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Towards Efficient Fine-Grained Access Control and Trustworthy Data Processing for Remote Monitoring Services in IoT

机译:致力于为物联网中的远程监控服务提供有效的细粒度访问控制和可信赖的数据处理

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摘要

As an important application of the Internet of Things, many remote monitoring systems adopt a device-to-cloud network paradigm. In a remote patient monitoring case, various resource-constrained devices are used to measure the health conditions of a target patient in a distant non-clinical environment and the collected data are sent to the cloud backend of an authorized health care service for processing and decision making. As the measurements involve private patient information, access control and trustworthy processing of the confidential data become very important. Software-based solutions that adopt advanced cryptographic tools, such as attribute-based encryption and fully homomorphic encryption, can address the problem, but they also impose substantial computation overhead on both client and server sides. In this paper, we deviate from the conventional software-based solutions and propose a secure and efficient remote monitoring framework, called SRM, using the latest hardware-based trustworthy computing technology, such as Intel SGX. In addition, we present a robust and lightweight “heartbeat” protocol to handle notoriously difficult key revocation problem. We implemented a prototype of the framework for SRM and show that SRM can protect user data privacy against unauthorized parties, with minimum performance cost compared to existing software-based solutions.
机译:作为物联网的重要应用,许多远程监控系统都采用了设备到云的网络范例。在远程患者监视情况下,使用各种资源受限的设备来测量目标患者在遥远的非临床环境中的健康状况,并将收集到的数据发送到授权医疗服务的云后端进行处理和决策制造。由于测量涉及私人患者信息,因此机密数据的访问控制和可信赖的处理变得非常重要。采用高级加密工具(例如基于属性的加密和完全同态加密)的基于软件的解决方案可以解决此问题,但它们也会在客户端和服务器端带来大量计算开销。在本文中,我们偏离了传统的基于软件的解决方案,并提出了一个安全高效的远程监控框架,称为SRM,它使用了最新的基于硬件的可信赖计算技术,例如英特尔SGX。另外,我们提出了一个健壮且轻量的“心跳”协议,以处理众所周知的困难的密钥吊销问题。我们实现了SRM框架的原型,并表明SRM可以保护用户数据隐私免受未授权方的攻击,与现有的基于软件的解决方案相比,其性能成本最低。

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