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Optimizing the Block Cipher and Modes of Operations Overhead at the Link Layer Security Framework in the Wireless Sensor Networks

机译:在无线传感器网络的链路层安全框架中优化块密码和开销的操作模式

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Due to the resource constrained environments under which the Wireless Sensor Networks (WSNs) operate, the security protocols and algorithms should be so designed to be used in WSNs, as to yield the optimum performance. The efficiency of the block cipher and the mode under which it operates are vital factors in leveraging the performance of any security protocol. In this paper, therefore, we focus on the issue of optimizing the security vs. performance tradeoff at the link layer framework in WSNs. We evaluate the resource requirements of the block ciphers characteristically distinct from each other, in conventional modes and the Authenticated Encryption (AE) modes. We use the Skipjack cipher in CBC mode, as the basis for comparison. To the best of our knowledge, ours is the first experimental evaluation of the AES cipher, the XXTEA cipher, the OCB mode and the CCM mode at the link layer security architecture for WSNs.
机译:由于无线传感器网络(WSN)在其资源受限的环境下工作,因此应该设计安全协议和算法以在WSN中使用,以产生最佳性能。分组密码的效率及其运行方式是利用任何安全协议的性能的重要因素。因此,在本文中,我们将重点放在WSN的链路层框架中优化安全性与性能折衷的问题上。在常规模式和认证加密(AE)模式下,我们评估特性彼此不同的分组密码的资源需求。我们以CBC模式使用Skipjack密码作为比较的基础。据我们所知,我们是在WSN的链路层安全体系结构上对AES密码,XXTEA密码,OCB模式和CCM模式进行的首次实验评估。

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