首页> 外文会议>Proceedings of joint international agricultural conference (JIAC 2009) >FIELD ASSESSMENT OF A VARIABLE-RATE AERIAL APPLICATION SYSTEM
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FIELD ASSESSMENT OF A VARIABLE-RATE AERIAL APPLICATION SYSTEM

机译:可变价格航空申请系统的现场评估

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Several experiments were conducted to evaluate the system response of a variable-rate aerial application controller to changing flow rates. The research is collaboration between the USDA, ARS, APTRU and Houma Avionics, USA, manufacturer of a widely used flow controller designed for agricultural aircraft. The variable-rate application system consists of Differential Global Positioning System (DGPS)-based guidance, AutoCal II automatic flow controller, and hydraulically controlled pump. The AutoCal II was evaluated for its ability to track desired flow rates set by the pilot. The system was then evaluated over several field trials to quantify its response to rapidly changing flow requirements and to determine the effect of improvements made in the control algorithms on response characteristics. System responses were analyzed while operating the AutoCal II in automatic mode over a pre-set field prescription containing four management zones (28, 47, 56, and 37 L/ha each 81 m long). To evaluate the effect of control algorithm improvements, areas under the flow rate-time curves were integrated and percentage differences in areas between those response curves and target flow rate curves were determined. Results for south-north runs indicated reduction of average error from 6.9% before control algorithm modification to 1.8% after algorithm modification. North-south runs indicated response lags after control algorithm modification and the system's inability to meet flow demands at the highest flow rates. This was due to the system calling for more spray than the booms were able to deliver at high ground speeds. These factors biased post-modification results unfavorably when compared with results obtained before the control algorithms were modified. The experiments served to illustrate an example of how recursive refinement of the control algorithms in collaboration with the control system manufacturer could improve system response characteristics. System evaluation techniques described herein should also be applicable to aircraft that use propeller-driven spray pumps as well as hydraulically controlled spray pumps.
机译:进行了一些实验,以评估可变速率的空中应用控制器对变化的流量的系统响应。这项研究是由USDA,ARS,APTRU和美国Houma Avionics之间的合作,后者是为农业飞机设计的广泛使用的流量控制器的制造商。可变速率应用系统包括基于差分全球定位系统(DGPS)的指南,AutoCal II自动流量控制器和液压控制泵。评估了AutoCal II跟踪飞行员设定的所需流速的能力。然后,对该系统进行了几次现场试验评估,以量化其对快速变化的流量要求的响应,并确定控制算法中改进措施对响应特性的影响。在对包含四个管理区域(每个81 m长的28、47、56和37 L / ha)的预设现场处方以自动模式操作AutoCal II时,分析了系统响应。为了评估控制算法改进的效果,对流量-时间曲线下的区域进行了积分,并确定了这些响应曲线和目标流量曲线之间的面积百分比差异。南北运行的结果表明平均误差从控制算法修改前的6.9%降低到算法修改后的1.8%。南北运行表明控制算法修改后响应滞后,并且系统无法满足最高流量下的流量需求。这是由于系统要求的喷水量要比动臂在高地面速度下能够提供的更多。与修改控制算法之前获得的结果相比,这些因素不利地影响了修改后的结果。实验用来说明一个示例,说明与控制系统制造商合作对控制算法进行递归优化的方法可以改善系统响应特性。本文所述的系统评估技术也应适用于使用螺旋桨驱动喷水泵以及液压控制喷水泵的飞机。

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