A practical relay scheduling scheme for wireless sensor networks with energy harvesting

A. Ammar, D. Reynolds
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引用次数: 5

Abstract

The use of cooperative communication technology in energy harvesting sensor networks is one of the most viable solutions to overcome the power limitations of the battery-powerd sensor networks. However, combining cooperative communication and energy harvesting in a network requires an efficient and a practical relay usage scheduling scheme to maximize the overall packet delivery ratio. This paper considers a wireless sensor network with energy harvesting and cooperative communication, and proposes a practical scheme that maximizes the packet delivery ratio of the system. The results show that our scheme provides almost the same performance of the threshold based scheme (state-of-the-art scheme) using the same system parameters. Compared to the threshold scheme that has a tunable parameter (threshold value) for each set of system parameters, the results show that our scheme does not require any tunable parameter to maximize the performance. In the threshold based scheme, if one of the system parameters changes, the sensors need to tune the threshold level at a new value to maintain the maximum performance. Tuning the threshold at a certain value requires simulating the system at different threshold levels to get that tunable value. This is not easy and might not even be practical to implement especially in networks of thousands of sensors with unstable parameters. So, no need for any tunable parameter makes our scheme easier and more practical to be used. Also, it makes our scheme more flexible to adjust the performance of the source and relay to ensure fairness between them.
一种实用的能量收集无线传感器网络中继调度方案
在能量收集传感器网络中使用协作通信技术是克服电池供电传感器网络功率限制的最可行的解决方案之一。然而,在网络中结合协作通信和能量收集,需要一种高效实用的中继使用调度方案,以最大限度地提高总体分组分发率。本文考虑了一种具有能量收集和协作通信的无线传感器网络,提出了一种使系统的分组传输比最大化的实用方案。结果表明,在相同的系统参数下,我们的方案提供了与基于阈值的方案(最先进的方案)几乎相同的性能。与对每组系统参数具有可调参数(阈值)的阈值方案相比,结果表明我们的方案不需要任何可调参数来最大化性能。在基于阈值的方案中,如果系统参数之一发生变化,传感器需要在新的值上调整阈值水平以保持最大性能。在某个值上调优阈值需要在不同的阈值级别上模拟系统以获得该可调值。这是不容易的,甚至可能不实际的实现,特别是在数以千计的传感器与不稳定参数的网络。因此,不需要任何可调参数,使我们的方案更容易和更实用。此外,该方案还可以灵活地调整源和中继的性能,以保证它们之间的公平性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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