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首页> 外文期刊>Control of Network Systems, IEEE Transactions on >On the Structural Perspective of Computational Effectiveness for Quantized Consensus in Layered UAV Networks
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On the Structural Perspective of Computational Effectiveness for Quantized Consensus in Layered UAV Networks

机译:论分层UAV网络中量化共识计算效率的结构视角

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Distributed computing tasks in small unmanned aerial vehicle (UAV) networks require effective data transmission schemes because of limited communication channels and transmission power. In this paper, we use distributed consensus as a canonical distributed computing task to study the effectiveness of the data transmission in digitized (quantized) channels for UAV networks. We show that layered structures are more effective than equivalent egalitarian structures in terms of the data transmission load required to reach consensus. In particular, we establish explicit relationships between simple structural characteristics and the performance of quantized consensus (e.g., consensus condition, consensus value, and transmission load to reach consensus) for broad classes of layered structures. We also provide analytical results on asymptotic and transient performance when additional local memories are used to further reduce the data transmission load to reach consensus.
机译:由于通信信道和传输功率有限,小无人航线(UAV)网络中的分布式计算任务需要有效的数据传输方案。在本文中,我们使用分布式共识作为规范分布式计算任务,以研究为UAV网络数字化(量化)通道中的数据传输的有效性。我们表明,就达成共识所需的数据传输负荷而言,分层结构比等效的平均结构更有效。特别是,我们建立了简单的结构特征与量化共识的性能之间的明确关系(例如,共识的条件,共识值和传输负荷,以达到共识)的广泛层叠结构。当额外的本地存储器用于进一步减少数据传输负荷以达到共识时,我们还提供分析结果对渐近和瞬态性能进行分析结果。

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