首页> 外文期刊>Croatian Journal of Forest Engineering >Construction and Accuracy Analysis of a BDS/GPS-Integrated Positioning Algorithm for Forests
【24h】

Construction and Accuracy Analysis of a BDS/GPS-Integrated Positioning Algorithm for Forests

机译:森林BDS / GPS集成定位算法的构建与精度分析

获取原文
           

摘要

The objective of this study was to construct a BeiDou navigation satellite system (BDS)/global positioning system (GPS)-integrated positioning algorithm that meets the accuracy requirement of forest surveys and to analyze its accuracy to provide theoretical and technical support for accurate positioning and navigation in forests. The Quercus variabilis broad-leaved forest in Jiufeng National Forest Park and the Sabina Coniferous forest in Dongsheng Bajia forest farm were selected as the study area. A Sanding T-23 multi-frequency three-constellation receiver and a u-blox NEO-M8T multi-constellation receiving module were used for continuous observation under the forest canopy. Compared with T-23, the u-blox NEO-M8T is much lighter and more flexible in the forest. The BDS/GPS-integrated positioning algorithm for forests was constructed by temporally and spatially unifying the satellite systems and using a reasonable observed value weighting method. Additionally, the algorithm is also written into the RTKLIB software to calculate the three-dimensional (3D) coordinates of the forest observation point in the World Geodetic System 1984 (WGS-84) coordinate system. Finally, the results were compared with the positioning results obtained using GPS alone. The experimental results indicated that, compared with GPS positioning, there were 13–27 visible satellites available for the BDS/GPS-integrated positioning algorithm for forests, far more than the satellites available for the GPS positioning algorithm alone. The Position Dilution of Precision (PDOP) values for the BDS/GPS-integrated positioning ranged from 0.5 to 1.9, lower than those for GPS positioning. The signal noise ratio (SNR) of the BDS/GPS-integrated satellite signals and GPS satellite signals were both in the range of 10–50 dB-Hz. However, because there were more visible satellites for the BDS/GPS-integrated positioning, the signals from the BDS/GPS-integrated satellites were stronger and had a more stable SNR than those from the GPS satellites alone. The results obtained using the BDS/GPS-integrated positioning algorithm for forests had significantly higher theoretical and actual accuracies in the X, Y and Z directions than those obtained using the GPS positioning algorithm. This suggests that the BDS/GPS-integrated positioning algorithm can obtain more accurate positioning results for complex forest environments.
机译:本研究的目的是建造一个北欧导航卫星系统(BDS)/全球定位系统(GPS) - 集中定位算法,其符合森林调查的准确性要求,并分析其准确性,以提供准确定位和技术支持的理论和技术支持在森林中导航。九峰国家森林公园的栎栎阔叶森林和东升百佳林场的塞比娜针叶林作为研究区。打磨T-23多频三星座接收器和U-Blox Neo-M8T多星座接收模块用于森林冠层下的连续观察。与T-23相比,U-Blox Neo-M8T在森林中更轻,更灵活。通过在时间和空间统一卫星系统和使用合理的观察值加权方法来构建森林BDS / GPS集成定位算法。另外,该算法还写入RTKLIB软件,以计算世界大地测量系统1984(WGS-84)坐标系中的森林观测点的三维(3D)坐标。最后,将结果与单独使用GPS获得的定位结果进行比较。实验结果表明,与GPS定位相比,有13-27个可见卫星可用于森林BDS / GPS集成定位算法,远远超过仅用于GPS定位算法的卫星。 BDS / GPS集成定位的精度(PDOP)值的位置稀释范围为0.5至1.9,低于GPS定位。 BDS / GPS集成卫星信号和GPS卫星信号的信号噪声比(SNR)均在10-50dB-Hz的范围内。然而,由于BDS / GPS集成定位的更明显的卫星,来自BDS / GPS综合卫星的信号较强,并且具有比单独的GPS卫星的SNR更稳定。使用BDS / GPS集成定位算法获得的结果在X,Y和Z方向上具有比使用GPS定位算法获得的X,Y和Z方向上的理论和实际精度显着更高。这表明BDS / GPS集成定位算法可以获得更准确的复杂森林环境的定位结果。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号