Visible to the public Lightweight Security Signaling Mechanism in Optical Network for Smart Power Grid

TitleLightweight Security Signaling Mechanism in Optical Network for Smart Power Grid
Publication TypeConference Paper
Year of Publication2018
AuthorsYongdong, C., Wei, W., Yanling, Z., Jinshuai, W.
Conference Name2018 IEEE International Conference on Computer and Communication Engineering Technology (CCET)
Date Publishedaug
Keywordsbackbone optical networks, Bandwidth, communication security issue, computer network security, Internet, large-scale multidomain optical network, lightweight security signaling mechanism, lightweight security signaling protocol, Metrics, multi-domain optical network, multidomain communication services, Optical fiber networks, optical fibre networks, optical receivers, power engineering computing, Protocols, pubcrawl, Resiliency, Scalability, security, security improvement, security level, security signaling, signaling encryption, signaling interaction, Smart grid, smart grid security, Smart grids, smart power grid environment, smart power grids, trusted connection
Abstract

The communication security issue brought by Smart Grid is of great importance and should not be ignored in backbone optical networks. With the aim to solve this problem, this paper firstly conducts deep analysis into the security challenge of optical network under smart power grid environment and proposes a so-called lightweight security signaling mechanism of multi-domain optical network for Energy Internet. The proposed scheme makes full advantage of current signaling protocol with some necessary extensions and security improvement. Thus, this lightweight security signaling protocol is designed to make sure the end-to-end trusted connection. Under the multi-domain communication services of smart power grid, evaluation simulation for the signaling interaction is conducted. Simulation results show that this proposed approach can greatly improve the security level of large-scale multi-domain optical network for smart power grid with better performance in term of connection success rate performance.

URLhttps://ieeexplore.ieee.org/document/8542224
DOI10.1109/CCET.2018.8542224
Citation Keyyongdong_lightweight_2018