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Authenticated Key Agreement with Rekeying for Secured Body Sensor Networks

机译:经过身份验证的密钥协议与用于安全的人体传感器网络的密钥更新

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摘要

Many medical systems are currently equipped with a large number of tiny, non-invasive sensors, located on, or close to, the patient’s body for health monitoring purposes. These groupings of sensors constitute a body sensor network (BSN). Key management is a fundamental service for medical BSN security. It provides and manages the cryptographic keys to enable essential security features such as confidentiality, integrity and authentication. Achieving key agreement in BSNs is a difficult task. Many key agreement schemes lack sensor addition, revocation, and rekeying properties, which are very important. Our proposed protocol circumvents these shortcomings by providing node rekeying properties, as well as node addition and revocation. It proposes a key distribution protocol based on public key cryptography—the RSA (Rivest, Shamir and Adleman) algorithm, and the DHECC (Diffie-Hellman Elliptic Curve Cryptography) algorithm. The proposed protocol does not trust individual sensors, and partially trusts the base station (hospital). Instead of loading full pair-wise keys into each node, after installation our protocol establishes pair-wise keys between nodes according to a specific routing algorithm. In this case, each node doesn’t have to share a key with all of its neighbors, only those involved in the routing path; this plays a key role in increasing the resiliency against node capture attacks and the network storage efficiency. Finally we evaluate our algorithm from the BSN security viewpoint and evaluate its performance in comparison with other proposals.
机译:当前,许多医疗系统都配备有大量微型,无创传感器,它们位于患者身体上或附近,用于健康监测。这些传感器分组构成了身体传感器网络(BSN)。密钥管理是医疗BSN安全的基本服务。它提供并管理加密密钥,以启用基本的安全功能,例如机密性,完整性和身份验证。在BSN中达成关键协议是一项艰巨的任务。许多关键协议方案缺少传感器添加,吊销和重新设置密钥的属性,这非常重要。我们提出的协议通过提供节点重命名属性以及节点添加和撤销来规避这些缺点。它提出了一种基于公共密钥加密的密钥分发协议,即RSA(Rivest,Shamir和Adleman)算法和DHECC(Diffie-Hellman椭圆曲线密码术)算法。提议的协议不信任各个传感器,而是部分信任基站(医院)。安装后,我们的协议不会将完整的成对密钥加载到每个节点中,而是根据特定的路由算法在节点之间建立成对密钥。在这种情况下,每个节点不必与其所有邻居共享密钥,而只需与路由路径中的邻居共享密钥即可。这在提高抵御节点捕获攻击的弹性和网络存储效率方面起着关键作用。最后,我们从BSN安全性角度评估了我们的算法,并与其他提议进行了比较来评估其性能。

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