Frequency scheduling algorithm with the allocation of the main and additional frequency bands.

Maksim Sergeevich Demichev, K. E. Gaipov, Alena Alekseevna Demicheva, R. Faizulin, D. O. Malyshev
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Abstract

The subject of this research is the frequency planning algorithm for networks with an arbitrary topology of links over radio channels. The algorithm determines the total number of non-overlapping frequency ranges for the entire network and provides the distribution of each frequency range between communication nodes. The algorithm consists of two stages: at the first stage, there is a search and simultaneous distribution of frequency channels, the so-called main frequency range, as a result, only one frequency range is allocated to each node; at the second stage, additional frequency channels are searched for, which can be used by a separate subset of nodes, thus , some nodes can use more than one frequency range, but several at once. The novelty of this research lies in the developed frequency planning algorithm for wireless communication systems with an arbitrary topology of communications over radio channels. The result of the operation of the algorithm for a wireless communication system is the allocation of radio frequencies for communication nodes from the common frequency band allocated for the wireless communication system, in terms of reuse, eliminating the effect of interference. The result for communication nodes is the allocation of a baseband and an additional frequency band, taking into account the topology of the radio network, which can be used by a separate subset that makes wireless communication systems resistant to narrowband random interference.
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基于主频段和附加频段分配的频率调度算法。
本研究的主题是无线电信道上具有任意链路拓扑的网络的频率规划算法。该算法确定整个网络不重叠频率范围的总数,并提供每个频率范围在通信节点之间的分布。该算法包括两个阶段:第一阶段,搜索并同时分配频率通道,即所谓的主频率范围,因此每个节点只分配一个频率范围;在第二阶段,搜索额外的频率通道,这些通道可以由一个单独的节点子集使用,因此,一些节点可以使用多个频率范围,但一次可以使用几个。本研究的新颖之处在于针对无线信道上具有任意拓扑结构的无线通信系统,提出了频率规划算法。该算法对无线通信系统的运行结果是从为无线通信系统分配的公共频段中为通信节点分配无线电频率,在重用方面,消除了干扰的影响。考虑到无线网络的拓扑结构,通信节点的结果是分配一个基带和一个额外的频带,这可以由一个单独的子集使用,使无线通信系统能够抵抗窄带随机干扰。
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