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Comparison of Data-Driven Link Estimation Methods in Low-Power Wireless Networks

机译:低功率无线网络中数据驱动链路估计方法的比较

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Link estimation is a basic element of routing in low-power wireless networks, and data-driven link estimation using unicast MAC feedback has been shown to outperform broadcast-beacon-based link estimation. Nonetheless, little is known about how different data-driven link estimation methods affect routing behaviors. To address this issue, we classify existing data-driven link estimation methods into two broad categories: L-NT that uses aggregate information about unicast and L-ETX that uses information about the individual unicast-physical-transmissions. Through mathematical analysis and experimental measurement in a testbed of 98 XSM motes (an enhanced version of MICA2 motes), we examine the accuracy and stability of L-NT and L-ETX in estimating the ETX routing metric. We also experimentally study the routing performance of L-NT and L-ETX. We discover that these two representative, seemingly similar methods of data-driven link estimation differ significantly in routing behaviors: L-ETX is much more accurate and stable than L-NT in estimating the ETX metric, and accordingly, L-ETX achieves a higher data delivery reliability and energy efficiency than L-NT (for instance, by 25.18 percent and a factor of 3.75, respectively, in our testbed). These findings provide new insight into the subtle design issues in data-driven link estimation that significantly impact the reliability, stability, and efficiency of wireless routing, thus shedding light on how to design link estimation methods for mission-critical wireless networks which pose stringent requirements on reliability and predictability.
机译:链路估计是低功率无线网络中路由的基本元素,使用单播MAC反馈进行数据驱动的链路估计已证明优于基于广播信标的链路估计。但是,对于不同的数据驱动链路估计方法如何影响路由行为知之甚少。为了解决此问题,我们将现有的数据驱动的链路估计方法分为两大类:使用有关单播的汇总信息的L-NT和使用有关各个单播物理传输的信息的L-ETX。通过在98个XSM节点(MICA2节点的增强版本)的测试床上进行数学分析和实验测量,我们在估计ETX路由度量时检查了L-NT和L-ETX的准确性和稳定性。我们还通过实验研究了L-NT和L-ETX的路由性能。我们发现,这两种具有代表性的,看似相似的数据驱动链路估计方法在路由行为方面存在显着差异:L-ETX在估计ETX指标方面比L-NT更准确和稳定,因此L-ETX可以达到更高数据传输的可靠性和能效比L-NT高(例如,在我们的测试平台上分别为25.18%和3.75倍)。这些发现为数据驱动链路估计中的细微设计问题提供了新的见解,这些问题极大地影响了无线路由的可靠性,稳定性和效率,从而阐明了如何为要求严格的任务关键型无线网络设计链路估计方法关于可靠性和可预测性。

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