Abstract: The invention introduces an Automated Crop Conditioning Device designed to optimize crop growth by monitoring and adjusting environmental and soil conditions in real-time. The device incorporates a network of advanced sensors that measure critical parameters, including temperature, humidity, soil moisture, pH, and nutrient levels. These sensors provide continuous data to a central control unit, which uses sophisticated algorithms to analyze the information and trigger automated adjustments across key systems. The irrigation system ensures precise water delivery based on soil moisture data, preventing over- or under-watering. The climate control system regulates temperature and humidity through mechanisms such as fans, misting units, and heating or cooling devices. Additionally, the nutrient delivery system automatically dispenses essential nutrients based on real-time soil or hydroponic nutrient readings. The device operates sustainably using solar power, with a battery backup to maintain uninterrupted functionality during periods of low sunlight. It features a communication module that enables remote monitoring and control via a mobile app or web platform, allowing users to track conditions, receive alerts, and make adjustments from any location. This innovative system integrates all essential crop management functions into a single automated solution, significantly reducing manual labor, conserving resources, and improving agricultural efficiency. By maintaining ideal conditions for crop growth, the device enhances yield, promotes sustainability, and supports modern precision farming practices.
Description:The purpose of the present invention is to provide an Automated Crop Conditioning Device that efficiently optimizes the environmental and soil conditions required for the healthy growth of crops. By leveraging real-time data from a network of sensors, the device continuously monitors parameters such as temperature, humidity, soil moisture, pH levels, and nutrient content. It adjusts environmental conditions and watering schedules automatically, ensuring crops receive the optimal conditions for growth while minimizing resource waste. The primary goal is to enhance agricultural productivity, reduce labor costs, improve resource efficiency, and contribute to sustainable farming practices.
, Claims:1. An automated crop conditioning device: Featuring sensors for monitoring environmental and soil health parameters, a central control unit for managing irrigation, climate, and nutrient delivery, and systems for precise water, climate, and nutrient adjustments. Powered by solar energy with battery backup, it supports remote monitoring via a mobile app or web interface.
2. Irrigation system: includes fertigation capabilities for simultaneous water and nutrient delivery, and the system utilize data analytics to track performance metrics and provide optimization recommendations.
| # | Name | Date |
|---|---|---|
| 1 | 202441103540-STATEMENT OF UNDERTAKING (FORM 3) [27-12-2024(online)].pdf | 2024-12-27 |
| 2 | 202441103540-REQUEST FOR EARLY PUBLICATION(FORM-9) [27-12-2024(online)].pdf | 2024-12-27 |
| 3 | 202441103540-FORM 1 [27-12-2024(online)].pdf | 2024-12-27 |
| 4 | 202441103540-DRAWINGS [27-12-2024(online)].pdf | 2024-12-27 |
| 5 | 202441103540-DECLARATION OF INVENTORSHIP (FORM 5) [27-12-2024(online)].pdf | 2024-12-27 |
| 6 | 202441103540-COMPLETE SPECIFICATION [27-12-2024(online)].pdf | 2024-12-27 |