信国家重点实验室教授、博士生导师,主要研究方向为5G/B5G移动通信理论与关键技术、物联网理论与关键技术以及机器学习与大数据处理在无线通信中的应用等。" ]
[ "张胜利(1978- ),男,深圳大学区块链技术研究中心教授、博士生导师,主要研究方向为无线网络、区块链关键技术、物理层网络编码等。" ]
网络出版日期:2019-09,
纸质出版日期:2019-09-20
移动端阅览
左益平, 金石, 张胜利. 区块链在蜂窝移动通信系统中的研究现状及发展趋势[J]. 电信科学, 2019,35(9):114-123.
·iping ZUO, Shi JIN, Shengli ZHANG. Research status and development trend of blockchain in cellular mobile communication system[J]. Telecommunications science, 2019, 35(9): 114-123.
左益平, 金石, 张胜利. 区块链在蜂窝移动通信系统中的研究现状及发展趋势[J]. 电信科学, 2019,35(9):114-123. DOI: 10.11959/j.issn.1000-0801.2019192.
·iping ZUO, Shi JIN, Shengli ZHANG. Research status and development trend of blockchain in cellular mobile communication system[J]. Telecommunications science, 2019, 35(9): 114-123. DOI: 10.11959/j.issn.1000-0801.2019192.
区块链本质上是分布式数据库,无需第三方中介机构即可安全更新状态。将区块链技术引入6G蜂窝移动通信系统中以保障用户的隐私安全,减少资源分配和通信服务成本,支持不同分布式应用,从而实现移动通信和区块链技术的有机结合,被预测为6G蜂窝移动通信的关键技术之一。从区块链结合物联网(IoT)、边缘计算、频谱分配、干扰管理方面展开了详细的介绍,阐述了近年来国际学术界在该方向的最新研究进展,并在此基础上对6G蜂窝移动通信中区块链技术的发展趋势进行了进一步的展望。
The blockchain is essentially a distributed database that can be safely updated without the need for third-party intermediaries.The blockchain technology is introduced into the 6G cellular mobile communication system to ensure the privacy of users
reduce the cost of resource allocation and communication services
and support different distributed applications.In order to realize the organic combination of mobile communication and blockchain technology
it is predicted to be one of the key technologies of 6G cellular mobile communication.From the blockchain combined with internet of things (IoT)
edge computing
spectrum allocation
interference management
a detailed introduction was introduced
and the latest research progress of international academic circles in this direction was expounded in recent years
and on this basis
the development trend of blockchain technology in 6G cellular mobile communication was further prospected.
张静 , 金石 , 温朝凯 , 等 . 基于人工智能的无线传输技术最新研究进展 [J ] . 电信科学 , 2018 , 34 ( 8 ): 46 - 55 .
ZHANG J , JIN S , WEN C K , et al . The latest research progress of wireless transmission technology based on artificial intelligence [J ] . Telecommunications Science , 2018 , 34 ( 8 ): 46 - 55 .
CASSARA G A . 6G:the next frontier [M ] . Hoboken : WileyPress , 2015 .
KLAUS D , HENDRIK B . 6G vision and requirements:is there any need for beyond 5G? [J ] . IEEE Vehicular Technology Magazine , 2018 , 13 ( 3 ): 72 - 80 .
李董 , 魏进武 . 区块链技术原理、应用领域及挑战 [J ] . 电信科学 , 2016 , 32 ( 12 ): 20 - 25 .
LI D , WEI J W . Theory,application fields and challenge of the blockchain technology [J ] . Telecommunications Science , 2016 , 32 ( 12 ): 20 - 25 .
梅海涛 , 刘洁 . 区块链的产业现状、存在问题和政策建议 [J ] . 电信科学 , 2016 , 32 ( 11 ): 134 - 138 .
MEI H T , LIU J . Industry present situation,existing problems and strategy suggestion of blockchain [J ] . Telecommunications Science , 2016 , 32 ( 11 ): 134 - 138 .
NAKAMOTO S . Bitcoin:a peer-to-peer electronic cash system [R ] . 2008 .
MOHR A . A survey of zero-knowledge proofs with applications to cryptography [R ] . 2007 .
RAYNAL M . Communication and agreement abstractions for fault-tolerant asynchronous distributed systems [J ] . Synthesis Lectures on Distributed Computing Theory , 2010 , 1 ( 1 ): 1 - 273 .
BANO S , SONNINO A , AL-BASSAM M , et al . Consensus in the age of blockchains [J ] . arXiv:1711.03936 , 2017 .
KOSBA A , MILLER A . Hawk:the blockchain model of cryptography and privacy-preserving smart contracts [C ] // 2016 IEEE Symposium on Security and Privacy (SP),May 22-26,2016,San Jose,CA,USA . Piscataway:IEEE Press , 2016 : 839 - 858 .
BOZIC N , PUJOLLE G , SECCI S . Securing virtual machine orchestration with blockchains [C ] // 2017 Cyber Security in Networking Conference (CSNet),Oct 18-20,2017,Rio de Janeiro,Brazil.[S.l.:s.n] . 2017 : 1 - 8 .
CHATZOPOULOS D , AHMADI M . FlopCoin:a cryptocurrency for computation offloading [J ] . IEEE Transactions on Mobile Computing , 2018 , 17 ( 5 ):1.
CASTRO M , LISKOV B . Practical byzantine fault tolerance and proactive recovery [J ] . ACM Transactions on Computer Systems , 2001 , 20 ( 4 ): 398 - 461 .
TSCHORSCH F , SCHEUERMANN B . Bitcoin and beyond:a technical survey on decentralized digital currencies [J ] . IEEE Communications Surveys Tutorials , 2016 , 18 ( 3 ): 2084 - 3123 .
BONNEAU J , MILLER A , CLARK J , et al . Sok:research perspectives and challenges for bitcoin and cryptocurrencies [C ] // IEEE Symposium on Security and Privacy,May 17-21,2015,San Jose,CA,USA . Piscataway:IEEE Press , 2015 : 104 - 121 .
ZHENG Z , XIE S . Blockchain challenges and opportunities:a survey [R ] . 2016 .
CONTI M , SANDEEP K E , LAL C , et al . A survey on security and privacy issues of bitcoin [J ] . arXiv:1706.00916 , 2017 .
ATZEI N , BARTOLETTI M , CIMOLI T , et al . A survey of attacks on ethereum smart contracts [M ] . Berlin : SpringerPress , 2017 .
CHRISTIDIS K , DEVETSIKIOTIS M . Blockchains and smart contracts for the internet of things [J ] . IEEE Access , 2016 ( 4 ): 2292 - 2303 .
DORRI A , KANHERE S S , JURDAK R , et al . Blockchain in internet of things:challenges and solutions [J ] . arXiv:1608.05187 , 2016 .
FENG S H , WANG W B , NIYATO D , et al . Competitive data trading in wireless-powered internet of things (IoT) crowdsensing systems with blockchain [J ] . arXiv:1808.10217 , 2018 .
DANZI P , KALØR A E , STEFANOVIĆ C , et al . Analysis of the communication traffic for blockchain synchronization of IoT devices [J ] . arXiv:1711.00540v1 , 2018 .
DANZI P , KALØR A E , STEFANOVIĆ C , et al . Delay and communication tradeoffs for blockchain systems with lightweight IoT clients [J ] . arXiv:1807.07422 , 2018 .
XIONG Z H , ZHANG · , NIYATO D , et al . When mobile blockchain meets edge computing [J ] . arXiv:1711.05938 , 2018 .
XIONG Z H , FENG S H , WANG W B , et al . Cloud/fog computing resource management and pricing for blockchain networks [J ] . arXiv:1710.01567 , 2018 .
JIAO · T , WANG P , NIYATO D , et al . Auction mechanisms in cloud/fog computing resource allocation for public blockchain networks [J ] . arXiv:1804.09961 , 2018 .
LUONG N C , XIONG Z H , WANG P , et al . Optimal auction for edge computing resource management in mobile blockchain networks:a deep learning approach [J ] . arXiv:1711.02844 , 2017 .
BAYHAN S , ZUBOW A , WOLISZ A , et al . Spass:spectrum sensing as a service via smart contracts [C ] // IEEE International Symposium on Dynamic Spectrum Access Networks (DySPAN),Oct.22-25,2018,Seoul,South Korea . Piscataway:IEEE Press , 2018 : 1 - 10 .
KOTOBI K , BILEN S G . Blockchain-enabled spectrum access in cognitive radio networks [C ] // 2017 Wireless Telecommunications Symposium (WTS),Apr 26-28,2017,Chicago,IL,USA . Piscataway:IEEE Press , 2017 : 1 - 6 .
GAMAL A E , HESHAM E G . A blockchain example for cooperative interference management [J ] . arXiv:1711.01538 , 2018 .
王志宏 , 杨震 . 人工智能技术研究及未来智能化信息服务体系的思考 [J ] . 电信科学 , 2017 , 33 ( 5 ): 1 - 11 .
WANG Z H , ·ANG Z . Research on artificial intelligence technology and the future intelligent information service architecture [J ] . Telecommunications Science , 2017 , 33 ( 5 ): 1 - 11 .
王海坤 , 潘嘉 , 刘聪 . 语音识别技术的研究进展与展望 [J ] . 电信科学 , 2018 , 34 ( 2 ): 1 - 11 .
WANG H K , PAN J , LIU C . Research development and forecast of automatic speech recognition technologies [J ] . Telecommunications Science , 2018 , 34 ( 2 ): 1 - 11 .
0
浏览量
1144
下载量
0
CSCD
关联资源
相关文章
相关作者
相关机构