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Relay sensor placement in wireless sensor networks

机译:中继传感器在无线传感器网络中的放置

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This paper addresses the following relay sensor placement problem: given the set of duty sensors in the plane and the upper bound of the transmission range, compute the minimum number of relay sensors such that the induced topology by all sensors is globally connected. This problem is motivated by practically considering the tradeoff among performance, lifetime, and cost when designing sensor networks. In our study, this problem is modelled by a NP-hard network optimization problem named Steiner Minimum Tree with Minimum number of Steiner Points and bounded edge length (SMT-MSP). In this paper, we propose two approximate algorithms, and conduct detailed performance analysis. The first algorithm has a performance ratio of 3 and the second has a performance ratio of 2.5.
机译:本文解决了以下中继传感器放置问题:给定平面中的占空比传感器组和传输范围的上限,计算中继传感器的最小数量,以使所有传感器所感应的拓扑都全局连接。在设计传感器网络时,实际上要考虑性能,寿命和成本之间的折衷,从而引发该问题。在我们的研究中,此问题是通过一个名为Steiner最小树的NP硬网络优化问题建模的,该树具有最少的Steiner点数和有界边长(SMT-MSP)。在本文中,我们提出了两种近似算法,并进行了详细的性能分析。第一种算法的性能比为3,第二种算法的性能比为2.5。

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