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利用单频、双频和三频智能手机在森林冠层环境下评估静态自主 GNSS 定位精度。

Evaluation of Static Autonomous GNSS Positioning Accuracy Using Single-, Dual-, and Tri-Frequency Smartphones in Forest Canopy Environments.

机构信息

Chair of Forest Operations, University of Freiburg, Werthmannstr. 6, 79085 Freiburg, Germany.

出版信息

Sensors (Basel). 2022 Feb 8;22(3):1289. doi: 10.3390/s22031289.

Abstract

Determining the current position in a forest is essential for many applications and is often carried out using smartphones. Modern smartphones now support various GNSS constellations and multi-frequency analyses, which are expected to provide more accurate positioning. This study compares the static autonomous GNSS positioning accuracy under forest conditions of four multi-frequency multi-constellation smartphones as well as six single-frequency smartphones and a geodetic receiver. Measurements were carried out at 15 different study sites under forest canopies, with 24 measurements lasting approximately 10 min each taken for the 11 GNSS receivers. The results indicate that, on average, multi-frequency smartphones can achieve a higher positioning accuracy. However, the accuracy varies greatly between smartphones, even between identical or quasi-identical tested smartphones. Therefore, no accuracy should be generalised depending on the number of usable frequencies or constellations, but each smartphone should be considered separately. The dual-frequency Xiaomi Mi 10 clearly stands out compared with the other smartphone with a DRMS of 4.56 m and has a 34% lower absolute error than the best single-frequency phone.

摘要

确定森林中的当前位置对于许多应用至关重要,通常使用智能手机来实现。现代智能手机现在支持各种 GNSS 星座和多频率分析,预计这些技术将提供更准确的定位。本研究比较了四种多频率多星座智能手机以及六款单频率智能手机和一个大地测量接收器在森林环境下的静态自主 GNSS 定位精度。在 15 个不同的研究地点的树冠下进行了测量,对于 11 个 GNSS 接收器,每个接收器进行了 24 次大约持续 10 分钟的测量。结果表明,平均而言,多频率智能手机可以实现更高的定位精度。然而,智能手机之间的精度差异很大,即使是相同或几乎相同的测试智能手机之间也是如此。因此,不应该根据可用频率或星座的数量来概括精度,而应该单独考虑每个智能手机。与其他智能手机相比,双频小米 Mi 10 明显更加出色,其 DRMS 为 4.56 米,绝对误差比最好的单频手机低 34%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7530/8838512/35e45941df97/sensors-22-01289-g001.jpg

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