City-Scale Fingerprint Positioning Framework based on MDT Data

Junjun Si, Zejiang Chen, Bo Tu, Shuaifu Dai, Xiangqun Chen
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Abstract

Mobile positioning plays an essential role in smart city services. This paper proposes a fingerprint positioning framework based on massive Minimization of Drive Test (MDT) data to provide accurate and efficient city-scale positioning without additional equipment and measures. First, a multi-level fingerprint construction method is proposed using the Timing Advance (TA), Reference Signal Receiving Power (RSRP), and Reference Signal Receiving Quality (RSRQ) of the serving cell and neighboring cell. Then, an adaptive online fingerprint matching method is employed to extract and match online data fingerprints. Experiments show that the median positioning error is 29.97 meters with city-scale MDT data. It outperforms the reported accuracy of the state-of-the-art fingerprint positioning method.
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基于MDT数据的城市规模指纹定位框架
移动定位在智慧城市服务中起着至关重要的作用。本文提出了一种基于大规模最小化驾驶测试(MDT)数据的指纹定位框架,可以在不需要额外设备和措施的情况下提供准确高效的城市规模定位。首先,利用服务小区和相邻小区的时序推进(TA)、参考信号接收功率(RSRP)和参考信号接收质量(RSRQ),提出了一种多层指纹构建方法。然后,采用自适应在线指纹匹配方法对在线数据指纹进行提取和匹配。实验表明,在城市尺度MDT数据下,定位误差中值为29.97 m。它比报道的最先进的指纹定位方法的准确性要好。
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