Abstract: Accordingly, an agricultural system using IOT which can monitor agricultural condition is disclosed. An agricultural system using IOT for monitoring agricultural condition comprising of; control box; web based application related with the website and mobile application. The control box is a waterproof box keeping all the electronic devices in waterproof condition. The control box could be located anywhere in farm or near the farm, having the soil moisture sensors, solenoid valve, and an ultrasonic sensor connected to the control box. IoTs is applied to the soil moisture sensors to measure the humidity of crop soil and to control switching on-and-off water sprinklers automatically.
Claims:We claim:
1) An agricultural system using IOT for monitoring agricultural condition comprising of;
a. control box;
b. web based application related with the website;
c. mobile application.
2) The agricultural system using IOT for monitoring agricultural condition as claimed in claimed 1, wherein the said control box is a waterproof box keeping all the electronic devices in waterproof condition.
3) The agricultural system using IOT for monitoring agricultural condition as claimed in claimed 1, wherein the said control box could be located anywhere in farm or near the farm, having the soil moisture sensors, solenoid valve, and an ultrasonic sensor connected to the control box.
4) The agricultural system using IOT for monitoring agricultural condition as claimed in claimed 1, wherein the said IoTs is applied to the soil moisture sensors to measure the humidity of crop soil and to control switching on-and-off water sprinklers automatically.
5) The agricultural system using IOT for monitoring agricultural condition as claimed in claimed 1, wherein the said web-based application that gets agriculture information from crop monitoring system (internet of things) present in the database of the website.
6) The agricultural system using IOT for monitoring agricultural condition as claimed in claimed 1, wherein the said web-based application was implemented to manage agricultural plots and to manage watering of crop, or to analyze suitable watering.
7) The agricultural system using IOT for monitoring agricultural condition as claimed in claimed 1, wherein the said mobile application is used to control on-off switching of the electrical system by the farmer.
, Description:FIELD OF THE INVENTION:
The present application relates to smart control of farming techniques. The present invention more particularly relates to a smart agriculture system using IOT.
BACKGROUND OF THE INVENTION:
In olden Days, Farmers used to figure the ripeness of soil and influenced suspicions to develop yield. Horticulture is the foundation of our Nation. In long time past days agriculturists used to figure the ripeness of soil and influenced presumptions to develop which to kind of product. They didn't think about the humidity, level of water and especially climate condition which terrible a farmer increasingly. They didn't think about the dampness, level of water and especially climate condition which horrible an agriculturist more. They utilize pesticides in view of a few suspicions which made lead a genuine impact to the yield if the supposition isn't right. The profitability relies upon the last phase of the harvest on which agriculturist depends.
Farming has seen a number of technological transformations in the last decades, becoming more industrialized and technology-driven. By using various smart agriculture gadgets, farmers have gained better control over the process of raising livestock and growing crops, making it more predictable and efficient.
Indeed, each second, the world's population grows by two more people, and by 2050, food production must increase by at least 70 percent to keep pace. Unfortunately, about half of the world's food is never consumed due to inefficiencies in the harvesting, storage and delivery of crops. Even in developed nations, about 30 percent of purchased food ends up going to waste, and supply-chain inefficiencies only exacerbate the problem.
Certainly, weather-related events—like the current and long-lasting drought add further complexity to the science of farming, as resultant crop damage, food supply shortages and rising commodities prices frequently illustrate. To help reverse this trend, and to generate enough food to meet the ever-growing demands of a growing global population, today's and tomorrow's agribusinesses need to embrace smarter farming methods.
To improve the efficiency of the product there by supporting country, there is a need of an agricultural system using IOT which can monitor agricultural condition in timely manner.
OBJECTS OF THE INVENTION:
The main object of the present invention is to provide an agricultural system using IOT which can monitor agricultural condition in timely manner in quickly and efficiently collect agricultural information.
Another object of the present invention is to improve the efficiency of the product, diminish the cost and help farmers to upgrade their productivity.
Yet another object of the present invention is to help in assembly information on circumstances like climate, dampness, temperature and fruitfulness of soil, Crop web based examination empowers discovery of wild plant, level of water, bug location, creature interruption in to the field, trim development, horticulture.
Other objects and benefits of the present invention will be more apparent from the following description, which is not intended to bind the scope of the present invention.
SUMMARY OF THE INVENTION:
Accordingly, an agricultural system using IOT which can monitor agricultural condition is disclosed. An agricultural system using IOT for monitoring agricultural condition comprising of; control box; web based application related with the website and mobile application. The control box is a waterproof box keeping all the electronic devices in waterproof condition. The control box could be located anywhere in farm or near the farm, having the soil moisture sensors, solenoid valve, and an ultrasonic sensor connected to the control box. IoTs is applied to the soil moisture sensors to measure the humidity of crop soil and to control switching on-and-off water sprinklers automatically.
DESCRIPTION OF THE DRAWINGS:
Fig 1 is an agricultural system using IOT which can monitor agricultural condition.
DETAILED DESCRIPTION OF THE INVENTION WITH RESPECT TO DRAWINGS:
The present invention is an agricultural system using IOT which can monitor agricultural condition. IOT advancement aids in social affair information on conditions like atmosphere, temperature and productivity of soil, harvest web watching engages area of weed, level of water, bug acknowledgment, animal interference in to the field, alter improvement, cultivation . IOT utilize farmers to get related with his residence from wherever and at whatever point. Remote sensor frameworks are used for checking the farm conditions and little scale controllers are used to control and robotize the property shapes. IOT modernization helps in assembly information on circumstances like climate, dampness, temperature and fruitfulness of soil, Crop web based examination empowers discovery of wild plant, level of water, bug location, creature interruption in to the field, trim development, horticulture. IOT utilize farmers to get related with his residence from wherever and at whatever point. Remote sensor structures are utilized for watching the homestead conditions and tinier scale controllers are utilized to control and mechanize the home shapes. To see remotely the conditions as picture and video, remote cameras have been used. IOT development can diminish the cost and update the productivity of standard.
The system of the present invention comprising of; control box, web based application related with the website, mobile application. The control box is a waterproof box keeping all the electronic devices in waterproof condition. The control box could be located anywhere in farm or near the farm, having the soil moisture sensors, solenoid valve, and an ultrasonic sensor connected to the control box. IoTs is applied to the soil moisture sensors to measure the humidity of crop soil and to control switching on-and-off water sprinklers automatically. The solenoid valve was used to control water flow with on/off action. Ultrasonic sensor was applied to measure the level of water in the chicken farm.
The second part is a web-based application that gets agriculture information from crop monitoring system (internet of things) present in the database of the website. It accesses the internet via WiFi connection. The web-based application was implemented to manage agricultural plots and to manage watering of crop, or to analyze what is suitable watering. Web page presenting the water need and IoTs information from each installation. The agriculture data analysis is implemented in order to interface with the farmer. The mobile application is used to control on-off switching of the electrical system by the farmer. This application has 2 modes; automatic and manual. The automatic system was activated when IoTs devices were detected with defined values of field sensors without user input. The farmer can take over the control and turn the water on or off with the mobile application. The mobile application helps to control watering. The main functions of the application are monitoring watering, set-up of crop details in each plot, and notifications.
In one aspect, an Internet-of-Thing (IoT) system improves ROI of farming by monitoring predetermined elements in the growing of plants. The system collects data from a sensor hub which includes a meteorological data acquisition system and an environmental data collection system. The system also monitors elements (lighting, humidity, temp, soil moisture, etc) that influence plant growth.
In another aspect, an Internet-of-Thing (IoT) method for improving ROI of farming includes placing a plurality of sensor hubs in predetermined locations in a farm, each hub including a meteorological data acquisition system and an environmental data collection system; and monitoring key elements in the growing of plants from a plurality of sensor hubs including lighting, humidity, temp, soil moisture, and elements that influence plant growth.
Advantages of the system may include one or more of the following. The system provides a Multi Channel wavelength Smart control design that enables researcher and grower to setup and optimize the efficiency of lighting receipt, and additionally to dim, shutdown and turn off the bright/darkness cycle in order to provide effective PPFD during the bright and dark period. The computer systems and controllers are capable of permitting farmers and farming business to exercise extremely precise control over almost every aspect of a farming operation, such as fertilizing, planting, spraying or harvesting crops.
Power supply, soil moisture sensor, humidity sensor, temperature sensor, water level sensor are attached to the processor through which signal is passed through web based application to the relay and motor.
| # | Name | Date |
|---|---|---|
| 1 | 201921054323-STATEMENT OF UNDERTAKING (FORM 3) [28-12-2019(online)].pdf | 2019-12-28 |
| 2 | 201921054323-POWER OF AUTHORITY [28-12-2019(online)].pdf | 2019-12-28 |
| 3 | 201921054323-FORM FOR STARTUP [28-12-2019(online)].pdf | 2019-12-28 |
| 4 | 201921054323-FORM FOR SMALL ENTITY(FORM-28) [28-12-2019(online)].pdf | 2019-12-28 |
| 5 | 201921054323-FORM 1 [28-12-2019(online)].pdf | 2019-12-28 |
| 6 | 201921054323-FIGURE OF ABSTRACT [28-12-2019(online)].jpg | 2019-12-28 |
| 7 | 201921054323-EVIDENCE FOR REGISTRATION UNDER SSI(FORM-28) [28-12-2019(online)].pdf | 2019-12-28 |
| 8 | 201921054323-EVIDENCE FOR REGISTRATION UNDER SSI [28-12-2019(online)].pdf | 2019-12-28 |
| 9 | 201921054323-DRAWINGS [28-12-2019(online)].pdf | 2019-12-28 |
| 10 | 201921054323-COMPLETE SPECIFICATION [28-12-2019(online)].pdf | 2019-12-28 |
| 11 | Abstract1.jpg | 2020-01-06 |
| 12 | 201921054323-ORIGINAL UR 6(1A) FORM 26-140120.pdf | 2020-01-16 |
| 13 | 201921054323-Proof of Right [29-11-2020(online)].pdf | 2020-11-29 |