An Energy-Aware Framework for Reliable and Secure End-to-End Ubiquitous Data Communications

Arcangelo Castiglione, A. D. Santis, Aniello Castiglione, F. Palmieri, Ugo Fiore
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引用次数: 30

Abstract

Despite the wide deployment of beyond 3G cellular networks and high capacity Wi-Fi coverage infrastructures, finding the best way for achieving ubiquitous and secure mobile data transfer services in everyday's life activities, it is still an open question. In particular, security becomes a key factor in such a scenario, since a large number of mobile terminal devices (smartphones, handhelds, tablets) simultaneously supporting multiple networking technologies, may be used to store, access, manipulate, or communicate sensitive data from everywhere and at any time. However, the computational efforts required for achieving security, due to the inherent complexity of cryptographic algorithms, heavily affect the power consumption of the involved terminals. Such energy demand, together with the amount of power already required to manage the communication activities carried out by using multiple network interfaces, make energy efficient secure communication among mobile hardware-constrained handheld devices, a really challenging topic. Based on above considerations, we present the architecture of a framework which enables secure end-to-end and reliable data transfer for heterogeneous mobile terminals by also describing and modeling its power demand, with the aim of achieving a robust and reliable ubiquitous data transfer service also minimizing the overall battery consumption in such devices.
可靠和安全的端到端无处不在数据通信的能源感知框架
尽管3G蜂窝网络和高容量Wi-Fi覆盖基础设施得到了广泛部署,但在日常生活活动中找到实现无处不在和安全的移动数据传输服务的最佳方式仍然是一个悬而未决的问题。特别是,在这种情况下,安全性成为一个关键因素,因为大量的移动终端设备(智能手机、手持设备、平板电脑)同时支持多种网络技术,可以随时随地用于存储、访问、操作或通信敏感数据。然而,由于加密算法固有的复杂性,实现安全性所需的计算量严重影响了所涉及终端的功耗。这样的能源需求,再加上管理使用多个网络接口进行的通信活动已经需要的功率,使得移动硬件受限的手持设备之间的节能安全通信成为一个真正具有挑战性的话题。基于上述考虑,我们提出了一个框架的体系结构,该框架通过描述和建模其功率需求,为异构移动终端实现安全的端到端可靠的数据传输,目的是实现健壮可靠的无处不在的数据传输服务,并最大限度地减少此类设备的总体电池消耗。
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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