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Local Construction of Spanners in the 3D Space

机译:3D空间中扳手的局部构造

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摘要

In this paper, we present local distributed algorithms for constructing spanners in wireless sensor networks modeled as unit ball graphs (shortly UBGs) and quasi-unit ball graphs (shortly quasi-UBGs), in the 3D euclidean space. Our first contribution is a local distributed algorithm that, given a UBG U and a parameter alpha < pi/3, constructs a sparse spanner of U with stretch factor 1/(1-2sin {(alpha/2)}), improving the previous upper bound of 1/(1-alpha ) by Althöfer et al. which is applicable only when alpha < 1/(1+2sqrt{2}) < pi/3. The second contribution of this paper is in presenting the first local distributed algorithm for the construction of bounded-degree lightweight spanners of UBGs and quasi-UBGs. The simulation results we obtained show that, empirically, the weight and the stretch factor of the spanners, and the locality of the algorithms, are much better than the theoretical upper bounds proved in this paper.
机译:在本文中,我们提出了在3D欧式空间中构建为单位球图(简称UBG)和准单位球图(简称拟UBG)的无线传感器网络中构造扳手的局部分布式算法。我们的第一个贡献是一种本地分布式算法,该算法在给定UBG U和参数alpha i / 3的情况下,构造了拉伸因子为1 /(1-2sin {(alpha / 2)})的U的稀疏扳手,改进了以前的算法。 Althöfer等人1 /(1-alpha)的上限。仅当alpha <1 /(1 + 2sqrt {2})i / 3时适用。本文的第二个贡献是提出了第一个局部分布式算法,用于构造UBG和准UBG的有界度轻量级扳手。我们获得的仿真结果表明,从经验上讲,扳手的重量和拉伸因子以及算法的局部性比本文证明的理论上限要好得多。

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