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A Cache Placement Strategy with Energy Consumption Optimization in Information-Centric Networking

机译:具有信息中心网络中的能量消耗优化的缓存放置策略

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摘要

With the rapid development of cloud computing, big data, and Internet of Things, Information-Centric Networking (ICN) has become a novel hotspot in the field of future Internet architecture, and new problems have appeared. In particular, more researchers consider information naming, delivery, mobility, and security in ICN. In this paper, we mainly focus on the cache placement strategy and network performance of ICN, and propose a cache placement strategy with energy consumption optimization. In order to optimize the energy consumption of the ICN, the best cache placement node is selected from the view of users. First of all, the distance sequence of different nodes arriving at each user is obtained in terms of detection results of network distribution channels, and the corresponding energy consumption of information distribution is obtained from the distance sequence. Secondly, the reward function of the cache node is derived using two factors of energy consumption, which includes the additional energy consumed by the change of the cache node and the energy consumption of the content distribution. Finally, we construct the optimal stopping theory problem to solve the maximum expected energy saving. In simulations, we give the comparison results of energy savings, caching benefit, and delivery success rate. The results show that the strategy proposed by this paper has higher delivery success rate and lower energy consumption than other strategies.
机译:随着云计算,大数据和物联网的快速发展,信息中心网络(ICN)已成为未来互联网架构领域的新型热点,并且出现了新的问题。特别是,更多的研究人员考虑ICN中的信息命名,交付,移动性和安全性。在本文中,我们主要关注ICN的缓存放置策略和网络性能,并提出了具有能量消耗优化的高速缓存放置策略。为了优化ICN的能量消耗,从用户的视图中选择最佳高速缓存放置节点。首先,在网络分配信道的检测结果方面获得到达每个用户的不同节点的距离序列,并且从距离序列获得信息分布的相应能量消耗。其次,使用两个能耗因素导出高速缓存节点的奖励功能,其包括通过缓存节点的变化和内容分发的能量消耗消耗的附加能量。最后,我们构建了最佳停止理论问题,以解决最大预期节能。在模拟中,我们给出了节能,缓存益处和交付成功率的比较结果。结果表明,本文提出的策略具有比其他策略更高的交付成功率和较低的能耗。

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