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Preferential Attachment Model with Degree Bound and Its Application to Key Predistribution in WSN

机译:有度约束的优先依恋模型及其在无线传感器网络密钥预分配中的应用

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Preferential attachment models have been widely studied in complex networks, because they can explain the formation of many networks like social networks, citation networks, power grids, and biological networks, to name a few. Motivated by the application of key predistribution in wireless sensor networks (WSN), we initiate the study of preferential attachment with degree bound. Our paper has two important contributions to two different areas. The first is a contribution in the study of complex networks. We propose preferential attachment model with degree bound for the first time. In the normal preferential attachment model, the degree distribution follows a power law, with many nodes of low degree and a few nodes of high degree. In our scheme, the nodes can have a maximum degree d_max, where d_max is an integer chosen according to the application. The second is in the security of wireless sensor networks. We propose a new key predistribution scheme based on the above model. The important features of this model are that the network is fully connected, it has fewer keys, has larger size of the giant component and lower average path length compared with traditional key predistribution schemes and comparable resilience to random node attacks. We argue that in many networks like key predistribution and Internet of Things, having nodes of very high degree will be a bottle-neck in communication. Thus, studying preferential attachment model with degree bound will open up new directions in the study of complex networks, and will have many applications in real world scenarios.
机译:优惠依恋模型已经在复杂的网络中得到了广泛的研究,因为它们可以解释许多网络的形成,例如社交网络,引文网络,电网和生物网络,仅举几例。受到密钥预分配在无线传感器网络(WSN)中的应用的推动,我们开始研究具有度界的优先依附关系。我们的论文对两个不同领域有两个重要贡献。首先是对复杂网络研究的贡献。我们首次提出了具有度约束的优先依恋模型。在正常优先依恋模型中,度数分布遵循幂律,具有低度数的许多节点和高度数的少数节点。在我们的方案中,节点可以具有最大度数d_max,其中d_max是根据应用选择的整数。第二是无线传感器网络的安全性。基于以上模型,我们提出了一种新的密钥预分配方案。与传统的密钥预分配方案相比,该模型的重要特征是网络完全连接,密钥更少,巨型组件的大小更大,平均路径长度更短,并且具有与随机节点攻击相当的弹性。我们认为,在诸如密钥预分发和物联网之类的许多网络中,具有非常高程度的节点将成为通信的瓶颈。因此,研究具有度界的优先依恋模型将为复杂网络的研究开辟新的方向,并将在现实世界中有许多应用。

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