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A Survey on the Development of Security Mechanisms for Body Area Networks

机译:人体局域网的安全机制发展概况

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Advances in lightweight, small-sized and low-power sensors led to the development of wearable biosensors, and thus, to the accurate monitoring of human periphery. On top of this, pervasive computing has been improved and technologies have been matured enough to build plug-and-piay body area networks (BANs). In a BAN, the main functionality of a node is to effectively and efficiently collect data from vital body parts, share it with the neighbors and make decisions accordingly. Because of the fact that the captured phenomenon is highly sensitive to privacy breaches in addition to being transmitted using the wireless communication medium, BANs require a security infrastructure. However, due to the extreme energy scarcity, bandwidth and storage constraints of the nodes, conventional solutions are inapplicable. In this survey, we present an overview of BANs and provide a detailed investigation into the developed security infrastructures. We examined the literature and combined the corresponding proposals under two major classes: (ⅰ) pure-cryptographic security mechanisms and (ⅱ) bio-cryptographic security mechanisms. Pure-cryptographic methods include constructions based on the well-known symmetric or asymmetric cryptography primitives and they are suitable for securing the communication between any two network entities. On the other hand, bio-cryptographic methods benefit from the network's context-awareness and to the best of our knowledge, they have been utilized only for the communication among the biosensors.
机译:轻巧,小尺寸和低功率传感器的进步导致可穿戴生物传感器的发展,从而促进了对人体外围的精确监控。最重要的是,普适计算得到了改善,技术已经足够成熟,可以构建即插即用的人体局域网(BAN)。在BAN中,节点的主要功能是有效地从重要的身体部位收集数据,与邻居共享数据并据此做出决策。由于捕获的现象除了使用无线通信介质进行传输外,还对隐私违规行为高度敏感,因此BAN需要安全基础结构。但是,由于节点的极端能源短缺,带宽和存储限制,常规解决方案不适用。在本次调查中,我们提供了BAN的概述,并对发达的安全基础设施进行了详细的调查。我们检查了文献,并在两个主要类别下组合了相应的建议:(ⅰ)纯密码安全机制和(ⅱ)生物密码安全机制。纯密码方法包括基于众所周知的对称或非对称密码原语的构造,它们适用于保护任何两个网络实体之间的通信。另一方面,生物加密方法得益于网络的上下文感知,据我们所知,它们仅用于生物传感器之间的通信。

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