Relay selection in Bluetooth Mesh networks by embedding genetic algorithms in a Digital Communication Twin

Jorg Wieme, Mathias Baert, J. Hoebeke
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引用次数: 1

Abstract

Bluetooth Mesh (BM) technology is a suitable candidate to realize mesh networks leveraging on a mains-powered backbone. However, the flooding-based technology requires additional management in order to operate efficiently. Consequently, it offers a diverse set of configuration options to control network behavior, including the selection of relays in the backbone that rebroadcast packets further into the network. In the past, Digital Twin technology has been applied to design a Digital Communication Twin (DCT) of a BM network. The DCT (or Digital Twin Network, DTN) can be used to find an optimal network configuration for given application requirements. This includes a relay selection approach that finds a set of relays to assure sufficient path redundancy in the network. However, existing results prove that this approach can be improved in terms of computation time, flexibility and validity of the proposed set of relays. In this paper, we present a reinterpreted version of a genetic algorithm to tackle this issue. The results show it achieves better results on all three improvement targets, compared to the original approach. Furthermore, it showcases the flexibility and adaptability of the DCT whilst adequately improving the relay selection approach.
嵌入遗传算法的蓝牙Mesh网络中继选择
蓝牙Mesh (Bluetooth Mesh, BM)技术是利用主干网实现Mesh网络的合适选择。然而,基于洪水的技术需要额外的管理才能有效运行。因此,它提供了一组不同的配置选项来控制网络行为,包括骨干网中中继的选择,这些中继将数据包重新广播到网络中。在过去,数字孪生技术已被应用于BM网络的数字通信孪生(DCT)设计。DCT(或数字孪生网络,DTN)可用于为给定的应用需求找到最佳的网络配置。这包括一种中继选择方法,它可以找到一组中继,以确保网络中有足够的路径冗余。然而,已有的结果证明,该方法在计算时间、灵活性和所提出的继电器集的有效性方面可以得到改进。在本文中,我们提出了一个重新解释版本的遗传算法来解决这个问题。结果表明,与原始方法相比,该方法在所有三个改进目标上都取得了更好的结果。此外,它展示了DCT的灵活性和适应性,同时充分改进了继电器选择方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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