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Multipath Mitigation under Forest Canopies: A Choke Ring Antenna Solution

机译:林冠下的多径缓解:扼流圈天线解决方案

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摘要

Evaluating the accuracy of global positioning system (GPS) receivers in applications under forest canopies has become an area of increasing interest. Reducing the error experienced by multipath present under forested conditions has also been a significant concern. We present results of assessing a choke ring antenna solution to the reduction of multipath effects under forest canopies. This system serves to increase the accuracy of positional fixes as well as provide a baseline for assessing multipath effects. We assessed these by comparing results to data collected by separate antenna configurations (yet same receiver) on varying slope positions and canopy conditions. Using a choke ring antenna, we found horizontal position accuracy of differentially corrected data to range from 0.32 to 0.88 m root mean square error reported at 95% confidence across a topographic grathent during leaf-on conditions. Under leaf-off conditions the horizontal position accuracy ranged from 0.35 to 0.69 m. Similar differentially corrected data collected using a standard beacon antenna showed that horizontal position accuracy ranged from 4.9 to 6.1 m during leaf-on conditions and from 3.3 to 5.8 m during leaf-off conditions. When sampled, the data from the two systems were collected within 1 minute of each other; thus, we assume a very similar plane and satellite arrangement. Coupled with topographic factors, a minimum multipath error effect could be determined for this receiver for given site conditions by taking the difference between the two levels of error. [PUBLICATION ABSTRACT]
机译:在林冠层下的应用中评估全球定位系统(GPS)接收器的准确性已成为人们越来越感兴趣的领域。减少在森林条件下存在的多路径所经历的错误也是一个重要的问题。我们提出评估扼流圈天线解决方案以减少森林冠层下多径效应的结果。该系统可提高定位精度,并为评估多径效应提供基准。我们通过将结果与在不同的坡度位置和机盖条件下由单独的天线配置(但仍为同一接收机)收集的数据进行比较来评估这些数据。使用扼流圈天线,我们发现,在叶上条件下,地形上的草丛中差分校正数据的水平位置精度范围为0.32至0.88 m,均方根误差为95%置信度。在离开条件下,水平位置精度范围为0.35至0.69 m。使用标准信标天线收集的类似的差分校正数据显示,水平位置准确度在叶片上情况下为4.9至6.1 m,在叶片上情况下为3.3至5.8 m。采样后,两个系统的数据在彼此之间的1分钟之内被收集;因此,我们假设飞机和卫星的布置非常相似。结合地形因素,可以通过考虑两个误差水平之间的差异,确定给定站点条件下该接收器的最小多径误差影响。 [出版物摘要]

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  • 来源
    《Forest Science》 |2009年第2期|p.109-116|共8页
  • 作者单位

    Scott D. Danskin (corresponding author), Warnell School of Forestry and Natural Resources, University of Georgia, Athens, GA 30602, South Carolina Forestry Commission, 6740 Headquarters Road, Wedgefield, SC 29168 - Phone: (803) 494-8196, sdanskin@forestry.state.sc.us (current address). Pete Bettinger, Warnell School of Forestry and Natural Resources, University of Georgia, Athens, GA - Phone: (706) 542-1 187, pbettinger@warnell.uga.edu. Thomas R. Jordan, Department of Geography, University of Georgia, Athens, GA - Phone: (706) 542-2372, tombob@uga.edu.Acknowledgments: We expressly thank Doug Luepke and John Bragg and the US Forest Service for assisting in the establishment of the southern hardwood portion of the GPS test site at Whitehall Forest in Athens, Georgia. We also thank Tom Morris of Topcon systems for providing us with expert advice and the choke ring technology necessary for data collection. This study would not have been possible without their contributions.,;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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  • 入库时间 2022-08-17 13:46:00

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