Abstract

With the wide adoption of a shared economy, the term “share” has become closely linked with people’s daily life. To improve the economic output per unit area of farmland and allow urban residents to experience the fun of cultivating, an IOT-based multi-sensor ecological shared farmland management system is presented and designed in this paper. And an agricultural economy model that remote planting and gains sharing was also presented. This system consists of multiple sensors for data collection, automatically controlled equipment, a transport module (with a ZigBee module and a WiFi module), an app-based smart monitoring and control module and a WeChat public platform. Various information, including air temperature and humidity, soil humidity, illuminance, CO2 concentration, pH, real-time video and images, is collected for users to ensure an optimal crop growing environment via remote control and by sharing agricultural product information in harvesting seasons. Functions such as picking, leasing and transferring are implemented via the WeChat public platform. Not only is detailed information on vegetables growing in rented farmland available remotely via RFID electronic tags and multiple sensors but the real-time growing state of the planted crops is also available via camera. Control of functions such as irrigating, fertilizing and shading is also supported. The test shows that in this system, the data collected via multiple sensors are accurate; real-time information is transmitted and managed smoothly.

Highlights

  • Precision agriculture is an important means of attaining sustainable agriculture

  • In a shared economy that emphasizes the right of use, experience is another way of owning value

  • Precision agriculture is combined with a shared economy, and an IOT-based multi-sensor ecological shared farmland management system is formed

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Summary

Introduction

Precision agriculture is an important means of attaining sustainable agriculture. Constituting a new mode of agricultural farming [1,2], precision agriculture optimizes the utilization of pesticides, and reduces environmental hazards. To improve the economic output per unit area of farmland and application in remote control system, an IOT-based, green shared farmland management system is designed to collect various parameters, including the air temperature and humidity, soil moisture, illuminance, CO2 concentration and pH value. Videos of farmland are transmitted and displayed in real-time via camera; information is provided to the user via WeChat or a mobile app-based sharing platform to support remote control and adjustment of the crop growing conditions by the user. Functions such as fruit picking and sharing, farm leasing and transferring are implemented via the sharing platform. The architecture, design and implementation of the ecological shared farmland management system are elaborated

Overview of the shared farmland model and management system
Overall design of the shared farmland management system
Software platform design
Sensor-based data collection module
Remote control equipment in the system
System transport module
Test conditions
Software platform test
Sensor test and results
Conclusions
Full Text
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