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A study of the energy consumption characteristics of cryptographic algorithms and security protocols

机译:密码算法和安全协议的能耗特征研究

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摘要

Security is becoming an everyday concern for a wide range of electronic systems that manipulate, communicate, and store sensitive data. An important and emerging category of such electronic systems are battery-powered mobile appliances, such as personal digital assistants (PDAs) and cell phones, which are severely constrained in the resources they possess, namely, processor, battery, and memory. This work focuses on one important constraint of such devices-battery life-and examines how it is impacted by the use of various security mechanisms. In this paper, we first present a comprehensive analysis of the energy requirements of a wide range of cryptographic algorithms that form the building blocks of security mechanisms such as security protocols. We then study the energy consumption requirements of the most popular transport-layer security protocol: Secure Sockets Layer (SSL). We investigate the impact of various parameters at the protocol level (such as cipher suites, authentication mechanisms, and transaction sizes, etc.) and the cryptographic algorithm level (cipher modes, strength) on the overall energy consumption for secure data transactions. To our knowledge, this is the first comprehensive analysis of the energy requirements of SSL. For our studies, we have developed a measurement-based experimental testbed that consists of an iPAQ PDA connected to a wireless local area network (LAN) and running Linux, a PC-based data acquisition system for real-time current measurement, the OpenSSL implementation of the SSL protocol, and parameterizable SSL client and server test programs. Based on our results, we also discuss various opportunities for realizing energy-efficient implementations of security protocols. We believe such investigations to be an important first step toward addressing the challenges of energy-efficient security for battery-constrained systems.
机译:安全性已成为处理,通信和存储敏感数据的各种电子系统的日常关注点。这种电子系统的一个重要且新兴的类别是电池供电的移动设备,例如个人数字助理(PDA)和手机,它们在其拥有的资源(即处理器,电池和内存)中受到严重限制。这项工作着眼于此类设备的一个重要限制因素-电池寿命-并研究了各种安全机制的使用对电池寿命的影响。在本文中,我们首先对构成广泛的安全算法(例如安全协议)的加密算法的能量需求进行全面分析。然后,我们研究最流行的传输层安全协议:安全​​套接字层(SSL)的能耗要求。我们研究了协议级别(例如密码套件,身份验证机制和事务大小等)和加密算法级别(密码模式,强度)上各种参数对安全数据事务总体能耗的影响。据我们所知,这是对SSL能源需求的首次全面分析。在我们的研究中,我们开发了基于测量的实验性测试平台,该平台包括连接到无线局域网(LAN)并运行Linux的iPAQ PDA,用于实时电流测量的基于PC的数据采集系统,OpenSSL实施SSL协议,可参数化的SSL客户端和服务器测试程序。根据我们的结果,我们还将讨论实现安全协议的节能实现的各种机会。我们认为,此类调查是应对电池受限系统的节能安全挑战的重要的第一步。

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