A system for planting planning

The system addresses inefficiencies in agricultural planning by using a database and user-friendly interface to calculate optimal crop yields, reducing manual errors and costs, thereby enhancing farming efficiency.

WO2026029727A1PCT designated stage Publication Date: 2026-02-05ISTANBUL GELISIM UNIVSI
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Patent Information

Application Number
PCT/TR2025/050055
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Filing Date
2025-01-28
Publication Date
2026-02-05

AI Technical Summary

Technical Problem

Existing agricultural practices rely heavily on hearsay and manual calculations, leading to information pollution, increased costs, and potential errors, resulting in inefficient crop management and potential losses for farmers.

Method used

A system and algorithm for planting planning that includes a continuously updated database, an analysis module for calculating harvest amounts based on field dimensions, and a user-friendly interface for creating optimal planting plans, reducing manual errors and providing accurate information.

Benefits of technology

Enables farmers to make informed decisions with reduced costs and errors, ensuring efficient crop management and maximizing harvest potential.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention is a system for planting planning, which enables users to obtain detailed information about agricultural products, learn information about planting seasons, growth periods, and calculate how much crop they can plant in their own field areas, characterized in that it comprises a server (1), which is continuously updated and controlled over the network and where users and administrators are included in the system, a login module (2) where the user registers and logs in to the server (1), a database (3) that contains information on the season in which the crops are to be planted, planting row spacing, irrigation method and frequency, growth period and other information regarding the crop, the analysis module (4), which calculates the minimum and maximum harvest amount of the crop selected from the database (3) that can be obtained by entering the field dimensions, and the profile module (5), where personal information, the crop and the planting time upon planting are recorded and displayed, thus creating a simulation and informing the user of the actions to be taken.
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Description

[0001] A SYSTEM FOR PLANTING PLANNING

[0002] Technical Field:

[0003] This invention relates to a system and algorithm for planting planning, which enables users to obtain detailed information about agricultural products, learn information about planting seasons, growth periods, and calculate how much crop they can plant in their own field areas.

[0004] State of the Art:

[0005] Today, agriculture is widely practiced in many societies. When engaging in agriculture, several factors must be considered, such as soil type, seasonal and climatic conditions, and crop-specific care. Agriculture is carried out especially in small settlements in the light of hearsay and information learned from elders. For this reason, many wrong actions can be taken. It is mandatory to use separate devices and programs for the operations to be performed in order to prevent information pollution for farmers and provide accurate information to farmers. This means extra cost and labor for the farmer.

[0006] In the patent application numbered CN113179923A, "Precise Crop Irrigation Algorithm and Control System" is described. The invention describes a precise crop irrigation algorithm and a control system. The precise crop irrigation algorithm includes crop water demand calculation and irrigation schedule calculation; crop water demand calculation adopts Penman's method; the irrigation schedule includes irrigation quota and irrigation quota; the irrigation schedule is classified according to dry crops and paddy crops and different irrigation schedules are implemented for crop types. The irrigation amount is determined according to the irrigation schedule, the irrigation schedule is calculated every ten days by using lists, diagrams or computer programming calculations, the control system can collect basic agrometeorology and soil moisture information, and uses a newly proposed irrigation algorithm, provides different irrigation schemes for different farmlands, provides real-time program operation instructions, and the system also has fertilization management and pest management functions. In the patent application numbered CN117455062A, "Crop Yield Prediction Algorithm Based on Multi- Source Heterogeneous Agricultural Data" is described. The invention describes a crop yield prediction algorithm based on multi-source heterogeneous agricultural data, and the algorithm includes the following steps: obtain original agricultural data from multiple sources; obtain agricultural data from the big data platform by preprocessing; obtain the original status information and sample status information of crops at each time point in the growth cycle; generate standard data information and predict crop yield. And train the yield prediction model based to obtain a standard predicted yield, and verify the accuracy and prediction ability of the standard predicted yield. According to the method, in the crop yield prediction process, the current status data of crops and environmental data are taken into account and deeply correlated, so that the accuracy of crop yield prediction is greatly improved. This method of comprehensively considering crop status and environmental factors can provide more accurate decision support for agricultural decisions, such as irrigation planning, fertilization plans, and pest control, helping farmers optimize farmland management and increase crop yields and economic benefits.

[0007] Above, various algorithms are described for farmers to harvest the crops planted in agricultural areas more efficiently. This means extra labor and cost for the farmer, as it will require different algorithms, programs and devices during the planting and growing phase. When costs increase, this is reflected in the prices of the harvested crop. In addition, since the planting of the crop in accordance with the field dimensions and the amount of harvest to be obtained will be calculated by the farmer, incorrect results can be obtained. In this case, the farmer may incur losses. The farmer's profit from the harvest may not cover the cost.

[0008] As a result, there is a need for a new technology which can overcome the disadvantages mentioned above.

[0009] Definition of the Invention:

[0010] This invention is a system and algorithm for planting planning that overcomes the disadvantages mentioned above, characterized by having a database containing product information, calculating the harvest amount according to the field dimensions, accessing up-to-date and accurate information, preventing manual calculation errors, having an easy to use interface, being capable of making the most appropriate planting plan, and reporting the operations to be performed by simulation.

[0011] The invention comprises a continuously updated database containing product information. The database contains information on how to grow crops in various environments. In the analysis module, the maximum and minimum harvest amount of the selected crop is calculated according to the field dimensions entered. In this way, the farmer can easily calculate the income from the crop of their choice. Information pollution is prevented and farmers are provided with access to accurate information. Errors that may occur as a result of manual calculation are prevented. It offers ease of use thanks to the ease of use of the interface. It enables the farmer to make the most suitable planting plan for the field. By entering the planted crop into the profile module, simulation is performed and the processes to be applied at the time of growth and harvest and the time of these processes are estimated.

[0012] With the easy fastening of the parts that make up the invention to each other, it is easy to install, and thanks to the short assembly time, costs are low. Also, the invention has a solid structure.

[0013] Description of the Drawings:

[0014] The invention will be described with reference to the accompanying figures, so that the features of the invention will be more clearly understood and appreciated, however it is not intended to limit the invention to these particular embodiments. On the contrary, it is intended all alternatives, modifications and equivalences that may be included in the field of the invention as defined by the accompanying claims are within the scope. It should be understood that the details shown are for the sole purpose of illustrating preferred embodiments of the present invention and are intended to provide the most useful and easily understandable description of both the embodiment of the methods and the rules and conceptual features of the invention. In the drawings;

[0015] Figure 1 The schematic view of the system of the invention. The figures which will help understand this invention are numbered as indicated in the accompanying drawing and are given below with their names.

[0016] Description of the References:

[0017] 1 . Server

[0018] 2. Login Module

[0019] 3. Database

[0020] 4. Analysis Module

[0021] 5. Profile Module

[0022] Description of the Invention:

[0023] The invention comprises a server (1), which is continuously updated and controlled over the network and where users and administrators are included in the system, a login module (2) where the user registers and logs in to the server (1), a database (3) that contains information on the season in which the crops are to be planted, planting row spacing, irrigation method and frequency, growth period and other information regarding the crop, the analysis module (4), which calculates the minimum and maximum harvest amount of the crop selected from the database (3) that can be obtained by entering the field dimensions, and the profile module (5), where personal information, the crop and the planting time upon planting are recorded and displayed, thus creating a simulation and informing the user of the actions to be taken.

[0024] The invention comprises a server (1) where users can submit their opinions, complaints, thoughts and suggestions.

[0025] Detailed Description of the Invention:

[0026] The system of the invention comprises a server (1), login module (2), database (3), analysis module (4), and profile module (5).

[0027] The invention comprises a server (1) that is continuously updated and controlled over the network and where users and administrators are included in the system. The server (1) has a login module (2) where administrators log in or users sign in then log in. There is a database (3) connected to the server (2). The database (3) contains information regarding crops to be planted such as the season in which they will be planted, planting row spacing, irrigation method and frequency, and growth period, and users access these through the server (1). There is an analysis module (4) where users enter field dimensions and calculate the maximum and minimum harvest amount of the crop selected for planting. The analysis module (4) can be a processor, microprocessor or microcontroller. There is a profile module (5) where users record information such as field dimensions, soil type, and if planted, the planting information of the crop is entered and information about the operations to be performed on the crop by simulation is generated. In addition, users will be able to submit their opinions, complaints, thoughts and suggestions through interface on the server (1).

Claims

CLAIMS1 . A system for planting planning, characterized in that it comprises;— a server (1) that is continuously updated and controlled over the network and where users and administrators are included in the system,— login module (2) where the user registers and logs in to the server (1),— a database (3) that contains information on the season in which the crops are to be planted, planting row spacing, irrigation method and frequency, growth period and other information regarding the crop,— the analysis module (4), which calculates the minimum and maximum harvest amount of the crop selected from the database (3) that can be obtained by entering the field dimensions, and— the profile module (5), where field dimensions, soil type, the crop and the planting time upon planting are recorded and displayed, thus creating a simulation and informing the user of the actions to be taken.

2. The system for planting planning according to claim 1 , characterized in that it comprises a server (1) where users can submit their opinions, complaints, thoughts, and suggestions.

Citation Information

Patent Citations

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