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ECASS: an encryption compression aggregation security scheme for secure data transmission in ambient assisted living systems

机译:ECASS:一种加密压缩聚合安全方案,用于在环境辅助生活系统中安全地传输数据

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摘要

Considerable efforts are being spent worldwide to ensure comfortable living environments and decent, on-time assistance to elderly and people requiring healthcare services. Recent advances in data acquisition and communication are allowing revolutionary ambient assisted leaving (AAL) systems to be implemented, where healthcare data are collected and reported on-the-fly to dedicated medical servers for further analysis and actions. Due to the increasing rely on distributed, resource constrained sensing devices, AAL systems are being subject to large number of attacks. In addition to usual high energy consumption and communication overhead, current systems are not yet able to fully safeguard the private data of their users. To overcome these shortcomings, we propose in this paper to combine the use of cryptography, compressed sensing, and steganography into a new generic solution called Encryption Compression Aggregation Security Scheme (ECASS). While focusing on the specific case of Medical Healthcare Systems, ECASS aims to secure private data exchanges over wireless networks while achieving lower energy consumption and communication overhead. Our simulations with the NS-2.35 simulator are showing an improvement of 40 and 50% in terms of energy consumption and communication overhead respectively compared to the IBE-Lite security scheme.
机译:全球正在付出巨大的努力,以确保舒适的生活环境以及对老年人和需要医疗保健服务的人们的体面,按时的援助。数据采集​​和通信方面的最新进展允许实施革命性的环境辅助休假(AAL)系统,该系统可收集医疗数据并将其实时报告给专用医疗服务器,以进行进一步的分析和采取措施。由于越来越依赖分布式的,资源受限的传感设备,AAL系统正遭受大量攻击。除了通常的高能耗和通信开销外,当前系统还不能完全保护其用户的私有数据。为了克服这些缺点,我们在本文中建议将密码术,压缩感知和隐写术的使用结合到一个新的通用解决方案中,称为加密压缩聚合安全方案(ECASS)。 ECASS专注于医疗保健系统的特定情况,旨在保护无线网络上的私有数据交换,同时降低能耗和通信开销。与IBE-Lite安全方案相比,我们使用NS-2.35仿真器进行的仿真显示,在能耗和通信开销方面分别提高了40%和50%。

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