GSM蜂窝网络中基于功率测量的相对定位

F. Lo Piccolo, N. B. Melazzi, D. Giustiniano
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引用次数: 5

摘要

本文旨在提出一种新的GSM蜂窝网络相对定位策略。我们特别考虑一个GSM网络场景,其中只有有限数量的移动电话在已知位置。这就是手机的情况,它配备了卫星导航接收器,知道自己的绝对位置。这种移动电话将被称为定位移动电话。没有安装卫星导航接收器或不在卫星导航接收器覆盖范围内的流动电话,不知道自己的绝对位置,因此称为未定位的流动电话。在这两种情况下,没有定位的手机都不知道自己的绝对位置。相对定位则意味着通过利用相邻定位的移动电话的存在和所有GSM移动电话的通信能力来定位未定位的移动电话。这个想法源于对现有的基于gps的GSM网络定位方法的观察,该方法只允许定位在至少四颗卫星视线范围内的具有gps功能的手机。相反,相对定位将允许定位未安装gps的移动电话和在覆盖范围之外的启用gps的移动电话。与基于时序测量的定位方法不同,该定位方案基于功率电平测量,不需要改变网络基础设施。在本文中,我们识别和分析了主要的相关问题,并提出了一个可能的解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Power-measurement-based relative localization in GSM cellular networks
This position paper aims at proposing a new relative localization strategy for GSM cellular networks. We in particular consider a GSM network scenario where only a limited number of mobile phones is at known positions. This is the case of mobile phones which are equipped with satellite navigation receivers and know their absolute position. Such mobile phones will be referred to as located mobile phones. Mobile phones which either are not equipped with satellite navigation receivers or are out of coverage of their satellite navigation receivers do not know their absolute position and they will be referred to as un-located mobile phones. In both cases un-located mobile phones do not know their absolute position. Relative localization means then to locate the un-located mobile phones by exploiting the presence of neighbor located mobile phones and the communication capabilities of all GSM mobile phones. The idea arises from the observation that existing GPS-based positioning methods for GSM networks allow positioning only the GPS-enabled mobile phones that are in line of sight with at least four satellites. On the contrary, relative localization would allow locating both GPS-unequipped mobile phones and GPS-enabled mobile phones which are out of coverage. The proposed localization scheme is based on power level measurements, and it does not require network infrastructure changes, differently from positioning methods based on timing measurements. In this paper we identify and analyze the main related issues, and we sketch a possible solution.
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