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首页> 外文期刊>Wireless Communications Letters, IEEE >TCDS: A Time-Relevant Graph Based Topology Control in Triple-Layer Satellite Networks
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TCDS: A Time-Relevant Graph Based Topology Control in Triple-Layer Satellite Networks

机译:TCDS:三层卫星网络中基于时间相关图的拓扑控制

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摘要

In a triple-layer satellite (TLS) network with GEO, MEO and LEO, maintaining connectivity of topology confronts the challenge of intermittent visibility due to periodically orbital motions of nodes. To address this issue, in this letter, we develop a time-relevant graph called as space-time graph (STG) model for depicting the topological structure with fine granularity, by taking into account time-domain and spatial-domain properties. With STG, a Time-evolving Connected Dominating Set (TCDS) algorithm is proposed to construct a backbone network for efficient topology control with high spatial and temporal accessibility of the triple-layer network. The simulation results demonstrate better efficiency of the proposed algorithm with respects to the average hop and connectivity probability, compared with time-evolving multi-layered clustering (TEMC) algorithm and single time-slot clustering (STC) algorithm.
机译:在具有GEO,MEO和LEO的三层卫星(TLS)网络中,由于节点的周期性轨道运动,保持拓扑的连通性面临着间歇性可见性的挑战。为了解决这个问题,在这封信中,我们通过考虑时域和空间域的特性,开发了一个与时间相关的图,称为时空图(STG)模型,用于描述具有精细粒度的拓扑结构。利用STG,提出了一种时变连接支配集(TCDS)算法来构建骨干网络,以实现高效的拓扑控制,并具有三层网络的高空间和时间可访问性。仿真结果表明,与时变的多层聚类(TEMC)算法和单时隙聚类(STC)算法相比,该算法在平均跳数和连接概率方面具有更高的效率。

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