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Group steiner tree model for energy efficient multicast in Duty-Cycle Wireless Sensor Networks

机译:占空比无线传感器网络中用于节能多播的Group steiner树模型

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We focus on the minimum-energy multicasting (MEM) problem in Duty-Cycle Wireless Sensor Networks (DC-WSN) and propose two improved algorithms to solve it. We first formulate the MEM problem as a Group Steiner Tree (GST) model, which can be solved by a series of well-known approximate algorithms. We adopt one of best known GST approximate approaches to directly solve this problem but it still takes a long computation time. We then follow the extended graph based approach and propose an improved algorithm called R-TCS. By using an enhanced scheme during the construction of multicast tree, our proposed R-TCS algorithm can find a much better solution in terms of energy cost. Simulation results show that the R-TCS significantly outperforms TCS and can be compared with GS-MEM in terms of total transmission energy cost while only requiring a reasonable extra computation time.
机译:我们关注占空比无线传感器网络(DC-WSN)中的最小能量多播(MEM)问题,并提出了两种改进的算法来解决该问题。我们首先将MEM问题公式化为Group Steiner树(GST)模型,可以通过一系列众所周知的近似算法来解决。我们采用了最著名的GST近似方法之一来直接解决此问题,但仍需要较长的计算时间。然后,我们遵循基于扩展图的方法,并提出了一种称为R-TCS的改进算法。通过在组播树的构建过程中使用增强方案,我们提出的R-TCS算法可以在能源成本方面找到更好的解决方案。仿真结果表明,R-TCS明显优于TCS,在总传输能量成本方面可以与GS-MEM进行比较,而仅需要合理的额外计算时间。

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