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OPTIMISATION OF RADIO TRANSMITTER LOCATIONS IN MOBILE TELECOMMUNICATION NETWORKS

机译:移动通信网络中无线电发射机位置的优化

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Multiple factors have to be taken into account when mobile telecommunication network providers make decisions about radio transmitter placement. Generally, area coverage and the average signal level provided are of prime importance in these decisions. These criteria give rise to a bi-objective problem of facility location, with the goal of achieving an acceptable trade-off between maximising the total area coverage and maximising the average signal level provided to the demand region by a network of radio transmitters. This paper establishes a mathematical modelling framework, based on these two placement criteria, for evaluating the effectiveness of a given set of radio transmitter locations. In the framework, coverage is measured according to the degree of obstruction of the so-called ‘Fresnel zone’ that is formed between handset and base station, while signal strength is modelled taking radio wave propagation loss into account. This framework is used to formulate a novel bi-objective facility location model that may form the basis for decision support aimed at identifying high-quality transmitter location trade-off solutions for mobile telecommunication network providers. But it may also find application in various other contexts (such as radar, watchtower, or surveillance camera placement optimisation).?.
机译:当移动电信网络提供商做出有关无线电发射机放置的决定时,必须考虑多个因素。通常,在这些决策中,区域覆盖范围和提供的平均信号电平至关重要。这些标准引起设施定位的双目标问题,目的是在最大化总区域覆盖范围和最大化由无线电发射机网络提供给需求区域的平均信号电平之间达成可接受的折衷。本文基于这两个放置标准,建立了一个数学建模框架,用于评估一组给定无线电发射机位置的有效性。在该框架中,覆盖范围是根据手机和基站之间形成的“菲涅耳区域”的阻塞程度来衡量的,而信号强度是在考虑无线电波传播损耗的情况下进行建模的。该框架用于制定新颖的双目标设施定位模型,该模型可为旨在为移动电信网络提供商识别高质量发射机位置权衡解决方案的决策支持奠定基础。但是它也可以在其他各种情况下找到应用(例如,雷达,watch望塔或监视摄像机的放置优化)。

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