无线网络中安全算法的功耗研究

Dimitrios Meintanis, I. Papaefstathiou
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引用次数: 6

摘要

在无线网络中支持高水平的安全性是一个具有挑战性的问题,因为这种环境会带来特定的问题;小型移动系统(如pda和移动电话)提供的安全性往往受到其有限的电池功率和有限的处理能力的限制。在这些限制的驱使下,设计者必须决定是在软件中实现无线网络安全方案,还是在系统中添加特殊用途的硬件单元,执行那些CPU密集型任务。本文演示和比较了无线网络中一些广泛使用的安全应用的硬件和软件实现。我们测量了在可重构硬件设备中实现的每种安全算法的总能耗,并将其与等效软件应用程序的总能耗进行了比较。我们证明,在最先进的FPGA上的硬件实现速度要快得多,而与嵌入在同一FPGA设备中的最先进的硬核CPU上执行的软件实现相比,它们消耗的功率要低三个数量级。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On the Power Consumption of Security Algorithms Employed in Wireless Networks
Supporting high levels of security in wireless networks is a challenging issue because of the specific problems this environment poses; the provided security by small mobile systems, such as PDAs and mobile phones, is often restricted by their limited battery power and their limited processing power. Driven by these restrictions, the designer will have to decide whether to implement the wireless network security schemes in software or to add special purpose hardware units to the system, executing those CPU intensive tasks. This paper demonstrates and compares the Hardware and Software implementations of a number of widely used security applications employed in wireless networks. We measured the total energy consumption for each security algorithm when implemented in reconfigurable hardware devices and we compared it with the total energy consumption of the equivalent software applications. We demonstrate, that the hardware implementations on a state-of-the-art FPGA are significantly faster while they consume three orders of magnitude less power when compared with the software implementations executed on a state-of-the-art hard-core CPU which is embedded in the same FPGA device.
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