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Managing Aldicarb Application with GPS/GIS Systems

机译:使用GPS / GIS系统管理涕灭威应用

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Aldicarb is a soil-applied pesticide that is widely used to control certain insects, mites, and nematodes of citrus and other crops. However, due to its high toxicity and leaching potential into ground-water, many states regulate its application. In Florida, aldicarb applications require a 91.4-m buffer zone around all drinking water wells and 304.8 m around wells located in certain sandy soils. To positively control and monitor the discharge of aldicarb in field conditions, the feasibility of using several electronic control systems on the granular applicator was investigated. The project involved fabricating a prototype machine that featured both ground- and motor-driven mechanisms commonly used in commercial aldicarb applications. A ground-driven power train operated one-half of the metering wheel through an electric clutch and a pulse-width modulation (PWM) motor powered the other half. The machine was equipped with various controllers and electronic circuits. Three DGPS-based approaches were considered. The first level consisted of a DGPS antenna and a low-cost data logger. It could provide records including position information (latitude and longitude) and status of the PWM controller and electric clutch (ON/OFF of the discharge system) for monitoring purposes. The second system (mid-range cost) utilized a hand-held computer and variable-rate-application (VRA) software to input prescription maps and provide an operator real-time screen interface. With this system, it was possible to provide ON/OFF control of both discharge drives and generate as-applied maps. The third level (highest-cost) involved the use of a more sophisticated VRA controller comprising modular components and CAN bus system. It allowed detailed operator-machine interface and could input variable rate maps and output information on application rate, acreage, and total material usage. The paper elaborates on the above technology solutions and provides test results of their evaluation under simulated field conditions. Each system had certain merits and limitations but all were capable of providing useful temporal and spatial information for aldicarb application.
机译:涕灭威是一种土壤施用的农药,广泛用于控制柑橘和其他农作物的某些昆虫,螨虫和线虫。但是,由于其高毒性和向地下水中的淋溶潜能,许多州都在规范其应用。在佛罗里达州,涕灭威的应用需要在所有饮用水井周围有91.4-m的缓冲区,在某些沙质土壤中的井周围需要304.8m的缓冲区。为了在田间条件下积极控制和监测涕灭威的排放,研究了在颗粒撒药机上使用几种电子控制系统的可行性。该项目涉及制造一台原型机,该机具有在商业涕灭威应用中通常使用的地面驱动和电机驱动机制。地面驱动的动力总成通过电离合器操作计量轮的一半,另一半驱动脉冲宽度调制(PWM)电动机。该机器配备了各种控制器和电子电路。考虑了三种基于DGPS的方法。第一级由DGPS天线和低成本数据记录器组成。它可以提供记录,包括位置信息(纬度和经度)以及PWM控制器和电动离合器的状态(排放系统的开/关),以进行监控。第二个系统(中端成本)利用手持计算机和可变利率应用程序(VRA)软件输入处方图并提供操作员实时屏幕界面。借助该系统,可以对两个排出驱动器进行ON / OFF控制,并生成实际应用的图。第三级(最高成本)涉及使用更复杂的VRA控制器,该控制器包括模块化组件和CAN总线系统。它允许详细的操作员-机器界面,并且可以输入可变速率图,并输出有关施用率,种植面积和总物料使用量的信息。本文详细介绍了上述技术解决方案,并提供了在模拟现场条件下对其进行评估的测试结果。每个系统都有一定的优缺点,但都能够为涕灭威的应用提供有用的时间和空间信息。

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