Optimization of Agricultural Smart System using Remote Sensible NDVI and NIR Thermal Image Analysis Techniques

S. Meivel, S. Maheswari
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引用次数: 6

Abstract

Production in agriculture is not sufficient in today’s world. Therefore, we need to increase production to equalize the needs. However, due to the development in various fields, the human source for working and maintaining the cultivation land with proper consistency is insufficient. When it comes to Indian Agriculture System, the climatic environment is isotropic and there is a lack in the usage of agriculture assets. The irrigation system, which is controlled manually, is not an inefficient manner. There are several problems such as additional water consumption, bad quality of fertilizer preparation, Additional or insufficient fertilizer consumption. An automatic agricultural system with an automated irrigation system having a universal nozzle for spraying water, fertilizer, pesticides based on the need is implemented. The field is monitored by having a soil moisture sensor, humidity sensor, and temperature sensor. The sensing units are placed in various locations for observation. The growth of the plant is monitored using drone NDVI and NIR sensors. This module consists of a Programmable Logic Controller (DRONE) for its overall automation. NDVI Sensors are connected to the IoT controller and the output is given to the solenoid valve. A pumping motor is implemented for irrigation depending upon the requirement the values are opened by using an electrical valve named Solenoid valve (a logic function of ON and OFF as output). As soon as the required level of water is irrigated, the sensing element senses and stops the pump preventing excess irrigation. This DRONE automation is more efficient in automatic water drip Irrigation system, pesticide and fertilizer spraying with float level switch. IoT networking connected to the DRONE controller using the IoT multispectral camera of Drone Controller for damage plant detection, Sprayer controlling and saving the daily database.
基于遥感NDVI和近红外热图像分析技术的农业智能系统优化
在当今世界,农业生产是不够的。因此,我们需要增加产量来平衡需求。然而,由于各领域的发展,耕种和维护适当一致性的耕地的人力资源不足。就印度农业系统而言,气候环境是各向同性的,农业资产的使用不足。人工控制的灌溉系统并不是一种低效的方式。存在额外用水量大、肥料配制质量差、肥料消耗过多或不足等问题。一种具有自动灌溉系统的自动农业系统,该自动灌溉系统具有通用喷嘴,可根据需要喷洒水、肥料、农药。通过土壤湿度传感器、湿度传感器和温度传感器对现场进行监测。传感单元被放置在不同的位置进行观察。利用无人机NDVI和近红外传感器监测植物的生长情况。该模块由一个可编程逻辑控制器(DRONE)组成,用于其整体自动化。NDVI传感器连接到物联网控制器,输出给电磁阀。泵送电机用于灌溉,这取决于要求,通过使用一个名为电磁阀的电动阀打开值(一个逻辑功能的ON和OFF作为输出)。一旦灌溉所需的水位,传感元件就会感应并停止水泵,防止过量灌溉。该无人机自动化更高效的自动滴灌系统,农药和化肥喷洒与浮动液位开关。使用无人机控制器的物联网多光谱摄像头连接到无人机控制器的物联网网络,用于损坏植物检测,喷雾器控制和保存日常数据库。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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