Abstract
Relying on the development of technology, the communication Internet has included not only the traditional Internet but also the Internet of Things (IoT). However, a large number of IoT applications especially video streaming confront kinds of security challenges. In this paper, we consider the requirements of video streaming such as sufficient reliability, security, real-time and investigate the trade-off among them. Based on the above consideration, a security scheme for IoT video streaming via joint network coding and retransmission is proposed. The scheme relates the independent packets and ensures a part of them to be reliably transmitted by ARQ protocol simultaneously. Moreover, the secrecy performance is evaluated by probability analysis. And simulation results which make comparison with the noise aggregation scheme further corroborate the performance in our scheme.
The research reported in this paper was supported in part by: Key Research and Development Program of Shannxi Province under Grant 2017ZDXM-GY-012, National Natural Science Foundation of China under Grant No. 61431011, Fundamental Research Funds for the Central Universities.
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References
Khan, R., et al.: Future internet: the internet of things architecture, possible applications and key challenges. In: International Conference on Frontiers of Information Technology, pp. 257–260. IEEE (2013)
Xu, Q., et al.: Security enhancement for IoT communications exposed to eavesdroppers with uncertain locations. IEEE Access 4, 2840–2853 (2016)
Keoh, S.L., Kumar, S.S., Tschofenig, H.: Securing the internet of things: a standardization perspective. IEEE IoT J. 1(3), 265–275 (2014)
Quan, Z., Chung, J.M.: Analysis of packet loss for real-time traffic in wireless mobile networks with ARQ feedback. In: 2004 IEEE Wireless Communications and Networking Conference, WCNC 2004, vol. 1. IEEE (2004)
Ge, X., Liu, H., Wang, G.: A novel loss-impact-estimating based ARQ for wireless real-time H.264/SVC video stream. In: International Conference on Electronics Information and Emergency Communication, pp. 131–135. IEEE (2015)
Tang, X., et al.: On the throughput of secure hybrid-ARQ protocols for Gaussian block-fading channels. IEEE Trans. Inf. Theory 55(4), 1575–1591 (2009)
He, H., Ren, P.: Secure ARQ protocol for wireless communications: performance analysis and packet coding design. IEEE Trans. Veh. Technol. PP(99), 1 (2018)
Hussain, M., et al.: Security enhancement for video transmission via noise aggregation in immersive systems. Multimed. Tools Appl. 75(9), 5345–5357 (2016)
Xu, Q., et al.: On achievable secrecy rate by noise aggregation over wireless fading channels. In: IEEE International Conference on Communications, pp. 1–6. IEEE (2016)
Wyner, A.D.: The wire-tap channel. Bell Labs Tech. J. 54(8), 1355–1387 (2014)
Stuber, G.L.: Principles of Mobile Communication. Kluwer Academic Publishers, Dordrecht (2001). 98C106
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© 2019 ICST Institute for Computer Sciences, Social Informatics and Telecommunications Engineering
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Qin, P., Ren, P., Du, Q., Sun, L. (2019). Security Enhancement for IoT Video Streaming via Joint Network Coding and Retransmission Design. In: Li, B., Yang, M., Yuan, H., Yan, Z. (eds) IoT as a Service. IoTaaS 2018. Lecture Notes of the Institute for Computer Sciences, Social Informatics and Telecommunications Engineering, vol 271. Springer, Cham. https://doi.org/10.1007/978-3-030-14657-3_4
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DOI: https://doi.org/10.1007/978-3-030-14657-3_4
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