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A lossy channel aware parameterisation of a novel security protocol for wireless IP-enabled sensors

机译:用于无线IP的传感器的新型安全协议的有损通道感知参数化

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IP-enabled sensors can be globally addressable by any Internet-connected entity, and therefore, their protection presents different challenges than that of traditional sensors, as they are subject to any potential attacker in the Internet. For this reason, specific security protocols must be developed to address the security requirements of IP-enabled sensors. An interesting approach to achieve this aim is the Ladon security protocol, which allows resource-deprived devices to efficiently implement end-to-end authentication, authorisation and key establishment mechanisms. However, in so limited environments such as sensor networks, not only efficient protocols must be defined, but they must also be optimally parameterised. This paper constitutes a step forward in this direction. First, a state transition model of the Ladon protocol is presented to analytically describe its behaviour. Then, this model is used to select the most effective parameterisation of the protocol in terms of message retransmissions and execution of cryptographic operations. The obtained results show that the selected parameterisation allows maximising the probability of a successful secure session establishment, while keeping the overhead introduced by the protocol low. Additionally, the performance comparison carried out shows that Ladon outperforms alternative approaches to achieve the same objective in terms of message transmission and reception operations.
机译:支持IP的传感器可以由任何与Internet连接的实体进行全局寻址,因此,与传统传感器相比,其保护面临着不同的挑战,因为它们会受到Internet中任何潜在攻击者的攻击。因此,必须开发特定的安全协议来解决启用IP的传感器的安全要求。实现此目标的一种有趣方法是Ladon安全协议,该协议允许资源匮乏的设备有效地实现端到端的身份验证,授权和密钥建立机制。但是,在如此有限的环境(例如传感器网络)中,不仅必须定义有效的协议,而且还必须对其进行最佳参数化。本文是朝着这个方向迈出的一步。首先,提出了Ladon协议的状态转换模型,以分析方式描述其行为。然后,该模型用于选择在消息重传和加密操作执行方面最有效的协议参数化。获得的结果表明,所选参数化允许最大化成功建立安全会话的可能性,同时保持协议引入的开销较低。此外,进行的性能比较显示,在消息发送和接收操作方面,Ladon优于其他方法来达到相同的目标。

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