Opportunistic node authentication in intermittently connected mobile ad hoc networks

Yaozhou Ma, A. Jamalipour
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引用次数: 13

Abstract

Data communication over intermittently connected mobile ad hoc networks (ICMANs) can be carried out by opportunistically employment of mobility nature of nodes and the storage space of all nodes. However, due to intermittent connectivity, security schemes introduced for the conventional mobile ad hoc networks (MANETs) cannot be directly deployed over ICMANs for node authentication. Therefore, this paper adopts the nodes' mobilities to implement the (t, n) threshold secret sharing and identity-based cryptography (IBC) over ICMANs. Such (t, n) based IBC can subsequently be utilized to facilitate node authentication to defend against the malicious attacks in the ICMANs context. In the proposed security scheme, the master private key of IBC is shared by n distributed private key generators (PKGs), while each node needs to employ its mobility nature to contact at least t-out-of-n PKGs to reconstruct its own private key. To overcome the routing-security interdependence cycle, only face-to-face based node authentication is employed. In other words, authentication and key establishment between nodes and distributed PKGs is only allowed whenever they encounter each other directly. Delay performance of such (t, n) based IBC in the ICMANs context is accordingly modeled and evaluated.
间歇连接移动自组网中的机会节点认证
在间歇连接的移动自组网(ICMANs)上,可以利用节点的移动性和所有节点的存储空间来实现数据通信。然而,由于间歇性连接,为传统移动自组网(manet)引入的安全方案不能直接部署在ICMANs上进行节点认证。因此,本文利用节点的移动性在ICMANs上实现(t, n)阈值秘密共享和基于身份的加密(IBC)。这种基于(t, n)的IBC随后可以用于促进节点身份验证,以防御ICMANs上下文中的恶意攻击。在本文提出的安全方案中,IBC的主私钥由n个分布式私钥生成器共享,每个节点需要利用自身的可移动性联系至少t-of-n个pkg来重建自己的私钥。为了克服路由安全相互依赖循环,只采用基于面对面的节点身份验证。换句话说,只有当节点和分布式pkg直接相遇时,才允许在节点和分布式pkg之间进行身份验证和密钥建立。基于(t, n)的IBC在ICMANs环境下的延迟性能相应地建模和评估。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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