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Power-efficient Topology Control For Static Wireless Networks With Switched Beam Directional Antennas

机译:具有开关波束定向天线的静态无线网络的节能拓扑控制

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Topology control problems are associated with assignment of power levels to nodes of a wireless network so that the resulting graph topology satisfies certain properties. In this paper we consider the problem of power-efficient topology control with switched beam directional antennas taking into account their non-uniform radiation pattern within the beam-width. Previous work in the area have all assumed a uniform gain model with these antennas which renders antenna orientation insignificant as a parameter in topology control algorithms. We present algorithms that take into account a model of non-uniform gain with the objectives of minimizing the total power and maximum power to keep the network connected. We consider two cases: one where the antenna orientation is assumed given and another where the antenna orientation needs to be derived as well. For the first case, we present optimal and approximation algorithms for constructing power-efficient topologies. For the second case, we prove the problem to be NP-complete and present heuristic solutions along with approximation bounds. Through comparison of the two cases by simulation, significant reductions are shown in the maximum as well as total power required to keep the network connected for the second case, thus demonstrating the benefits of using antenna orientation as parameter in topology construction.
机译:拓扑控制问题与将功率级别分配给无线网络的节点有关,因此生成的图形拓扑满足某些属性。在本文中,考虑到波束定向天线在波束宽度内的不均匀辐射方向图,我们考虑了功率高效拓扑控制问题。该地区以前的工作都假设了使用这些天线的统一增益模型,这使得天线方向作为拓扑控制算法中的参数变得无关紧要。我们提出的算法考虑了非均匀增益模型,其目标是最小化总功率和最大功率以保持网络连接。我们考虑两种情况:一种情况假定天线方向已给定,另一种情况也需要导出天线方向。对于第一种情况,我们提出了构建节能高效拓扑的最佳算法和近似算法。对于第二种情况,我们证明问题是NP完全的,并给出了启发式解以及近似边界。通过仿真比较这两种情况,显示出在第二种情况下保持网络连接所需的最大以及总功率的显着降低,从而证明了在拓扑结构中使用天线方向作为参数的好处。

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