Online intelligent temperature control system for pet transportation

By designing an online intelligent temperature control system for pet transportation, using real-time monitoring and precise adjustment technologies, the problems of high costs and pet stress response in pet transportation are solved, and a safe and healthy transportation environment is achieved.

CN120044996APending Publication Date: 2025-05-27HANGZHOU DEXING ZHIQING TECH CO LTD
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Patent Information

Application Number
CN202510195025.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-02-21
Publication Date
2025-05-27

AI Technical Summary

Technical Problem

In the prior art, pet transportation costs are high, pets are prone to stress responses, and it is difficult to maintain appropriate temperature and oxygen concentration during long-distance transportation.

Method used

A pet transportation online intelligent temperature control system is designed, including a transportation box, inner box, temperature measurement module, control module, speed regulation and heat dissipation device, oxygen content measurement module and ventilation device. Through real-time monitoring and control of the temperature measurement module and oxygen content measurement module, precise adjustment of the temperature and oxygen concentration in the transport box can be achieved.

Benefits of technology

It effectively reduces transportation costs, reduces pet stress response, ensures the health and safety of pets during transportation, and achieves efficient temperature regulation through mechanical refrigeration structures.

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Abstract

The invention relates to the technical field of pet transportation, in particular to an online intelligent temperature control system for pet transportation, and the system comprises a transportation box which is hollow and is provided with ventilation holes; the inner box is hollow and is provided with a first inner cavity and a second inner cavity, the ventilation holes communicate with the first inner cavity and the second inner cavity correspondingly, the first inner cavity and the second inner cavity communicate with the transport box, the inner box is detachably arranged in the transport box, and the first inner cavity is used for containing a cooling module; the temperature measuring module is arranged in the transportation box; the control module is electrically connected with the temperature measuring module; the speed regulation heat dissipation device is arranged in the first inner cavity and is electrically connected with the control module; the oxygen content measuring module is electrically connected with the control module; the ventilation device is arranged in the second inner cavity and electrically connected with the control module, and the control module is used for controlling starting and stopping of the ventilation device. The invention discloses an online intelligent temperature control system for pet transportation, and aims to solve the problems that in the prior art, pet transportation cost is high, and pets are prone to stress reaction.
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Description

Technical Field

[0001] The present invention relates to the technical field of pet transportation, and more specifically, to an online intelligent temperature control system for pet transportation. Background Art

[0002] With the continuous improvement of the material living standard, the number of pet breedings is increasing, and various pet supplies can be found everywhere in the streets and alleys. Among pet supplies, the pet box is equivalent to the temporary residence of the pet and is also an essential carrying tool for pet owners when traveling with their pets. Currently, most of the existing pet boxes are simple boxes made of square cardboard, plastic boards or wooden boards. There are entrances and exits on the pet box to facilitate the entry and exit of pets.

[0003] However, the structure of the existing pet box is too simple, and pets cannot stay in the box for a long time in high and low temperature environments, which is not suitable for long-distance transportation scenarios. Moreover, in the traditional logistics and express delivery industries, the transportation of live pets faces many challenges. During the transportation process, due to staying in a closed transportation box for a long time, pets are easily affected by high temperature and lack of oxygen, which not only increases the discomfort of pets but also may lead to pet health problems or even death, bringing huge emotional and economic losses to pet owners.

[0004] In order to reduce the impact of high temperature on pets during long-term transportation, the pet box is usually placed in a transportation box equipped with a mechanical refrigeration system, and a relatively comfortable transportation environment is created for pets by regulating the overall temperature of the transportation box. This method requires a large amount of energy consumption and also increases the transportation cost. Moreover, the existing transportation boxes with refrigeration functions usually lack precise temperature control ability, and the fluctuation range of the ambient temperature is prone to exceed the range suitable for pets, which easily causes stress reactions in pets and increases the probability of problems during transportation. Summary of the Invention

[0005] The main object of the present invention is to propose an online intelligent temperature control system for pet transportation, aiming to solve the problems of high pet transportation cost and easy stress reactions of pets in the prior art.

[0006] To solve the above technical problems, an online intelligent temperature control system for pet transportation is proposed, including: a transportation box, which is hollow and provided with ventilation holes; an inner box, which is hollow and provided with a first inner cavity and a second inner cavity. The ventilation holes are respectively communicated with the first inner cavity and the second inner cavity, and both the first inner cavity and the second inner cavity are communicated with the transportation box. The inner box is detachably arranged in the transportation box. The first inner cavity is used for placing a cooling module, and the cooling module is used for cooling; a temperature measurement module, which is arranged in the transportation box and used for measuring the temperature in the transportation box; A control module, electrically connected to the temperature measurement module; A speed regulation and heat dissipation device, disposed in the first inner cavity and electrically connected to the control module, and the control module is used to control the opening and closing or working power of the speed regulation and heat dissipation device; An oxygen content measurement module, electrically connected to the control module, for measuring the oxygen concentration in the transport box; A ventilation device, disposed in the second inner cavity, electrically connected to the control module, and the control module is used to control the opening and closing of the ventilation device.

[0007] In any of the above technical solutions, further, the temperature measurement module is provided with a temperature sensor, the temperature sensor is electrically connected to the control module, and the temperature sensor is used to measure the temperature in the transport box.

[0008] In any of the above technical solutions, further, it further includes: An Internet of Things-based positioning module, electrically connected to the control module, for positioning the movement trajectory and position of the transport box and sending them to the control module; The control module is communicatively connected to the user terminal, and the control module is used to send the position and movement trajectory of the transport box to the user terminal.

[0009] In any of the above technical solutions, further, the transport box is provided with an interaction interface, the interaction interface is electrically connected to the control module, the interaction interface is used to display the temperature in the transport box and the oxygen concentration in the transport box, and the interaction interface is used to adjust the temperature in the transport box and the opening and closing of the ventilation device.

[0010] In any of the above technical solutions, further, the speed regulation and heat dissipation device includes a speed regulation fan, the speed regulation fan is electrically connected to the control module. When the temperature measured by the temperature measurement module is lower than the first threshold, the control module controls the speed regulation fan to turn off; when the temperature measured by the temperature measurement module is greater than or equal to the first threshold and less than the second threshold, the control module controls the speed regulation fan to work at the first speed; when the temperature measured by the temperature measurement module is greater than or equal to the second threshold and less than the third threshold, the control module controls the speed regulation fan to work at the second speed, and the value of the second speed is greater than the value of the first speed; when the temperature measured by the temperature measurement module is greater than or equal to the third threshold, the control module controls the speed regulation fan to work at the third speed, and the value of the third speed is greater than the value of the second speed.

[0011] In any of the above technical solutions, further, it further includes: A programmable logic module, electrically connected to the speed regulation and heat dissipation device, for adjusting the values of the first threshold, the second threshold, and the third threshold.

[0012] In any of the above technical solutions, further, it further includes: The control module is communicatively connected to the user terminal. The control module is configured to send the temperature and oxygen concentration information in the transport box to the user terminal, and the control module is configured to receive the control signal from the user terminal.

[0013] In any of the above technical solutions, further, the first inner cavity is provided with a plurality of card slots, and connection holes are provided between adjacent card slots. The cooling module and the speed-regulating heat dissipation device are both arranged in the card slots, and the card slot where the speed-regulating heat dissipation device is located is communicated with the transport box.

[0014] In any of the above technical solutions, further, the transport box includes: A housing, which is hollow and has an opening on one side; A first cover plate and a second cover plate, both of which are rotatably arranged on the housing. The first cover plate and the second cover plate are used to cover the opening of the housing; A buckle assembly, which is arranged on the first cover plate and the second cover plate and is used to buckle the first cover plate and the second cover plate; The height of the inner box is adapted to the height inside the housing. The ventilation hole is arranged on the first cover plate or the second cover plate. The inner box is provided with a first connecting pipe and a second connecting pipe. The first connecting pipe is communicated with the first inner cavity, the second connecting pipe is communicated with the second inner cavity, and the first connecting pipe and the second connecting pipe are arranged corresponding to the ventilation hole.

[0015] The beneficial effects are as follows: 1. For the pet transportation online intelligent temperature control system of the present invention, the temperature in the transportation box is measured by the temperature measurement module and fed back to the control module. A storage refrigerator is set to store low-temperature items. The speed-regulating heat dissipation device is respectively communicated with the storage refrigerator and the space inside the transportation box. The control module adjusts the working efficiency of the speed-regulating heat dissipation module according to the measured temperature. The air with a lower temperature in the storage refrigerator is transported into the transportation box through the speed-regulating heat dissipation device to reduce the temperature in the transportation box. There is no need to configure a mechanical refrigeration structure, and the speed-regulating heat dissipation device can be controlled to perform temperature neutralization with different working efficiencies according to the measured temperature. The structure is simple and the temperature control effect is good; 2. The online intelligent temperature control system for pet transportation of the present invention measures and monitors the oxygen concentration in the transportation box in real time through an oxygen content measurement module. At the same time, the control module is respectively connected to the oxygen content measurement module and the ventilation device, and can control the ventilation device to start through the control module after the oxygen concentration is lower than a certain value, accelerating the exchange of air inside the transportation box and the outside air, and prompting the oxygen concentration in the transportation box to remain within the normal range, so as to avoid the difficulty in breathing and the acceleration of heartbeat of pets caused by long-term lack of oxygen, and promote the health and safety of pets during transportation. 3. The online intelligent temperature control system for pet transportation of the present invention can realize modular assembly and disassembly through the detachable setting of the transportation box, the inner box and the cooling module inside the inner box, and can also set different numbers of cooling modules according to needs, which is convenient for production and reduces transportation costs. Brief Description of the Drawings

[0016] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the drawings in the following description are only some embodiments of the present invention. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.

[0017] Figure 1 is a three-dimensional structure schematic diagram of an online intelligent temperature control system for pet transportation according to an embodiment of the present invention; Figure 2 is a partial structure schematic diagram of the inner box in an online intelligent temperature control system for pet transportation according to an embodiment of the present invention; Figure 3 is a connection block diagram of the control module in an online intelligent temperature control system for pet transportation according to an embodiment of the present invention.

[0018] The description of the reference numerals is as follows: 1. Transportation box; 101. Ventilation hole; 102. Housing; 103. First cover plate; 104. Second cover plate; 105. Snap component; 2. Inner box; 201. First inner cavity; 202. Second inner cavity; 203. Cooling module; 204. Card slot; 205. First connecting pipe; 206. Second connecting pipe; 3. Control module; 301. Temperature measurement module; 302. Oxygen content measurement module; 4. Speed regulation and heat dissipation device; 5. Ventilation device. Detailed Embodiments

[0019] Next, exemplary embodiments according to the present application will be described in detail with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments of the present application. It should be understood that the present application is not limited by the exemplary embodiments described herein. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0020] It should be noted that, as shown in the present application and the claims, unless the context clearly indicates an exception, words such as "a", "an", "one", and / or "the" are not specifically singular and may also include the plural. Generally speaking, the terms "comprising" and "including" only indicate the inclusion of the clearly identified steps and elements, and these steps and elements do not constitute an exclusive list. The method or device may also include other steps or elements.

[0021] If there are directional indications (such as up, down, left, right, front, back...) involved in the embodiments of the present invention, then such directional indications are only used to explain the relative positional relationship and movement conditions between components in a specific posture (as shown in the accompanying drawings). If this specific posture changes, then the directional indications will also change accordingly.

[0022] In the present invention, unless otherwise clearly defined and limited, terms such as "connected" and "fixed" should be understood in a broad sense. For example, "fixed" can be a fixed connection, a detachable connection, or integrated; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and can be the communication inside two components or the interaction relationship between two components, unless otherwise clearly limited. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.

[0023] In addition, if there are descriptions involving "first", "second", etc. in the embodiments of the present invention, then such descriptions of "first", "second", etc. are only for descriptive purposes and cannot be understood as indicating or implying their relative importance or implicitly indicating the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include at least one such feature. In addition, the meaning of "and / or" appearing throughout the text includes three parallel scenarios. Taking "A and / or B" as an example, it includes the scenario of A, or the scenario of B, or the scenario where A and B are satisfied simultaneously. In addition, the technical solutions between various embodiments can be combined with each other, but it must be based on the ability of those of ordinary skill in the art to implement. When the combination of technical solutions results in contradictions or cannot be implemented, it should be considered that such a combination of technical solutions does not exist and is not within the protection scope required by the present invention.

[0024] The following is a detailed description of an online intelligent temperature control system for pet transportation in this application through the following embodiments.

[0025] In this embodiment, as Figures 1 to 3 shown, the online intelligent temperature control system for pet transportation includes: a transportation box 1, which is hollow and provided with ventilation holes 101; An inner box 2, which is hollow and provided with a first inner cavity 201 and a second inner cavity 202. The ventilation holes 101 are respectively communicated with the first inner cavity 201 and the second inner cavity 202, and both the first inner cavity 201 and the second inner cavity 202 are communicated with the transportation box 1. The inner box 2 is detachably arranged in the transportation box 1. The first inner cavity 201 is used to place a cooling module 203, and the cooling module 203 is used for cooling; A temperature measurement module 301, which is arranged in the transportation box 1 and is used to measure the temperature inside the transportation box 1; A control module 3, which is electrically connected to the temperature measurement module 301; A speed regulation and heat dissipation device 4, which is arranged in the first inner cavity 201 and is electrically connected to the control module 3. The control module 3 is used to control the opening and closing or working power of the speed regulation and heat dissipation device 4; An oxygen content measurement module, which is electrically connected to the control module 3 and is used to measure the oxygen concentration inside the transportation box 1; A ventilation device 5, which is arranged in the second inner cavity 202 and is electrically connected to the control module 3. The control module 3 is used to control the opening and closing of the ventilation device 5.

[0026] In this technical solution, the transportation box 1 is hollow to accommodate pets. The pet box is overall rectangular in shape and made of rigid foam material, enabling the pet box to have a certain heat preservation ability. The side wall of the transportation box 1 is provided with ventilation holes 101, so that the air inside the transportation box 1 can exchange with the outside. The temperature measurement module 301 includes a temperature sensor arranged inside the transportation box 1. The logic control part of the temperature measurement module 301 is integrated on the control module 3 to regularly measure or actively measure the temperature inside the transportation box 1 under control. The control module 3 is a control circuit board and is fixed together with the speed regulation and heat dissipation device 4 in the same card slot 204 of the inner box 2.

[0027] The inner box 2 is a closed box structure, overall rectangular in shape and flat. It is detachably fixed on one side inside the transportation box 1. One to five cooling modules 203 can be placed in the storage refrigerator. After being charged, the cooling module 203 stores energy and starts to dissipate cold energy after the ambient temperature is higher than the set working temperature. The cooling module 203 can be purchased on the market.

[0028] The speed-regulating heat dissipation device 4 is fixed inside the first inner cavity 201 of the inner box 2. The first inner cavity 201 of the inner box 2 communicates with the outside through the ventilation hole 101 and at the same time communicates with the inside of the transport box 1 through the structure of the hole in the middle of the side wall of the inner box 2. The air in the first inner cavity 201 is cooled by the cooling module 203. The speed-regulating heat dissipation device 4 is fixed at the aforementioned structure of the hole in the middle. Turning on the speed-regulating heat dissipation device 4 can send the cold air in the first inner cavity 201 after being affected by the cooling module 203 into the transport box 1.

[0029] The oxygen content measuring module 302 includes a sensor for measuring the oxygen concentration, which can be purchased on the market. The oxygen content measuring module 302 extends into the transport box 1 through a signal line and is electrically connected to the control module 3. The ventilation device 5 is a fan fixed inside the second inner cavity 202. The second inner cavity 202 communicates with the ventilation hole 101, and there is another hole structure communicating with the transport box 1 at the side wall of the inner box 2 corresponding to the second inner cavity 202. Turning on the ventilation device 5 can transmit the outside air into the transport box 1 through the second inner cavity 202.

[0030] In some technical solutions, an air filter is provided at the ventilation hole 101.

[0031] In this embodiment, the temperature measuring module 301 is provided with a temperature sensor, and the temperature sensor is electrically connected to the control module 3. The temperature sensor is used to measure the temperature inside the transport box 1.

[0032] In this technical solution, the temperature sensor is a high-precision temperature sensor, specifically a thermistor (Negative Temperature Coefficient, NTC) temperature sensor. The temperature inside the transport box 1 is measured by the temperature sensor of the temperature measuring module 301, and the speed-regulating heat dissipation device 4 is controlled by the control module 3 to work at different operating powers in different temperature ranges. Specifically, when the temperature inside the transport box 1 is relatively high, the control module 3 controls the speed-regulating heat dissipation device 4 to work at a higher power or speed, and vice versa at a lower power or speed.

[0033] In this embodiment, it further includes: An Internet of Things-based positioning module (not shown in the figure), which is electrically connected to the control module 3 and is used to locate the moving track and position of the transport box 1 and send them to the control module 3; The control module 3 is communicatively connected to the user terminal, and the control module 3 is used to send the position and moving track of the transport box 1 to the user terminal.

[0034] In this technical solution, the positioning module based on the Internet of Things is integrated into the control module 3. The positioning technology based on the Internet of Things can accurately locate the pets during transportation and track the transportation path and status in real time. This not only helps to improve the transparency of transportation but also enables a quick response in case of abnormal situations, such as adjusting the transportation route or taking emergency measures.

[0035] In this embodiment, the transportation box 1 is provided with an interaction interface (not shown in the figure). The interaction interface is electrically connected to the control module 3. The interaction interface is used to display the temperature inside the transportation box 1 and the oxygen concentration inside the transportation box 1, and is also used to control the opening and closing of the temperature inside the transportation box 1 and the ventilation device 5.

[0036] In this technical solution, the interaction interface is a touch panel, which can view the temperature and oxygen concentration information inside the transportation box 1. At the same time, it can also independently send a control command to the control module 3 through the interaction interface to adjust the working states of the speed control heat dissipation device 4 and the ventilation device 5.

[0037] In this embodiment, the speed control heat dissipation device 4 includes a speed control fan. The speed control fan is electrically connected to the control module 3. When the temperature measured by the temperature measurement module 301 is lower than the first threshold, the control module 3 controls the speed control fan to turn off; when the temperature measured by the temperature measurement module 301 is greater than or equal to the first threshold and less than the second threshold, the control module 3 controls the speed control fan to operate at the first speed; when the temperature measured by the temperature measurement module 301 is greater than or equal to the second threshold and less than the third threshold, the control module 3 controls the speed control fan to operate at the second speed, and the value of the second speed is greater than the value of the first speed; when the temperature measured by the temperature measurement module 301 is greater than or equal to the third threshold, the control module 3 controls the speed control fan to operate at the third speed, and the value of the third speed is greater than the value of the second speed.

[0038] In this technical solution, by controlling the temperature inside the transportation box 1 in a multi - gear adjustment manner, it can be automatically adjusted according to the real - time monitored data to maintain the stability of the internal environment of the box and provide a suitable living space for the pets.

[0039] In this embodiment, it further includes: A programmable logic module (not shown in the figure), which is electrically connected to the speed control heat dissipation device 4 and is used to adjust the values of the first threshold, the second threshold, and the third threshold.

[0040] In this technical solution, the programmable logic module is integrated into the control module 3 and is electrically connected to the speed control heat dissipation device 4 and the interaction interface to adjust the various working thresholds of the speed control heat dissipation device 4.

[0041] In this embodiment, it further includes: The control module 3 is connected to the user end for communication. The control module 3 is used to send the temperature and oxygen concentration information in the transport box 1 to the user end, and the control module 3 is used to receive the control signal from the user end.

[0042] In this technical solution, a wireless transmission module is set on the control module 3, so that the control module 3 can remotely exchange information with the user end, facilitate sending the temperature and oxygen concentration information in the transport box 1 to the user end, and also facilitate remote control of the working status of the speed regulating heat dissipation device 4 and the ventilation device 5.

[0043] In this embodiment, the first inner cavity 201 is provided with a plurality of slots 204 , and connecting holes are provided between adjacent slots 204 . The cooling module 203 and the speed regulating heat dissipation device 4 are both arranged in the slots 204 , and the slots 204 where the speed regulating heat dissipation device 4 is located are connected to the transport box 1 .

[0044] In the present technical solution, six slots 204 are provided in the first inner cavity 201 and are evenly arranged in a two-by-three manner. Strip-shaped connecting holes are provided between adjacent slots 204 so that the cold air from the cold zone modules in each slot 204 can flow to each other. The cooling module 203 and the speed regulating heat dissipation device 4 are enclosed in different slots 204. A hole structure is provided on the side wall of the inner box 2 of the slot 204 where the speed regulating heat dissipation device 4 is located, and the speed regulating fan of the speed regulating heat dissipation device 4 is arranged facing the aforementioned hole structure.

[0045] In this embodiment, the transport box 1 comprises: The housing 102 is hollow and has an opening on one side; The first cover plate 103 and the second cover plate 104 are both rotatably disposed on the housing 102, and the first cover plate 103 and the second cover plate 104 are used to cover the opening of the housing 102; The buckle assembly 105 is provided on the first cover plate 103 and the second cover plate 104 and is used to buckle the first cover plate 103 and the second cover plate 104; The height of the inner box 2 is adapted to the height of the inner side of the shell 102, the ventilation hole 101 is arranged on the first cover plate 103 or the second cover plate 104, the inner box 2 is provided with a first connecting tube 205 and a second connecting tube 206, the first connecting tube 205 is connected to the first inner cavity 201, the second connecting tube 206 is connected to the second inner cavity 202, and the first connecting tube 205 and the second connecting tube 206 are arranged corresponding to the ventilation hole 101.

[0046] In this technical solution, the housing 102 is in the shape of a cuboid or a cube, hollow in the middle and open at the front side. The first cover plate 103 and the second cover plate 104 are arranged on the left and right sides of the opening side of the housing 102 through hinges, and two buckle assemblies 105 are provided at positions of the first cover plate 103 and the second cover plate 104 close to the middle. The inner box 2 is vertically arranged on the left side inside the housing 102, and the ventilation hole 101 is arranged at the lower left corner of the first cover plate 103. The first inner cavity 201 is located below the inner box 2 and is separated from the second inner cavity 202 by a rib plate. A pipe fitting, namely a first connecting pipe 205 and a second connecting pipe 206, is provided on the front side of each of the first inner cavity 201 and the second inner cavity 202. The front ends of the first connecting pipe 205 and the second connecting pipe 206 extend to the ventilation hole 101 on the first cover plate 103, so as to realize the positioning of the inner box 2 in the left-right direction inside the housing 102. At the same time, through the adaptation setting of the height of the inner box 2 and the height of the space inside the housing 102, the inner box 2 can be fixed inside the housing 102 and will not be misaligned during transportation to occupy the activity space of the pet.

[0047] The embodiments of the present disclosure have been described above. The above description is exemplary and not exhaustive, and is not limited to the disclosed embodiments. Many modifications and variations are obvious to those of ordinary skill in the art in the technical field without departing from the scope and spirit of the described embodiments. The choice of terms used herein is intended to best explain the principles of the embodiments, the practical application, or the improvement of the technology in the market, or to enable other ordinary skill in the art in the technical field to understand the disclosed embodiments.

Claims

1. An online intelligent temperature control system for pet transportation, characterized in that: include: The transport box (1) is hollow and provided with ventilation holes (101); The inner box (2) is hollow and provided with a first inner cavity (201) and a second inner cavity (202); the ventilation hole (101) is respectively connected to the first inner cavity (201) and the second inner cavity (202); the first inner cavity (201) and the second inner cavity (202) are both connected to the transport box (1); the inner box (2) is detachably arranged in the transport box (1); the first inner cavity (201) is used for placing a cooling module (203); and the cooling module (203) is used for cooling; A temperature measurement module (301), arranged in the transport box (1), and used to measure the temperature inside the transport box (1); A control module (3) electrically connected to the temperature measurement module (301); A speed regulating heat dissipation device (4) is arranged in the first inner cavity (201) and is electrically connected to the control module (3), and the control module (3) is used to control the start and stop or working power of the speed regulating heat dissipation device (4); an oxygen content measuring module, electrically connected to the control module (3) and used to measure the oxygen concentration in the transport box (1); The ventilation device (5) is arranged in the second inner cavity (202) and is electrically connected to the control module (3). The control module (3) is used to control the opening and closing of the ventilation device (5).

2. The pet transportation online intelligent temperature control system according to claim 1 is characterized in that: The temperature measurement module (301) is provided with a temperature sensor, the temperature sensor is electrically connected to the control module (3), and the temperature sensor is used to measure the temperature inside the transport box (1).

3. The pet transportation online intelligent temperature control system according to claim 1 is characterized in that: Also includes: A positioning module based on the Internet of Things, electrically connected to the control module (3), used to locate the movement track and position of the transport box (1) and send the location to the control module (3); The control module (3) is in communication connection with the user terminal, and the control module (3) is used to send the position and movement track of the transport box (1) to the user terminal.

4. The pet transportation online intelligent temperature control system according to any one of claims 1 to 3, characterized in that: The transport box (1) is provided with an interactive interface, the interactive interface is electrically connected to the control module (3), the interactive interface is used to display the temperature inside the transport box (1) and the oxygen concentration inside the transport box (1), and the interactive interface is used to regulate the temperature inside the transport box (1) and the opening and closing of the ventilation device (5).

5. The pet transportation online intelligent temperature control system according to claim 1 is characterized in that: The speed-adjustable heat dissipation device (4) comprises a speed-adjustable fan, which is electrically connected to a control module (3); when the temperature measured by the temperature measuring module (301) is lower than a first threshold, the control module (3) controls the speed-adjustable fan to be turned off; when the temperature measured by the temperature measuring module (301) is greater than or equal to the first threshold and less than a second threshold, the control module (3) controls the speed-adjustable fan to operate at a first speed; when the temperature measured by the temperature measuring module (301) is greater than or equal to the second threshold and less than a third threshold, the control module (3) controls the speed-adjustable fan to operate at a second speed, the value of the second speed being greater than the value of the first speed; when the temperature measured by the temperature measuring module (301) is greater than or equal to the third threshold, the control module (3) controls the speed-adjustable fan to operate at a third speed, the value of the third speed being greater than the value of the second speed.

6. The pet transportation online intelligent temperature control system according to claim 5, characterized in that: Also includes: A programmable logic module is electrically connected to the speed regulating and heat dissipating device (4) and is used to adjust the values ​​of the first threshold, the second threshold and the third threshold.

7. The pet transportation online intelligent temperature control system according to claim 1, characterized in that: Also includes: The control module (3) is in communication connection with the user end, the control module (3) is used to send the temperature and oxygen concentration information in the transport box (1) to the user end, and the control module (3) is used to receive the control signal from the user end.

8. The pet transportation online intelligent temperature control system according to claim 1, characterized in that: The first inner cavity (201) is provided with a plurality of slots (204), connecting holes are provided between adjacent slots (204), the cooling module (203) and the speed regulating heat dissipation device (4) are both arranged in the slots (204), and the slots (204) where the speed regulating heat dissipation device (4) is located are in communication with the transport box (1).

9. The pet transportation online intelligent temperature control system according to claim 1, characterized in that: The transport box (1) comprises: The housing (102) is hollow and has an opening on one side; A first cover plate (103) and a second cover plate (104), both of which are rotatably disposed on the shell (102), and the first cover plate (103) and the second cover plate (104) are used to cover the opening of the shell (102); A buckle assembly (105), arranged on the first cover plate (103) and the second cover plate (104), and used for buckling the first cover plate (103) and the second cover plate (104); The height of the inner box (2) is matched with the height of the inner side of the shell (102); the ventilation hole (101) is arranged on the first cover plate (103) or the second cover plate (104); the inner box (2) is provided with a first connecting pipe (205) and a second connecting pipe (206); the first connecting pipe (205) is connected to the first inner cavity (201); the second connecting pipe (206) is connected to the second inner cavity (202); and the first connecting pipe (205) and the second connecting pipe (206) are arranged corresponding to the ventilation hole (101).