Amulet: a secure architecture for mHealth applications for low-power wearable devices

Andres Molina-Markham, Ronald A. Peterson, Joseph Skinner, Tianlong Yun, Bhargav Golla, Kevin Freeman, Travis Peters, Jacob M. Sorber, R. Halter, D. Kotz
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引用次数: 9

Abstract

Interest in using mobile technologies for health-related applications (mHealth) has increased. However, none of the available mobile platforms provide the essential properties that are needed by these applications. An mHealth platform must be (i) secure; (ii) provide high availability; and (iii) allow for the deployment of multiple third-party mHealth applications that share access to an individual's devices and data. Smartphones may not be able to provide property (ii) because there are activities and situations in which an individual may not be able to carry them (e.g., while in a contact sport). A low-power wearable device can provide higher availability, remaining attached to the user during most activities. Furthermore, some mHealth applications require integrating multiple on-body or near-body devices, some owned by a single individual, but others shared with multiple individuals. In this paper, we propose a secure system architecture for a low-power bracelet that can run multiple applications and manage access to shared resources in a body-area mHealth network. The wearer can install a personalized mix of third-party applications to support the monitoring of multiple medical conditions or wellness goals, with strong security safeguards. Our preliminary implementation and evaluation supports the hypothesis that our approach allows for the implementation of a resource monitor on far less power than would be consumed by a mobile device running Linux or Android. Our preliminary experiments demonstrate that our secure architecture would enable applications to run for several weeks on a small wearable device without recharging.
护身符:用于低功耗可穿戴设备的移动健康应用程序的安全架构
人们对将移动技术用于健康相关应用(移动健康)的兴趣有所增加。然而,没有一个可用的移动平台提供这些应用程序所需的基本属性。移动医疗平台必须(i)安全;(ii)提供高可用性;(iii)允许部署多个共享访问个人设备和数据的第三方移动健康应用程序。智能手机可能无法提供财产(ii),因为有些活动和情况下个人可能无法携带它们(例如,在接触运动中)。低功耗可穿戴设备可以提供更高的可用性,在大多数活动中保持与用户相连。此外,一些移动健康应用程序需要集成多个身体或近身设备,其中一些设备由一个人拥有,而另一些则由多个个人共享。在本文中,我们提出了一种安全的系统架构,用于低功耗手环,可以运行多个应用程序并管理对身体区域移动健康网络中共享资源的访问。佩戴者可以安装个性化的第三方应用程序组合,以支持多种医疗状况或健康目标的监控,并具有强大的安全保障。我们的初步实现和评估支持这样一个假设,即我们的方法允许在远低于运行Linux或Android的移动设备所消耗的功率的情况下实现资源监视器。我们的初步实验表明,我们的安全架构可以使应用程序在小型可穿戴设备上运行数周而无需充电。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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