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Secured Data Collection With Hardware-Based Ciphers for IoT-Based Healthcare

机译:使用基于硬件的密码进行安全的数据收集,以实现基于IoT的医疗保健

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There are tremendous security concerns with patient health monitoring sensors in Internet of Things (IoT). The concerns are also realized by recent sophisticated security and privacy attacks, including data breaching, data integrity, and data collusion. Conventional solutions often offer security to patients' health monitoring data during the communication. However, they often fail to deal with complicated attacks at the time of data conversion into cipher and after the cipher transmission. In this paper, we first study privacy and security concerns with healthcare data acquisition and then transmission. Then, we propose a secure data collection scheme for IoT-based healthcare system named SecureData with the aim to tackle security concerns similar to the above. SecureData scheme is composed of four layers: 1) IoT network sensors/devices; 2) Fog layers; 3) cloud computing layer; and 4) healthcare provider layer. We mainly contribute to the first three layers. For the first two layers, SecureData includes two techniques: 1) light-weight field programmable gate array (FPGA) hardware-based cipher algorithm and 2) secret cipher share algorithm. We study KATAN algorithm and we implement and optimize it on the FPGA hardware platform, while we use the idea of secret cipher sharing technique to protect patients' data privacy. At the cloud computing layer, we apply a distributed database technique that includes a number of cloud data servers to guarantee patients' personal data privacy at the cloud computing layer. The performance of SecureData is validated through simulations with FPGA in terms of hardware frequency rate, energy cost, and computation time of all the algorithms and the results show that SecureData can be efficient when applying for protecting security risks in IoT-based healthcare.
机译:物联网(IoT)中的患者健康监控传感器存在巨大的安全隐患。最近的复杂安全和隐私攻击(包括数据泄露,数据完整性和数据合谋)也引起了人们的关注。常规解决方案通常在通信过程中为患者的健康监测数据提供安全性。但是,在将数据转换为密码时以及在密码传输之后,它们通常无法处理复杂的攻击。在本文中,我们首先研究医疗保健数据获取和传输方面的隐私和安全问题。然后,我们针对基于物联网的医疗系统提出了一种安全数据收集方案,名为SecureData,旨在解决与上述相似的安全问题。 SecureData方案由四层组成:1)物联网网络传感器/设备; 2)雾层; 3)云计算层; 4)医疗保健提供者层。我们主要为前三层做出贡献。对于前两层,SecureData包括两种技术:1)基于硬件的轻型现场可编程门阵列(FPGA)加密算法和2)秘密加密共享算法。我们研究了KATAN算法,并在FPGA硬件平台上对其进行了实现和优化,同时我们使用秘密密码共享技术来保护患者的数据隐私。在云计算层,我们采用了包括许多云数据服务器的分布式数据库技术,以确保患者在云计算层的个人数据隐私。 SecureData的性能通过FPGA的仿真在所有算法的硬件频率速率,能源成本和计算时间方面得到了验证,结果表明,SecureData在申请保护基于IoT的医疗保健中的安全风险时可以是高效的。

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