{"title":"中继通信系统基站自动安置算法","authors":"V. Ivanov, S. Uvajsov, I. Ivanov","doi":"10.31854/1813-324x-2023-9-5-25-34","DOIUrl":null,"url":null,"abstract":"to increase the efficiency of the trunking communication systems design process, an original algorithm for the automatic placement of base stations is proposed, taking into account the real conditions of radio wave propagation. The analysis showed that the existing methods allow you to place base stations manually, with a given step or automatically, but without taking into account the propagation of radio waves, which leads to poor-quality coverage of the required area with communication. The aim of the work is to reduce the complexity of designing a trunking communication system that is guaranteed to cover a given service area. It is proposed to calculate the service areas of base stations using a statistical model, as well as taking into account additional diffraction losses on the radio signal propagation path. The solution to the problem of automatic placement of base stations is based on the use of the proposed modified Hut model, which takes into account the terrain at the locations of the base and portable stations, as well as on the international recommendation for predicting signal propagation on a specific route for ground services. With automatic placement, the optimality criterion is fulfilled, which consists in placing the minimum number of base stations necessary to cover the required territory. An element of the novelty of the presented solution is that at the first stage of the calculation, the service area of the base station is determined by the statistical method, at the second stage, an updated calculation of the service area takes place taking into account the actual conditions of radio wave propagation at the binding site, and at the third stage, the zone of guaranteed customer service is determined. 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引用次数: 0
摘要
为了提高集群通信系统设计过程的效率,我们提出了一种自动安置基站的独创算法,其中考虑到了无线电波传播的实际情况。分析表明,现有的方法可以手动、按给定步骤或自动放置基站,但没有考虑到无线电波的传播,导致通信覆盖所需区域的质量不高。这项工作的目的是降低集群通信系统设计的复杂性,保证覆盖特定的服务区域。建议使用统计模型计算基站的服务区域,并考虑到无线电信号传播路径上的额外衍射损耗。基站自动布点问题的解决方案基于所建议的修改后的 Hut 模型,该模型考虑了基站和便携式基站所在地的地形,以及国际上关于预测地面服务特定路线上信号传播的建议。通过自动布点,实现了最优化标准,即布设覆盖所需区域所需的最少基站。所提出解决方案的新颖之处在于,在计算的第一阶段,通过统计方法确定基站的服务区域;在第二阶段,根据绑定地点的无线电波传播的实际情况,对服务区域进行更新计算;在第三阶段,确定保证客户服务的区域。使用所提出的算法可以降低系统设计过程的复杂性,并确定足够数量的基站来覆盖特定的通信区域。我们还开发了适当的软件,以便在实际工作中应用该算法。为了证实该算法的有效性,本文对使用开发的软件和使用广泛使用的 RadioMobile 程序设计集群通信系统所花费的时间进行了比较计算。
Automatic Placement Algorithm of Base Stations Trunking Communication Systems
to increase the efficiency of the trunking communication systems design process, an original algorithm for the automatic placement of base stations is proposed, taking into account the real conditions of radio wave propagation. The analysis showed that the existing methods allow you to place base stations manually, with a given step or automatically, but without taking into account the propagation of radio waves, which leads to poor-quality coverage of the required area with communication. The aim of the work is to reduce the complexity of designing a trunking communication system that is guaranteed to cover a given service area. It is proposed to calculate the service areas of base stations using a statistical model, as well as taking into account additional diffraction losses on the radio signal propagation path. The solution to the problem of automatic placement of base stations is based on the use of the proposed modified Hut model, which takes into account the terrain at the locations of the base and portable stations, as well as on the international recommendation for predicting signal propagation on a specific route for ground services. With automatic placement, the optimality criterion is fulfilled, which consists in placing the minimum number of base stations necessary to cover the required territory. An element of the novelty of the presented solution is that at the first stage of the calculation, the service area of the base station is determined by the statistical method, at the second stage, an updated calculation of the service area takes place taking into account the actual conditions of radio wave propagation at the binding site, and at the third stage, the zone of guaranteed customer service is determined. The use of the proposed algorithm makes it possible to reduce the complexity of the system design process and determine the sufficient number of base stations needed to cover a given area with communication. Appropriate software has been developed to apply the algorithm in real practice. To confirm the effectiveness of the algorithm, the paper presents comparative calculations of the time spent on designing a trunking communication system using the developed software and using the widely used RadioMobile program.