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Who Controls the off Switch?

机译:谁控制关闭开关?

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We're about to acquire a significant new cyber- vulnerability. The world's energy utilities are starting to install hundreds of millions of 'smart meters' which contain a remote off switch. Its main purpose is to ensure that customers who default on their payments can be switched remotely to a prepay tariff; secondary purposes include supporting interruptible tariffs and implementing rolling power cuts at times of supply shortage. The off switch creates information security problems of a kind, and on a scale, that the energy companies have not had to face before. From the viewpoint of a cyber attacker - whether a hostile government agency, a terrorist organisation or even a militant environmental group - the ideal attack on a target country is to interrupt its citizens' electricity supply. This is the cyber equivalent of a nuclear strike; when electricity stops, then pretty soon everything else does too. Until now, the only plausible ways to do that involved attacks on critical generation, transmission and distribution assets, which are increasingly well defended. Smart meters change the game. The combination of commands that will cause meters to interrupt the supply, of applets and software upgrades that run in the meters, and of cryptographic keys that are used to authenticate these commands and software changes, create a new strategic vulnerability, which we discuss in this paper.
机译:我们将获得一个重大的新网络漏洞。世界各地的能源公司开始安装数以亿计的“智能电表”,其中包含一个远程关闭开关。其主要目的是确保拖欠付款的客户可以远程切换到预付款费率;次要目的包括支持可中断的关税,并在供应短缺时实施滚动停电。关闭开关带来了能源公司以前不必面对的那种大规模的信息安全问题。从网络攻击者(无论是敌对的政府机构,恐怖组织甚至是好战的环境组织)的角度来看,对目标国家的理想攻击是中断其公民的电力供应。这在网络上等同于核打击。当停电时,其他所有事情很快也会发生。到目前为止,唯一可行的方法是对关键的发电,输电和配电资产进行攻击,而这些资产的防御越来越好。智能电表改变了游戏规则。导致电表中断供应的命令,电表中运行的小程序和软件升级以及用于对这些命令和软件更改进行身份验证的加密密钥的组合,将构成一个新的战略漏洞,我们将在本文中进行讨论。纸。

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