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Adaptable Security in Wireless Sensor Networks by Using Reconfigurable ECC Hardware Coprocessors

机译:使用可重配置ECC硬件协处理器的无线传感器网络中的自适应安全性

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摘要

Specific features of Wireless Sensor Networks (WSNs) like the open accessibility to nodes, or the easy observability of radio communications, lead to severe security challenges. The application of traditional security schemes on sensor nodes is limited due to the restricted computation capability, low-power availability, and the inherent low data rate. In order to avoid dependencies on a compromised level of security, a WSN node with a microcontroller and a Field Programmable Gate Array (FPGA) is used along this work to implement a state-of-the art solution based on ECC (Elliptic Curve Cryptography). In this paper it is described how the reconfiguration possibilities of the system can be used to adapt ECC parameters in order to increase or reduce the security level depending on the application scenario or the energy budget. Two setups have been created to compare the software- and hardware-supported approaches. According to the results, the FPGA-based ECC implementation requires three orders of magnitude less energy, compared with a low power microcontroller implementation, even considering the power consumption overhead introduced by the hardware reconfiguration
机译:无线传感器网络(WSN)的特定功能(例如,对节点的开放访问性或易于观察的无线电通信)导致严重的安全挑战。由于受限制的计算能力,低功耗可用性和固有的低数据速率,传统安全方案在传感器节点上的应用受到限制。为了避免依赖于受损的安全级别,在此工作中使用了具有微控制器和现场可编程门阵列(FPGA)的WSN节点,以实现基于ECC(椭圆曲线密码术)的最新解决方案。在本文中,描述了如何根据应用方案或能源预算,使用系统的重新配置可能性来调整ECC参数,以增加或减少安全级别。已经创建了两个设置来比较软件和硬件支持的方法。根据结果​​,即使考虑到硬件重新配置带来的功耗开销,与低功耗微控制器实现相比,基于FPGA的ECC实现所需的能源也减少了三个数量级。

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