Securing critical infrastructure

M. Schukat
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引用次数: 3

Abstract

Energy Systems are undergoing radical changes, driven by a combination of factors, including full economic cost, efficiency, environmental impact and security-of-supply, while being facilitated by increased deregulation. This complexity can only be dealt with effectively with the rollout of complex ICT systems that will play a significant role in managing, planning, and securing the energy infrastructure. However, this ever-increasing complexity of energy and support ICT systems greatly increases the potential for cyber attacks. Modern energy systems are becoming increasingly coupled and interdependent and the move/convergence from heterogeneous protocols and systems to all IP-based systems and open standards, whilst beneficial from many perspectives, increases the attack surface and scope, and thus raises many cyber-security challenges. This paper will provide an overview of the cyber threat landscape in smart grid infrastructure from a Machine-to-Machine (M2M) communication perspective and discuss the role of PKI and authentication protocols for risk mitigation.
保护关键基础设施
在全面经济成本、效率、环境影响和供应安全等综合因素的推动下,能源系统正在发生根本性的变化,同时放松管制的增加也为其提供了便利。这种复杂性只能通过复杂的信息通信技术系统的推出来有效解决,这些系统将在管理、规划和保护能源基础设施方面发挥重要作用。然而,能源和支持信息通信技术系统的复杂性不断增加,大大增加了网络攻击的可能性。现代能源系统正变得越来越耦合和相互依赖,从异构协议和系统到所有基于ip的系统和开放标准的移动/融合,虽然从许多角度来看都是有益的,但增加了攻击面和范围,从而提出了许多网络安全挑战。本文将从机器对机器(M2M)通信的角度概述智能电网基础设施中的网络威胁情况,并讨论PKI和身份验证协议在降低风险方面的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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