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Pacemakers and Implantable Cardiac Defibrillators: Software Radio Attacks and Zero-Power Defenses

机译:起搏器和植入心脏除颤器:软件无线电攻击和零功率防御

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Our study analyzes the security and privacy properties of an implantable cardioverter defibrillator (ICD). Introduced to the U.S. market in 2003, this model of ICD includes pacemaker technology and is designed to communicate wirelessly with a nearby external programmer in the 175 kHz frequency range. After partially reverse-engineering the ICD's communications protocol with an oscilloscope and a software radio, we implemented several software radio-based attacks that could compromise patient safety and patient privacy. Motivated by our desire to improve patient safety, and mindful of conventional trade-offs between security and power consumption for resource-constrained devices, we introduce three new zero-power defenses based on RF power harvesting. Two of these defenses are human-centric, bringing patients into the loop with respect to the security and privacy of their implantable medical devices (IMDs). Our contributions provide a scientific baseline for understanding the potential security and privacy risks of current and future IMDs, and introduce human-perceptible and zero-power mitigation techniques that address those risks. To the best of our knowledge, this paper is the first in our community to use general-purpose software radios to analyze and attack previously unknown radio communications protocols.
机译:我们的研究分析了可植入的Cardioverter除颤器(ICD)的安全和隐私性质。 2003年推出了美国市场,这款ICD型号包括起搏器技术,旨在在175 kHz频率范围内与附近的外部程序员无线通信。在用示波器和软件无线电接收到ICD的通信协议之后,我们实现了几种软件基于无线电的攻击,这可能会损害患者安全性和患者隐私。我们希望改善患者安全性的愿望,并注意资源受限设备的安全性和功耗之间的传统权衡,我们基于RF功率收集推出三种新的零功率防御。这些防御中的两个是以人为本的,将患者带入循环,了解其植入医疗设备(IMDS)的安全性和隐私。我们的贡献提供了一种科学基准,了解当前和未来IMD的潜在安全和隐私风险,并引入满足这些风险的人类可察觉和零功率缓解技术。据我们所知,本文是我们社区中的第一个使用通用软件无线电分析和攻击以前未知的无线通信协议。

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