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Delay Efficient Data Gathering Scheduling in Multi-Channel Duty-Cycled WSNs

机译:多通道占空比无线传感器网络中的时延有效数据收集调度

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摘要

Delay efficient data gathering scheduling (DEG) focuses on devising a data gathering scheduling with minimum delay. DEG problem has been widely investigated in wireless sensor networks (WSNs). Nevertheless, prior solutions to DEG problem either exploit one single channel, or assume that nodes do not sleep. Multi-channel technology can mitigate the influence caused by signal interference, and duty-cycled mechanisms can help to conserve the sensor nodes' limited energy. Thus we study the DEG problem in multi-channel duty-cycled WSNs in this paper, and call this problem as DEGCD problem. First, we prove that DEGCD problem is NP-hard. To solve DEGCD problem, we then propose a novel data gathering algorithm called NDG. We utilize two new concepts of Optional Active Conflict Graph (OACG) and Designated Active Conflict Graph (DACG) to depict the conflict relationship among the data gathering links. We also present two coloring methods to color the nodes in DACG. Based on the colors of these two coloring methods, we well schedule interfering links at different time or on different channels. Theoretical analysis shows that, our proposed NDG algorithm can achieve provable performance guarantee. Simulation results indicate that NDG algorithm can significantly improve the data gathering delay.
机译:延迟高效的数据收集调度(DEG)致力于设计具有最小延迟的数据收集调度。 DEG问题已在无线传感器网络(WSN)中得到了广泛研究。然而,DEG问题的现有解决方案要么利用一个单一通道,要么假定节点不休眠。多通道技术可以减轻信号干扰带来的影响,而占空比机制可以帮助节省传感器节点的有限能量。因此,本文研究了多信道占空比无线传感器网络中的DEG问题,并将其称为DEGCD问题。首先,我们证明DEGCD问题是NP问题。为了解决DEGCD问题,我们然后提出了一种新的数据收集算法,称为NDG。我们利用可选的主动冲突图(OACG)和指定主动冲突图(DACG)这两个新概念来描述数据收集链接之间的冲突关系。我们还提出了两种着色方法来为DACG中的节点着色。根据这两种着色方法的颜色,我们可以在不同的时间或在不同的通道上很好地安排干扰链接。理论分析表明,我们提出的NDG算法可以达到可证明的性能保证。仿真结果表明,NDG算法可以显着提高数据采集时延。

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