Animal husbandry wearing positioning monitoring device

By integrating photovoltaic panels into wearable positioning and monitoring devices for livestock farming to provide solar power, the problem of frequent charging caused by built-in batteries has been solved, enabling the equipment to operate for extended periods and reducing labor burden.

CN223900012UActive Publication Date: 2026-02-13HENAN JINLU SPECIAL BREEDING CO LTD
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Patent Information

Application Number
CN202520497605.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-20
Publication Date
2026-02-13
Estimated Expiration
2035-03-20

AI Technical Summary

Technical Problem

Most existing wearable positioning and monitoring devices for livestock farming use built-in batteries for power, which requires farmers to frequently replace and recharge them, a cumbersome and time-consuming process.

Method used

Solar photovoltaic panels are used to power wearable positioning and monitoring devices for livestock farming. The photovoltaic panels absorb light energy to generate electricity and store it in rechargeable lithium batteries, reducing or eliminating the need for manual charging.

Benefits of technology

It extends the single-use time of the device, reduces the workload of farmers, and simplifies the equipment replacement and charging process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of animal husbandry tools, in particular to an animal husbandry wearing positioning monitoring device, which comprises a positioner, a plurality of groups of photovoltaic panels and a wearing assembly, a rechargeable lithium battery is arranged on the inner side of the positioner, the photovoltaic panels are arranged on the outer side of the positioner, a protective pad is arranged on one side of each photovoltaic panel, and the photovoltaic panels are arranged on the protective pad. Wearing assemblies are arranged between the photovoltaic panels and between the photovoltaic panels and the positioner, rotating seats are arranged on the two sides of the photovoltaic panels, rotating columns are arranged on the inner sides of the rotating seats, and the photovoltaic panels are electrically connected with the positioner and the rechargeable lithium battery; according to the utility model, the photovoltaic panel is arranged at the position of the positioner wearing belt, the photovoltaic panel is used for photovoltaic power generation to supply energy to the positioner, redundant power can be transmitted to the rechargeable lithium battery for storage when sunlight is strong in the daytime, and the rechargeable lithium battery discharges to supply energy to the positioner at night or in cloudy and rainy days, so that the single-time use time of the positioner is greatly prolonged; and even breeding personnel do not need to charge, so that the labor burden of the breeding personnel is greatly reduced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of the livestock industry, especially to the livestock industry wears positioning monitoring devices. BACKGROUND

[0002] The livestock industry wears positioning monitoring device is the equipment that wears on the social livestock and moves with the livestock, and this equipment can acquire the physiological index and position information of the livestock, so that the breeding personnel can more accurately acquire the breeding situation of the livestock.

[0003] The existing livestock industry wears positioning monitoring device mostly uses the built-in battery to supply energy, so the breeding personnel needs to charge the device frequently, and the number of livestock in the breeding farm is large, the positioning monitoring device of the old livestock is taken down one by one, and then the new device is worn, and the replaced equipment is charged, which is relatively cumbersome and time-consuming and laborious.

[0004] Therefore, aiming at the above problems, a livestock industry wears positioning monitoring device can be designed, which uses solar energy to generate electricity to supply energy, thereby greatly prolonging the time of single use of the equipment. UTILITY MODEL CONTENTS

[0005] In order to overcome the problem that most of the livestock industry wears positioning monitoring device mostly uses the built-in battery to supply energy, so the breeding personnel needs to charge the device frequently, and the number of livestock in the breeding farm is large, the positioning monitoring device of the old livestock is taken down one by one, and then the new device is worn, and the replaced equipment is charged, which is relatively cumbersome and time-consuming and laborious.

[0006] The technical scheme of the utility model is as follows: the livestock industry wears positioning monitoring device, including the locator (1), photovoltaic board (2) and wearing assembly, the inner side of the locator (1) is provided with the charging lithium battery (8), the outer side of the locator (1) is provided with the photovoltaic board (2), one side of the photovoltaic board (2) is provided with the protective pad (201), the photovoltaic board (2) is provided with multiple groups, the photovoltaic board (2) and the locator (1) between the photovoltaic board (2) and the photovoltaic board (2) are provided with wearing assembly, both sides of the photovoltaic board (2) are provided with the rotating seat (5), the inner side of the rotating seat (5) is provided with the rotating column (6), the rotating seat (5) is rotatably connected with the rotating column (6), the photovoltaic board (2) is electrically connected with the locator (1) and the charging lithium battery (8).

[0007] As a preferred, the wearing assembly includes the first connecting belt (3) and the second connecting belt (4), the first connecting belt (3) is arranged between the photovoltaic board (2), and the first connecting belt (3) is also used to connect one group of photovoltaic board (2) and the locator (1).

[0008] As preferred, one side of the photovoltaic panel (2) is provided with a second connecting band (4), the second connecting band (4) is provided with a fixing hole (401), and one end of the second connecting band (4) is provided with a fixing block (402).

[0009] As preferred, the rotating column (6) is hollow, the side wall of the rotating column (6) is provided with a wire inlet (601), and the two ends of the rotating column (6) are provided with second wire outlets (602), and the two sides of the second wire outlets (602) are provided with limiting plates (603).

[0010] As preferred, the connecting part of the rotating seat (5) and the rotating column (6) is provided with a rotating cavity (501), one side of the rotating cavity (501) is provided with a first wire outlet (502), and the width of the limiting plate (603) is less than the width of the first wire outlet (502).

[0011] As preferred, the first connecting band (3) is double-layered, the contact surface of the two layers of the first connecting band (3) is provided with a connecting wire (7), and the two sides of the connecting wire (7) are provided with knitted wires (301).

[0012] As preferred, one side of the positioner (1) is provided with a winding seat (101), one side of the positioner (1) is provided with a guide column (103), the guide column (103) is slidably connected with the winding seat (101), the outer side of the guide column (103) is provided with a spring (104), one end of the guide column (103) is provided with a mounting plate (102), and the opposite surfaces of the mounting plate (102) and the winding seat (101) are provided with contact points (105).

[0013] As preferred, the positioner (1) is provided with a battery cavity (107), the charging lithium battery (8) is located in the battery cavity (107), and the outer side of the battery cavity (107) is provided with a cavity cover (106).

[0014] The positioner (1) is provided with a battery cavity (107), the charging lithium battery (8) is located in the battery cavity (107), and the outer side of the battery cavity (107) is provided with a cavity cover (106).

[0015] By arranging the photovoltaic panel (2) at the wearing position of the positioner (1), the photovoltaic panel (2) is used for absorbing light energy to generate electricity to supply energy to the positioner (1), and when the sunlight is strong during the day, the excess power can be sent to the charging lithium battery (8) for storage, and at night or in rainy weather, the charging lithium battery (8) is discharged to supply energy to the positioner (1), so that the single use time of the positioner (1) is greatly prolonged, and even the breeder does not need to charge, so that the labor burden of the breeder is greatly reduced. DRAWINGS

[0016] Figure 1 The three-dimensional structure schematic diagram of the livestock wearing positioning monitoring device is shown.

[0017] Figure 2The utility model discloses a rotating seat three-dimensional structure schematic diagram of livestock wearing positioning monitoring device is shown.

[0018] Figure 3 The utility model discloses a rotating column three-dimensional structure schematic diagram of livestock wearing positioning monitoring device is shown.

[0019] Figure 4 The utility model discloses a first connecting band three-dimensional structure schematic diagram of livestock wearing positioning monitoring device is shown.

[0020] Figure 5 The utility model discloses a positioner three-dimensional structure schematic diagram of livestock wearing positioning monitoring device is shown.

[0021] The utility model discloses a rotating seat three-dimensional structure schematic diagram of livestock wearing positioning monitoring device is shown. Specific implementation

[0022] The utility model further is explained below in combination with the drawings and examples.

[0023] Please refer to Figures 1-5 The utility model provides a kind of example: livestock wearing positioning monitoring device, including positioner (1), photovoltaic panel (2) and wearing component, the inside of positioner (1) is provided with rechargeable lithium battery (8), the outside of positioner (1) is provided with photovoltaic panel (2), one side of photovoltaic panel (2) is provided with protective pad (201), photovoltaic panel (2) is provided with multiple groups, and wearing component is arranged between photovoltaic panel (2) and photovoltaic panel (2) and positioner (1), both sides of photovoltaic panel (2) are provided with rotating seat (5), the inside of rotating seat (5) is provided with rotating column (6), and rotating seat (5) is rotatably connected with rotating column (6), and photovoltaic panel (2) is electrically connected with positioner (1) and rechargeable lithium battery (8);By being provided with photovoltaic panel (2) at the wearing belt of positioner (1), utilize photovoltaic panel (2) to absorb light energy and carry out photovoltaic power generation to supply energy for positioner (1), when daytime sunlight is strong, extra power can be sent to rechargeable lithium battery (8) and store, rechargeable lithium battery (8) is discharged to supply energy for positioner (1) at night or in rainy weather, to greatly extend the single use time of positioner (1), even without breeding personnel to charge, greatly reduce the labor burden of breeding personnel.

[0024] Please refer toFigure 1 In the embodiment, the wearing assembly includes a first connecting band (3) and a second connecting band (4). The first connecting band (3) is arranged between the photovoltaic panels (2). A group of photovoltaic panels (2) and the positioner (1) are connected by the first connecting band (3). One side of the group of photovoltaic panels (2) is provided with the second connecting band (4). The second connecting band (4) is provided with a fixing hole (401). One end of the second connecting band (4) is provided with a fixing block (402). The first connecting band (3) and the second connecting band (4) connect all the photovoltaic panels (2) and the positioner (1), so that the positioner (1) and the photovoltaic panels (2) can be worn on the livestock. The fixing block (402) and the fixing hole (401) can fix the length of the wearing.

[0025] Please refer to Figures 2-3 In the embodiment, the rotating column (6) is hollow. The sidewall of the rotating column (6) is provided with a wire inlet (601). The two ends of the rotating column (6) are provided with second wire outlets (602). The two sides of the second wire outlets (602) are provided with limiting plates (603). The connecting part of the rotating seat (5) and the rotating column (6) is provided with a rotating bin (501). One side of the rotating bin (501) is provided with a first wire outlet (502). The width of the limiting plate (603) is less than the width of the first wire outlet (502). The connecting wire (7) enters the rotating column (6) through the wire inlet (601) and enters the rotating bin (501) from the limiting plate (603) and enters the rotating seat (5) from the first wire outlet (502), so as to establish an electrical connection between the positioner (1) and the photovoltaic panel (2) or between the photovoltaic panels (2). The limiting plate (603) can be limited by the sidewall of the first wire outlet (502). The rotating range of the rotating column (6) is limited. The rotating column (6) is prevented from being damaged due to too large rotating angle.

[0026] Please refer to Figure 4 In the embodiment, the first connecting band (3) is double-layered. The contact surface of the two layers of the first connecting band (3) is provided with the connecting wire (7). The two sides of the connecting wire (7) are provided with the knitted wire (301). The knitted wire (301) connects and fixes the two layers of the first connecting band (3) and separates the groups of connecting wires (7), so as to prevent the connecting wire (7) from moving randomly.

[0027] Please refer to Figure 5In the embodiment, one side of the locator (1) is provided with a winding seat (101), one side of the locator (1) is provided with a guide column (103), the guide column (103) is in sliding connection with the winding seat (101), the outer side of the guide column (103) is provided with a spring (104), one end of the guide column (103) is provided with a mounting plate (102), the opposite surfaces of the mounting plate (102) and the winding seat (101) are provided with contacts (105), the locator (1) is provided with a battery compartment (107), the charging lithium battery (8) is located in the battery compartment (107), the outer side of the battery compartment (107) is provided with a compartment cover (106); the battery compartment (107) is used for accommodating the charging lithium battery (8), the compartment cover (106) seals the battery compartment (107), when the wearing is too tight, the second connecting belt (4) pulls the winding seat (101) to move and compresses the spring (104), when the two groups of contacts (105) contact, an electric signal is generated, the locator (1) receives the electric signal to send information to remind the breeding personnel of the operation terminal to adjust the wearing tightness.

[0028] In use, the photovoltaic panel (2) absorbs light energy to generate photovoltaic power for the locator (1), when the sunlight is strong during the day, the excess power can be sent to the charging lithium battery (8) for storage, at night or in rainy weather, the charging lithium battery (8) discharges to supply power for the locator (1), thereby greatly prolonging the single use time of the locator (1), and even without the breeding personnel to charge, greatly reducing the labor burden of the breeding personnel, when the wearing is too tight, the second connecting belt (4) pulls the winding seat (101) to move and compresses the spring (104), when the two groups of contacts (105) contact, an electric signal is generated, the locator (1) receives the electric signal to send information to remind the breeding personnel of the operation terminal to adjust the wearing tightness.

Claims

1. Livestock wearing positioning monitoring device, comprising a positioner (1); characterized in that: Also include photovoltaic panel (2) and wearing assembly, the inner side of the locator (1) is provided with a charging lithium battery (8), the outer side of the locator (1) is provided with a photovoltaic panel (2), one side of the photovoltaic panel (2) is provided with a protective pad (201), the photovoltaic panel (2) is provided with a plurality of groups, the photovoltaic panel (2) and the photovoltaic panel (2) and the locator (1) are provided with wearing assembly, both sides of the photovoltaic panel (2) are provided with a rotating seat (5), the inner side of the rotating seat (5) is provided with a rotating column (6), the rotating seat (5) and the rotating column (6) are rotatably connected, the photovoltaic panel (2) is electrically connected with the locator (1) and the charging lithium battery (8).

2. The livestock wear positioning monitoring device of claim 1, wherein: The wearing assembly comprises a first connecting belt (3) and a second connecting belt (4), the first connecting belt (3) is arranged between the photovoltaic panels (2), and a group of photovoltaic panels (2) and the locator (1) are connected by using the first connecting belt (3).

3. The livestock wear positioning monitoring device of claim 1, wherein: One side of a group of photovoltaic panels (2) is provided with a second connecting belt (4), the second connecting belt (4) is provided with a fixing hole (401), and one end of the second connecting belt (4) is provided with a fixing block (402).

4. The livestock wear positioning monitoring device of claim 1, wherein: The rotating column (6) is hollow, the sidewall of the rotating column (6) is provided with a wire inlet (601), and both ends of the rotating column (6) are provided with a second wire outlet (602), and both sides of the second wire outlet (602) are provided with a limiting plate (603).

5. The livestock wear positioning monitoring device of claim 4, wherein: The connecting part of the rotating seat (5) and the rotating column (6) is provided with a rotating bin (501), one side of the rotating bin (501) is provided with a first wire outlet (502), and the width of the limiting plate (603) is less than the width of the first wire outlet (502).

6. The livestock wear positioning monitoring device of claim 1, wherein: The first connecting belt (3) is double-layered, and the contact surface of the two layers of first connecting belts (3) is provided with a connecting wire (7), and both sides of the connecting wire (7) are provided with a knitted wire (301).

7. The livestock wear positioning monitoring device of claim 1, wherein: One side of the locator (1) is provided with a winding seat (101), one side of the locator (1) is provided with a guide column (103), the guide column (103) and the winding seat (101) are slidably connected, the outer side of the guide column (103) is provided with a spring (104), one end of the guide column (103) is provided with a mounting plate (102), and the opposite surfaces of the mounting plate (102) and the winding seat (101) are provided with a contact (105).

8. The livestock wear positioning monitoring device of claim 1, wherein: The locator (1) is provided with a battery bin (107), and the charging lithium battery (8) is located in the battery bin (107), and the outer side of the battery bin (107) is provided with a bin cover (106).