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Is FM a RF-Based Positioning Solution in a Metropolitan-Scale Environment? A Probabilistic Approach With Radio Measurements Analysis

机译:FM是在大城市环境中基于RF的定位解决方案吗?无线电测量分析的概率方法

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Recent mobile devices have already contained a low-cost FM receiving function due to the continuing improvements in the device manufacturing. This paper shows that positioning based on FM signal is an alternative radio option while meeting the FCC requirement. We present a probabilistic location system using a wider-covered and longer-lived FM infrastructure. The performance is evaluated in two different metropolitan-scale environments including National Taiwan University (NTU) and Wen-Shan rural area. Both results show that the FM based location system not only satisfies the FCC requirement but also provides a comparable or even better performance to GSM based solution. Moreover, we completely analyze the realistic radio measurements of FM and GSM from four perspectives including temporal variation, spatial separation, measurement correlation and spectrum allocation. Most FM measurements are observed to provide a lower temporal variation but a weaker spatial separation than GSM. Fortunately, we discover that the lack of spatial separation can be compensated by adding additional sensed channels. This property is useful especially for a rural area where the available GSM base stations are limited and distant. Furthermore, we point out that the spatial separation of GSM signal decreases when the signal level is weaker than $-$ 90 dBm. At such a condition, FM reports a better accuracy than GSM even with the fewer channels.
机译:由于设备制造的不断改进,最近的移动设备已经包含了低成本的FM接收功能。本文表明,在满足FCC要求的同时,基于FM信号的定位是另一种无线电选择。我们提出了一种使用范围更广,寿命更长的FM基础设施的概率定位系统。在包括国立台湾大学(NTU)和文山农村地区在内的两个不同的大城市环境中对性能进行了评估。两项结果均表明,基于FM的定位系统不仅满足FCC要求,而且还提供了与基于GSM的解决方案相当甚至更好的性能。此外,我们从时间变化,空间间隔,测量相关性和频谱分配四个角度全面分析了FM和GSM的实际无线电测量。与GSM相比,观察到的大多数FM测量提供的时间变化较小,但空间间隔较弱。幸运的是,我们发现可以通过添加其他感测通道来弥补空间分隔的不足。此属性特别适用于可用GSM基站有限且距离较远的农村地区。此外,我们指出,当信号电平弱于$-$ 90 dBm时,GSM信号的空间间隔会减小。在这种情况下,即使频道较少,FM报告的准确性也比GSM好。

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