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Assessing cane and sugar losses utilising world-class methods

机译:使用世界一流的方法评估甘蔗和糖的损失

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Harvester operators have immediate feedback on parameters such as bin weight but no feedback on levels of cane loss being suffered this is an 'invisible' loss. This leads to machines being operated at settings conducive to high cane loss, to the detriment of all sectors of the industry. To mitigate this, industry bodies have demonstrated the magnitude of cane loss by running cane-loss trials with individual harvester operators. Several cane-loss measurement strategies have been used. 'Mass Balance' (MB) trials, where cane loss is inferred by the difference in clean cane yield from different treatments, are expensive to run and, because the cane loss is the difference in two large but variable numbers, achieving statistical significance is difficult. The alternative 'direct measurement' of cane loss uses the In-field Sucrose Loss Measurement System (ISLMS) and is logistically simpler and has been used extensively by productivity staff. However, the magnitude of losses recorded have not been consistent with expectations, resulting in some 'downgrading' of the significance of cane toss. The importance of adhering to the rigorous ISLMS protocols and using a single experienced technician has been highlighted as the most appropriate mitigation of this 'downgrading'. A large-scale program has demonstrated to industry the magnitude of cane loss under different field and harvesting conditions. Both MB and ISLMS techniques were used in 42 fully replicated trials across the Australian industry. Whilst the aim of the trial program was to demonstrate the impact of different harvester settings on the economics of the sugarcane value chain, the project allowed the different cane-loss measurement systems to be compared, and strategies developed to enhance the accuracy and repeatability of both systems. The number of trials allowed comparison of both measurement systems to assess infield and delivered yields. The magnitude of cane losses observed during these trials and the impact of field variables and machine settings on cane loss are reviewed. Overall, thinner stalked cultivars and shorter billet length both significantly increased cane loss at any nominated harvesting speed or extractor fan speed setting. It was more difficult to achieve high levels of statistical significance with the MB protocol than with the ISLMS, but the magnitude of losses indicated by the latter were lower. The importance of rigidly following the defined protocols for both systems was also re-affirmed.
机译:收割机操作员会立即收到有关诸如垃圾箱重量之类的参数的反馈,但没有遭受甘蔗损失水平的反馈,这是“无形的”损失。这导致机器在有利于高甘蔗损失的设置下运行,从而损害了该行业的所有部门。为了缓解这种情况,行业机构通过与各个收割机操作员进行甘蔗损失试验,证明了甘蔗损失的严重性。已经使用了几种甘蔗损失测量策略。 “质量平衡”(MB)试验的运行成本高昂,因为甘蔗损失是两个较大但可变的数字之间的差,因此很难通过统计学方法来评估甘蔗损失,因为不同处理方式的清洁甘蔗产量不同。甘蔗损失的另一种“直接测量”使用现场蔗糖损失测量系统(ISLMS),从逻辑上讲更简单,并且已被生产力人员广泛使用。但是,所记录的损失幅度与预期不一致,导致甘蔗抛掷的重要性有些“下降”。坚持严格的ISLMS协议并使用一位经验丰富的技术人员的重要性已被强调为减轻这种“降级”的最适当方法。一项大型计划已向工业界证明了在不同田间和收获条件下甘蔗损失的严重程度。 MB和ISLMS技术均用于整个澳大利亚行业的42个完全重复的试验中。该试验计划的目的是证明不同收割机设置对甘蔗价值链经济性的影响,该项目允许比较不同的甘蔗损失测量系统,并制定了提高两者准确性和可重复性的策略。系统。试验数量允许比较两个测量系统,以评估野外和已交付的产量。回顾了在这些试验中观察到的甘蔗损失量,以及田间变量和机器设置对甘蔗损失的影响。总体而言,在任何指定的收割速度或抽风机的速度设置下,茎秆变薄和钢坯长度短都显着增加了甘蔗损失。与ISLMS相比,MB协议要达到高水平的统计显着性要困难得多,但后者表明的损失幅度要低。再次肯定了严格遵循已定义的协议的两个系统的重要性。

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