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Sustainable Communication Systems: A Graph-Labeling Approach for Cellular Frequency Allocation in Densely-Populated Areas

机译:可持续通信系统:人口稠密地区蜂窝频率分配的图形标签方法

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The need for smart and sustainable communication systems has led to the development of mobile communication networks. In turn, the vast functionalities of the global system of mobile communication (GSM) have resulted in a growing number of subscribers. As the number of users increases, the need for efficient and effective planning of the “limited” frequency spectrum of the GSM is inevitable, particularly in densely-populated areas. As such, there are ongoing discussions about frequency (channel) allocation methods to resolve the challenges of channel allocation, which is a complete NP (Nondeterministic Polynomial time) problem. In this paper, we propose an algorithm for channel allocation which takes into account soft constraints (co-channel interference and adjacent channel interference). By using the Manhattan distance concept, this study shows that the formulation of the algorithm is correct and in line with results in the literature. Hence, the Manhattan distance concept may be useful in other scheduling and optimization problems. Furthermore, this unique concept makes it possible to develop a more sustainable telecommunication system with ease of connectivity among users, even when several subscribers are on a common frequency.
机译:对智能和可持续通信系统的需求导致了移动通信网络的发展。反过来,全球移动通信系统(GSM)的广泛功能导致越来越多的用户。随着用户数量的增加,特别是在人口稠密的地区,不可避免地需要高效,有效地规划GSM的“有限”频谱。因此,正在进行有关频率(信道)分配方法的讨论,以解决信道分配的挑战,这是一个完整的NP(非确定多项式时间)问题。在本文中,我们提出了一种考虑软约束(同信道干扰和相邻信道干扰)的信道分配算法。通过使用曼哈顿距离概念,该研究表明该算法的公式是正确的,并且与文献中的结果一致。因此,曼哈顿距离概念可能在其他调度和优化问题中很有用。此外,即使几个用户在同一频率上,这种独特的概念也使得有可能开发一种更加可持续的电信系统,使用户之间的连接变得容易。

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