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Dynamic Adjustment of the Chaos-Based Security in Real-Time Energy Harvesting Sensors

机译:实时能量收集传感器中基于混沌的安全性的动态调整

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摘要

Wireless Sensor Networks (WSNs) are a growing field of research since they are used in many applications. Nevertheless, they are subject to many requirements such as real-time constraints, energy limitations, and security requirements for the communications. Energy Harvesting is a new paradigm in WSNs: sensor nodes are powered by energy harvested from the ambient, rather than by non-rechargeable batteries which permits a potentially perpetual operation. However, energy harvesting poses new challenges in the design of WSNs, in that energy availability fluctuates over the time. In this paper, we investigate the following fundamental question: how should the harvested energy be managed to guarantee data security in all circumstances? Our contributions in this paper are twofold: First, we propose the Deadline Mechanism to dynamically cope with energy shortage and guarantee the highest possible quality of protection by the use of different encryption algorithms. Second, we design a new chaos based cryptosystem suitable for WSNs. Indeed, the proposed encryption/decryption scheme is robust against all known attacks. Experiments show that it is at least 7 times faster than the AES algorithm and also, faster than many chaos based cryptosystems of the literature. Our objective is to identify low-complexity policies that achieve close-to-optimal performance, in terms of maximizing the average long-term importance of the reported data.
机译:由于无线传感器网络(WSN)被用于许多应用中,因此它们正在成为一个不断发展的研究领域。但是,它们要遵守许多要求,例如实时限制,能量限制以及通信的安全性要求。能量收集是WSN中的一个新范例:传感器节点由从周围环境收集的能量供电,而不是由可充电的永久性电池供电。但是,能量收集在无线传感器网络的设计中提出了新的挑战,因为能量的可用性会随着时间而波动。在本文中,我们研究以下基本问题:应如何管理采集的能量以在所有情况下保证数据安全?我们在本文中的贡献有两个方面:首先,我们提出了期限机制,以动态地应对能源短缺,并通过使用不同的加密算法来保证最高的保护质量。其次,我们设计了一种适用于WSN的新的基于混沌的密码系统。实际上,提出的加密/解密方案对于所有已知的攻击都是健壮的。实验表明,它比AES算法至少快7倍,也比文献中许多基于混沌的密码系统快。我们的目标是从最大化报告数据的平均长期重要性的角度出发,确定可实现接近最佳性能的低复杂度策略。

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