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Cyber security in smart grid SCADA automation systems

机译:智能电网SCADA自动化系统中的网络安全

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Cyber attacks into modern SCADA (Supervisory Control and Data Acquisition) lead to vulnerabilities as International Electrotechnical Commission (IEC) 61850 has no security features inbuilt. IEC 62351 is used to secure IEC 61850 profiles. SCADA power utilities, using IEC 61850 protocol, are facing problem of key management as it is not outlined in IEC 62351. In recent times, key management in SCADA networks is a major challenge. Due to lack of resources and low latency requirements in SCADA networks, it is infeasible to use traditional key management schemes such as RSA based PKI (Public Key Infrastructure).This paper will give a general insight on the development of security mechanisms to secure substation level SCADA communication which has a Bump-in-the-wire (Bitw) device. Finally, we propose a security solution to eliminate the problem of key management by integrating CDAC's key distribution and management protocol Sec-KeyD into IEC 62351 to secure IEC 61850 protocol.
机译:由于国际电工委员会(IEC)61850没有内置的安全功能,因此,对现代SCADA(监控和数据采集)的网络攻击导致了漏洞。 IEC 62351用于保护IEC 61850配置文件。使用IEC 61850协议的SCADA电力公用事业面临着密钥管理的问题,因为IEC 62351中未对此进行概述。近来,SCADA网络中的密钥管理已成为一项重大挑战。由于SCADA网络中缺乏资源且对延迟的要求较低,因此无法使用传统的密钥管理方案,例如基于RSA的PKI(公共密钥基础结构)。本文将对变电站安全的安全机制的发展提供一般见解。具有线插拔(Bitw)设备的SCADA通信。最后,我们提出了一种安全解决方案,通过将CDAC的密钥分发和管理协议Sec-KeyD集成到IEC 62351中来保护IEC 61850协议,从而消除了密钥管理问题。

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