A blockchain-based clock synchronization Scheme in IoT

Future Generation Computer Systems - Tập 101 - Trang 524-533 - 2019
Kai Fan1, Shili Sun, Zheng Yan1,2, Qiang Pan1, Hui Li1, Yintang Yang3
1State Key Laboratory of Integrated Service Networks, Xidian University, Xi’an, China
2Department of Communications and Networking, Aalto University, Espoo, 02150, Finland
3Key Lab. of Minist. of Educ. for Wide Band-Gap Semicon. Materials and Devices, Xidian University, Xi’an, China

Tài liệu tham khảo

Al-Fuqaha M. Guizani, 2015, Internet of Things: A survey on enabling technologies, protocols, and applications, IEEE Commun. Surv. Tutor., 17, 2347, 10.1109/COMST.2015.2444095 Xu, 2013, Target tracking and mobile sensor navigation in wireless sensor networks, IEEE Trans. Mob. Comput., 12, 177, 10.1109/TMC.2011.262 Xu, 2014, Applications of wireless sensor networks in marine environment monitoring: A survey, Sensors, 14, 16932, 10.3390/s140916932 Y. Liu, J. Li, M. Guizani, Lightweight secure global time synchronization for wireless sensor networks, in: Proc. IEEE Wireless Commun. Netw. Conf. WCNC, Shanghai, China, Apr. 2012, pp. 2312–2317. Yan, 2014, A survey on trust management for Internet of Things, J. Netw. Comput. Appl., 42, 120, 10.1016/j.jnca.2014.01.014 Freris, 2011, Fundamental limits on synchronizing clocks over networks, IEEE Trans. Automat. Control, 56, 1352, 10.1109/TAC.2010.2089210 M. Maróti, B. Kusy, G. Simon, Á. Lédeczi, The flooding time synchronization protocol, in: Proc. 2nd ACM Conf. Embedded Networked Sensor Systems, 2004, pp. 39–49. Akhlaq, 2013, RTSP: An accurate and energy-efficient protocol for clock synchronization in WSNs, IEEE Trans. Instrum. Meas., 62, 578, 10.1109/TIM.2012.2232472 He, 2014, Secure time synchronization in wireless sensor networks: A maximum consensus-based approach, IEEE Trans. Parallel Distrib. Syst., 25, 1055, 10.1109/TPDS.2013.150 Schenato, 2011, Average TimeSynch: A consensus-based protocol for clock synchronization in wireless sensor networks, Automatica, 47, 1878, 10.1016/j.automatica.2011.06.012 R. Solis, V. Borkar, P.R. Kumar, A new distributed time synchronization protocol for multihop wireless networks, in: Proc. 45th IEEE Conf. Decision and Control, 2006, pp. 2734–2739. Malekpour, 2006, A byzantine-fault tolerant self-stabilizing protocol for distributed clock synchronization systems Dong, 2015, Robust and secure time-synchronization against sybil attacks for sensor networks, IEEE Trans. Ind. Inf., 11, 1482, 10.1109/TII.2015.2495147 Sun, 2006, Secure and resilient clock synchronization in wireless sensor networks, IEEE J. Sel. Areas Commun., 24, 395, 10.1109/JSAC.2005.861396 Nakamoto, 2008 Zyskind, 2015, Decentralizing privacy: Using blockchain to protect personal data, 180 Swan, 2015, Blockchain thinking: the brain as a decentralized autonomous corporation, IEEE Technol. Soc. Mag., 34, 41, 10.1109/MTS.2015.2494358 Zheng, 2016 Kai, 2017, Blockchain-based efficient privacy preserving and data sharing scheme of content-centric network in 5G, IET Commun. Duong, 2016 Garay, 2015, The Bitcoin backbone protocol: Analysis and applications, 281 Dwork, 1992, Pricing via processing or combatting junk mail, 139 Ball, 2017, 203 King, 2012 Castro, 1999, Practical byzantine fault tolerance, vol. 99, 173 Luu, 2015 S. Ganeriwal, R. Kumar, M.B. Srivastava, Timing-sync protocol for sensor networks, in: Proc. 1st Int. Conf. Embedded Netw. Sensor Syst. SenSys, Los Angeles, CA, USA, Nov. 2003, pp. 138–149. Dinh, 2017, Blockbench: A framework for analyzing private blockchains, 1085