MUMBAI, India, Aug. 17 -- Intellectual Property India has published a patent application (202621078341 A) filed by Mr. Nachiket Vivek Kulkarni; Mr. Amruta Nachiket Joshi Kulkarni; and Dr. Araddhana Manisha Arvind Deshmukh on June 25, 2026, for Cryostat: Modern Iot Based Temperature Replicating System..
Inventors include Mr. Nachiket Vivek Kulkarni; Mr. Amruta Nachiket Joshi Kulkarni; and Dr. Araddhana Manisha Arvind Deshmukh.
The application for the patent was published on August 14, 2026, under issue no. 33/2026.
Abstract: ABSTRACT [501] Contemporary agricultural and horticultural practices are severely constrained by geographical climate limitations, restricting the cultivation of plants to regions whose natural environmental conditions are compatible with each species’ growth requirements. Existing greenhouse and controlled-environment agriculture systems rely on manual thermostat adjustment, static preset conditions, and fragmented monitoring tools that lack real-time remote interaction, dynamic geographic climate profile switching, and unified multi-sensor control, resulting in suboptimal plant growth outcomes, high operational costs, and limited accessibility for small-scale and personal cultivation use cases. [505] The present invention discloses a Cryostat: Modern IoT Based Temperature Replicating System, comprising a modular architecture integrating a multi-parameter Sensor Module for real-time environmental measurement, a Microcontroller-based Controller Module executing continuous closed-loop control logic, a Heating and Cooling Module for bidirectional thermal regulation, a Wi-Fi/Bluetooth Communication Module for real-time data transmission, and a Mobile/Web Application Module enabling users to select target geographical climate profiles, monitor current environmental conditions, adjust parameters remotely, toggle devices manually, and issue voice commands for hands-free control. [510] The system replicates the temperature and humidity conditions of any user-selected geographical location within a sealed controlled chamber, enabling cultivation of geographically incompatible plant species at any location. Validation through seven-stage sequential development including requirement analysis, modular system design, hardware assembly, control logic programming, application development, IoT communication integration, and calibrated testing confirms that the Cryostat system constitutes a novel, cost-effective, and user-accessible approach to IoT-enabled precision climate replication for plant cultivation and environmental research applications.
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