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Evaluation of GPS positioning accuracy while walking in forested areas.

机译:在森林区域行走时对GPS定位精度的评估。

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摘要

In this study, we measured the positioning accuracy of the global positioning system (GPS) while walking in forested areas and analysed the GPS data to find factors that affect the positioning accuracy. In the field tests, we repeated GPS measurements with different types of GPS receivers, types of forests and modes of GPS positioning. The GPS data were analysed using ANOVA. As a result, the type of GPS receivers, type of forests and modes of GPS positioning were found to be a significant factor (p<0.001) to determine positioning accuracy while any interactions between these factors were not. The result also showed that the GPS receiver with multipath rejection technology produced higher positioning accuracy than without it. Therefore, multipath errors, which are caused by the reflection of GPS signals due to nearby stems, can be a critical cause to adversely affect GPS positioning accuracy. It was also suggested that GPS positioning accuracy while walking in forested areas was affected not by basal area but by stand density. That was because temporal signal blocking occurred more often with increasing stand density while walking forested areas. As a result of multiple regression analysis, the observed position dilution of precision was not a significant factor (p=0.590) to determine positioning accuracy.
机译:在这项研究中,我们测量了全球定位系统(GPS)的定位精度,同时在森林区域行走,分析了GPS数据,以找到影响定位精度的因素。在现场测试中,我们用不同类型的GPS接收器,森林类型和GPS定位模式重复GPS测量。使用ANOVA分析GPS数据。结果,发现GPS接收器的类型,森林类型和GPS定位模式是一个重要因素(P <0.001),以确定定位精度,而这些因素之间的任何相互作用不是。结果还表明,具有多径抑制技术的GPS接收器产生较高的定位精度,而不是没有它。因此,由附近茎引起的GPS信号反射引起的多径误差可能是对GPS定位精度产生不利影响的关键原因。还建议在森林区域行走的GPS定位精度不受基础区域而受到基础,而是通过立式密度影响。这是因为在步行森林区域时,由于延长的稳定密度而发生时间信号阻塞。由于多元回归分析,观察到的精度稀释不是一个重要的因素(p = 0.590),以确定定位精度。

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