Title
A Distributed Middleware Architecture For Attack-Resilient Communications In Smart Grids
Abstract
Distributed Energy Resources (DERs) are being increasingly accepted as an excellent complement to traditional energy sources in smart grids. As most of these generators are geographically dispersed, dedicated communications investments for every generator are capital cost prohibitive. Real-time distributed communications middleware, which supervises, organizes and schedules tremendous amounts of data traffic in smart grids with high penetrations of DERs, allows for the use of existing network infrastructure. In this paper, we propose a distributed attack-resilient middleware architecture that detects and mitigates the congestion attacks by exploiting the Quality of Experience (QoE) measures to complement the conventional Quality of Service (QoS) information to detect and mitigate the congestion attacks effectively. The simulation results illustrate the efficiency of our proposed communications middleware architecture.
Year
Venue
Field
2017
2017 IEEE INTERNATIONAL CONFERENCE ON COMMUNICATIONS (ICC)
Middleware,Middleware (distributed applications),Smart grid,Computer science,Quality of service,Computer network,Real-time computing,Schedule,Distributed generation,Quality of experience,Energy source,Distributed computing
DocType
ISSN
Citations 
Conference
1550-3607
0
PageRank 
References 
Authors
0.34
8
3
Name
Order
Citations
PageRank
Yifu Wu141.74
Jin Wei2476.42
Bri-Mathias Hodge301.35