首页> 外文会议>IFAC Conference on Sensing, Control and Automation Technologies for Agriculture >Real-time Monitoring System of Agricultural Machinery Operation Information Based on ARM11 and GNSS
【24h】

Real-time Monitoring System of Agricultural Machinery Operation Information Based on ARM11 and GNSS

机译:基于ARM11和GNSS的农业机械运行信息实时监测系统

获取原文

摘要

In order to measure the information of agricultural machinery working condition in real time, a monitoring system based on ARM11 and GNSS (Global Navigation Satellite System) was developed. The system includes three parts, including data receiving module, data processing module and UI (User Interface) screen display module. Furthermore, it not only can display and store the information such as the position coordinates, the boundary of operating area and the real-time working path, but also can calculate the area of the total field, the completed area, the operating speed and so on. This system was developed in Android environment, and Android's Canvas class was used to draw the total area of farmland, the real work area and the vehicle turning area with different colors. According to the color value of image pixels, detail information about the working vehicle can be calculated, such as the total area of farmland, operating area, skip area, overlap area and turning area out of the farmland. And then, the working accuracy can be analyzed further. Field experiments and analysis results shown that, while using Si Nan M300 GNSS receiver, the maximum measurement error of the field total area is 1.9% and the average error is 0.96% for rectangles and polygons farmland, the maximum measurement error is 3.6% and the average error is 1.88% for irregularly shaped field. The largest area measurement error is 3.3% and the average error is 1.1% at the real-time operating conditions. Therefore, the system could improve the efficiency of agricultural operations, facilitate the work to assess the quality and reduce the resource consumption.
机译:为了实时测量农业机械工作条件的信息,开发了一种基于ARM11和GNSS(全球导航卫星系统)的监控系统。该系统包括三个部分,包括数据接收模块,数据处理模块和UI(用户界面)屏幕显示模块。此外,它不仅可以显示和存储诸如位置坐标,操作区域的边界和实时工作路径的信息,而且还可以计算总场的面积,完成的区域,操作速度等在。该系统是在Android环境中开发的,Android的帆布类被用来绘制农田总面积,真正的工作区和车辆转向区域不同的颜色。根据图像像素的颜色值,可以计算有关工作车辆的详细信息,例如农田,操作区域,跳过区域,重叠区域和农田的转向区域。然后,可以进一步分析工作精度。现场实验和分析结果表明,在使用Si NaN M300 GNSS接收器时,场总面积的最大测量误差为1.9%,矩形和多边形农田的平均误差为0.96%,最大测量误差为3.6%对于不规则形状的字段,平均误差为1.88%。最大区域测量误差为3.3%,实时操作条件下平均误差为1.1%。因此,该系统可以提高农业运营的效率,促进工作评估质量并降低资源消耗。

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