SCADA security device: design and implementation

Securing SCADA systems is a critical aspect of Smart grid security. As sophisticated attacks continue to target industrial systems, the focus should be on planning and developing new security techniques that will adapt to the SCADA environment and protocols. Traditional SCADA protocols such as DNP3,...

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Bibliographic Details
Main Author: Rodrigues, Aniket
Other Authors: Pendse, Ravi
Format: Others
Language:en_US
Published: Wichita State University 2012
Subjects:
Online Access:http://hdl.handle.net/10057/5195
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spelling ndltd-WICHITA-oai-soar.wichita.edu-10057-51952013-04-19T21:00:14ZSCADA security device: design and implementationRodrigues, AniketElectronic dissertationsSecuring SCADA systems is a critical aspect of Smart grid security. As sophisticated attacks continue to target industrial systems, the focus should be on planning and developing new security techniques that will adapt to the SCADA environment and protocols. Traditional SCADA protocols such as DNP3, Modbus and ICCP do not support encryption, authentication and data integrity in their native form. Although they can be secured with VPN tunnels, IPSEC adds significant network overhead and complexity to the end hosts. SCADA devices may lack the computing resources to implement this kind of technique. In this thesis, a security design is proposed that can help make communications between the master stations and slave devices in a SCADA network secure without putting additional overhead on the remote devices. This research designs a SCADA Security Device (SSD), which can work in conjunction with other network elements to implement a secure architecture for SCADA protocols. Several components of the SSD were implemented and tested during this research to evaluate the security features in a SCADA network.Thesis (M.S.)--Wichita State University, College of Engineering, Dept. of Electrical Engineering and Computer Science.Wichita State UniversityPendse, Ravi2012-06-20T18:03:44Z2012-06-20T18:03:44Z20112011-12Thesisxi, 48 p.t11114http://hdl.handle.net/10057/5195en_USCopyright Aniket Rodrigues, 2011. All rights reserved
collection NDLTD
language en_US
format Others
sources NDLTD
topic Electronic dissertations
spellingShingle Electronic dissertations
Rodrigues, Aniket
SCADA security device: design and implementation
description Securing SCADA systems is a critical aspect of Smart grid security. As sophisticated attacks continue to target industrial systems, the focus should be on planning and developing new security techniques that will adapt to the SCADA environment and protocols. Traditional SCADA protocols such as DNP3, Modbus and ICCP do not support encryption, authentication and data integrity in their native form. Although they can be secured with VPN tunnels, IPSEC adds significant network overhead and complexity to the end hosts. SCADA devices may lack the computing resources to implement this kind of technique. In this thesis, a security design is proposed that can help make communications between the master stations and slave devices in a SCADA network secure without putting additional overhead on the remote devices. This research designs a SCADA Security Device (SSD), which can work in conjunction with other network elements to implement a secure architecture for SCADA protocols. Several components of the SSD were implemented and tested during this research to evaluate the security features in a SCADA network. === Thesis (M.S.)--Wichita State University, College of Engineering, Dept. of Electrical Engineering and Computer Science.
author2 Pendse, Ravi
author_facet Pendse, Ravi
Rodrigues, Aniket
author Rodrigues, Aniket
author_sort Rodrigues, Aniket
title SCADA security device: design and implementation
title_short SCADA security device: design and implementation
title_full SCADA security device: design and implementation
title_fullStr SCADA security device: design and implementation
title_full_unstemmed SCADA security device: design and implementation
title_sort scada security device: design and implementation
publisher Wichita State University
publishDate 2012
url http://hdl.handle.net/10057/5195
work_keys_str_mv AT rodriguesaniket scadasecuritydevicedesignandimplementation
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