一种基于物联网的饲料原料仓储环境监控系统
By using IoT technology for real-time monitoring and automated processing, the problems of mold and pests in feed ingredients under high humidity have been solved. Real-time and remote environmental monitoring and mold and pest control have been achieved, improving feed quality and safety.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- 广西农业职业技术大学
- Filing Date
- 2025-06-30
- Publication Date
- 2026-07-17
AI Technical Summary
In high humidity environments, feed ingredients such as cassava residue, sugarcane tops and leaves, and mulberry branches and leaves are prone to mold and pests. Traditional manual inspections are insufficient to detect internal problems, leading to a decline in feed quality and health risks.
An IoT-based feed ingredient storage environment monitoring system is adopted, including temperature and humidity sensors, gas sensors, ventilation devices, anti-mold modules, soundprint collectors, insect repellent modules, and communication modules. The system monitors and collects data in real time, processes it through a microcontroller module, displays it on a display module, and sends it to the user terminal through a communication module, thereby realizing remote monitoring and automated anti-mold and insect repellent functions.
It enables real-time and remote monitoring of the feed raw material storage environment, effectively preventing mold and pests, improving feed quality and safety, and reducing health risks.
Smart Images

Figure CN224519201U_ABST
Abstract
Claims
1. An Internet of Things (IoT) based feed raw material storage environment monitoring system for installation in a storage bin in which feed raw materials are stacked, characterized by: It includes a microcontroller module, a temperature and humidity sensor, a gas sensor, a ventilation system, an anti-mildew module, a voiceprint sensor, an insect repellent module, a communication module, a display module, and a power supply module; among which, At least two temperature and humidity sensors are provided, with at least one temperature and humidity sensor located on the surface of the feed pile and at least one temperature and humidity sensor located in the inner layer of the feed pile. Both temperature and humidity sensors are electrically connected to the microcontroller module. The gas sensor is installed on the surface of the feed pile to detect the gas emitted when the feed becomes moldy. It is electrically connected to the microcontroller module. Both the ventilation device and the anti-mildew module are electrically connected to the microcontroller module, and are used for ventilation and inhibition of microbial growth, respectively. The voiceprint collector is set at the bottom of the feed pile to collect the soundprints of weevils feeding. It is electrically connected to the microcontroller module. The insect repellent module is electrically connected to the microcontroller module and is used to repel insect pests; The communication module is electrically connected to the microcontroller module and is used to send the values collected by the temperature and humidity sensor, gas sensor and acoustic fingerprint collector to the PC or mobile terminal. The display module is electrically connected to the microcontroller module and is used to display the values collected by the temperature and humidity sensor, gas sensor and acoustic fingerprint collector. The power module is used to provide the operating voltage.
2. The IoT based feed raw material storage environment monitoring system as claimed in claim 1 wherein: The ventilation device includes a window, a mounting plate, and an electric push rod; the storage compartment is provided with a window mounting opening, the window is installed in the window mounting opening, one end of the window is hinged to the side wall of the window mounting opening, and the other end of the window can rotatably open or close the window mounting opening; the mounting plate is set on the wall of the storage compartment near the movable end of the window, one end of the electric push rod is hinged to the surface of the mounting plate, and the other end is hinged to the movable end of the window, and the electric push rod is electrically connected to a microcontroller module.
3. The IoT based feed raw material storage environment monitoring system as claimed in claim 1 wherein: The anti-mildew module includes a UV-C lamp tube installed above the wall of the storage compartment.
4. The IoT based feed raw material warehousing environment monitoring system as claimed in claim 1, wherein: The insect repellent module includes an ultrasonic insect repellent.
5. The IoT based feed raw material warehousing environment monitoring system as claimed in claim 1, wherein: The communication module includes a WiFi module and a serial communication module.
6. The IoT based feed raw material warehousing environment monitoring system as claimed in claim 1, wherein: It also includes a storage unit that is electrically connected to the microcontroller module.