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Precise Attitude and Position Determination of the Trailer using a Single Camera System for Agricultural Applications

机译:使用单一相机系统进行农业应用的精确姿态和位置确定拖车

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The emerging use of GNSS (satellite navigation) is helping farmers to achieve high productivity without making compromise with the quality. Further development of the farming system could improve the contemporary agriculture. It is still possible by improving the precise placement of the seeds, ploughing, and harvesting down to the centimeter level accuracy. The present precise agriculture navigation systems are mostly limited to precise navigation of the main components, like tractors and combine harvesters. In the state of art technique, DGPS (Differential GPS) or RTK (real-time-kinematics) systems and inertial sensors are used to determine the precise relative position and attitude of the main driver. Precise seeding is more complex due to the complexity of the multicomponent machines. Assuring the positioning accuracy of any attached component to a tractor machine would require installation of an additional DGPS or RTK unit, which because of the high cost factor, is not the optimum solution. The approach presented in this paper demonstrates the use of a camera system to measure the precise relative position and, additionally, attitude of the trailer with respect to the tractor. The researched navigation system is suited for a trailer pulled by a tractor. In our test setup, the role of a tractor is perceived by a Volkswagen T5 van and the trailer is demonstrated by commercial cargo trailer. The paper also discusses the various approaches investigated for the development of the algorithm. The reader will have an insight into the challenges related to the attitude determination (van-trailer scenario) with in-depth analysis of the algorithm. The testing environment including testing procedure, results and comparison between attitude measurements using proposed algorithm and multiple DGPS/RTK and geodetic instruments will be discussed in details. The paper will conclude the future possibilities and the extension of the work to make it more precise and reliable to be ready for commercialization.
机译:GNSS(卫星导航)的新兴使用是帮助农民实现高生产率而不与质量妥协。进一步发展农业系统可以改善当代农业。通过改善种子的精确放置,耕作和收获到厘米的精度,仍然可以。本准确的农业导航系统主要限于主要部件的精确导航,如拖拉机,并结合收割机。在现有技术的状态下,DGPS(差分GPS)或RTK(实时运动学)系统和惯性传感器用于确定主驱动器的精确相对位置和姿态。由于多组分机器的复杂性,精确的播种更复杂。确保任何附加部件到拖拉机机器的定位精度将需要安装额外的DGP或RTK单元,这是由于成本因素高,而不是最佳解决方案。本文所呈现的方法表明使用相机系统测量精确的相对位置,另外,拖车相对于拖拉机的姿态​​。研究的导航系统适用于由拖拉机拉动的拖车。在我们的测试设置中,拖拉机的作用由大众汽车T5面包车感知,拖车是由商业货物拖车演示的。本文还讨论了调查用于开发算法的各种方法。读者能够深入了解与算法深入分析的态度确定(范簿情景)有关的挑战。使用所提出的算法和多个DGPS / RTK和大理石仪器将讨论包括测试程序,结果和比较的测试环境,并将详细讨论。本文将结束未来的可能性和延伸工作,使其更加准确,可靠地为商业化准备。

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