首页> 外文期刊>International Journal of Forest Engineering >Coupling a differential global navigation satellite system to a cut-to-length harvester operating system enables precise positioning of harvested trees
【24h】

Coupling a differential global navigation satellite system to a cut-to-length harvester operating system enables precise positioning of harvested trees

机译:将差分全球导航卫星系统耦合到截止到长度的收割机操作系统,可以精确定位收获的树木

获取原文
       

摘要

Cut-to-length harvesters collect detailed information on the dimensions and characteristics of individual harvested trees. When equipped with global navigation satellite system (GNSS) receivers and motion sensors, the obtained measurements can be linked to locations of single harvested trees, benefitting a range of forest inventory applications. We propose a way of georeferencing harvested trees using a Komatsu 931XC harvester, which measures and records the machine's bearing, crane angle and crane length for each harvested tree. We replaced the harvester’s standard GNSS receiver with a dual-antenna differential GNSS receiver. From the coordinates obtained, rotations calculated from the GNSS receiver and data on crane length, we determined the location of 285 trees harvested in eight final fellings in Norway. We compared the obtained locations to control measurements taken on the corresponding stumps directly after harvest using a differential GNSS receiver. The mean distance between planimetric coordinates of trees measured by the harvester and corresponding control measurements was 0.88 m with a standard deviation of 0.38 m. By correcting the crane lengths for systematic deviations between harvester and control locations, the mean distance was reduced to 0.79 m. This study shows that measurements of single harvested trees can be georeferenced with sub-meter accuracy, by mounting a differential GNSS receiver on a harvester and without installing additional sensors. The results also suggest that the positional accuracy can be further improved by measuring and recording the length of the telescopic boom, and that with minor adjustments, the system could be fully automated.
机译:切割到长度的收割机收集有关个人收获树木的尺寸和特征的详细信息。当配备全球导航卫星系统(GNSS)接收器和运动传感器时,所获得的测量可以与单个收获的树木的位置相关联,这些测量值受益于一系列森林库存应用。我们提出了一种使用小松931xc收割机的地理摄入树木的方法,这些树木是针对每个收获的树的衡量和记录机器的轴承,起重机角度和起重机长度。我们用双天线差分GNSS接收器取代了收割机的标准GNSS接收器。从获得的坐标,从GNSS接收器计算的旋转和起重机长度上的数据,我们确定了在挪威的八个最终砍伐中收获的285棵树的位置。我们将所获得的位置与使用差分GNSS接收器进行收获后直接控制相应的树桩上的测量。通过收割机测量的树木的平面坐标与相应的控制测量的平均距离为0.88μm,标准偏差为0.38μm。通过校正收割机和控制位置之间的系统偏差的起重机长度,平均距离降至0.79米。本研究表明,通过在收割机上安装差分GNSS接收器并且不安装额外的传感器,通过将差分GNSS接收器安装差分GNSS接收器,可以通过估计单级精度来理解单个收获的树木的测量。结果还表明,通过测量和记录伸缩臂的长度,并且随着微小调整,系统可以完全自动化,可以进一步提高位置精度。

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