Cyberattack-Resilient Cyberphysical Systems

Barry Horowitz · IEEE Security & Privacy · 2020

A great deal of attention is currently being placed on the development of advanced automation for physical systems, including a wide array of applications such as automobiles, unmanned air vehicles (UAVs), the Internet of Things, and 3D printers. These automation opportunities introduce cyberattack risks that can lead to loss of human life or serious injury. The cyberattack risks related to physical systems first received national attention in 2011 due to the Stuxnet cyberattack, which disrupted industrial Iranian centrifuges employed in nuclear reactors.1

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