Intelligent control system for insect breeding

By introducing temperature, humidity, and oxygen concentration sensors into the insect breeding box, and combining them with a processor and controller, and utilizing the gas pipes in the blower and airflow box, intelligent automatic control of the insect breeding box was achieved. This solved the problem of automatic adjustment of temperature, humidity, and oxygen concentration in insect breeding, reduced equipment costs, and improved the system's practicality and ease of maintenance.

CN223714849UActive Publication Date: 2025-12-26钟东琴
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Patent Information

Application Number
CN202422938576.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-29
Publication Date
2025-12-26
Estimated Expiration
2034-11-29

AI Technical Summary

Technical Problem

In insect farming, existing technologies cannot achieve intelligent and automatic control of temperature, humidity, and oxygen concentration, resulting in cumbersome operation, high costs, and inconvenient maintenance.

Method used

Temperature, humidity, and oxygen concentration sensors are used to monitor the environment inside the breeding tank. The processor and controller enable automatic adjustment, utilizing the blower and the cold air, oxygen, and humidity pipes in the airflow box to automatically control the temperature, humidity, and oxygen concentration inside the breeding tank.

Benefits of technology

It realizes intelligent automatic control in the insect breeding box, reduces manual operation, lowers equipment costs, and improves the system's practicality and ease of maintenance.

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    Figure CN223714849U_ABST
Patent Text Reader

Abstract

The utility model discloses an insect breeding intelligent control system which comprises a breeding box and an air blower, an air flow box is fixedly installed at the end of an air suction pipe of the air blower, and a one-way valve is arranged on an air inlet pipe. A cold air pipe for conveying cold air into the airflow box, an oxygen pipe for conveying oxygen into the airflow box and a moisture pipe for conveying moisture into the airflow box are arranged on the side face of the airflow box from top to bottom, and a controller and a processor are further fixedly connected to the upper surface of the airflow box. A temperature sensor, a humidity sensor and an oxygen concentration sensor are arranged in the breeding box. The temperature, humidity and oxygen concentration in the breeding box can be monitored in real time through the temperature sensor, the humidity sensor and the oxygen concentration sensor, signals are processed through the processor, the air inflow of the cold air pipe, the oxygen pipe and the moisture pipe is controlled through the controller, and therefore the temperature, humidity and oxygen concentration in the breeding box can be intelligently and automatically controlled. And manual opening and closing of equipment are not needed, so that labor is effectively saved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of breeding box, specifically is an intelligent control system for insect breeding. BACKGROUND

[0002] The larvae of housefly breeding are called fly maggots, which are high-quality animal protein feed. The nutritional components of fly maggots are similar to high-quality fish meal. When feeding egg chickens with fly maggot powder, the egg production rate is increased by 20% compared with egg chickens fed with the same amount of fish meal, and the feed reward is increased by more than 15%.

[0003] With the maturity of technology, in order to improve the breeding yield, make use of limited space, and box type breeding has begun to gradually popularize. Through retrieval, CN205455440U is found, which discloses a multilayer fly maggot breeding device and breeding method. The device comprises a plurality of layers of breeding conveyors, the breeding conveyors are driven by a motor, a feeding chute is fixed below each layer of breeding conveyors, an electric brush is arranged on the top of the feeding chute, a return chute is arranged below the feeding chute, a roller is arranged between the lower end of the feeding chute and the top end of the return chute, a heater is installed above each layer of breeding conveyors, a sprinkler is installed below the heater, and the device further comprises an electric control device. The electric control device controls the opening and closing of the motor, the heater, the sprinkler and the electric brush. When the device of the utility model is used for breeding, each layer of breeding area corresponds to different fly maggot breeding periods, and the stacking of layers is alternated and turned over for stirring. The inclined chute type technology is realized by the linkage of facilities such as the feeding chute, the roller and the return chute. The utility model greatly saves the land occupation of fly maggot breeding, the automatic turning over of layers increases the utilization rate of materials, and continuous use and cycle breeding can be realized.

[0004] In order to maintain temperature and humidity, the prior art installs a heater between layers for maintaining temperature and installs a sprinkler for controlling moisture in the fly maggot breeding area. This way of adjusting temperature and humidity not only needs manual opening and closing of equipment to adjust temperature and humidity, but also is complicated to operate. When the number of breeding layers is large, a large number of heaters and sprinklers need to be installed, which is not conducive to cost saving and is not conducive to later maintenance. Therefore, we need an intelligent control system for insect breeding. UTILITY MODEL CONTENTS

[0005] The utility model aims to provide an intelligent control system for insect breeding to solve the problems in the background art.

[0006] In order to achieve the above object, the utility model provides the following technical scheme: an intelligent control system for insect breeding, comprising a breeding box and a blower, the breeding box is fixedly installed at the air outlet pipe end of the blower, and the air outlet pipe and the breeding box are interconnected, the air inlet pipe end of the blower is fixedly installed with an airflow box, and the air inlet pipe and the airflow box are interconnected, the upper surface of the airflow box is provided with an air inlet pipe which is interconnected with the airflow box, a check valve is arranged on the air inlet pipe, the side surface of the airflow box is provided from top to bottom with a cold air pipe for conveying cold air into the airflow box, an oxygen pipe for conveying oxygen into the airflow box and a moisture pipe for conveying moisture into the airflow box, and the upper surface of the airflow box is further fixedly connected with a controller and a processor, and the inside of the breeding box is provided with a temperature sensor, a humidity sensor and an oxygen concentration sensor.

[0007] Preferably, the cold air pipe is provided with a cold air blower at the end away from the airflow box, the oxygen pipe is provided with an oxygen generator at the end away from the airflow box, and the moisture pipe is provided with an atomizing humidifier at the end away from the airflow box, and the cold air blower, the oxygen generator and the atomizing humidifier are fixedly installed on the support frame.

[0008] Preferably, the temperature sensor, the humidity sensor and the oxygen concentration sensor are signal connected with the processor, the cold air blower, the oxygen generator and the atomizing humidifier are signal connected with the controller, and the processor and the controller are signal connected.

[0009] Preferably, the outer surface of the air inlet pipe is fixedly connected with a mounting flange, the surface of the mounting flange is screw connected with a plurality of first fixing bolts, and the surface of the airflow box is provided with a plurality of threaded holes corresponding to the first fixing bolts.

[0010] Preferably, the outer surface of the air outlet pipe is screw connected with a plurality of second fixing bolts which are screw connected with the breeding box.

[0011] Preferably, the two sides of the processor are fixedly connected with cooling plates, and the lower ends of the cooling plates extend into the airflow box and are located on both sides of the cold air pipe.

[0012] Beneficial effects

[0013] The utility model provides an intelligent control system for insect breeding, which has the following beneficial effects:

[0014] 1.The intelligent control system for insect breeding can realize intelligent automatic control of the temperature, humidity and oxygen concentration in the breeding box, without manual opening and closing of the equipment, and effectively saves labor.

[0015] 2.The intelligent control system for insect breeding replaces the traditional heater and sprinkler with the cold air generator, oxygen generator and atomizing humidifier, and then uses the air blower to send the air flow from the air flow box to the breeding box, so that the equipment is simplified, the cost of the whole system is greatly saved, the practicability is improved, and the later maintenance is facilitated. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 Fig. 1 is a schematic diagram of the overall three-dimensional structure of the intelligent control system for insect breeding according to the present application;

[0017] Figure 2 Fig. 2 is a schematic diagram of the cross-sectional structure of the air flow box of the intelligent control system for insect breeding according to the present application;

[0018] Figure 3 Fig. 3 is a schematic diagram of the cross-sectional structure of the air blower of the intelligent control system for insect breeding according to the present application;

[0019] Figure 4 Fig. 4 is a signal connection block diagram of the intelligent control system for insect breeding according to the present application.

[0020] In the figure: 1, breeding box; 2, air blower; 3, air outlet pipe; 4, air suction pipe; 5, air flow box; 6, air inlet pipe; 7, cold air pipe; 8, oxygen pipe; 9, humidity pipe; 10, controller; 11, processor; 12, temperature sensor; 13, humidity sensor; 14, oxygen concentration sensor; 15, cold air generator; 16, oxygen generator; 17, atomizing humidifier; 18, mounting flange; 19, first fixing bolt; 20, threaded hole; 21, second fixing bolt; 22, cooling plate. DETAILED DESCRIPTION

[0021] Clearly, the described embodiments are merely a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the present application.

[0022] Please refer to Figures 1-4 The utility model provides a technical scheme: an intelligent control system for insect breeding, comprising a breeding box 1 and a blower 2, the breeding box 1 is fixedly installed at the end of the air outlet pipe 3 of the blower 2, and the air outlet pipe 3 and the breeding box 1 are in communication with each other, the end of the air inlet pipe 4 of the blower 2 is fixedly installed with an airflow box 5, and the air inlet pipe 4 and the airflow box 5 are in communication with each other, the upper surface of the airflow box 5 is provided with an air inlet pipe 6 in communication with the airflow box 5, a one-way valve is arranged on the air inlet pipe 6, the side surface of the airflow box 5 is provided from top to bottom with a cold air pipe 7 for conveying cold air into the airflow box 5, an oxygen pipe 8 for conveying oxygen into the airflow box 5 and a humidity pipe 9 for conveying humidity into the airflow box 5, and the upper surface of the airflow box 5 is further fixedly connected with a controller 10 and a processor 11, the inside of the breeding box 1 is respectively provided with a temperature sensor 12, a humidity sensor 13 and an oxygen concentration sensor 14, the temperature, humidity and oxygen concentration in the breeding box 1 can be monitored in real time through the temperature sensor 12, the humidity sensor 13 and the oxygen concentration sensor 14, when the temperature in the breeding box 1 is higher than a predetermined value, or the humidity and oxygen concentration in the breeding box 1 are lower than a predetermined value, the signal is processed through the processor 11, the air inlet amount of the cold air pipe 7, the oxygen pipe 8 and the humidity pipe 9 is controlled by the controller 10, and then the air in the airflow box 5 is pumped into the breeding box 1 by the blower 2, so that the temperature, humidity and oxygen concentration in the breeding box 1 can be automatically controlled intelligently, without the need for manual opening and closing of the equipment, and the labor is effectively saved.

[0023] By arranging the one-way valve, the gas in the airflow box 5 can be prevented from overflowing from the air inlet pipe 6.

[0024] The end of the cold air pipe 7 away from the airflow box 5 is provided with a cold fan 15, the end of the oxygen pipe 8 away from the airflow box 5 is provided with an oxygen generator 16, and the end of the humidity pipe 9 away from the airflow box 5 is provided with an atomizing humidifier 17, and the cold fan 15, the oxygen generator 16 and the atomizing humidifier 17 are all fixedly installed on the support frame.

[0025] The cold air, oxygen and humidity are generated by the cold fan 15, the oxygen generator 16 and the atomizing humidifier 17, and then the air is pumped from the airflow box 5 into the breeding box 1 by the blower 2, so that the traditional heater and sprinkler are replaced in this way, the equipment is simplified, the cost of the whole system is greatly saved, the practicability is improved, and the later maintenance is facilitated.

[0026] The temperature sensor 12, the humidity sensor 13 and the oxygen concentration sensor 14 are signal connected with the processor 11, the air cooler 15, the oxygen generator 16 and the atomizing humidifier 17 are signal connected with the controller 10, and the processor 11 and the controller 10 are signal connected.

[0027] The outer surface of the air inlet pipe 4 is fixedly connected with a mounting flange 18, the surface of the mounting flange 18 is screw connected with a plurality of first fixing bolts 19, the surface of the airflow box 5 is provided with a plurality of threaded holes 20 corresponding to the first fixing bolts 19, and the outer surface of the air outlet pipe 3 is screw connected with a plurality of second fixing bolts 21 screw connected with the breeding tank 1, through the setting of the mounting flange 18, the first fixing bolt 19 and the threaded hole 20, the separation of the airflow box 5 and the air blower 2 can be realized after the first fixing bolt 19 is disassembled, and the separation of the breeding tank 1 and the air blower 2 can be realized by disassembling the second fixing bolt 21, so that the whole system is provided with the convenience of split transportation.

[0028] The two sides of the processor 11 are fixedly connected with cooling plates 22, the lower end of the cooling plate 22 extends to the inside of the airflow box 5 and is located on both sides of the cold air pipe 7, through the setting of the cooling plate 22, the cooling plate 22 is cooled by blowing cold air out of the cold air pipe 7, and the processor 11 is cooled by the cooling plate 22, so that the processor 11 can work more stably.

[0029] Working principle: when the intelligent control system for insect breeding is in use, the temperature sensor 12, the humidity sensor 13 and the oxygen concentration sensor 14 can be used to monitor the temperature, humidity and oxygen concentration in the breeding box 1 in real time, when the temperature in the breeding box 1 is higher than the predetermined value, the temperature sensor 12 will send a signal to the processor 11, the processor 11 will send the signal to the controller 10 after processing the signal, the controller 10 will send a control signal to the air cooler 15, so that the air cooler 15 can be opened, when the temperature drops to the predetermined value, the temperature sensor 12 will send a signal to the processor 11, the processor 11 will send the signal to the controller 10 after processing the signal, the controller 10 will send a control signal to the air cooler 15, so that the air cooler 15 can be closed, when the humidity and oxygen concentration in the breeding box 1 are lower than the predetermined value, the humidity sensor 13 and the oxygen concentration sensor 14 will send a signal to the processor 11, the processor 11 will send the signal to the controller 10 after processing the signal, the controller 10 will send a control signal to the atomizing humidifier 17 and the oxygen generator 16, so that the atomizing humidifier 17 and the oxygen generator 16 can be opened, when the humidity and oxygen concentration in the breeding box 1 reach the predetermined value, the controller 10 will control the atomizing humidifier 17 and the oxygen generator 16 to be closed, so that only the air blower 2 works, through the working of the air blower 2, the air outside can be sucked into the air flow box 5 from the air inlet pipe 6, and then conveyed into the breeding box 1, the system realizes intelligent automatic control of the temperature, humidity and oxygen concentration in the breeding box 1, without manually opening and closing the equipment, and labor is effectively saved.

[0030] The utility model discloses the embodiment of the drawings, only relate to the structure of the embodiment of the disclosure, other structures can refer to the usual design, under the condition of not conflicting, the same embodiment and different embodiments of the utility model can be combined with each other;

[0031] Finally: the above only for preferred embodiment of the utility model has, and does not use for limiting the utility model, any modification, equivalent replacement, improvement etc. that is made in the spirit and principles of the utility model, should be contained in the protection scope of the utility model.

Claims

1. An intelligent control system for insect breeding, comprising a breeding box (1) and a blower (2), characterized in that: The breeding box (1) is fixedly installed at the end of the air outlet pipe (3) of the air blower (2), and the air outlet pipe (3) and the breeding box (1) are in communication with each other, the end of the air suction pipe (4) of the air blower (2) is fixedly installed with the airflow box (5), and the air suction pipe (4) and the airflow box (5) are in communication with each other, the upper surface of the airflow box (5) is provided with the air inlet pipe (6) in communication with the airflow box (5), the air inlet pipe (6) is provided with a one-way valve, the side surface of the airflow box (5) is provided with the cold air pipe (7) for conveying cold air into the airflow box (5), the oxygen pipe (8) for conveying oxygen into the airflow box (5) and the humidity pipe (9) for conveying humidity into the airflow box (5) from top to bottom, and the upper surface of the airflow box (5) is further fixedly connected with the controller (10) and the processor (11), and the inside of the breeding box (1) is provided with the temperature sensor (12), the humidity sensor (13) and the oxygen concentration sensor (14).

2. The intelligent control system for insect breeding according to claim 1, characterized in that: The cold air pipe (7) is provided with the cold air fan (15) at the end away from the airflow box (5), the oxygen pipe (8) is provided with the oxygen generator (16) at the end away from the airflow box (5), and the humidity pipe (9) is provided with the atomizing humidifier (17) at the end away from the airflow box (5), and the cold air fan (15), the oxygen generator (16) and the atomizing humidifier (17) are fixedly installed on the support frame.

3. The intelligent control system for insect breeding according to claim 2, characterized in that: The temperature sensor (12), the humidity sensor (13) and the oxygen concentration sensor (14) are signal connected with the processor (11), the cold air fan (15), the oxygen generator (16) and the atomizing humidifier (17) are signal connected with the controller (10), and the processor (11) and the controller (10) are signal connected.

4. The intelligent control system for insect breeding according to claim 1, characterized in that: The outer surface of the air suction pipe (4) is fixedly connected with the mounting flange (18), the surface of the mounting flange (18) is screw connected with a plurality of first fixing bolts (19), and the surface of the airflow box (5) is provided with a plurality of threaded holes (20) corresponding to the first fixing bolts (19).

5. The intelligent control system for insect breeding according to claim 1, characterized in that: The outer surface of the air outlet pipe (3) is screw connected with a plurality of second fixing bolts (21) screw connected with the breeding box (1).

6. The intelligent control system for insect breeding according to claim 2, characterized in that: The two sides of the processor (11) are fixedly connected with the cooling plates (22), and the lower ends of the cooling plates (22) extend into the airflow box (5) and are located on both sides of the cold air pipe (7).

Citation Information

Patent Citations

  • Multilayer fly maggot breeding?device

    CN205455440U