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Energy and Bandwidth-Efficient Key Distribution in Wireless Ad Hoc Networks: A Cross-Layer Approach

机译:无线自组织网络中的能源和带宽有效的密钥分发:跨层方法

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We address the problem of resource-efficient access control for group communications in wireless ad hoc networks. Restricting the access to group data can be reduced to the problem of securely distributing cryptographic keys to group members, known as the key distribution problem (KDP). We examine the KDP under four metrics: (a) member key storage, (b) group controller ($GC$) transmissions, (c) multicast group ($MG$) update messages, and (d) average update energy. For each metric, we formulate an optimization problem and show that the KDP has unique solutions for metrics (a) and (b), while is NP-complete for (c) and (d). We propose a cross-layer heuristic algorithm called VP3 that bounds member key storage, and GC transmissions, while significantly reducing the energy and bandwidth consumption of the network. We define the notion of path divergence as a measure of bandwidth efficiency of multicasting, and establish an analytical worst-case bound for it. Finally, we propose On-line VP3, which dynamically updates the key assignment structure according to the dynamics of the communication group in a resource-efficient way.
机译:我们解决了无线自组织网络中组通信的资源高效访问控制问题。可以减少对组数据的访问限制,从而解决了将密码密钥安全地分配给组成员的问题,即密钥分配问题(KDP)。我们根据以下四个指标检查KDP:(a)成员密钥存储,(b)组控制器($ GC $)传输,(c)多播组($ MG $)更新消息和(d)平均更新能量。对于每个度量,我们都提出了一个优化问题,并表明KDP对度量(a)和(b)具有唯一的解决方案,而对于(c)和(d),NP是完全的。我们提出了一种称为VP3的跨层启发式算法,该算法限制了成员密钥存储和GC传输,同时显着降低了网络的能耗和带宽消耗。我们将路径发散的概念定义为多播带宽效率的一种度量,并为此确定解析的最坏情况界限。最后,我们提出了在线VP3,它可以根据通信组的动态以一种资源高效的方式动态更新密钥分配结构。

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