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Optimal Placement of Near Ground VHF/UHF Radio Communication Network as a Multi Objective Problem

机译:近地面VHF / UHF无线电通信网络的最佳放置作为多目标问题

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摘要

Ultra high frequency (UHF) and very high frequency (VHF) bands are widely used with near ground applications especially for communication purposes. However, due to the limited antenna height, the VHF/UHF signals are very sensitive to the surroundings. The signal may attenuate, fade or loss depending on the condition of the environment. Therefore, it is a challenging task to find the optimal values for network topology planning. In this paper, three multi-objective algorithms namely NSGA-II, SPEA-II and OMOPSO are considered to mitigate the problem. This paper also intends to maximize the electromagnetic fields and signal propagation. On the other hand, it intends to minimize path loss and signal attenuation. Different environment settings such as diverse foliage depth and tree trunk height are considered to evaluate the proposed model. From the experiments, it is shown that NSGA-II outperforms other algorithms. The experiment also shows that the optimal foliage depth between sender and receiver is less or equal to 2 km and the optimal tree trunk height is less or equal to 7 m.
机译:超高频(UHF)和非常高频(VHF)带广泛用于近地面应用,特别是用于通信目的。然而,由于天线高度有限,VHF / UHF信号对周围环境非常敏感。根据环境的条件,信号可以衰减,逐渐消退或丢失。因此,找到网络拓扑规划的最佳价值是一个具有挑战性的任务。在本文中,三种多目标算法即NSGA-II,SPEA-II和Omopso被认为是减轻问题。本文还打算最大化电磁场和信号传播。另一方面,它旨在最大限度地减少路径损耗和信号衰减。不同的环境设置,例如不同的叶子深度和树干高度被认为是评估所提出的模型。从实验中,显示NS​​GA-II优于其他算法。实验还表明,发件人和接收器之间的最佳叶子深度较小或等于2km,最佳树干高度小于或等于7米。

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