Smart farming includes traditional agricultural practices with ICT(information and communication technologies) to improve farm produce and quality.
Fremont, CA: Agriculture accompanied by high-risk and low-reward factors. Besides draining the individuals intricately, traditional farming techniques also drain natural resources pointlessly with no considerable results.
A logical solution to settle this is adopting technology to automate, track, and watch agricultural processes.
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What is Smart Farming?:Smart farming includes traditional agricultural practices with ICT(information and communication technologies) to improve farm produce and quality.
Using new technology in agriculture can support farmers reduce labour and curtail costs while improving crop yield and production.
ICT includes various components under digital and computer technologies to promote all these agricultural benefits. These incorporate robotics, sensors and actuators, drones, GPS, etc. The recent addition to this list is a 5G network.
Although mobile networks were implementing many ICT technologies to provide agricultural advantages, 5G will improve the impact by manifolds because of low latency, high bandwidth, and support for several simultaneously communicating sensors.
Smart Farming or Precision Agriculture:The execution of 5G will aid speed up the whole process with machine-to-machine services. 5G's real-time data transfer can support these solutions' speedy functioning, making the decision-making quick, robust, data-oriented, and real-time.
AI-enhanced Machinery:The correct implementation of precision agriculture involves AI-implemented farm machinery. Continuous monitoring of farms through AI-enhanced machinery can help farmers determine risks.
Nevertheless, artificial intelligence needs sufficient data to work efficiently. 5G will bridge the gap in data availability that is still evident by speeding up a massive amount of data transfer, allowing AI to perform efficiently.
Drone Sprayers:A defining aspect of precision agriculture is cutting down on unnecessary usage of agri-inputs. SmartFarm aids in this with 360-degree monitoring of farms via data gathered from farms, satellites, drones, and sensors. Implementing 5G in these devices can aid in efficient crop monitoring — an activity performed & executed by autonomous drone sprayers.
These drone sprayers, fairly new technology in agriculture, comprise crop and weed scanners and sprayers. ICT-based platforms can also integrate with IoT devices to use the insights generated by the latter to limit the application of agrochemicals to only where required, instead of blanket spraying.
Restricted, targeted use of chemicals will reduce input costs and help minimize water pollution, soil damage, and crop losses.
Similarly, farmers can determine the exact harvest time using colour and size analysis via AI and 5G-enabled drone sprayers.
Accurate Harvest Estimation:Drones use high-quality and AI-powered cameras to distinguish healthy crops from spoilt crops and weeds. They facilitate this by identifying differences in leaf colour and texture in plants. Accordingly, these devices isolate plants and report the data to farmers, who then take corrective action.
With 5G, these devices can report data about potential weeds, damaged crops, and their location directly to follow-up machinery in real-time. Farmers can carry out fast and effective harvests with automated crop detection and weeding, saving time and cost.
Effective Irrigation:The continuous monitoring of agricultural fields and crops can help farmers understand the exact water requirements. Analysis of soil requirements is possible via soil probes buried 120 cm below irrigation lines. These devices can use 5G connectivity to collect and transfer data about the soil's moisture content, water salinity, and patterns.
Farmers can receive this data on smartphones via SmartRisk and manage irrigation cycles accordingly. Managing moisture content in the soil will prevent unnecessary water consumption and depletion of surface and groundwater. At the same time, farmers will reap better quality crops due to precision agriculture and make profits.
An estimate of the possible yield will also be available to other stakeholders, including providers of agrochemicals and agri-machinery, via SmartRisk, which will help them decide on sales and marketing techniques.
Livestock Tracking and Management:Once you understand the importance of livestock in sustainable agriculture, you will witness the benefits of 5G implementation in locating valuable livestock. 5G will facilitate geo-location services and real-time connectivity to inform farmers about the animals' health, fertility, and food intake. It will also help farm owners reduce the overall cost of livestock management solutions and performance.
Prominent Benefits of 5G-enabled Smart Farming:The implications of this new smart technology in agriculture are yet to be fully explored. However, with 5 G's available features, farmers can expect the following benefits with its application in the future.
• Faster communication: 5G will offer up to 10 Gbps data speed, which means 100 times speedier connectivity than its predecessor, 4G. Faster speeds and significantly lower latency will facilitate real-time communication between stakeholders.
• Machine-to-machine data transfer: As already discussed, direct information transfer between 5G-enabled devices without human invention can enhance the speed and efficiency of agricultural processes.
• Reduced costs: With a lesser requirement of agri-inputs, workforce, and other resources, farm owners can increase revenue remarkably.
5G might take more time to roll out at full throttle and cover all remote areas. However, when it does, this new technology in agriculture will reduce workforce requirements with automation.
This way, farmers can dedicate their efforts to areas that need human consideration, like planning sales and marketing. So, farmers must be ready to launch 5G-enabled solutions for themselves and the environment to reap its benefits.