联合收割机性能遥测数据评价

A. Juostas, E. Jotautienė, Gražvydas Juodišius
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摘要

目前,基于人工智能的自动转向、遥测、工艺流程自动化等智能系统在精准农业中得到了广泛应用。农业面临的最大挑战是如何优化利用农业机械和管理工作人员的工作。通过遥测系统(也称为远程监控系统),可以简化和促进农场的整个管理。对该系统获得的数据的分析为优化业务流程提供了机会。研究表明,使用自动导航系统可以选择适当的驾驶策略,避免耕作重叠或未开垦的地区。根据农业专业人员的经验,遇到了在遥测系统中记录和存储数据的处理问题。主要问题是如何正确地解释、分析并在未来使用从产量、施肥、喷洒、土壤农化特性图中获得的信息来做出最终决策。本研究选取了Claas Lexion联合收割机遥测系统中采集并存储的收获数据。这项工作的目的是分析冬小麦、春大麦、油菜籽、燕麦、玉米和豆类作物的收获数据,并展示联合收割机提高效率的可能性。采用数理统计的方法对收集到的联合收割机工作时间数据进行了结构分析。遥测系统显示,卸粮平均耗时2分钟。根据这些数据,在联合收割机运行期间,平均产量为7吨公顷/公顷,卸粮2分钟,可使联合收割机性能提高15%。同时,卸粮时行驶2 min,收获面积可增加3.4%。
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Evaluation of combine harvester performance telemetry data
At present, such smart systems like automatic steering, telemetry and automation of technological processes based on artificial intelligence are widely used in precision agriculture. The biggest challenge for agriculture is how to make optimal use of agricultural machinery and manage the work of the staff. The entire management of a farm can be simplified and facilitated by a telemetry system, otherwise known as a remote monitoring system, for a machine or implement. The analysis of the data obtained by this system provides an opportunity to optimize the business processes. Studies have shown that the use of automatic navigation systems allows the choice of appropriate driving strategies and the avoidance of tillage overlaps or uncultivated areas. Based on the experience of agricultural professionals, the processing of data recorded and stored in the telemetry system is encountered. The main question is how to correctly interpret, analyse and in the future use the information obtained from the yield, fertilization, spraying, soil agrochemical properties maps for making final decisions. For the study, the harvest data collected and stored in the telemetry system of the Claas Lexion combine were selected. The aim of the work is to analyse the winter wheat, spring barley, canola, oats, corn, and beans crop harvest data and show the combine harvester efficiency increasement possibilities. The structural analysis of the collected working time data of the combine harvester was performed by the methods of mathematical statistics. As the telemetry system shows, the grain unloading takes in average 2 minutes. According to these data it could be said that a grain tank unloading during combine run for a 2 min, with average yield of 7 t ha-1 could increase the combine performance by 15%. At the same time, the 2 min drive during grain tank unloading would increase the harvested area by 3.4%.
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