Continuous monitoring equipment for flies

By designing a continuous fly monitoring device and utilizing automation technology and cloud servers to process fly monitoring data, the problems of unstable monitoring data and high cost in existing technologies have been solved, realizing automated continuous monitoring and efficient data processing of flies.

CN223515567UActive Publication Date: 2025-11-07GUANGDONG BAISHENG BIOTECHNOLOGY CO LTD

Patent Information

Application Number
CN202422651671.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Priority Date
2023-11-29
Filing Date
2024-10-31
Publication Date
2025-11-07
Estimated Expiration
2034-10-31

AI Technical Summary

Technical Problem

Existing fly monitoring methods are affected by hardware, human factors, and environmental factors, resulting in unstable monitoring data and high costs, making it difficult to achieve large-scale fly monitoring.

Method used

Design a continuous fly monitoring device, comprising an electrical control box, fly traps, adhesive reel reel, protective paper reel, and drive rod. Utilize a camera, fan, and control chip to achieve automatic fly monitoring and data collection. Flies are captured through automatic adhesive replacement and fan capture, and information is processed by a cloud server.

Benefits of technology

It enables automated and continuous monitoring of flies, reduces labor costs, improves the accuracy and efficiency of monitoring results, reduces human intervention, and is applicable to fly monitoring in different regions.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223515567U_ABST
    Figure CN223515567U_ABST
Patent Text Reader

Abstract

The utility model discloses continuous fly monitoring equipment, which belongs to the technical field of pest control and comprises a main machine body, an electric cabinet and a fly luring cage are arranged on the main machine body, a fly inlet channel, an adhesive sticker winding shaft, a discharging winding shaft, a protective paper winding shaft and a driving rod are arranged in the electric cabinet, the fly luring cage is communicated with the fly inlet channel, and bait is arranged on the fly luring cage. The fly inlet channel is provided with a fan and a camera, double-layer roll paper is detachably arranged on the discharging reel and comprises adhesive sticker and protective paper which are attached to each other, the driving rod moves at a channel port of the fly inlet channel, the adhesive sticker passes through the position between the channel port and the driving rod and is wound on the adhesive sticker winding shaft, and the protective paper is wound on the protective paper winding shaft. According to the structure, remote continuous monitoring of flies can be achieved, the monitoring cost of the flies is reduced, the working efficiency can be improved, and meanwhile the working stability of monitoring and the data accuracy are high.
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Description

TECHNICAL FIELD

[0001] The utility model relates to pest control technical field, concretely is a fly continuous monitoring equipment. BACKGROUND

[0002] Common flies include housefly, city fly, big head golden fly, silk green fly, copper green fly, flesh fly and the like, and there are nearly 10 kinds of monitoring methods for flies in the prior art, such as cage trapping method, visual method, sticky trapping method, beating method, toxic bait trapping method, grid method, fly track fly spot method, insect net trapping method, marking release recovery method and the like, such as the utility model disclosed in Chinese patent No. CN201621191733.9, the utility model disclosed in Chinese patent No. CN202222298447.4, the utility model disclosed in Chinese patent No. CN201520185558.1, the utility model disclosed in CN201120428199.X and the like. However, the above-mentioned disclosed technology for capturing and monitoring flies will be affected by the hardware factors including the trap, the knowledge level, experience level and responsibility of the staff, the subjective factors and the objective factors such as environmental factors, the captured fly individuals are of different types, the monitored fly data is uneven, especially when large-scale monitoring of flies in different regions is needed, not only the labor cost is very high, but also it is difficult to obtain a large number of identification personnel, and the monitoring result data is unstable and greatly different from the actual situation. Therefore, it is necessary to further improve. CONTENT OF THE UTILITY MODEL

[0003] The utility model aims at providing a fly continuous monitoring equipment to overcome the defects in the prior art.

[0004] A fly continuous monitoring equipment designed for this purpose, comprising a host body, an electric control box and a fly trap are arranged on the host body, an inlet fly channel, an adhesive roll shaft, a material roll shaft, a protective paper roll shaft and a driving rod are arranged in the electric control box, the fly trap is in communication with the inlet fly channel, and bait is arranged on the fly trap, a fan and a camera are arranged on the inlet fly channel, a double-layer paper roll is detachably arranged on the material roll shaft, the double-layer paper roll is composed of adhesive and protective paper, the driving rod is movable at a channel port of the inlet fly channel, the adhesive is wound on the adhesive roll shaft through the channel port and the driving rod, and the protective paper is wound on the protective paper roll shaft.

[0005] The host body is also provided with a communication and GPS module, and the electric control box is also provided with a control chip, a temperature and humidity sensor, a wind speed sensor, and a power supply group.

[0006] The power supply group is a rechargeable battery, the top of the host body is also provided with a top cover, the top cover is provided with a solar panel electrically connected with the power supply group, or the host body is provided with a charging port corresponding to the power supply group, or the power supply group is a replaceable battery.

[0007] The opening of the channel port faces downward, the driving rod is raised and lowered below the channel port, and the size of the adhesive is smaller than the size of the channel port.

[0008] When the driving rod rises, the adhesive is driven to press into the fly channel through the channel port.

[0009] When the driving rod descends, the adhesive leaves the fly channel through the channel port by its own elastic force or the winding force of the adhesive winding shaft and the protective paper winding shaft.

[0010] One end of the fly cage is provided with a fly inlet, the other end is provided with a fly outlet, and the fly outlet and the fly channel are in communication with each other, the bait is arranged outside the fly inlet, or on the fly inlet, or on the fly outlet, or in the fly cage.

[0011] The fly inlet is arranged outside the fly inlet, the bottom of the host body is provided with a supporting leg, and the fly inlet area is formed by supporting the supporting leg.

[0012] The adhesive winding shaft and the unwinding shaft are respectively located below the two sides of the channel port, and the protective paper winding shaft is located above the protective paper winding shaft and is arranged on the same side.

[0013] The camera is an image camera or a video camera, and is located above the channel port, the camera is also provided with a fill light, and the flies on the adhesive in the fly channel are monitored by video recording or photographing.

[0014] The fan is a powerful fan and is located above the channel port, and the flies in the fly channel are blown onto the adhesive.

[0015] The host body is provided with a plurality of host bodies according to the monitoring requirements, the plurality of host bodies are respectively placed in different monitoring places, and each host body has an independent number or name.

[0016] wherein, the continuous monitoring method comprises the following steps:

[0017] Step one, after the host body is set with various parameters, the control chip is started and initialized, then the control chip controls the driving rod to descend, and then the control chip controls the adhesive tape winding shaft and the protective paper winding shaft to rotate simultaneously, so that the adhesive tape and the protective paper are separated from each other, and the adhesive surface of the adhesive tape faces the channel port;

[0018] Step two, the control chip controls the driving rod to ascend and drives the adhesive tape to enter the fly inlet channel through the channel port;

[0019] Step three, flies are attracted by the bait, enter the fly cage through the fly inlet, then enter the fly inlet channel through the fly outlet, and finally are blown off by the fan and adhere to the adhesive tape;

[0020] Step four, after a certain time or a certain number of flies adhere to the adhesive tape, the control chip controls the camera to work, the camera monitors the flies on the adhesive tape by recording or taking pictures, so as to obtain monitoring information, and the control chip controls the temperature and humidity sensor, the wind speed sensor, the communication and GPS module to work, and obtains the positioning information of the host body and the temperature, humidity and wind speed information of the environment where the host body is located;

[0021] Step five, the control chip stores the monitoring information, positioning information, temperature, humidity and wind speed information of the outside world, and the number or name of the host body to the storage unit arranged thereon, and the storage unit sends the monitoring information, positioning information, temperature, humidity and wind speed information of the outside world, and the number or name of the host body to the cloud server through the communication and GPS module;

[0022] Step six, after the cloud server receives the monitoring information, positioning information, temperature, humidity and wind speed information of the outside world, and the number or name of each host body transmitted by the host body, it stores them according to certain index rules, intelligently classifies and identifies various information, and finally stores the classification and identification results for the monitor to call through a mobile device or a terminal device;

[0023] Step seven, after the host body completes a round of monitoring, the control chip controls the driving rod to descend, the adhesive tape leaves the fly inlet channel, then the control chip controls the adhesive tape winding shaft and the protective paper winding shaft to rotate simultaneously, so that the adhesive tape and the protective paper are separated from each other again, the old adhesive tape with flies adhered is recycled by the adhesive tape winding shaft, the adhesive surface of the new adhesive tape faces the channel port, and a new round of monitoring is performed.

[0024] The monitor can also remotely control the main body to stop working, start working and adjust parameters of the main body through remote connection between the mobile device or terminal device and the control chip.

[0025] Compared with the prior art, the utility model has the following advantages through the above structure improvement:

[0026] I. The self-adhesive winding shaft and the protective paper winding shaft can rotate simultaneously, so that the self-adhesive and the protective paper of the double-layered winding paper can be separated from each other, and the old and new self-adhesive can be automatically recycled and replaced at the channel port, so that the old self-adhesive can be automatically recycled, the drawbacks caused by manual replacement of the main body after monitoring for a certain period of time are avoided, and new self-adhesive can be ensured for the main body to monitor and use, thereby realizing remote continuous automatic monitoring of the main body.

[0027] II. The driving rod can be lifted and lowered, so that the self-adhesive can automatically enter the fly channel through the channel port, thereby providing a favorable basis for remote continuous automatic monitoring of the main body.

[0028] III. The camera can monitor and record the flies on the self-adhesive, thereby realizing automatic monitoring of the flies, replacing the tedious operations such as fly monitoring instrument recycling, information discrimination and data calculation by manual operation, reducing the monitoring cost of the flies, and improving the work efficiency and the accuracy of the monitoring results.

[0029] IV. The fly cage has a bait, which can attract the flies well, and the self-adhesive can also adhere to the flies, thereby realizing good trapping and killing of the flies, meeting the monitoring and killing of the flies, and having high practicability.

[0030] V. The fly cage and the fly channel are connected to each other, so that the flies entering the fly cage can enter the fly channel without escaping.

[0031] VI. The fan blows the flies in the fly channel to the self-adhesive, the self-adhesive adheres to the flies, and the flies can be prevented from flying around, thereby effectively realizing the capture of the flies, and improving the accuracy of the video monitoring or photographing monitoring of the camera, so that the camera can better realize the monitoring work. BRIEF DESCRIPTION OF DRAWINGS

[0032] Fig. 1 It is an assembly structure diagram of an embodiment of the utility model.

[0033] Fig. 2 It is a monitoring work flow chart of an embodiment of the utility model.

[0034] Fig. 3 The cloud server workflow diagram of an embodiment of the present application. DETAILED DESCRIPTION

[0035] In order to make the above objectives, characteristics and advantages of the present application more apparent, obvious and understandable, the specific embodiments of the present application will be described in detail below with reference to the drawings. In the following description, a large number of specific details are set forth in order to provide a sufficient understanding of the present application. However, the present application can be implemented in many other ways different from those described herein, and those skilled in the art can make similar improvements without departing from the connotation of the present application, so the present application is not limited by the specific embodiments disclosed below.

[0036] The present application will be further described below with reference to the drawings and embodiments.

[0037] Referring to Figs. 1-3 , the fly continuous monitoring equipment includes a main body, an electric control box 5 and a fly trap 17 are arranged on the main body, an inlet fly channel 18, an adhesive roll shaft 7, a release roll shaft 8, a protective paper roll shaft 9 and a driving rod 15 are arranged in the electric control box 5, the fly trap 17 and the inlet fly channel 18 are in communication with each other, and a bait 16 is arranged on the fly trap 17, a fan 4 and a camera 6 are arranged on the inlet fly channel 18, a double-layer paper is detachably arranged on the release roll shaft 8, the double-layer paper is an adhesive 10 and a protective paper which are attached to each other, the driving rod 15 is movable at a channel port 20 of the inlet fly channel 18, the adhesive 10 passes between the channel port 20 and the driving rod 15 and is wound on the adhesive roll shaft 7, and the protective paper is wound on the protective paper roll shaft 9.

[0038] In the embodiment, the fly trap 17 is fixedly assembled on the main body to improve the assembly stability of the fly trap 17, and in addition, the fly trap 17 can also be detachably arranged on the main body to facilitate the user to replace the fly trap 17 as needed.

[0039] A communication and GPS module 14 is further arranged on the main body, and a control chip 3, a temperature and humidity sensor 2, a wind speed sensor 12 and a power supply group 11 are further arranged in the electric control box 5, and the control chip 3 is electrically connected with the adhesive roll shaft 7, the protective paper roll shaft 9, the driving rod 15, the fan 4, the camera 6, the temperature and humidity sensor 2, the wind speed sensor 12, the power supply group 11 and the communication and GPS module 14.

[0040] In the embodiment, the control chip 3 is at least integrated with:

[0041] a monitoring control module for controlling the camera 6 to record or take pictures,

[0042] a roll shaft control module for controlling the adhesive roll shaft 7 and the protective paper roll shaft 9 to rotate,

[0043] a driving rod driving control module for controlling the driving rod 15 to lift and lower,

[0044] a communication and GPS control module for controlling the communication and GPS module 14 to communicate remotely and locate,

[0045] a video or image processing module for processing the monitoring information of the camera 6,

[0046] an external environment control module for controlling the temperature and humidity sensor 2 and the wind speed sensor 12 to sense the external temperature, humidity and wind speed information in the environment where the main body is located,

[0047] a fan driving control module for controlling the on-off and rotating speed of the fan 4,

[0048] a storage unit for storing the positioning information, monitoring information, external environment information and the number or name of the main body.

[0049] The power supply group 11 is a rechargeable battery, and the top of the main body is further provided with a top cover 1, and the top cover 1 is provided with a solar panel electrically connected with the power supply group 11, or the main body is provided with a charging port corresponding to the power supply group 11, or the power supply group 11 is a replaceable battery.

[0050] In this embodiment, the power supply group 11 is a rechargeable solar cell, and the top cover 1 is provided with a solar panel, which is electrically connected with the control chip 3 and charges the power supply group 11 by the control of the control chip 3. The top cover 1 can shield the entire main body to avoid light and rain from entering the electric control box 5 and the fly trap 17. The temperature and humidity sensor 2 and the wind speed sensor 12 are respectively arranged on the top cover 1 to facilitate the detection of environmental information such as temperature, humidity and wind speed. The communication and GPS module 14 is arranged on the outside of the main body or the top cover 1 to facilitate remote communication.

[0051] The control chip 3 controls the adhesive roll-up shaft 7 and the protective paper roll-up shaft 8 to rotate at the same time, so that the double-layered roll paper adhesive 10 and the protective paper can be separated from each other, and the new and old adhesive 10 can be automatically recycled and replaced at the channel port 20, so as to ensure that the old adhesive 10 can be automatically recycled, avoid the disadvantages caused by manual replacement after the main body is monitored for a certain period of time, and ensure that there is new adhesive 10 for the main body to monitor and use, thereby realizing the remote continuous automatic monitoring of the main body.

[0052] The control chip 3 controls the driving rod 15 to lift and lower, so that the adhesive 10 can automatically enter and exit the fly channel 18, which provides a favorable basis for the remote continuous automatic monitoring of the main body.

[0053] The control chip 3 can control the camera 6 to monitor the flies on the adhesive sticker 10 through video recording or taking photos, thereby achieving automatic monitoring of the flies, replacing manual operation of fly monitoring instruments, information screening and data calculation, etc., reducing the monitoring cost of flies, and improving the work efficiency and the accuracy of the monitoring results.

[0054] The fly cage 17 is provided with the fly attractant 16, which can attract flies well. The adhesive sticker 10 can also adhere to the flies, thereby achieving good fly trapping and killing, meeting the monitoring and killing of flies, and having high practicability.

[0055] The fly cage 17 and the fly channel 18 are connected to each other, so that the flies entering the fly cage 17 can enter the fly channel 18 without escaping.

[0056] The control chip 3 can control the fan 4 to work and blow the flies in the fly channel 18 to the adhesive sticker 10, and the adhesive sticker 10 can adhere to the flies and avoid flying around, thereby effectively trapping the flies and improving the accuracy of video recording or photo monitoring of the camera 6, so that the camera 6 can better achieve the monitoring work.

[0057] The opening of the channel port 20 faces downward, the driving rod 15 is lifted and lowered below the channel port 20, and the size of the adhesive sticker 10 is smaller than that of the channel port 20, so that the fan 4 blows the air in the fly channel 18 to the outside of the fly channel 18 to realize air convection, ensures that all the flies blown by the fan 4 fall on the adhesive sticker 10, and improves the adhesion of the adhesive sticker 10 to the flies.

[0058] When the driving rod 15 is lifted, the adhesive sticker 10 is driven to press into the fly channel 18 through the channel port 20.

[0059] When the driving rod 15 is lowered, the adhesive sticker 10 leaves the fly channel 18 through the self-elastic force or the winding force of the adhesive sticker winding shaft 7 and the protective paper winding shaft 9 through the channel port 20.

[0060] In this embodiment, the electric control box 5 is provided with a material winding shaft driver corresponding to the adhesive sticker winding shaft 7 and the protective paper winding shaft 9, and the material winding shaft driver is electrically connected with the control chip 3; the adhesive sticker winding shaft 7 and the protective paper winding shaft 9 are simultaneously rotated in the electric control box 5 through the cooperation of the material winding shaft driver and the control chip 3.

[0061] One end of the fly cage 17 is provided with the fly inlet 21, and the other end is provided with the fly outlet 13 and connected with the fly channel 18 through the fly outlet 13. The fly attractant 16 is arranged outside, on or in the fly cage 17.

[0062] The fly inlet 21 is arranged outside the fly inlet 21, the main body bottom is provided with the supporting leg 19, and the fly inlet area is formed by supporting the fly inlet area through the supporting leg 19.

[0063] In the embodiment, the bait 16 is arranged outside the fly inlet 21, and the fly inlet area is formed at the bottom of the main body because the main body is supported by the supporting leg 19. Flies enter the fly inlet 21 through the fly inlet area by the induction of the bait 16, and then enter the fly cage 17. In addition, the bait 16 is arranged at a distance from the bottom of the fly inlet 21, and the distance is 1-5 cm, preferably 2 cm. The bait 16 is also supported by the supporting leg 19, that is, the bait 16 is arranged on the fly inlet area. In addition, the bait 16 is arranged at a distance from the fly outlet 13, and the distance is 30-50 cm, preferably 40 cm. The main purpose is that flies are attracted to the bait 16 and fall on the bait 16. When the flies take off, they can directly enter the fly cage 17 from the fly inlet 21. Therefore, the bait 16 is arranged at a distance of 2 cm from the bottom of the main body to provide a place for the flies to land.

[0064] The adhesive roll shaft 7 and the release roll shaft 8 are arranged on the two sides below the channel port 20, and the protective paper roll shaft 9 is arranged above the protective paper roll shaft 9 and on the same side.

[0065] The shaft center of the release roll shaft 8 is substantially on the same horizontal line as the shaft center of the adhesive roll shaft 7, so that the adhesive 10 can pass straight between the channel port 20 and the driving rod 15. The double-layer roll paper can be removed from the release roll shaft 8, that is, when the double-layer roll paper is used up, the release roll shaft 8 can be removed and replaced. The lower layer of the double-layer roll paper is provided with the spaced adhesive 10, and the upper layer is the protective paper which is pasted on the adhesive 10 and used to protect the adhesive 10. The adhesive 10 and the protective paper are drivenly connected with the adhesive roll shaft 7 and the protective paper roll shaft 9, respectively. When the adhesive roll shaft 7 and the protective paper roll shaft 9 rotate in the same direction at the same time, the adhesive 10 and the protective paper are wound by the adhesive roll shaft 7 and the protective paper roll shaft 9, respectively. At the same time, the release roll shaft 8 also rotates and releases new adhesive 10 and protective paper.

[0066] The camera 6 is an image camera or a video camera and is arranged above the channel port 20. The camera 6 is also provided with a fill light and is used to monitor and record flies on the adhesive 10 in the fly channel 18.

[0067] In this embodiment, the camera 6 can be a video camera or an image camera, which can be a camera or a CCD. In order to reduce the space usage, the camera 6 is preferably a micro camera or an endoscope, which faces the adhesive sticker 10 and records or takes photos of the flies on the adhesive sticker 10 under the control of the control chip 3. The setting of the light supplement lamp can supplement light in the fly inlet channel 18 to improve the recording or photographing effect of the camera 6.

[0068] The fan 4 is a powerful fan and is located above the channel port 20, and blows the flies in the fly inlet channel 18 to the adhesive sticker 10.

[0069] In this embodiment, since the fan 4 is a powerful fan, all the flies in the fly inlet channel 18 can be blown to the adhesive sticker 10.

[0070] The main body is provided with a plurality of main bodies according to the monitoring requirements, and the plurality of main bodies are placed in different monitoring places, and each main body has an independent number or name.

[0071] That is, one main body of the embodiment can be placed in one or more different areas or positions to monitor the flies in one or more different areas or positions, and each main body has an independent number or name, which is convenient for control and data processing and analysis.

[0072] The continuous monitoring method includes the following steps:

[0073] Step one, after setting all the parameters of the main body, the control chip 3 is started and initialized, then the control chip 3 controls the driving rod 15 to descend, and then the control chip 3 controls the adhesive roll-up shaft 7 and the protective paper roll-up shaft 9 to rotate at the same time, so that the adhesive sticker 10 and the protective paper are separated from each other, and the adhesive surface of the adhesive sticker 10 faces the channel port 20;

[0074] Step two, the control chip 3 controls the driving rod 15 to rise and drives the adhesive sticker 10 to enter the fly inlet channel 18 through the channel port 20;

[0075] Step three, the flies are attracted by the bait 16, enter the fly cage 17 through the fly inlet 21, then enter the fly inlet channel 18 through the fly outlet 13, and finally are blown off by the fan 4 and adhere to the adhesive sticker 10;

[0076] Step four, after the flies adhere to the adhesive sticker 10 for a certain period of time or a certain number, the control chip 3 controls the camera 6 to work, the camera 6 records or takes photos of the flies on the adhesive sticker 10 to obtain the monitoring information, and at the same time, the control chip 3 controls the temperature and humidity sensor 2, the wind speed sensor 12, the communication and GPS module 14 to work, and obtains the positioning information of the main body and the temperature, humidity and wind speed information of the environment where the main body is located.

[0077] Step five, the control chip 3 stores the monitoring information, positioning information, temperature, humidity, wind speed information of the outside world, the number or name of the main body to the storage unit arranged thereon, and the storage unit sends the monitoring information, positioning information, temperature, humidity, wind speed information of the outside world, the number or name of the main body to the cloud server through the communication and GPS module 14;

[0078] Step six, after the cloud server receives the monitoring information, positioning information, temperature, humidity, wind speed information of the outside world, the number or name of the main body transmitted by each main body, it stores according to certain index rules, intelligently classifies and identifies various information, and finally stores the classification and identification results for the monitor to call through the mobile device or terminal device;

[0079] Step seven, after the main body completes a round of monitoring, the control chip 3 controls the driving rod 15 to descend, the adhesive tape 10 leaves the fly channel 18, and then the control chip 3 controls the adhesive tape winding shaft 7 and the protective paper winding shaft 9 to rotate at the same time, so that the adhesive tape 10 and the protective paper are separated from each other again, and the old adhesive tape 10 adhered with flies is recycled by the adhesive tape winding shaft 7, the new adhesive tape 10 has a sticky surface facing the channel port 20, and a new round of monitoring is performed;

[0080] The monitor can also remotely connect between the mobile device or terminal device and the control chip 3 to remotely control the main body to stop working, start working, and adjust various parameters of the main body.

[0081] In this embodiment, the control chip 3 is also provided with a timer, which is used to control the working time of the adhesive tape winding shaft 7, the protective paper winding shaft 9, the driving rod 15, the fan 4, the camera 6, the temperature and humidity sensor 2, the wind speed sensor 12, the power supply group 11, and the communication and GPS module 14, so as to control the information quantity of the camera 6 recording or taking pictures, control the rotating speed of the adhesive tape winding shaft 7 and the protective paper winding shaft 9, control the rising and falling of the driving rod 15, control the rotating time and speed of the fan 4, obtain the temperature and humidity information in different time periods, and send the monitoring information, positioning information, temperature, humidity, wind speed information of the outside world, and the number or name of the main body to the cloud server within a certain time.

[0082] The cloud server of the embodiment receives the monitoring information, the positioning information, the temperature, the humidity, the wind speed information of the outside world, the number or name of the host body, first image or image segmentation, then feature extraction, then input the neural network classifier for recognition, classification, counting, and then automatically output the classification result, and finally store the classification result in the cloud for subsequent calling by the monitor through the mobile device or the terminal device; Since the cloud server is used for recognition, classification and storage, the problem of a large number of manpower applications can be solved, especially the problem of a serious lack of professional fly identification personnel in grassroots monitoring units, which greatly improves the monitoring result and reduces the instability of manual monitoring, and further reduces the monitoring cost of flies. In addition, the cloud server can also store the received monitoring information, positioning information, temperature, humidity, wind speed information of the outside world, and number or name of the host body without processing, that is, only the original data is retained, so that the monitor can manually process the monitoring information, positioning information, temperature, humidity, wind speed information of the outside world, and number or name of the fly monitoring instrument.

[0083] The above is the preferred scheme of the present application, which shows and describes the basic principle, main features and advantages of the present application. Those skilled in the art should understand that the present application is not limited by the above examples, and the above examples and descriptions in the specification are only to illustrate the principle of the present application. Without departing from the spirit and scope of the present application, various changes and improvements can be made to the present application, and these changes and improvements all fall within the scope of the claimed present application, and the scope of protection of the present application is defined by the appended claims and their equivalents.

Claims

1. A fly continuous monitoring device comprising a main body, characterized by: The main machine body is provided with an electric control box (5) and a fly cage (17), the electric control box (5) is provided with an entrance channel (18), an adhesive roll shaft (7), a release roll shaft (8), a protective paper roll shaft (9) and a driving rod (15), the fly cage (17) is communicated with the entrance channel (18), and the fly cage (17) is provided with a bait (16); the entrance channel (18) is provided with a fan (4) and a camera (6); the release roll shaft (8) is detachably provided with double-layer roll paper, the double-layer roll paper is adhesive (10) and protective paper which are adhered to each other; the driving rod (15) is movably arranged at a channel port (20) of the entrance channel (18); the adhesive (10) is wound on the adhesive roll shaft (7) through the channel port (20) and the driving rod (15); and the protective paper is wound on the protective paper roll shaft (9).

2. The fly continuous monitoring apparatus according to claim 1, wherein: The main machine body is further provided with a communication and GPS module (14), and the electric control box (5) is further provided with a control chip (3), a temperature and humidity sensor (2), a wind speed sensor (12) and a power supply group (11); the control chip (3) is electrically connected with the adhesive roll shaft (7), the protective paper roll shaft (9), the driving rod (15), the fan (4), the camera (6), the temperature and humidity sensor (2), the wind speed sensor (12), the power supply group (11) and the communication and GPS module (14).

3. The fly continuous monitoring apparatus of claim 2, wherein: The power supply group (11) is a rechargeable battery, the main machine body is further provided with a top cover (1), the top cover (1) is provided with a solar panel which is electrically connected with the power supply group (11), or the main machine body is provided with a charging port corresponding to the power supply group (11), or the power supply group (11) is a replaceable battery.

4. The fly continuous monitoring apparatus of claim 1, wherein: The channel port (20) is downwardly opened, the driving rod (15) is movably arranged below the channel port (20), and the size of the adhesive (10) is smaller than that of the channel port (20); When the driving rod (15) is lifted, the adhesive (10) is pressed into the entrance channel (18) through the channel port (20); When the driving rod (15) is lowered, the adhesive (10) is separated from the entrance channel (18) through the channel port (20) by the elastic force of the adhesive (10) or the winding force of the adhesive roll shaft (7) and the protective paper roll shaft (9).

5. The fly monitoring device of claim 1, wherein: The fly cage (17) is provided with an entrance (21) at one end and an exit (13) at the other end, and the entrance (21) is communicated with the entrance channel (18) through the exit (13); the bait (16) is arranged outside the entrance (21), on the entrance (21), on the exit (13) or in the fly cage (17).

6. The fly continuous monitoring apparatus according to claim 5, wherein: The entrance (21) is arranged outside the entrance (21), and the main machine body is provided with supporting legs (19) which are used to support the main machine body and form an entrance area.

7. The fly monitoring device of claim 1, wherein: The adhesive roll-up shaft (7) and the raw material roll-up shaft (8) are respectively located on both sides below the channel port (20), and the protective paper roll-up shaft (9) is located above the protective paper roll-up shaft (9) and is arranged on the same side.

8. The fly continuous monitoring apparatus of claim 1, wherein: The camera (6) is an image camera or a video camera and is located above the channel port (20). The camera (6) is further provided with a light supplementing lamp and is used for video recording or photographing monitoring of flies on the adhesive (10) in the fly inlet channel (18).

9. The fly monitoring device of claim 1, wherein: The fan (4) is a powerful fan and is located above the channel port (20) and is used for blowing flies in the fly inlet channel (18) to the adhesive (10).

Citation Information

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    CN202310938U

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    CN206150256U

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    CN219047120U

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