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ASSESSMENT OF SUGARCANE YIELD MONITORING TECHNOLOGY FOR PRECISION AGRICULTURE

机译:蔗糖产量监测技术在精准农业中的评价

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Within the Australian Sugar industry a number of attempts have been made to monitor yield variation across a block. These have ranged from the early yield monitoring systems based on discrete mass measurement, to the current focus of predicting yield via surrogate measurements based on chopper pressure, feed train roller displacement and elevator power. This paper describes an independent evaluation of commercially available mass flow sensors that was conducted to assess current performance of yield monitoring options while identifying opportunities for developing improved cane yield monitoring systems. Three yield monitoring systems which were commercially available in 2008 (AgGuide, TechAgro and MTData) were fitted to a BSES-owned CH2500 Cameco harvester. Trials were conducted during the 2008 and 2009 seasons in the Ingham district of North Queensland. Each yield monitoring system was assessed simultaneously to eliminate the influence of machine setup and site characteristics that would be encountered through independently assessing each unit. During the trial, the harvester was operated according to Harvesting Best Practice (HBP). In addition to yield monitoring, sugarcane yield was also measured using a weigh bin in order to determine the absolute accuracy and resolution of the respective yield monitoring systems. Weigh bin and mill weight data were used to assess the yield monitors at a range of scales including; 50 m of row, full rows, multiple rows (i.e. plot of 9 rows) and the entire field. These assessments were made with the harvester operating at both high and low pour rates. Only the TechAgro unit was found to provide results that were sufficiently accurate to be considered as a potentially viable sugarcane yield monitor. Performance of this unit was, however substantially reduced at high pour rates and this sensor was unable to account for changing pour rates. Recommendations for further refining the devices and for additional work are included.
机译:在澳大利亚制糖业中,已经进行了许多尝试来监控整个区块的产量变化。从早期基于离散质量测量的产量监控系统到当前通过基于斩波器压力,进给轮辊位移和升降机功率的替代测量来预测产量的关注点,范围很广。本文介绍了对市售质量流量传感器的独立评估,该评估旨在评估产量监测选项的当前性能,同时确定开发改进的甘蔗产量监测系统的机会。 BSES拥有的CH2500 Cameco收割机上安装了三套产量监测系统(AgGuide,TechAgro和MTData),该系统已于2008年商用。在北昆士兰州的英厄姆地区于2008年和2009年进行了试验。同时评估每个产量监控系统,以消除通过独立评估每个单元而可能遇到的机器设置和现场特征的影响。在试验过程中,收割机根据“收割最佳实践”(HBP)进行操作。除了产量监测之外,还使用称重箱测量了甘蔗的产量,以确定各个产量监测系统的绝对精度和分辨率。称重仓和工厂重量数据用于评估各种规模的产量监控器,包括: 50 m行,整行,多行(即9行图)和整个字段。这些评估是在收割机以高倾倒率和低倾倒率运行的情况下进行的。发现只有TechAgro装置可以提供足够准确的结果,可以认为是潜在可行的甘蔗产量监测器。然而,该装置的性能在高倾倒率下显着降低,并且该传感器无法说明倾倒率的变化。包括进一步完善设备和进行其他工作的建议。

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