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Distributed Networking in Autonomic Solar Powered Wireless Sensor Networks

机译:自主太阳能无线传感器网络中的分布式网络

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摘要

Recent advances in solar harvesting technologies pave the way for sustainable environmental-monitoring applications in the emerging solar powered wireless sensor networks (SP-WSNs). The complexities associated with the low-resourced, highly-dynamic, and vulnerable sensor nodes operating in potentially unattended or hostile environments require a high degree of self-management and automation. Guided by autonomic communication principles, this paper presents AutoSP-WSN, a novel distributed framework to achieve sustainable data collection while also optimizing end-to-end network performance for SP-WSNs. Initially, we present the energy-aware support component that provides reliable energy monitoring and prediction. This drives the power management component, which is adaptive to time-varying solar power, avoiding battery exhaustion as well as maximizing the per-node utility. Finally, to demonstrate the key design issues of the network protocol component, we propose two self-adaptive network protocols, a routing protocol SP-BCP and a rate control scheme PEA-DLEX. We show that the individual components seamlessly highly integrate as a whole, and the AutoSP-WSN framework exhibits the properties of context-awareness, distributed operation, self-configuration, self-optimization, self-protection and self-healing. Through extensive experiments on a real SP-WSN platform, and hardware-driven simulations, we show that the proposed schemes achieve substantial improvements over previous work, in terms of reliability, sustainable operation, and network utility.
机译:太阳能收集技术的最新进展为新兴的太阳能无线传感器网络(SP-WSN)中的可持续环境监测应用铺平了道路。与资源匮乏,高动态且易受攻击的传感器节点在潜在的无人值守或敌对环境中运行相关的复杂性要求高度的自我管理和自动化。在自主通信原理的指导下,本文介绍了AutoSP-WSN,这是一种新颖的分布式框架,可以实现可持续的数据收集,同时还可以优化SP-WSN的端到端网络性能。最初,我们介绍了能量感知支持组件,该组件提供可靠的能量监视和预测。这将驱动电源管理组件,该组件可适应随时间变化的太阳能,避免了电池耗尽并最大化了每个节点的效用。最后,为了说明网络协议组件的关键设计问题,我们提出了两种自适应网络协议,即路由协议SP-BCP和速率控制方案PEA-DLEX。我们显示出各个组件无缝地高度集成为一个整体,并且AutoSP-WSN框架展现了上下文感知,分布式操作,自我配置,自我优化,自我保护和自我修复的特性。通过在真实的SP-WSN平台上进行的广泛实验以及硬件驱动的仿真,我们证明了所提出的方案在可靠性,可持续运行和网络实用性方面比以前的工作有了实质性的改进。

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