Intelligent pet cabin and pet feeding system
By setting up drinking water modules and feeding modules for automatic water discharge and periodic food release in the smart pet compartment, the problem that pet feeding equipment cannot meet pet dietary needs in a timely manner is solved, and automatic management of pet diet and healthy diet are realized.
Patent Information
- Application Number
- CN202422152216.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-03
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2034-09-03
AI Technical Summary
Existing pet breeding equipment cannot meet pet's dietary needs in a timely and accurate manner, affecting the pet's physical health and quality of life.
Design an intelligent pet cabin with built-in drinking water module and feeding module, and uses microwave sensors and communication modules to achieve automatic water discharge and periodic food release. Combined with monitoring modules and air conditioning modules, we ensure the regularity and health of pet diet.
It realizes automated management of pet diet, reduces the burden on pet owners, ensures the regularity and health of pets' diet, and improves the quality of life of pets.
Smart Images

Figure CN223053636U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of pet breeding, in particular to an intelligent pet cabin and a pet breeding system. Background Art
[0002] Modern society pays more and more attention to personal freedom and independence, but this also leads to the distance between people becoming greater and greater. Keeping pets has become a way to make up for loneliness. However, with the accelerated pace of life, work pressure and daily chores make it increasingly difficult for people to take care of their pets, which makes it difficult for many pet owners to spare enough time and energy to take care of their pets carefully. Especially in terms of the basic needs of pets, such as feeding and drinking water, many owners often fail to feed their pets in time due to various unforeseen factors (such as overtime, business trips or travel, etc.), resulting in the pets not getting timely nutritional supplements, which in turn affects their health. However, although some automatic feeding devices have appeared on the market, these devices still have certain limitations in terms of intelligence, convenience, accuracy, etc., and cannot meet the needs of feeding pets in a timely and accurate manner, which affects the physical health and quality of life of pets.
[0003] Therefore, the existing pet feeding equipment cannot meet the needs of feeding pets in a timely and accurate manner, so that the physical health and quality of life of pets are affected, which is a problem that needs to be solved urgently. Utility Model Content
[0004] The main purpose of the utility model is to propose an intelligent pet cabin and a pet breeding system, aiming to solve the problem that the existing pet breeding equipment cannot timely and accurately meet the needs of feeding pets, thus affecting the physical health and quality of life of pets.
[0005] To achieve the above purpose, the smart pet cabin proposed by the utility model includes:
[0006] A cabin body, wherein the cabin body is provided with a drinking water module and a feeding module;
[0007] The drinking water module stores pet drinking water and is used to discharge water when detecting that a pet is close to the smart pet cabin, so as to provide the pet drinking water;
[0008] The feeding module stores pet food and is used to periodically dispense food to provide pet food to the pet.
[0009] In one embodiment, the drinking water module comprises:
[0010] A first communication module, the first communication module is used to realize a wireless communication connection between the drinking water module and an external terminal;
[0011] A microwave sensor, which is used to output a microwave detection signal when a pet approaches the intelligent pet cabin;
[0012] A touch sensor, which is used to detect the storage water level of the pet's drinking water and output a water level detection signal;
[0013] A pet water dispenser, which is respectively communicatively connected to the microwave sensor, the touch sensor and the first communication module. The pet water dispenser is used to store the pet's drinking water and discharge water when receiving the microwave detection signal to provide the pet with the pet's drinking water; wherein,
[0014] The pet water dispenser is further used to receive the control signal of the external terminal through the first communication module to set the water discharge amount according to the control signal. The pet water dispenser is also used to receive the water level detection signal and wirelessly transmit it to the external terminal through the first communication module, and wirelessly transmit a water addition reminder signal to the external terminal through the first communication module when the pet's drinking water is insufficient.
[0015] In one embodiment, the feeding module includes:
[0016] A second communication module; the second communication module is used to realize the wireless communication connection between the feeding module and the external terminal;
[0017] A pressure sensor, which is used to detect the storage weight of the pet food and output a weight detection signal;
[0018] A pet feeder, which is respectively communicatively connected to the pressure sensor and the second communication module. The pet feeder is used to store the pet food and periodically discharge the food to provide the pet with the pet food; wherein,
[0019] The pet feeder is further used to receive the control signal of the external terminal through the second communication module to set the food discharge time and the food discharge amount according to the control signal. The pet feeder is also used to receive the weight detection signal and wirelessly transmit it to the external terminal through the second communication module, and wirelessly transmit a food addition reminder signal to the external terminal through the second communication module when the pet food is insufficient.
[0020] In one embodiment, the intelligent pet cabin further includes:
[0021] The monitoring module is disposed in the cabin body. The monitoring module is wirelessly communicatively connected to the external terminal. The monitoring module is configured to receive a first sound signal wirelessly transmitted by the external terminal and play a corresponding sound according to the first sound signal. The monitoring module is further configured to collect picture information and sound information in the environment around the intelligent pet cabin and wirelessly transmit a video signal and a second sound signal to the external terminal according to the picture information and the sound information.
[0022] In one embodiment, the monitoring module includes:
[0023] A third communication module configured to implement a wireless communication connection between the monitoring module and an external terminal;
[0024] A speaker configured to receive the first sound signal and play a corresponding sound according to the first sound signal;
[0025] A microphone configured to collect sound information in the environment around the intelligent pet cabin and output a second sound signal;
[0026] A camera monitor communicatively connected to the microphone, the speaker, and the third communication module respectively. The camera monitor is configured to collect picture information in the environment around the intelligent pet cabin and output a video signal; wherein,
[0027] The camera monitor is further configured to receive the first sound signal wirelessly transmitted by the external terminal through the third communication module and transmit it to the speaker. The camera monitor is further configured to receive the second sound signal and wirelessly transmit the video signal and the second sound signal to the external terminal through the third communication module.
[0028] In one embodiment, the intelligent pet cabin further includes:
[0029] An air-conditioning module disposed in the cabin body. The air-conditioning module is wirelessly communicatively connected to the external terminal. The air-conditioning module is configured to detect and adjust the temperature and humidity in the cabin body and wirelessly transmit a temperature detection signal and a humidity detection signal to the external terminal.
[0030] In one embodiment, the air-conditioning module includes:
[0031] A fourth communication module configured to implement a wireless communication connection between the air-conditioning module and an external terminal;
[0032] A temperature sensor configured to detect the temperature in the cabin body and output the temperature detection signal;
[0033] A humidity sensor for detecting the humidity inside the cabin and outputting the humidity detection signal;
[0034] An air conditioner, which is communicatively connected to the temperature sensor, the humidity sensor and the fourth communication module respectively. The air conditioner is used to adjust the temperature and humidity inside the cabin; wherein,
[0035] The air conditioner is further configured to receive the control signal wirelessly transmitted by the external terminal through the fourth communication module, and adjust the temperature and humidity inside the cabin according to the control signal. The air conditioner is also configured to receive the temperature detection signal and the humidity detection signal and wirelessly transmit them to the external terminal through the fourth communication module, and when the temperature is too high or too low, wirelessly transmit a temperature reminder signal to the external terminal through the fourth communication module, and when the humidity is too high, wirelessly transmit a humidity reminder signal to the external terminal through the fourth communication module.
[0036] In an embodiment, the air conditioner includes a display, and the air conditioner is further configured to display the temperature and humidity inside the cabin on the display according to the temperature detection signal and the humidity detection signal.
[0037] The present utility model also provides a pet feeding system, which includes an external terminal and the intelligent pet cabin as described above. The external terminal is wirelessly communicatively connected to the intelligent pet cabin.
[0038] The technical solution of the present utility model adopts an intelligent pet cabin, and a feeding module and a drinking module are arranged inside the cabin of the intelligent pet cabin. The drinking module stores pet drinking water and can automatically discharge water when it detects that a pet approaches the intelligent pet cabin. This function ensures that the pet can obtain fresh water at any time to meet its daily drinking needs; the feeding module stores pet food and automatically discharges food according to a set time period. This can ensure that the pet eats on time and avoid irregular feeding caused by the owner being busy or other reasons. In summary, by combining the automatic water discharge of the drinking module and the periodic food discharge of the feeding module, the intelligent pet cabin can realize the automatic management of the pet's eating habits, reduce the burden on the pet owner, and at the same time ensure the regularity and health of the pet's diet, thus solving the problem that the existing pet feeding equipment cannot meet the feeding needs of pets in a timely and accurate manner, which affects the physical health and quality of life of pets. Description of the Drawings
[0039] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the accompanying drawings required for the description of the embodiments or the prior art. Obviously, the accompanying drawings in the following description are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can be obtained based on the structures shown in these drawings.
[0040] Figure 1 Schematic diagram of the module structure of an embodiment of the intelligent pet cabin provided by the present invention;
[0041] Figure 2 Schematic diagram of the module structure of an embodiment of the intelligent pet cabin provided by the present invention;
[0042] Figure 3 Schematic diagram of the module structure of an embodiment of the intelligent pet cabin provided by the present invention;
[0043] Figure 4 Schematic diagram of the module structure of an embodiment of the intelligent pet cabin provided by the present invention;
[0044] Figure 5 Schematic diagram of the module structure of an embodiment of the intelligent pet cabin provided by the present invention;
[0045] Figure 6 Schematic diagram of the module structure of an embodiment of the intelligent pet cabin provided by the present invention;
[0046] Figure 7 Schematic diagram of the module structure of an embodiment of the intelligent pet cabin provided by the present invention;
[0047] Figure 8 Schematic diagram of the module structure of an embodiment of the intelligent pet cabin provided by the present invention.
[0048] Explanation of the reference numerals of the attached drawings:
[0049] 10, cabin body; 20, drinking water module; 21, first communication module; 22, microwave sensor; 23, touch sensor; 24, pet water dispenser; 30, feeding module; 31, second communication module; 32, pressure sensor; 33, pet feeder; 40, monitoring module; 41, third communication module; 42, speaker; 43, microphone; 44, camera monitor; 50, air conditioning module; 51, fourth communication module; 52, temperature sensor; 53, humidity sensor; 54, air conditioner.
[0050] The realization, functional features and advantages of the object of the present invention will be further described with reference to the embodiments and the accompanying drawings. Detailed implementation manners
[0051] The following will clearly and completely describe the technical solutions in the embodiments of the present utility model with reference to the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts belong to the scope of protection of the present utility model.
[0052] It should be noted that if there are directional indications (such as up, down, left, right, front, back,...) involved in the embodiments of the present utility model, the directional indications are only used to explain the relative positional relationship and movement conditions between components in a certain specific posture. If the specific posture changes, the directional indications will also change accordingly.
[0053] In addition, if there are descriptions involving "first", "second", etc. in the embodiments of the present utility model, the descriptions of "first", "second", etc. are only for descriptive purposes and cannot be understood as indicating or implying their relative importance or implicitly specifying 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, if "and / or" or "and / or" appears throughout the text, its meaning includes three parallel solutions. Taking "A and / or B" as an example, it includes solution A, solution B, or a solution that satisfies both A and B at the same time. 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 scope of protection required by the present utility model.
[0054] In modern society, more and more attention is paid to personal freedom and independence, but this has also led to an increasing distance between people. Keeping pets has become a way to make up for the sense of loneliness. However, with the accelerating pace of life, work pressure and trivial matters in life make it increasingly difficult for people to take care of their pets. This makes it difficult for many pet owners to spare enough time and energy to take meticulous care of their pets. Especially in the basic needs of pets, such as feeding and drinking water, many owners are often unable to feed their pets in time due to various unforeseen factors (such as overtime, business trips or traveling, etc.), resulting in pets not getting timely nutritional supplements, which in turn affects their health. However, although there are already some automatic feeding devices on the market, these devices still have certain limitations in terms of intelligence, convenience, accuracy, etc., and cannot meet the needs of feeding pets in a timely and accurate manner, thus affecting the physical health and quality of life of pets.
[0055] Therefore, the existing pet feeding equipment cannot meet the needs of feeding pets in a timely and accurate manner, which affects the physical health and quality of life of pets. This is an urgent problem to be solved at present.
[0056] Based on this, the present utility model proposes an intelligent pet cabin.
[0057] Please refer to Figure 1 , in an embodiment of the present utility model, the intelligent pet cabin includes:
[0058] A cabin body 10, the cabin body 10 is provided with a drinking water module 20 and a feeding module 30;
[0059] The drinking water module 20 stores pet drinking water, and the drinking water module 20 is used to discharge water when detecting that a pet approaches the intelligent pet cabin, so as to provide the pet with the pet drinking water;
[0060] The feeding module 30 stores pet food, and the feeding module 30 is used to discharge food periodically, so as to provide pet food for the pet.
[0061] It should be noted that the drinking water module 20 can be a pet water supply device composed of a water dispenser including a water pump and a water tank and a microwave sensor 22. The drinking water module 20 stores pet drinking water through the water tank of the water dispenser, and detects that a pet approaches the drinking water module 20 by a preset distance through the microwave sensor 22, and then discharges a preset amount of pet drinking water through the water pump of the water dispenser for the pet to drink. The preset distance should be set according to the pet's drinking habit. As an example, the preset distance can be set to 1 meter, and this embodiment does not make a specific limitation on this.
[0062] The feeding module 30 can be a pet food supply device composed of a feeder including a grain storage bin. The feeding module 30 stores pet food through the grain storage bin of the feeder and discharges food periodically, that is, discharges food at a fixed time every day for the pet to eat.
[0063] The technical solution of the present utility model adopts an intelligent pet cabin. A feeding module 30 and a drinking water module 20 are arranged in the cabin body 10 of the intelligent pet cabin. The drinking water module 20 stores pet drinking water and can automatically discharge water when detecting that a pet approaches the intelligent pet cabin. This function ensures that the pet can obtain fresh water at any time to meet its daily drinking water needs; the feeding module 30 stores pet food and automatically discharges food according to a set time period. This can ensure that the pet eats on time and avoid irregular feeding caused by the owner's busyness or other reasons. To sum up, by combining the automatic water discharge of the drinking water module 20 and the periodic food discharge of the feeding module 30, the intelligent pet cabin can realize the automatic management of the pet's eating habits, reduce the burden on the pet owner, and at the same time ensure the regularity and health of the pet's diet, thus solving the problem that the existing pet feeding equipment cannot meet the needs of feeding pets in a timely and accurate manner, which affects the physical health and quality of life of the pets.
[0064] Please refer to Figure 2 , in an embodiment of the present utility model, the drinking water module 20 includes:
[0065] A first communication module 21, which is used to realize the wireless communication connection between the drinking water module 20 and an external terminal;
[0066] A microwave sensor 22, which is used to output a microwave detection signal when a pet approaches the intelligent pet cabin;
[0067] A touch sensor 23, which is used to detect the storage water level of the pet drinking water and output a water level detection signal;
[0068] A pet drinking fountain 24, which is respectively communicatively connected to the microwave sensor 22, the touch sensor 23 and the first communication module 21. The pet drinking fountain 24 is used to store pet drinking water and discharge water when receiving the microwave detection signal to provide the pet with the pet drinking water; wherein,
[0069] The pet drinking fountain 24 is further used to receive a control signal from the external terminal through the first communication module 21 to set the water discharge amount according to the control signal. The pet drinking fountain 24 is further used to receive the water level detection signal and wirelessly transmit it to the external terminal through the first communication module 21, and wirelessly transmit a water addition reminder signal to the external terminal when the pet drinking water is insufficient.
[0070] It should be noted that the external terminal can be an electronic device with wireless communication functions such as a smart phone or a tablet computer. The cabin body 10 is the main structure of the intelligent pet cabin, which is used to provide a living space for the pet and to install equipment modules that meet the pet feeding requirements. The spatial structure of the cabin body 10 should be correspondingly designed according to the size of the pet and the installed equipment, and this embodiment does not make specific limitations in this regard.
[0071] The first communication module 21 can be a networking communication module capable of performing remote wireless communication, such as a WiFi communication module or a cellular network communication module, and this embodiment does not make specific limitations in this regard. Through the first communication module 21, a wireless communication connection between the drinking water module 20 and the external terminal can be realized, enabling the owner to control and monitor the drinking water module 20 through the external terminal.
[0072] The microwave sensor 22 can be a sensor that uses electromagnetic waves with a microwave frequency to detect the presence and position changes of an object, such as a radar sensor, a microwave radar, or a millimeter-wave radar. As long as it can detect the position information of the pet approaching the diet module, this embodiment does not make specific settings in this regard. When it detects that the pet is approaching within a preset distance, the microwave sensor 22 outputs a microwave detection signal, and the microwave detection signal is an electrical signal with a high level.
[0073] The touch sensor 23 can be a sensor capable of detecting physical contact, such as a capacitive touch sensor 23, a resistive touch sensor 23, or an ultrasonic touch sensor 23. As long as it can detect the water level of the pet's drinking water stored in the diet module, this embodiment does not make specific settings in this regard.
[0074] The pet water dispenser 24 can be a pet water supply device including a water tank and a water pump. It can control the water pump to pump out a preset amount of pet drinking water in the storage tank according to the microwave detection signal transmitted by the microwave sensor 22, and is wirelessly communicatively connected to an external terminal through the first communication module 21. It can set the water output when receiving the microwave detection signal according to the control signal wirelessly transmitted by the owner through the external terminal, enabling the owner to preset the water output according to the specific needs of the pet they raise, and more accurately meet the pet's drinking water needs. Moreover, the pet water dispenser 24 is also used to receive the water level detection signal transmitted by the touch sensor 23, obtain the water level information of the pet drinking water stored in the pet water dispenser 24, and wirelessly transmit it to the external terminal through the first communication module 21. When the pet drinking water is insufficient, it wirelessly transmits a water addition reminder signal to the external terminal, so that the owner can know in real time the remaining amount of pet drinking water stored in the pet water dispenser 24 and be reminded to add water when the remaining amount is insufficient. As an example, the water volume of the drinking module 20 has 5 water level gears. The 4th gear (80% of the maximum pet drinking water storage water level) and the 5th gear (100% of the maximum pet drinking water storage water level) are surplus water volumes. The 2nd gear (40% of the maximum pet drinking water storage water level) and the 3rd gear (60% of the maximum pet drinking water storage water level) are warning water volumes. The 1st gear (20% of the maximum pet drinking water storage water level) is the alarm water volume. When the remaining amount of pet drinking water is less than the warning water volume, the pet water dispenser 24 sends a water addition reminder signal to the external terminal through the first wireless communication module to remind the owner to add water.
[0075] In this embodiment, the drinking module 20 includes a first communication module 21, a touch sensor 23, a microwave sensor 22, and a pet water dispenser 24. The microwave sensor 22 can detect the situation of a pet approaching the drinking module 20. When the pet enters the preset distance range, water is automatically discharged, and the water output can be preset by the pet water dispenser 24 receiving the control signal from the external terminal through the first communication module 21, which can accurately meet the drinking water needs of different pets and avoid waste of water resources. Through the touch sensor 23 detecting the remaining water level of the pet drinking water, when the pet drinking water is lower than a certain level, the pet water dispenser 24 sends a water addition reminder signal to the external terminal through the first communication module 21, so that after receiving the water addition reminder information, the owner can ensure that the water tank is not empty, thus ensuring that the pet always has enough drinking water.
[0076] Please refer to Figure 3 , in an embodiment of the present utility model, the feeding module 30 includes:
[0077] A second communication module 31; the second communication module 31 is used to realize the wireless communication connection between the feeding module 30 and the external terminal;
[0078] A pressure sensor 32 for detecting the storage weight of the pet food and outputting a weight detection signal;
[0079] A pet feeder 33 communicatively connected to the pressure sensor 32 and the second communication module 31 respectively, for storing pet food and periodically dispensing the food to provide pet food to a pet; wherein,
[0080] The pet feeder 33 is further configured to receive a control signal from the external terminal through the second communication module 31 to set the food dispensing time and the food dispensing amount according to the control signal, and the pet feeder 33 is further configured to receive the weight detection signal and wirelessly transmit it to the external terminal through the second communication module 31, and wirelessly transmit a food replenishment reminder signal to the external terminal through the second communication module 31 when the pet food is insufficient.
[0081] It should be noted that the second communication module 31 may be a networking communication module capable of performing remote wireless communication, such as a WiFi communication module or a cellular network communication module, and this embodiment does not make specific limitations thereto. Through the second communication module 31, a wireless communication connection between the feeding module 30 and the external terminal can be achieved, enabling the owner to control and monitor the feeding module 30 through the external terminal.
[0082] The pressure sensor 32 may be a piezoresistive pressure sensor 32, a capacitive pressure sensor 32, a piezoelectric pressure sensor 32, etc., and this embodiment does not make specific limitations thereto, and is used to detect the weight of the pet food stored in the pet feeder 33.
[0083] The pet feeder 33 can be a pet feeding device including a grain bin, capable of periodically discharging grains for the pet to eat, and wirelessly communicating with an external terminal through the second communication module 31. It can set the time and amount of periodic grain discharge according to the control signal that the owner can wirelessly transmit through the external terminal, enabling the owner to preset the amount and time of grain discharge according to the specific needs of the pet raised, and more accurately meet the feeding needs of the pet. As an example, the preset amount of grain can be discharged at 8:00 am and 8:00 pm every day. The pet feeder 33 is also used to receive the weight detection signal transmitted by the pressure sensor 32, obtain the weight information of the pet food stored in the pet feeder 33, and wirelessly transmit it to the external terminal through the second communication module 31. When the pet food is insufficient, the pet feeder 33 wirelessly transmits a grain addition reminder signal to the external terminal through the second communication module 31, so that the owner can know in real time the remaining amount of pet food stored in the pet feeder 33 and be reminded to add grain when the remaining amount is insufficient. As an example, the pet food amount stored in the feeding module 30 has 5 weight levels. Levels 4 (80% of the maximum stored pet food weight) and 5 (100% of the maximum stored pet food weight) are surplus grain amounts, levels 2 (40% of the maximum stored pet food weight) and 3 (60% of the maximum stored pet food weight) are warning grain amounts, and level 1 (20% of the maximum stored pet food weight) is the alarm grain amount. When the remaining amount of pet food is less than the warning grain amount, the pet feeder 33 sends a grain addition reminder signal to the external terminal through the second wireless communication module to remind the owner to add grain.
[0084] In this embodiment, the feeding module 30 includes a second communication module 31, a pressure sensor 32, and a pet feeder 33. Through the pet feeder 33, grains can be discharged periodically to provide a regular diet for the pet, and the grain discharge time and amount can be preset by the pet feeder 33 receiving the control signal from the external terminal through the second communication module 31, which can accurately meet the dietary needs of different pets and avoid the situation where the pet keeps triggering the grain discharge when sensing the grain, causing diseases such as obesity and indigestion due to overeating pet food. By detecting the remaining water level of the pet's drinking water through the touch sensor 23, when the pet's drinking water is below a certain level, the pet water dispenser 24 sends a water addition reminder signal to the external terminal through the first communication module 21, so that the owner can ensure that the water tank is not empty after receiving the water addition reminder information, thus ensuring that the pet always has enough drinking water.
[0085] Please refer to Figure 4 , in an embodiment of the present utility model, the intelligent pet cabin further includes:
[0086] The monitoring module 40 is arranged in the cabin body 10, and the monitoring module 40 is wirelessly connected to the external terminal. The monitoring module 40 is used to receive a first sound signal wirelessly transmitted by the external terminal, and play a corresponding sound according to the first sound signal. The monitoring module 40 is also used to collect picture information and sound information in the surrounding environment of the smart pet cabin, and wirelessly transmit a video signal and a second sound signal to the external terminal according to the picture information and the sound information.
[0087] It should be noted that the monitoring module 40 may be a monitoring device composed of a camera, a microphone 43, a speaker 42, and a communication module. The monitoring module 40 can obtain the images and sounds of the pet's activities around the smart pet cabin through the camera and the microphone 43, and communicate with the external terminal through the communication module, so that the owner can remotely obtain the images and sound information of the pet around the pet cabin, and the owner's voice can be played through the speaker 42 to achieve real-time interactive communication with the pet, so that the owner can interact with the pet through the monitoring module 40 even if he is on a business trip or traveling abroad, and check the living status of the pet at any time.
[0088] See also Figure 5 In one embodiment of the present utility model, the monitoring module 40 includes:
[0089] A third communication module 41, the third communication module 41 is used to realize a wireless communication connection between the monitoring module 40 and an external terminal;
[0090] A speaker 42, the speaker 42 is used to receive the first sound signal and play a corresponding sound according to the first sound signal;
[0091] A microphone 43, the microphone 43 is used to collect sound information in the surrounding environment of the smart pet cabin and output a second sound signal;
[0092] A camera monitor 44, wherein the camera monitor 44 is respectively connected to the microphone 43, the speaker 42 and the third communication module 41 for communication, and the camera monitor 44 is used to collect image information in the surrounding environment of the smart pet cabin and output a video signal; wherein,
[0093] The camera monitor 44 is also used to receive the first sound signal wirelessly transmitted by the external terminal through the third communication module 41 and transmit it to the speaker 42. The camera monitor 44 is also used to receive the second sound signal and wirelessly transmit the video signal and the second sound signal to the external terminal through the third communication module 41.
[0094] It should be noted that the third communication module 41 can be a network communication module capable of remote wireless communication, such as a WiFi communication module or a cellular network communication module, which is not specifically limited in this embodiment. The third communication module 41 can realize wireless communication connection between the monitoring module 40 and the external terminal, so that the owner can control and monitor the monitoring module 40 through the external terminal.
[0095] In this embodiment, the microphone 43 is used to obtain sound information around the pet cabin, that is, the voice of the pet, the speaker 42 is used to play sound according to the first sound signal, that is, the voice of the owner, and the camera monitor 44 is used to obtain picture information around the pet cabin, that is, the picture of the pet's activities around the smart pet cabin. The second sound signal and the video signal are wirelessly transmitted to the external terminal through the third communication module 41, and the first sound signal wirelessly transmitted by the external terminal is received, so that the owner can receive the pet picture and sound emitted by the monitoring module 40 through the external terminal, and the monitoring module 40 plays the owner's voice through the speaker 42, so that even if the owner is on a business trip or travel, he can interact with the pet through the monitoring module 40 and check the pet's living status at any time.
[0096] See also Figure 6 In one embodiment of the present utility model, the smart pet cabin further comprises:
[0097] The air conditioning module 50 is arranged in the cabin 10 and is wirelessly connected to the external terminal. The air conditioning module 50 is used to detect and adjust the temperature and humidity in the cabin 10 and wirelessly transmit temperature detection signals and humidity detection signals to the external terminal.
[0098] In this embodiment, the air-conditioning module 50 can be a temperature and humidity adjustment device composed of an air conditioner 54 and a communication module. The air-conditioning module 50 adjusts the temperature and humidity in the cabin 10, so that the pet can be in a healthy and comfortable living environment in the smart pet cabin. The owner can remotely receive the cabin temperature and humidity wirelessly transmitted by the air-conditioning module 50 through an external terminal, remotely monitor the pet's living environment, and adjust the cabin temperature and humidity as needed, ensuring that the pet can be in a suitable temperature and humidity in the smart pet cabin 10, which is beneficial to the pet's physical health and improves the pet's quality of life.
[0099] See also Figure 7 In one embodiment of the present utility model, the air conditioning module 50 includes:
[0100] A fourth communication module 51, the fourth communication module 51 is used to realize a wireless communication connection between the air conditioning module 50 and an external terminal;
[0101] A temperature sensor 52 for detecting the temperature inside the cabin 10 and outputting the temperature detection signal;
[0102] A humidity sensor 53 for detecting the humidity inside the cabin 10 and outputting the humidity detection signal;
[0103] An air conditioner 54, the air conditioner 54 is respectively communicatively connected to the temperature sensor 52, the humidity sensor 53 and the fourth communication module 51, and the air conditioner 54 is used for adjusting the temperature and humidity inside the cabin 10; wherein,
[0104] The air conditioner 54 is further configured to receive the control signal wirelessly transmitted by the external terminal through the fourth communication module 51, and adjust the temperature and humidity inside the cabin 10 according to the control signal. The air conditioner 54 is further configured to receive the temperature detection signal and the humidity detection signal and wirelessly transmit them to the external terminal through the fourth communication module 51, and when the temperature is too high or too low, wirelessly transmit a temperature reminder signal to the external terminal through the fourth communication module 51, and when the humidity is too high, wirelessly transmit a humidity reminder signal to the external terminal through the fourth communication module 51.
[0105] It should be noted that the fourth communication module 51 can be a networking communication module capable of performing remote wireless communication such as a WiFi communication module or a cellular network communication module, and this embodiment does not make specific limitations in this regard. Through the fourth communication module 51, a wireless communication connection between the air conditioner module 50 and the external terminal can be realized, enabling the owner to control and monitor the air conditioner module 50 through the external terminal.
[0106] The temperature sensor 52 can be an infrared temperature sensor 52, a thermistor temperature sensor 52 or a thermocouple temperature sensor 52, etc., and this embodiment does not make specific limitations in this regard. Through the temperature sensor 52, the temperature monitoring inside the cabin 10 can be realized.
[0107] The humidity sensor 53 can be a capacitive humidity sensor 53, a resistive humidity sensor 53 or an optical humidity sensor 53, etc., and this embodiment does not make specific limitations in this regard. Through the humidity sensor 53, the humidity monitoring inside the cabin 10 can be realized.
[0108] The air conditioner 54 can be an air-conditioning electronic device including refrigeration, heating, and dehumidification functions. The air conditioner 54 can adjust the temperature and humidity inside the cabin 10, and is wirelessly communicatively connected to an external terminal through the fourth communication module 51. It can adjust the temperature and humidity inside the cabin 10 to a level suitable for the pet's life according to the control signal wirelessly transmitted by the owner through the external terminal. Moreover, when the temperature is too high in summer or too low in winter, the air conditioner 54 can wirelessly transmit a temperature reminder signal to the external terminal through the fourth communication module 51 to remind the owner to remotely turn on the air conditioner to adjust the temperature inside the cabin 10; when the humidity inside the cabin 10 is too high under specific climate conditions such as the return of the south wind, the air conditioner 54 can wirelessly transmit a humidity reminder signal to the external terminal through the fourth communication module 51 to remind the owner to remotely turn on the dehumidification function (such as the left and right sweeping mode) of the air conditioner 54 to reduce the humidity inside the cabin 10.
[0109] In this embodiment, the air-conditioning module 50 in the intelligent pet cabin realizes the monitoring and adjustment of the environmental temperature and humidity inside the cabin 10 by integrating the fourth communication module 51, the temperature sensor 52, the humidity sensor 53, and the air conditioner 54. Through the air-conditioning module 50 of this embodiment, not only can the temperature and humidity of the pet's living environment be ensured to be suitable, improving the pet's quality of life, but also great convenience is provided for the pet owner, ensuring that a suitable living environment can be created for the pet at any time and anywhere.
[0110] In an embodiment of the present utility model, the air conditioner 54 includes a display, and the air conditioner 54 is further configured to display the temperature and humidity inside the cabin 10 on the display according to the temperature detection signal and the humidity detection signal.
[0111] In this embodiment, the air-conditioning module 50 can display the temperature and humidity inside the cabin 10 on the display, providing intuitive environmental information feedback for the pet owner. When the pet owner is beside the intelligent pet cabin, even without an external terminal, the pet owner can immediately view the temperature and humidity information inside the cabin 10 through the display, enhancing the usability and reliability of the intelligent pet cabin.
[0112] Exemplarily, to help understand the technical concept or technical principle of the pet breeding system after combining this embodiment with the above embodiments, please refer to Figure 8 , Figure 8 A schematic diagram of the module structure of an intelligent pet cabin is provided. The intelligent pet cabin in this example includes all the technical solutions of the above embodiments, so it has at least all the beneficial effects brought by the technical solutions of the above embodiments, which will not be elaborated one by one here.
[0113] In addition, in an implementation manner of this embodiment, the intelligent pet cabin further includes a toilet module. The toilet module includes an infrared sensor and a pet flush toilet. The infrared sensor can be an infrared sensor such as an infrared pair tube or a pyroelectric infrared sensor. This embodiment does not make specific limitations on this. The infrared sensor is disposed on the pet flush toilet and is communicatively connected to the pet flush toilet. The infrared sensor is used to transmit a flushing signal to the pet flush toilet when it detects that the pet leaves the pet flush toilet, so as to control the pet flush toilet to flush and clean.
[0114] In this implementation manner, by using the non-contact detection characteristic of the infrared sensor, the intelligent recognition of pet behavior is realized. When the pet finishes using the toilet and leaves, the pet flush toilet can flush in time. Through the automated flushing mechanism, the cleanliness and hygiene of the pet toilet are ensured, the generation of bacteria and odors is reduced, a clean living environment is provided for the pet, and the need for the pet owner to manually clean the pet toilet is reduced, simplifying the daily care process and improving the convenience of pet feeding.
[0115] The present utility model also proposes a pet breeding system. The pet breeding system includes the intelligent pet cabin described in any one of the above embodiments. The specific structure of the intelligent pet cabin refers to the above embodiments. Since this pet breeding system adopts all the technical solutions of the above all embodiments, it has at least all the beneficial effects brought by the technical solutions of the above embodiments, which will not be elaborated here one by one.
[0116] The above description is only an exemplary implementation manner of the present utility model, and does not limit the patent scope of the present utility model. Any equivalent structural transformation made under the technical concept of the present utility model by using the content of the specification and drawings of the present utility model, or direct / indirect application in other related technical fields is included in the patent protection scope of the present utility model.
Claims
1. An intelligent pet cabin, characterized in that, Including: A cabin body, which is provided with a drinking water module and a feeding module; The drinking water module, which stores pet drinking water and is used to discharge water when detecting that a pet approaches the intelligent pet cabin to provide the pet with the pet drinking water; The feeding module, which stores pet food and is used to discharge food periodically to provide the pet with pet food.
2. The intelligent pet cabin according to claim 1, wherein, The drinking water module includes: A first communication module, which is used to realize the wireless communication connection between the drinking water module and an external terminal; A microwave sensor, which is used to output a microwave detection signal when a pet approaches the intelligent pet cabin; A touch sensor, which is used to detect the storage water level of the pet drinking water and output a water level detection signal; A pet drinking fountain, which is respectively communicatively connected to the microwave sensor, the touch sensor and the first communication module. The pet drinking fountain is used to store pet drinking water and discharge water when receiving the microwave detection signal to provide the pet with the pet drinking water; wherein, The pet drinking fountain is further used to receive a control signal from the external terminal through the first communication module to set the water discharge amount according to the control signal. The pet drinking fountain is also used to receive the water level detection signal and wirelessly transmit it to the external terminal through the first communication module, and wirelessly transmit a water addition reminder signal to the external terminal when the pet drinking water is insufficient.
3. The intelligent pet cabin according to claim 1, characterized in that, The feeding module includes: A second communication module; the second communication module is used to realize the wireless communication connection between the feeding module and an external terminal; A pressure sensor, which is used to detect the storage weight of the pet food and output a weight detection signal; A pet feeder, which is respectively communicatively connected to the pressure sensor and the second communication module. The pet feeder is used to store pet food and discharge food periodically to provide the pet with pet food; wherein, The pet feeder is further used to receive a control signal from the external terminal through the second communication module to set the food discharge time and the food discharge amount according to the control signal. The pet feeder is also used to receive the weight detection signal and wirelessly transmit it to the external terminal through the second communication module, and wirelessly transmit a food addition reminder signal to the external terminal when the pet food is insufficient.
4. The intelligent pet cabin according to claim 1, characterized in that, The intelligent pet cabin further includes: A monitoring module, which is arranged on the cabin body and is wirelessly communicatively connected to an external terminal. The monitoring module is used to receive a first sound signal wirelessly transmitted by the external terminal and play a corresponding sound according to the first sound signal. The monitoring module is also used to collect picture information and sound information in the surrounding environment of the intelligent pet cabin and wirelessly transmit a video signal and a second sound signal to the external terminal according to the picture information and the sound information.
5. The intelligent pet cabin according to claim 4, characterized in that, The monitoring module includes: A third communication module, which is used to realize the wireless communication connection between the monitoring module and the external terminal; A speaker for receiving the first sound signal and playing a corresponding sound according to the first sound signal; A microphone for collecting sound information in the environment around the intelligent pet cabin and outputting a second sound signal; A camera monitor communicatively connected to the microphone, the speaker, and the third communication module respectively. The camera monitor is used for collecting picture information in the environment around the intelligent pet cabin and outputting a video signal. Among them, The camera monitor is further configured to receive the first sound signal wirelessly transmitted by the external terminal through the third communication module and transmit it to the speaker. The camera monitor is also configured to receive the second sound signal and wirelessly transmit the video signal and the second sound signal to the external terminal through the third communication module.
6. The intelligent pet cabin according to claim 1, characterized in that The intelligent pet cabin further includes: An air-conditioning module disposed in the cabin body. The air-conditioning module is wirelessly communicatively connected to an external terminal. The air-conditioning module is used for detecting and adjusting the temperature and humidity in the cabin body and wirelessly transmitting a temperature detection signal and a humidity detection signal to the external terminal.
7. The intelligent pet cabin according to claim 6, characterized in that, The air-conditioning module includes: A fourth communication module for realizing the wireless communication connection between the air-conditioning module and the external terminal; A temperature sensor for detecting the temperature in the cabin body and outputting the temperature detection signal; A humidity sensor for detecting the humidity in the cabin body and outputting the humidity detection signal; An air conditioner communicatively connected to the temperature sensor, the humidity sensor, and the fourth communication module respectively. The air conditioner is used for adjusting the temperature and humidity in the cabin body. Among them, The air conditioner is further configured to receive the control signal wirelessly transmitted by the external terminal through the fourth communication module and adjust the temperature and humidity in the cabin body according to the control signal. The air conditioner is also configured to receive the temperature detection signal and the humidity detection signal and wirelessly transmit them to the external terminal through the fourth communication module. And when the temperature is too high or too low, the air conditioner wirelessly transmits a temperature reminder signal to the external terminal through the fourth communication module. When the humidity is too high, the air conditioner wirelessly transmits a humidity reminder signal to the external terminal through the fourth communication module.
8. The intelligent pet cabin according to claim 7, characterized in that, The air conditioner includes a display. The air conditioner is further configured to display the temperature and humidity in the cabin body on the display according to the temperature detection signal and the humidity detection signal.
9. A pet breeding system, characterized in that, The pet breeding system includes an external terminal and the intelligent pet cabin according to any one of claims 1 to 8. The external terminal is wirelessly communicatively connected to the intelligent pet cabin.