多元密码系统在DWSN中的有效性

Pradheepkumar Singaravelu, S. Verma
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引用次数: 1

摘要

动态无线传感器网络(DWSN)是由部署在恶劣环境中的数千个微型传感器设备组成的网络。该网络主要用于大规模环境监测。安全对这类网络至关重要。然而,传统的加密算法是资源密集型的。它们需要大量的计算,需要大量的内存和带宽。为了解决资源有限的分布式wsn中的安全问题,提出了不同类型的多元密码体制。研究了多变量密码系统在DWSN中的可行性。结果表明,多元密码体制对DWSN具有吸引力。本文对不同的多元密码体制在DWSN中的有效性进行了评价。与其他多变量密码系统方案相比,彩虹多变量方案需要较低的计算能力和较低的存储开销。仿真结果还表明,彩虹多变量方案可以最大限度地提高吞吐量,实现特定时间间隔内的短延迟。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Efficacy of multivariate cryptosystems for DWSN
Dynamic wireless sensor networks (DWSN) is a network of thousands tiny sensor devices deployed in a hostile environment. This network is mainly used for large scale environment monitoring. Security is vital for such networks. However, traditional cryptographic algorithms are resource intensive. They need large computation and require large memory and bandwidth. To address the problems of security in resource limited DWSN, different types of multivariate cryptosystems are proposed. The viability of multivariate cryptosystems for DWSN are examined. Results have indicated that the multivariate cryptosystems are attractive for DWSN. In this paper, efficacy of different multivariate cryptosystems for DWSN has been evaluated. In contrast to other multivariate cryptosystems schemes, rainbow multivariate scheme requires low computational power and reduced storage overheads. Simulation results also show that rainbow multivariate scheme can maximize throughput to achieve short latency for a particular interval of time.
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