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首页> 外文期刊>Western Journal of Applied Forestry >Horizontal measurement performance of five mapping-grade global positioning system receiver configurations in several forested settings
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Horizontal measurement performance of five mapping-grade global positioning system receiver configurations in several forested settings

机译:在多个森林环境中五种地图级全球定位系统接收器配置的水平测量性能

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摘要

We examined the horizontal measurement performance of five mapping-grade GPS receiver configurations operating simultaneously at three measurement test sites established in open sky, young forest, and closed canopy conditions. Two of the GPS receivers had external antennas, and two receivers were configured to collect data with real-time differential corrections through the Wide Area Augmentation System (WAAS). The GPS receivers collected data using 1-, 30-, and 60-point recording intervals to test the influence of the number of point recordings on position determination. We also postprocessed all data to examine the influence of differential corrections. We found statistically significant differences in measurement accuracy between GPS receiver configurations that had an external antenna and receivers that did not. The top performer for unprocessed data collected measurements with real-time differential corrections and had average measurement errors of 0.4, 0.8, and 2.2 m, in open sky, young forest, and closed canopy conditions, respectively. The top performer for postprocessed data had average measurement errors of 0.2, 0.1, and 1.2 m, in open sky, young forest, and closed canopy conditions, respectively. The influence of number of points on measurement accuracy was observed between the 1- and 30-point intervals, with no statistically significant differences between the 30- and 60-point intervals. No statistically significant,difference resulted in WAAS measurements that were postprocessed. The measurement accuracies we report are acceptable for many natural resource measurement applications. These findings encourage the use of external antennas when using GPS receivers under forest canopy. In addition, point recording intervals of 30 appear to be efficient for accurate measurements with mapping-grade GPS receivers.
机译:我们研究了在开阔的天空,幼小的森林和封闭的树冠条件下建立的三个测量测试站点上同时运行的五个映射级GPS接收机配置的水平测量性能。其中两个GPS接收器带有外部天线,两个接收器配置为通过广域增强系统(WAAS)进行实时差分校正,以收集数据。 GPS接收机使用1点,30点和60点记录间隔收集数据,以测试点记录次数对位置确定的影响。我们还对所有数据进行了后处理,以检查差异校正的影响。我们发现具有外部天线的GPS接收器配置与没有外部天线的GPS接收器配置之间的测量精度在统计上有显着差异。最高性能的未处理数据在实时天空校正下收集了实时差分校正的测量值,平均测量误差分别为0.4、0.8和2.2 m。后处理数据的最佳执行者在开阔天空,幼林和封闭冠层条件下的平均测量误差分别为0.2、0.1和1.2 m。在1点和30点间隔之间观察到点数对测量精度的影响,在30点和60点间隔之间没有统计学上的显着差异。没有统计学意义,差异导致后处理的WAAS测量。我们报告的测量精度可用于许多自然资源测量应用。这些发现鼓励在林冠层下使用GPS接收器时使用外部天线。此外,点记录间隔为30似乎对于使用地图级GPS接收机进行精确测量是有效的。

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