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Module for Virtual Calibration of Sensors of Agricultural Spraying Systems (Temperature, Pressure and flow) Using an Arduino-Based Architecture and a Controller Area Network Bus (CAN)

机译:使用基于Arduino的架构和控制器局域网总线(CAN)的农业喷雾系统传感器的虚拟校准模块(温度,压力和流量)

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This paper presents a method for the development of a sensor' virtual calibration module for agricultural sprayers, i.e., using an Arduino-based architecture, which uses an Atmel Atmega 328 microcontroller, as well as the CAN protocol for communication and data analysis. A set of sensors is present in agricultural spraying systems. They are used to control both the quality of pesticides application and to ensure the reliability of the sprayers' processes. In such context, measurements such as temperature, flow, and pressure, among other variables, are important for the decision making processes. Besides, for such tasks all the sensors must be calibrated, as well as be operating properly. Such module for virtual calibration makes possible to validate the calibration of these sensors in real time, and also allows emulating a direct operation on the sprayers, i.e., allowing to checkup if the sensor's operational procedures are or not correct. In this context, the organization of knowledge and the establishment of an adequate computational semantics for a correct operation of this module present a strategic role, so that users of the agricultural sector can appropriate the technology and use it appropriately.
机译:本文介绍了一种用于农业喷雾器的传感器虚拟校准模块的开发方法,即使用基于Arduino的架构(其使用Atmel Atmega 328微控制器)以及用于通讯和数据分析的CAN协议。农业喷涂系统中存在一组传感器。它们可用于控制农药施用的质量和确保喷涂机过程的可靠性。在这种情况下,诸如温度,流量和压力之类的测量值以及其他变量对于决策过程很重要。此外,对于此类任务,所有传感器都必须经过校准并正确运行。这种用于虚拟校准的模块使得可以实时验证这些传感器的校准,并且还允许在喷雾器上模拟直接操作,即,允许检查传感器的操作程序是否正确。在这种情况下,知识的组织以及为该模块的正确操作建立适当的计算语义将发挥战略作用,以便农业部门的用户可以使用并适当使用该技术。

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