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High Assurance Smart Grid

机译:高保证智能电网

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摘要

As electrical grids evolve through the introduction of additional 'smart' sensors and actuators, cyber security becomes an even more significant factor. Information Assurance controls must be implemented throughout the grid, from large scale power generating facilities, through transmission and distribution systems, to Building Management Systems (BMS) & Home Area Networks (HAN). A precursor to determining the appropriate controls for any particular device is to determine the trust model within which these devices exist. This paper sets out to define a multi-level framework for a trust model to be used throughout the electrical grid. The model is based on two core principles: categorize cyber security requirements based on a subsystem's potential impact on the overall grid; and implement controls based on an assumed compromise of adjacent subsystems. From a Smart Grid Cyber Security perspective, rather than attempting to create an all encompassing enclave of trust, this model suggests that systems should be designed in ways which expect compromise of adjacent systems. An expansive sphere of implied trust will inevitably lead an expansive sphere of vulnerability. Having an expectation of compromise, of a lack of trust, would be preferable as it will require subsystems to implement independent, rather than dependent, cyber security controls.
机译:随着电网通过引入额外的“智能”传感器和执行器来发展,网络安全成为更重要的因素。必须在整个网格中实施信息保证控制,通过大规模发电设施,通过传输和分配系统,建立管理系统(BMS)和宿舍(HAN)。确定任何特定设备的适当控件的前体是确定这些设备存在的信任模型。本文列出了为在整个电网中使用的信任模型来定义多级框架。该模型基于两个核心原则:根据子系统对整个网格的潜在影响分类网络安全要求;并基于对相邻子系统的假设折衷来实现控制。从智能电网网络安全的角度来看,而不是尝试创建所有包含的信任飞地,这型号表明,系统应该以预期相邻系统的折衷方式设计。暗示信任的广阔领域将不可避免地引领一个膨胀的脆弱领域。期望缺乏信任缺乏信任,这将是优选的,因为它需要子系统来实现独立的,而不是依赖的网络安全控制。

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