Leveraging Hardware Reverse Engineering to Improve the Cyber Security and Resilience of the Smart Grid

A. Nygård, S. Katsikas
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Abstract

: Cyber-attacks on digital supply chains are rising, and Critical Infrastructures (CIs) such as the Smart Grid are prime targets. There is increasing evidence that vendors, service providers, and outsourced IT -providers are at equal risk of being used by malicious actors to gain a foothold in the power grid - delivering exploits that can disrupt electric power delivery and severely damage our economy. Long digital supply chains with components from different manufacturers require a new approach and methods to ensure the needed security in Critical Infrastructures. Hardware Reverse Engineering (HRE), commonly used for verifying the security of an embedded system, includes disassembling to analyse, test, and document the functionality and vulnerability of the target system. This paper proposes leveraging HRE for improving both the security and the resilience of the power infrastructure against cyber-attacks enabled through the digital supply chain, by organising HRE activities, and how this can be organized within the equipment procurement process in a Distribution System Operator (DSO).
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利用硬件逆向工程提高智能电网的网络安全性和弹性
针对数字供应链的网络攻击正在增加,智能电网等关键基础设施(ci)是主要目标。越来越多的证据表明,供应商、服务提供商和外包IT提供商同样有可能被恶意行为者利用,从而在电网中获得立足点——提供可以破坏电力输送并严重损害我们经济的漏洞。由不同制造商组成的长数字供应链需要一种新的方法和方法来确保关键基础设施所需的安全性。硬件逆向工程(HRE)通常用于验证嵌入式系统的安全性,包括拆卸以分析、测试和记录目标系统的功能和漏洞。本文建议通过组织HRE活动,以及如何在配电系统运营商(DSO)的设备采购过程中组织HRE活动,利用HRE来提高电力基础设施的安全性和抵御数字供应链网络攻击的弹性。
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