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A review of the economic impact of high levels of variance in fertiliser spreading systems

机译:肥料扩散系统高差异差异的经济影响综述

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Recent technological improvements in Geographical Information Systems (GIS) have made it possible to measure the accuracy of fertiliser spreading in the field. This demonstrates that the field coefficient of variation, "field CV", of actual spread patterns on farms is significantly higher than appreciated by most end users and service providers. Levels of field CV greater than 40% for spreading N fertiliser produces a 20% yield reduction, which in terms of urea on dairy pasture is potentially around$170 million nationally, and is economically significant. Manufacturers of fertiliser spreading equipment and ground-spread applicators have introduced improved delivery technologies which reduce field CV. Mostly these improvements relate to GPS use to assist drivers, automated maintenance of bout width, control of product flow and provision of automatic start-stop control. These improvements have the potential to reduce С V to 20% and reduce economic loss to 3%. Similarly, combinations of GIS methodsand differential global positioning systems (DGPS) will assist pilots to reduce field CV from 70% to 40%.
机译:地理信息系统(GIS)最近的技术改进使得可以测量肥料在该领域的施肥的准确性。这表明农场上实际扩展模式的变异“现场CV”的现场变化系数显着高于最终用户和服务提供商的理解。散布N肥的田间CV的水平产生了20%的产量减少,这就是乳制品尿素的含量,可能达到17亿美元,在经济上是显着的。施肥设备和地面涂布器的制造商引入了改进的交付技术,减少了现场CV。主要是这些改进涉及GPS用于帮助驱动器,自动维护的BOUT宽度,控制产品流量和自动启动控制的提供。这些改进有可能降低С至20%并将经济损失降至3%。类似地,GIS方法和差分全球定位系统(DGP)的组合将有助于导频降低70%至40%的现场CV。

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