Design space exploration for energy-efficient secure sensor network

Lin Yuan, G. Qu
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引用次数: 95

Abstract

We consider two of the most important design issues for distributed sensor networks in the battlefield: security for communication in such hostile terrain; and energy efficiency because of the battery's limited capacity and the impracticality of recharging. Communication security is normally provided by encryption, i.e. data are encrypted before transmission and are decrypted first on reception. We exploit the secure sensor network design space for energy efficiency by investigating different microprocessors coupled with various public key algorithms. We propose a power control mechanism for sensors to operate in an energy-efficient fashion using the newly developed dynamical voltage scaling (DVS) technique. In particular we consider multiple voltage processors and insert additional information into the communication channel to guide the selection of proper voltages for data decryption/encryption and processing in order to reduce the total computational energy consumption. We experiment several encryption standards on a broad range of embedded processors and simulate the behavior of the sensor network to show that the sensor's lifetime can be extended substantially.
节能安全传感器网络的设计空间探索
我们考虑了战场上分布式传感器网络的两个最重要的设计问题:在这种恶劣地形下的通信安全;还有能源效率,因为电池容量有限,充电也不现实。通信安全通常由加密提供,即数据在传输前加密,接收时先解密。我们通过研究与各种公钥算法相结合的不同微处理器,利用安全传感器网络设计空间来提高能源效率。我们提出了一种功率控制机制,使传感器使用新开发的动态电压缩放(DVS)技术以节能的方式运行。特别地,我们考虑了多个电压处理器,并在通信信道中插入额外的信息来指导选择合适的电压进行数据解密/加密和处理,以减少总计算能耗。我们在广泛的嵌入式处理器上实验了几种加密标准,并模拟了传感器网络的行为,以表明传感器的使用寿命可以大大延长。
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