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Asynchronous Simulation of a Self-Synchronized Duty-Cycling Mechanism for Mobile Sensor Networks

机译:移动传感器网络自同步占空比机制的异步仿真

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In previous work we introduced a self-synchronized duty-cycling mechanism for mobile sensor networks with energy harvesting capabilities, inspired by the self-synchroned sleeping patterns that can be observed in real ant colonies. The focus of our previous study was mainly on swarm intelligence aspects of the proposed system. In contrast, in this paper we propose a more realistic version of the initial system. The proposed changes concern in particular the systems' asynchronous simulation. Instead of exchanging information at the same time, in our new proposal sensor nodes wake up periodically based on their own internal clock and perform an update of their internal state based on the information received by their neighbors. In addition we use a more realistic mobility model and apply the system to scenarios where weather conditions vary over the area of deployment. The simulation results show that our asynchronous system also permits adaptive duty-cycling, and that the system is able to adapt to changing weather conditions.
机译:在以前的工作中,我们引入了具有能量收集功能的移动传感器网络自同步占空比机制,其灵感来自可以在实际蚁群中观察到的自同步睡眠模式。我们之前的研究重点主要放在建议系统的群智能方面。相反,在本文中,我们提出了更实际的初始系统版本。提出的更改特别涉及系统的异步仿真。在我们的新提议中,传感器节点不是同时交换信息,而是根据自己的内部时钟定期唤醒,并根据邻居接收到的信息对内部状态进行更新。此外,我们使用了更现实的移动性模型,并将该系统应用于气象条件随部署区域变化的场景。仿真结果表明,我们的异步系统还允许自适应占空比,并且该系统能够适应不断变化的天气条件。

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