Warnell School of Forestry and Natural Resources, University of Georgia, Athens, Georgia, United States of America.
PLoS One. 2020 Apr 17;15(4):e0231532. doi: 10.1371/journal.pone.0231532. eCollection 2020.
Due to developments in global navigation satellite systems (GNSS) and the miniaturization of their components, the usage of Global Positioning System (GPS) is no longer restricted to professional applications, but has become available in various consumer type devices, such as wristwatches. These commercial devices, however, were primarily designed for tracking activities in predominately urban settings and their accuracy has not been tested in forested areas. In this study, we present an assessment of the positional accuracy of a GPS watch (Ambit Peak 3, Suunto, Finland) under different forest cover types, seasons and meteorological conditions within the Whitehall Forest GPS Test Site located in Athens, Georgia, USA. As a standard of comparison, the performance of the GPS watch measurements was juxtaposed to that of a mapping-grade receiver (Juno T41, Trimble Inc., USA). In this study, we analyzed the differences between the determined and control positions using root-mean-square-error (RMSE), along with the distribution of observed positions through the standard deviational ellipse. The results suggest that the seasonal variations contributed to a statistically significant impact on the RMSE values for the GPS watch. However, there were no statistically significant differences in horizontal position accuracy by forest cover-type when using the GPS watch. Furthermore, no significant differences were found in horizontal position accuracy during the leaf-off period between the RMSE values for the GPS watch and those of the mapping-grade receiver. Lastly, the positional accuracies for both types of receivers were found to be weakly, but significantly correlated with fluctuations in air temperature and absolute humidity.
由于全球导航卫星系统 (GNSS) 的发展和其组件的小型化,全球定位系统 (GPS) 的使用不再局限于专业应用,而是在各种消费类设备中得到了应用,例如手表。然而,这些商业设备主要是为跟踪城市环境中的活动而设计的,其精度尚未在森林地区进行测试。在本研究中,我们评估了 GPS 手表(Ambit Peak 3,Suunto,芬兰)在不同森林覆盖类型、季节和气象条件下在美国佐治亚州雅典的 Whitehall 森林 GPS 测试场中的位置精度。作为比较标准,将 GPS 手表测量的性能与制图级接收器(Juno T41,Trimble Inc.,美国)的性能进行了对比。在本研究中,我们使用均方根误差 (RMSE) 分析了确定位置和控制位置之间的差异,并通过标准偏差椭圆分布观察位置。结果表明,季节性变化对 GPS 手表的 RMSE 值有统计学意义的影响。然而,在使用 GPS 手表时,森林覆盖类型对水平位置精度没有统计学意义的差异。此外,在落叶期,GPS 手表和制图级接收器的 RMSE 值之间的水平位置精度没有显著差异。最后,两种类型接收器的位置精度都与空气温度和绝对湿度的波动呈弱相关,但具有统计学意义。