基于生物特征的身体传感器网络安全高效通信的资源分配策略

F. Bui, D. Hatzinakos
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引用次数: 6

摘要

身体传感器网络(BSN)有潜力提供改进的数据收集和分析,以及增强的安全性,特别是在广泛的医疗应用中。这些类型的网络的主要挑战之一是资源稀缺,在计算和通信能力方面。在这项工作中,我们提出了有效分配这些有限资源的方法,同时保持良好的安全性能。本文探讨了两种主要策略:首先,提出了一种密钥分配系统,允许在计算复杂性和频谱效率之间进行权衡;其次,提出了一种基于随机抽样的数据置乱方法,作为提供安全性的传统加密的可能替代方案。仿真结果验证了这些方案在BSN背景下,以心电图信号作为生物特征识别时的可行性和有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Resource Allocation Strategies for Secure and Efficient Communications in Biometrics-Based Body Sensor Networks
Body sensor networks (BSN) have the potential to provide improved data collection and analysis, as well as enhanced security, particularly in a wide range of medical applications. One of the main challenges in these types of networks is scarce resources, in terms of both computational and communication capabilities. In this work, we present methods to efficiently allocate these limited resources, while maintaining good security performance. Two main strategies are explored: first, a key distribution system is presented that allows for trade-offs between computational complexity and spectral efficiency; second, a data scrambling method based on random sampling is proposed as a possible alternative to conventional encryption in providing security. The obtained simulation results demonstrate the feasibility and efficacy of these schemes in the context of BSN, when using electrocardiogram (ECG) signals as biometrics.
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