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A weighing system for grab loaders for sugar cane yield mapping

机译:抓斗装载机的称重系统,用于甘蔗产量映射

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There are no commercial yield monitors for sugar cane despite the economic importance of the crop for sugar and alcohol production. As sugar cane is not mechanically harvested in some regions, special yield monitors need to be developed consideringthe harvest and load methods used. Grab loaders are essential when the crop is manually harvested. If the weight of the crop being loaded is monitored, yield maps can be produced. This paper presents the development of a weight measurement system for grab loaders. It is based on a mechanical device that contains a load cell adapted to the machine. As it is necessary to perform this measurement dynamically, the effect of movement on the measured value must be corrected. Thus, a mathematical model was developed to assess the effect of each parameter on the dynamics of the load and on the measured weight. In order to collect data to evaluate the model, an experimental measurement system was assembled and used in field tests. The analysis of the results showed that the model was able to describe the machine behaviour within the limits considered. Mean errors of +-2 percent or less were obtained for each load if the sampling period was adequately chosen. The frequency response of the angle sensors used andthe low sampling rate of the subsystems used restricted the ability to define a single period for error minimisation. These two points will be addressed in the development of dedicated hardware, to allow the use of filtering and processing techniques inreal time to obtain measurements with consistently low errors.
机译:尽管该作物对制糖和制酒具有重要的经济意义,但尚无商业性的甘蔗单产监测仪。由于某些地区没有机械收割甘蔗,因此需要考虑收割和装载方法,开发特殊的产量监测仪。手动收获农作物时,抓斗装载机必不可少。如果监视正在装载的农作物的重量,则可以绘制产量图。本文介绍了用于抓斗装载机的重量测量系统的开发。它基于一个机械设备,该机械设备包含一个适用于机器的称重传感器。由于必须动态执行此测量,因此必须校正运动对测量值的影响。因此,开发了一个数学模型来评估每个参数对负载动力学和所测重量的影响。为了收集数据以评估模型,组装了一个实验测量系统,并将其用于现场测试。结果分析表明,该模型能够描述所考虑范围内的机器行为。如果适当选择采样周期,则每个负载的平均误差为+ -2%或更小。所使用的角度传感器的频率响应和所使用的子系统的低采样率限制了定义单个周期以最小化误差的能力。这两点将在专用硬件的开发中得到解决,以允许实时使用滤波和处理技术来获得误差始终较低的测量结果。

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