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Foundations of Antcycle: Self-synchronized Duty-cycling in Mobile Sensor Networks

机译:Antcycle的基础:移动传感器网络中的自同步占空比

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摘要

Ants are generally believed to follow an intensive work routine. Numerous tales and fables refer to ants as conscientious workers. Nevertheless, biologists have discovered that ants also rest for extended periods of time. This does not only hold for individual ants. Interestingly, ant colonies exhibit synchronized activity phases that result from self-organization. In this work, self-synchronization in ant colonies is taken as the inspiring source for a new mechanism of self-synchronized duty-cycling in mobile sensor networks. Hereby, we assume that sensor nodes are equipped with energy harvesting capabilities such as, for example, solar cells. We show that the proposed self-synchronization mechanism can be made adaptive depending on variable energy resources. The main objective of this paper is to study and explore the swarm intelligence foundations of self-synchronized duty-cycling. With this purpose in mind, physical constraints such as packet collisions and packet loss are generally not considered.
机译:一般认为,蚂蚁要遵循繁重的工作程序。许多故事和寓言都将蚂蚁称为尽责的工人。尽管如此,生物学家已经发现蚂蚁也可以长时间休息。这不仅适用于单个蚂蚁。有趣的是,蚁群表现出由自我组织导致的同步活动阶段。在这项工作中,将蚁群中的自同步作为移动传感器网络中自同步占空比的新机制的灵感来源。据此,我们假设传感器节点配备有能量收集功能,例如太阳能电池。我们表明,所提出的自同步机制可以根据可变的能源而变得自适应。本文的主要目的是研究和探索自同步占空比的群体智能基础。考虑到该目的,通常不考虑诸如分组冲突和分组丢失之类的物理约束。

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  • 来源
    《Computer Journal, The》 |2011年第9期|p.1427-1448|共22页
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  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
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  • 正文语种 eng
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