面向多路控制反馈的物联网农业应用智能系统

Kamlesh Kalbande, Swapna Choudhary, Anushka Singru, I. Mukherjee, Prachi Bakshi
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引用次数: 13

摘要

印度农业将精准农业的物联网与超低功耗和先进技术的出现结合在一起。帮助农民处理无组织的过程自动化、无效率的产品、不可用的资源导致机器损坏等问题是一个基本的识别要克服。重点关注的是监控系统、质量改进、设备自动化等。而不是控制水位,泵处理的控制权交给农民,这样就避免了灌溉的调节实际上是在农业领域,从而计算水分可用性作为一个反馈导向的系统。本文提出了一种基于物联网的智能农业系统,通过获取实时数据(温度、土壤湿度、水位)进行环境监测,帮助农民解决问题,从而提高产品的整体产量和质量。更新每个各自需要个人智能设备和控制来处理启用应用程序通知,这可以通过合并手动和自动化来进行多方式监控。在这种情况下,农民可能也希望在没有身体接触或常规的情况下阻止机器。最终的农业成果需要协调每一种重要的生物或非生物物质的可持续性,为此通知一个冲动的人将导致输液。该系统是在物联网环境中设计的,具有土壤湿度传感器,PIR传感器,DHT11温湿度传感器,超声波传感器等传感器,采用新颖的方法。本文讨论了物联网云接口、传感器和设备控制应用的设计方法、硬件和软件实现结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multi-Way Controlled Feedback Oriented Smart System for Agricultural Application using Internet of Things
Indian Agriculture conflates IoT for precision farming with the advent of ultra-low-power and advanced technologies. Assisting farmers in dealing with the problems of unorganized process automation, non-efficient products, non-available resources leading to machine damage, so on is a basic identification to vanquish. The concern discerning is monitoring and control systems, quality improvement, automation of devices, etc. Instead of controlling the level of water, the control of pump handling is given to the farmer so that it prevents the regulation of irrigation virtually being on the agricultural field at that time so to calculate water availability as a feedback oriented system. This paper proposes an IoT-based Smart Agriculture System assisting farmers to deal with the problems by getting Live Data (Temperature, Soil Moisture, Water level) for environment monitoring which enables to increase overall yield and quality of products. Updating each respective requires personal smart devices and controls to handle by enabling notifications of Application, this can be performed multi-way by merging both manual and automation to monitor. In such an occurrence, the farmer perhaps might also desire to forestall the machine without physical contact or routinely. The ultimate farming results need coordination for the sustainability of each vital living or nonliving substance, for which notifying an impetuous person will lead to an infusion. This system has been designed in an IoT environment with sensors like Soil Moisture Sensor, PIR Sensor, DHT11 Temperature and Humidity Sensor, Ultrasonic Sensor with a novel approach. The design methodology, hardware, and software implementations result with IoT cloud interface, sensor, and device controlling Application are discussed in this paper.
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