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Maximizing Information Diffusion in the Cyber-physical Integrated Network

机译:最大化网络物理综合网络中的信息扩散

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摘要

Nowadays, our living environment has been embedded with smart objects, such as smart sensors, smart watches and smart phones. They make cyberspace and physical space integrated by their abundant abilities of sensing, communication and computation, forming a cyber-physical integrated network. In order to maximize information diffusion in such a network, a group of objects are selected as the forwarding points. To optimize the selection, a minimum connected dominating set (CDS) strategy is adopted. However, existing approaches focus on minimizing the size of the CDS, neglecting an important factor: the weight of links. In this paper, we propose a distributed maximizing the probability of information diffusion (DMPID) algorithm in the cyber-physical integrated network. Unlike previous approaches that only consider the size of CDS selection, DMPID also considers the information spread probability that depends on the weight of links. To weaken the effects of excessively-weighted links, we also present an optimization strategy that can properly balance the two factors. The results of extensive simulation show that DMPID can nearly double the information diffusion probability, while keeping a reasonable size of selection with low overhead in different distributed networks.
机译:如今,我们的生活环境已嵌入智能对象,例如智能传感器,智能手表和智能手机。它们通过其丰富的感测,通信和计算能力将网络空间和物理空间整合在一起,形成了一个网络物理整合网络。为了使这种网络中的信息扩散最大化,选择一组对象作为转发点。为了优化选择,采用了最小连通支配集(CDS)策略。但是,现有方法侧重于最小化CDS的大小,而忽略了一个重要因素:链接的权重。在本文中,我们提出了一种分布式最大化网络物理信息集成网络中的信息扩散概率(DMPID)算法。与以前仅考虑CDS选择大小的方法不同,DMPID还考虑了取决于链接权重的信息传播概率。为了减弱过度加权的链接的影响,我们还提出了一种可以适当平衡这两个因素的优化策略。大量仿真结果表明,DMPID可以使信息扩散几率几乎翻倍,同时在不同的分布式网络中以较低的开销保持合理的选择大小。

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