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Key Predistribution Using Combinatorial Designs for Grid-Group Deployment Scheme in Wireless Sensor Networks

机译:使用组合设计的关键预分配用于无线传感器网络中的网格组部署方案

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We propose a new grid-group deployment scheme in wireless sensor networks. We use combinatorial designs for key predistribution in sensor nodes. The deployment region is divided into square regions. The predistribution scheme has the advantage that all nodes within a particular region can communicate with each other directly and nodes which lie in a different regions can communicate via special nodes called agents which have more resources than the general nodes. The number of agents in a region is always three, whatever the size of the network. We give measures of resiliency taking the Lee distance into account. Apart from considering the resiliency in terms of fraction of links broken, we also consider the resiliency as the number of nodes and regions disconnected when some sensor are compromised. This second measure, though very important, had not been studied so far in key predistribution schemes which use deployment knowledge. We find that the resiliency as the fraction of links compromised is better than existing schemes. The number of keys preloaded in each sensor node is much less than all existing schemes and nodes are either directly connected or connected via two hop paths. The deterministic key predistribution schemes result in constant-time computation overhead for shared key discovery and path key establishment.
机译:我们提出了一种在无线传感器网络中的新的网格组部署方案。我们将组合设计用于传感器节点中的关键预分配。部署区域分为方形区域。预分配方案的优点在于,特定区域内的所有节点都可以直接相互通信,而位于不同区域的节点可以通过称为代理的特殊节点进行通信,这些特殊节点的代理资源比一般节点多。无论网络的大小如何,一个区域中的座席总数始终为3。考虑到李距离,我们给出了弹性度量。除了考虑链路断开部分的弹性外,我们还考虑了弹性,因为当某些传感器受损时,节点和区域的数量断开了。尽管第二种措施非常重要,但到目前为止尚未在使用部署知识的关键预分配方案中进行研究。我们发现,作为链路受损部分的弹性比现有方案更好。每个传感器节点中预加载的密钥数量远远少于所有现有方案,并且节点直接连接或通过两条跃点路径连接。确定性密钥预分配方案会导致共享密钥发现和路径密钥建立的恒定时间计算开销。

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