Abstract: The present invention discloses the land examination system for farming using augmented reality technology. The raw image data of the crop capture using a first camera. The raw image data transferred to a server. The pH value from sensor is transferred to server. Processor generates geo-referenced data from the raw image data at the server. The geo-referenced data sent to a wireless device. The live image data of the crop is captured using a second sensor which is mounted on wireless device. The geo- referenced data overlaying on the live image data to generate the augmented reality view at the wireless device. Meanwhile the report of land examination and name of suitable crop is sent to wireless device.
Claims:We Claim:
1) The land examination system for farming using augmented reality technology comprising of;
a. Capturing raw image data of crop by sensor
b. pH sensor value noted
c. Transferring raw image data and pH value to the server
d. With the help of processor, geo-referenced data is generated from raw image data
e. Transferring geo-referenced data to wireless device
f. Capturing live image of crop using wireless device which has another sensor mounted on it
g. Meanwhile the data processing system, compare the sensor values to standard value
h. Geo-referenced data overlayed to live image data to generate augmented reality picture
i. Processor send data such as selected land examination report and name of suitable crops for that particular land
2) The system claimed in claim 1 wherein, the land examination done in within a second, it is time saving.
3) The system claimed in claim 1 wherein, the first camera can be mounted on drone
, Description:FIELD OF THE INVENTION
This invention relates to the field of computer graphics, and more specifically, to a method and system for land examination system for farming using augmented reality technology.
BACKGROUND OF THE INVENTION
Land is an example of a natural resource which, when properly managed, can be used again and again. But of which the total quantity is limited in relation to the demand for it. Land is not uniform. It consists of unique units each with specific characteristics and qualities resulting from genesis, location and use. It is possible to grade land units according to their qualities.
Over the past decades, land use in developing countries has been subject to an unprecedented pace of change, mainly as a result of the growing demand for crop and livestock products. In many areas, rapid urbanization, mining and deforestation have also greatly affected patterns of land use.
To feed the world population adequately, as well as to generate growing incomes and increasing employment opportunities, it is necessary to increase the productivity of land, however, not at the expense of land as a resource. Land should be conserved for future generations; land use should be sustainable.
Land examination is a set of various chemical processes that determine the amount of available plant nutrients in the land, but also the chemical, physical and biological land properties important for plant nutrition.
Land examination can help to determine land fertility levels, and identify nutrient deficiencies, potential toxicities and trace minerals. They are also important for monitoring the stages of land degradation, acting as a first step in defence by regularly gathering information on which to base land management and fertiliser decisions over time.
Generally, the land examination is done manually. By taking particular sample of land, the sample is tested into laboratory. This process is so time consuming.
The present invention suggests the solution to above problems. It suggests the system for land examination system using augmented reality technology.
Augmented reality (AR) is a type of interactive, reality-based display environment that takes the capabilities of computer-generated display, sound, text and effects to enhance the user's real-world experience.
Augmented reality farming refers to the application of AR techniques to farming. AR techniques may be used to overlay sensor data, previous crop imagery, or other information over a farmer's visual reality with a view to improving pest management.
OBJECT OF THE INVENTION
The main object of the invention is, land examination system in farming using augmented reality technology.
Another object of the invention is, number of sensors are used for augmented reality.
Another object of the invention is, due to augmented reality technology farmer can clearly see the result of land examination with the help of smart device.
Other object of the invention is, system would suggest which crop is good for examined land.
SUMMARY OF THE INVENTION
The present invention discloses the land examination system for farming using augmented reality technology. The system and method comprising of:
Capturing raw image data of land using sensor / camera which is installed to farm. Then transferring the raw image data to server. The processor generates geo-referenced data from the raw image data at server. The geo-referenced data send to wireless device which has second sensor. Capture live image data of crop using sensor mounted wireless device. Overlaying the geo-referenced data on the live image data to generate the augmented reality at the wireless device. On the wireless device user/farmer can see augmented view of land with its parametric value. And also, suggestions of name of crops for cultivation
The apparatus such as a data processing system, a method for adapting same having program instructions recorded thereon for identification of pest and then suggesting the pest control system.
BRIEF DESCRIPTION OF THE INVENTION
Fig 1 shows flowchart of the method and computer program for this invention.
DETAILED DESCRIPTION OF THE INVENTION
The present invention discloses the pest control management system for farming using augmented reality technology.
The present invention system is comprising of contents such as;
Data processing system- refer to any machine for processing data (which include computer systems, wireless devices and network arrangement for them)
Cameras- to capture image land
Sensors- to sense the pH value of land
The present invention implemented in a combination of both hardware and software.
Data processing system includes programming instruction. These instructions are helpful in detecting the parametric values of land such as nutrient, moisture and not limited this only. And suggest the name of crops which are suitable for this land and which give more yield.
The present invention system is comprising of;
Step 1) All sensors are installed and power supply given to them
Step 2) The farmer/user decide which sensor has to use for capturing of the image of land whose examination has to be done
Step 3) With selected sensor raw image for particular part of land is taken by nearly installed camera
Step 4) The raw image has transferred to server and pH sensor also transfer values of parameters to server
Step 5) With the help of processor the raw image data has transferred to geo-referenced data
Step 5) The geo-referenced data has sent to the wireless device which has second sensor mounted on it
Step 6) The wireless device which has second sensor mounted on it, capture live image of crop
Step 7) Augmented reality at the wireless device created by overlaying the geo-referenced data on the live image data
Step 8) Meanwhile the data processing system, having program instructions recorded thereon compare the sensor values to standard value for number of crops
Step 9) send information such as result of land examination and name of crops which are suitable for particular land
This is general overview of system. System is not bounded to this only.
The agriculture system might seem a simple and straightforward thing on an apparent level – just sow the seeds and reap the harvest. But it is not as simple as that. On the contrary it involves a whole lot of knowledge, effort and scientific approach so as to say.
The task gets even more difficult as the demands of crops are going up day by day to feed the ever-increasing population. Thanks to the ever-advancing development of science and technology which is empowering the agricultural system with a number of related products and tools to cope with the gaping demands. And among those scientific tools and weapons Augmented Reality is the newest addition.
Augmented reality (AR) is a type of interactive, reality-based display environment that takes the capabilities of computer-generated display, sound, text and effects to enhance the user's real-world experience.
In market some products related to augmented reality technology is available. These products are used to capture image and giving all data regarding target area. With the augmented reality view of that particular target area, all the information is seen on screen of user/farmer.
The main advantage of this system, it is time saving. In conventional examination land sample has to send in laboratory. There all tests are done and then farmer will get result of examination. But by using Augmented reality technology the result would show in some second. And farmer get suggested with the name of crop which is suitable for that particular land.
The similar example of this system, is tried in various countries.
Still it is not in so much practice, but in near future it would be more workable.
And it will definitely change the face on farming in coming future.
| # | Name | Date |
|---|---|---|
| 1 | 201921054332-STATEMENT OF UNDERTAKING (FORM 3) [28-12-2019(online)].pdf | 2019-12-28 |
| 2 | 201921054332-POWER OF AUTHORITY [28-12-2019(online)].pdf | 2019-12-28 |
| 3 | 201921054332-FORM FOR STARTUP [28-12-2019(online)].pdf | 2019-12-28 |
| 4 | 201921054332-FORM FOR SMALL ENTITY(FORM-28) [28-12-2019(online)].pdf | 2019-12-28 |
| 5 | 201921054332-FORM 1 [28-12-2019(online)].pdf | 2019-12-28 |
| 6 | 201921054332-FIGURE OF ABSTRACT [28-12-2019(online)].jpg | 2019-12-28 |
| 7 | 201921054332-EVIDENCE FOR REGISTRATION UNDER SSI(FORM-28) [28-12-2019(online)].pdf | 2019-12-28 |
| 8 | 201921054332-EVIDENCE FOR REGISTRATION UNDER SSI [28-12-2019(online)].pdf | 2019-12-28 |
| 9 | 201921054332-DRAWINGS [28-12-2019(online)].pdf | 2019-12-28 |
| 10 | 201921054332-COMPLETE SPECIFICATION [28-12-2019(online)].pdf | 2019-12-28 |
| 11 | Abstract1.jpg | 2020-01-04 |
| 12 | 201921054332-ORIGINAL UR 6(1A) FORM 26-140120.pdf | 2020-01-16 |
| 13 | 201921054332-Proof of Right [29-11-2020(online)].pdf | 2020-11-29 |