A situational awareness framework for securing the smart grid using monitoring sensors and threat models
by Anastasia Mavridou; Victor Zhou; Jerald Dawkins; Mauricio Papa
International Journal of Electronic Security and Digital Forensics (IJESDF), Vol. 4, No. 2/3, 2012

Abstract: Security, access control and risk mitigation in the smart grid are matters of great impact for this important sector of the critical infrastructure. Situational awareness requires a means of aggregating information and presenting that information in a manner conducive to assessing risk. While major components of the electric power grid were traditionally deployed in physically isolated networks, they are now utilising IP-based, open, interconnected networks to transmit and manage the supervisory control and data acquisition (SCADA) messages. Unfortunately, SCADA protocols used for communications and the systems that implement those protocols were not originally designed with security in mind. Therefore, in order to enhance security and detect potential malicious behaviour, smart grid operators need detailed and accurate information about the status, integrity, configuration and network topology of SCADA devices as well as information about any threats that may impact the grid. This paper describes a comprehensive framework that provides situational awareness (SA) for SCADA devices and their operations in a smart grid environment. Situational awareness is achieved by processing information collected by monitoring sensors and understanding threats that may affect operations. The proposed framework employs a threat modelling methodology to support this mission.

Online publication date: Wed, 19-Nov-2014

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