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Indoor propagation investigation from a 2.4 GHz waist mounted beacon

机译:从2.4 GHz腰挂信标进行室内传播调查

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摘要

Indoor positioning techniques are being considered for use within team sports where players are tracked and recorded providing coaching assistance. While Global Positioning System (GPS) is the de facto standard employed to estimate the location of players, this is unsuitable for accurate indoor positioning due to roof and wall signal obstruction. Over a dozen techniques have been suggested for wireless indoor positioning of static and/or moving objects with improved methods for limiting the position estimation errors. For those indoor techniques that rely on radio frequency (RF) signal propagation, propagation statistics are useful in determining path loss and signal degradation. This static indoor propagation knowledge is critical in the design of wireless indoor positioning systems and ultimately the accuracy of the position estimation. Signal path propagation losses and variations produced from shadowing, multipath, fading, scattering or diffraction from objects can hinder the designer's efforts to provide a reliable and accurate positioning system. However, sporting indoor environments generally have an open floor area where play is conducted free from objects apart from the players themselves. At the elite sporting level these indoor play areas are designed and constructed under international specifications. Consequently, static wireless RF signal propagation knowledge obtained from one of these commonly built play areas is applicable to hundreds of other venues around the world. Many of these indoor sporting areas are used for a variety of sports, for example, basketball, volleyball, indoor cricket, indoor soccer, netball and handball. A player positioning installation could potentially be used for all of these sports. This paper reports the wireless RF signal propagation of a 2.4 GHz waist mounted beacon for an indoor sporting venue 'play area', which has been designed to international standards. A basketball court constructed of highly polished wood was chosen as the sample 'play area'. Propagation models are discussed and comparisons between predicted and measured results demonstrate the validity of the technique.
机译:人们正在考虑在团队运动中使用室内定位技术,在这种运动中跟踪和记录球员,以提供教练帮助。尽管全球定位系统(GPS)是用来估计运动员位置的事实上的标准,但是由于屋顶和墙壁信号的阻塞,它不适合用于准确的室内定位。已经提出了十几种技术,用于通过限制位置估计误差的改进方法对室内的静态和/或运动物体进行无线定位。对于那些依赖于射频(RF)信号传播的室内技术,传播统计信息可用于确定路径损耗和信号衰减。这种静态的室内传播知识对于无线室内定位系统的设计至关重要,并最终对位置估计的准确性至关重要。物体的阴影,多径,衰落,散射或衍射产生的信号路径传播损耗和变化会阻碍设计人员提供可靠和准确的定位系统的努力。然而,体育室内环境通常具有开放的地板区域,在该区域中,除了运动员自身之外,没有物体进行比赛。在精英体育水平上,这些室内游乐区是根据国际规格设计和建造的。因此,从这些通常建造的游乐区之一获得的静态无线RF信号传播知识适用于全球数百个其他场所。这些室内运动区中的许多用于各种运动,例如篮球,排球,室内板球,室内足球,无板篮球和手球。运动员定位装置可能会用于所有这些运动。本文报告了针对室内运动场馆“运动场”的2.4 GHz腰挂式信标的无线RF信号传播,其设计符合国际标准。一个由高抛光木材制成的篮球场被选为样本“运动场”。讨论了传播模型,比较了预测结果和测量结果,证明了该技术的有效性。

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