Vehicle and vehicle-mounted oxygen generation system
By designing an on-board oxygen production system in the vehicle, the problem of inconvenient operation and safety hazards of portable oxygen production machines when used in the vehicle is solved, and the dispersed oxygen supply of the whole vehicle is realized, improving the convenience and safety of use.
Patent Information
- Application Number
- CN202510197291.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-21
- Publication Date
- 2025-05-13
AI Technical Summary
When used in a vehicle, the existing portable oxygen generator is inconvenient to operate and has safety hazards, and it is impossible to achieve diffuse oxygen supply in the whole vehicle.
A vehicle-mounted oxygen production system in a vehicle is designed, including an oxygen generator slot, an oxygen outlet pipeline, an on-board terminal equipment, a power supply interface and a communication interface. Through these components, the information interconnection and oxygen supply between the oxygen generator and the vehicle are realized.
It realizes the effect of free oxygen absorption without any sensing in the vehicle, improves the convenience and safety of use, and reduces the volume and weight of the oxygen generator and reduces noise.
Smart Images

Figure CN119975185A_ABST
Abstract
Description
Technical Field
[0001] The embodiments of the present application relate to the field of computer technology, and in particular to a vehicle and a vehicle-mounted oxygen production system. Background Art
[0002] An oxygen concentrator is a medical device that can produce oxygen and meet the user's portability needs. It is mainly used in various scenarios such as home, outdoor, and travel.
[0003] In the related art, a portable oxygen concentrator can be placed in a vehicle for use, and can provide oxygen to passengers through a point-inhalation method (using a nasal cannula or a mask). However, the driver needs to operate the machine alone and wear a nasal cannula or a mask while driving, which will cause certain safety hazards and inconveniences in operation. Summary of the invention
[0004] The embodiment of the present application provides a vehicle and a vehicle-mounted oxygen production system. The technical solution is as follows:
[0005] According to one aspect of an embodiment of the present application, a vehicle is provided, the vehicle comprising an oxygen concentrator slot, an oxygen outlet pipeline, an on-board terminal device, a power supply interface, and a communication interface;
[0006] The oxygen concentrator slot is used to place the oxygen concentrator;
[0007] One end of the oxygen outlet pipeline is used to connect to the oxygen outlet of the oxygen concentrator, and the end is used to transport oxygen to the driver and co-driver positions;
[0008] The power supply interface is used to connect to the power supply interface of the oxygen concentrator;
[0009] The communication interface is used to establish a communication connection between the vehicle-mounted terminal device and the oxygen concentrator.
[0010] According to one aspect of an embodiment of the present application, a vehicle-mounted oxygen production system is provided, the vehicle-mounted oxygen production system comprising a vehicle and an oxygen concentrator, the vehicle comprising an oxygen concentrator slot, an oxygen outlet pipeline, a vehicle-mounted terminal device, a power supply interface, and a communication interface;
[0011] The oxygen concentrator is placed in the oxygen concentrator slot;
[0012] The oxygen outlet of the oxygen concentrator is connected to one end of the oxygen outlet pipeline;
[0013] The power interface of the oxygen concentrator is connected to the power supply interface;
[0014] The oxygen concentrator establishes a communication connection with the vehicle-mounted terminal device through the communication interface.
[0015] The technical solution provided by the embodiments of the present application may have the following beneficial effects:
[0016] The vehicle provided in the embodiment of the present application is provided with an oxygen concentrator slot, and the oxygen concentrator can be placed in the oxygen concentrator slot, and oxygen is supplied to passengers through the oxygen outlet pipeline, so that passengers can use the oxygen concentrator in the vehicle. A separate fixing mechanism is designed, which can be stably placed in a fixed position on the vehicle without shaking or abnormal noise. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 is a block diagram of a vehicle-mounted oxygen production system provided by an embodiment of the present application;
[0018] Figure 2 It is a working principle diagram of a local diffusion system of an oxygen concentrator provided in one embodiment of the present application. DETAILED DESCRIPTION
[0019] In order to make the objectives, technical solutions and advantages of the present application clearer, the implementation methods of the present application will be further described in detail below with reference to the accompanying drawings.
[0020] A portable vehicle-mounted oxygen concentrator is a medical and health care device that can produce oxygen and meet the user's portable needs. It is mainly used in various scenarios such as home, outdoor, and travel. It uses the molecular sieve adsorption principle or membrane separation technology to separate oxygen from the air to provide high-concentration oxygen to people who need respiratory assistance. Portable oxygen concentrators have the advantages of small size, light weight, and easy operation. They are suitable for different groups of people, such as middle-aged and elderly people, people with poor physical fitness, and pregnant women. The technical principle of a portable oxygen concentrator is mainly to separate oxygen from the air at high speed through a compressor to provide high-concentration oxygen. Compared with traditional oxygen therapy methods, such as oxygen tanks or oxygen pipelines, portable oxygen concentrators are more portable and quiet. It is suitable for short-term use of oxygen outside, such as the elderly going out for a walk and young people traveling in the plateau. Most portable oxygen concentrators use PSA (Pressure Swing Adsorption) and VPSA (Vacuum Pressure Swing Adsorption) technologies, which enable the oxygen concentrator to supply oxygen according to the user's breathing rate to ensure high efficiency and safety. However, the portable oxygen concentrators currently on the market have little connection with the vehicle and are completely independent of the vehicle. The vehicle does not have a separate storage location for the oxygen concentrator, does not have a special charging function, and has no interconnection function. Due to power and volume limitations, only point-inhalation (using a nasal cannula or mask) oxygen supply can be used. Therefore, when using it while driving, you need to operate the machine separately and wear a nasal cannula or mask, which will have certain safety hazards and inconveniences. If you want to achieve diffuse oxygen supply for the entire vehicle, you need to use a split oxygen concentrator structure or a larger power and volume.
[0021] The present application provides a portable vehicle-mounted oxygen concentrator as a vehicle travel ecological product, which is designed with a fixed, convenient, easy-to-store and easy-to-take storage structure on the vehicle; at the same time, a power supply interface is designed, and a variety of power supply methods can be used; the oxygen concentrator and the vehicle can be interconnected in information in a variety of ways, and the user can choose Bluetooth interconnection, CAN (Controller Area Network) interconnection, LIN (Local Interconnect Network) interconnection, WiFi (Wireless LAN) interconnection according to their preferences. The vehicle can be connected to the wireless Fidelity (Wireless Fidelity) network and the Internet (Internet), and can be controlled and connected through mobile phone APP (Application) and the main unit large screen. A special quick interface is designed in the car and on the oxygen concentrator to connect the oxygen outlet of the oxygen concentrator to the vehicle oxygen outlet pipeline system with a quick connection mechanism and a terminal pressurization system reserved in the car. The high-concentration oxygen produced by the oxygen concentrator is blown to the mouth and nose of the driver and the co-driver through the pressurization system at the end of the oxygen outlet pipeline system reserved in the car, so as to achieve the effect of local diffuse oxygen supply and let the driver and the co-driver passengers breathe oxygen freely without feeling. At the same time, 2 traditional oxygen outlets are reserved at the rear of the oxygen concentrator for the rear passengers to breathe oxygen by point inhalation (using a nasal cannula or a mask), and the oxygen concentrator can be controlled through the vehicle system on the vehicle's control interface or mobile phone APP, which will not affect driving safety.
[0022] Please refer to Figure 1 , which shows a schematic diagram of a vehicle-mounted oxygen production system provided by an embodiment of the present application. The vehicle-mounted oxygen production system includes a vehicle and an oxygen concentrator, and the vehicle includes an oxygen concentrator slot, an oxygen outlet pipeline, a vehicle-mounted terminal device, a power supply interface, and a communication interface.
[0023] In some embodiments, the vehicle includes an oxygen concentrator slot, an oxygen outlet pipeline, an on-board terminal device, a power supply interface and a communication interface; the oxygen concentrator slot is used to place the oxygen concentrator; one end of the oxygen outlet pipeline is used to connect to the oxygen outlet of the oxygen concentrator, and the end is used to transport oxygen to the driver and co-pilot positions; the power supply interface is used to connect to the power interface of the oxygen concentrator; the communication interface is used to establish a communication connection between the on-board terminal device and the oxygen concentrator.
[0024] The oxygen concentrator is placed in the oxygen concentrator slot
[0025] In some embodiments, the oxygen concentrator slot is located at a suitable position inside the vehicle. In some embodiments, the above suitable position is designed based on the interior space of the vehicle. For example, if the interior space of the vehicle is small, the oxygen concentrator slot can be placed in the trunk; if the interior space of the vehicle is large, the oxygen concentrator slot can be placed in a position between the main and co-driver seats that does not affect the operation of the vehicle, or it can be placed in the center of the back seat.
[0026] In some embodiments, the size of the oxygen concentrator slot is preset. In some embodiments, the size of the oxygen concentrator can be set based on the size of a common oxygen concentrator. In some embodiments, the oxygen concentrator slot also provides a fixing mechanism for the oxygen concentrator, and the fixing mechanism is used to fix the oxygen concentrator. Exemplarily, the fixing mechanism can be an elastic tie for bundling and fixing the oxygen concentrator. Exemplarily, the fixing mechanism can be a movable fixing plate for reducing the movable range of the oxygen concentrator slot to achieve the purpose of fixing the oxygen concentrator.
[0027] In some embodiments, the shape of the oxygen concentrator slot is designed based on the external structure of a common oxygen concentrator. In some embodiments, the shape of the oxygen concentrator slot can adapt to the external structure of multiple oxygen concentrators, and the user does not need to purchase an oxygen concentrator of a specified shape, which provides convenience for the user.
[0028] In some embodiments, the oxygen concentrator slot is reserved in the vehicle during the vehicle manufacturing process as part of the vehicle's internal structure. In some embodiments, the oxygen concentrator slot is a detachable structure, and when the oxygen concentrator is not needed in the vehicle, the oxygen concentrator slot can be removed to expand the vehicle's internal space.
[0029] The oxygen outlet of the oxygen concentrator is connected to one end of the oxygen outlet pipeline.
[0030] In some embodiments, one end of the oxygen outlet pipeline is arranged at the position of the oxygen concentrator slot for connecting to the oxygen outlet of the oxygen concentrator. In some embodiments, one end of the oxygen outlet pipeline may be fixed to the oxygen concentrator slot or may not be fixed to the oxygen concentrator slot. Exemplarily, one end of the oxygen outlet pipeline is fixed to the oxygen concentrator slot, which can effectively prevent the oxygen outlet pipeline from being displaced during the driving of the vehicle, causing problems with oxygen supply.
[0031] In some embodiments, the end of the oxygen outlet pipeline is arranged near the vehicle seat for oxygen outlet. In some embodiments, the position where the end of the oxygen outlet pipeline is arranged is designed based on the position of the passenger's mouth and nose. Exemplarily, the end of the oxygen outlet pipeline is arranged at a calibrated distance from the passenger's mouth and nose. Exemplarily, the calibrated distance is 10cm. It should be noted that in the embodiments of the present application, passengers are used to refer to the people in the vehicle. When the person is sitting in the main driving position in the car, he can also be called a driver.
[0032] In some embodiments, due to the large rear space, it is inconvenient to use diffuse oxygen supply to supply oxygen to the rear passengers, so the end of the oxygen outlet pipeline is only arranged at the main and co-pilot positions. Exemplarily, in order to avoid affecting the driver's operation, the end of the oxygen outlet pipeline can be arranged on the operating table of the main and co-pilot positions, or arranged above the main and co-pilot doors. In some embodiments, the rear passengers can use the point-inhalation oxygen inhalation method, using an oxygen mask or nasal cannula connected to the oxygen concentrator to inhale oxygen. In some embodiments, if the position of the oxygen concentrator slot is convenient for connecting the oxygen mask or nasal cannula, then there is no need to arrange extra pipelines, and the oxygen mask or nasal cannula can be connected to the oxygen outlet of the oxygen concentrator when needed. If the position of the oxygen concentrator slot is not convenient for connecting the oxygen mask or nasal cannula, then the oxygen outlet pipeline that is convenient for connecting the oxygen mask or nasal cannula can be reserved, or the oxygen mask or nasal cannula can be connected to the oxygen outlet of the oxygen concentrator and placed in a position that is convenient for the rear passengers to take.
[0033] In some embodiments, the end of the oxygen outlet pipeline includes a pressurizing fan, which is used to pressurize the oxygen in the oxygen outlet pipeline. In some embodiments, in order to ensure that passengers can breathe oxygen of sufficient concentration, a pressurizing fan is arranged at the end of the oxygen outlet pipeline to pressurize the oxygen in the oxygen outlet pipeline. The pressurized oxygen can be better diffused to the mouth and nose of the passenger to ensure the passenger's oxygen inhalation experience.
[0034] For example, Figure 2 As shown, the oxygen outlets 1 and 2 of the oxygen concentrator are connected to the oxygen outlet pipeline, the ends of the oxygen outlet pipeline are arranged at the driver and co-driver positions, and the oxygen outlets 3 and 4 of the oxygen concentrator use nasal inhalation to supply oxygen to the rear passengers.
[0035] In some embodiments, the arrangement of the oxygen outlet pipeline is set based on the position of the oxygen concentrator slot. In some embodiments, the oxygen outlet pipeline is arranged at a position that does not affect the movement of passengers in the vehicle. Exemplarily, the oxygen outlet pipeline is arranged along the roof after extending from the oxygen concentrator slot. Exemplarily, the oxygen outlet pipeline is arranged along the bottom of the vehicle after extending from the oxygen concentrator slot.
[0036] In some embodiments, the material of the oxygen outlet pipeline is a soft material that is easy to change the direction of the pipeline, for example, it can be a non-toxic rubber material. In some embodiments, if necessary, the passenger can change the layout of the oxygen outlet pipeline to ensure that a better oxygen supply experience is provided to the passenger.
[0037] In some embodiments, one end of the oxygen outlet pipeline is used to connect the oxygen outlet of the oxygen concentrator through a quick connection mechanism. The quick connection mechanism is used to reduce the difficulty of connecting the oxygen outlet pipeline to the oxygen outlet of the oxygen concentrator. The quick connection mechanism is a device that can quickly connect and disconnect the pipeline in a short time, and is widely used in many fields such as industry, agriculture, and construction. Exemplarily, the quick connection mechanism can be a quick connector, which is a connector that can connect or disconnect the pipeline without tools, and has the characteristics of being fast, convenient, and reliable. According to the use, it can be divided into various types such as air, oxygen fuel gas, gas and liquid sharing, and oil pressure. According to the structure, it can be divided into two-end open and closed type, two-end open type, single-way open and closed type, etc. Exemplarily, the quick connection mechanism can be a PP quick connector, and PP quick connector (Polypropylene Quick Connect) is a new type of pipeline connection method, which has the characteristics of being fast, convenient, and reliable. It is suitable for the connection of various plastic pipes, and no welding or threaded connection is required during the installation process, which greatly improves the construction efficiency.
[0038] Connect the power interface of the oxygen concentrator to the power supply interface
[0039] In some embodiments, the electrical system of the vehicle provides power support for various electronic devices of the vehicle, including lighting, air conditioning, audio, instruments, etc. In some embodiments, a power supply interface for establishing a connection with the power system of the vehicle is reserved in the vehicle. In some embodiments, the power supply interface of the oxygen concentrator is connected to the power supply interface to provide power to the oxygen concentrator.
[0040] In some embodiments, the power supply interface is powered by a power supply of the vehicle, the power supply includes a battery and a generator, the battery is used to start the engine, and the generator provides power to the vehicle when the engine is running. In some embodiments, the power supply interface is a circuit structure newly added to the original circuit system of the vehicle, or the circuit structure of the original circuit system of the vehicle can be directly used.
[0041] The oxygen concentrator and the vehicle-mounted terminal device establish a communication connection through the communication interface
[0042] In some embodiments, the oxygen concentrator and the vehicle-mounted terminal device establish a communication connection through a communication interface. In some embodiments, the oxygen concentrator and the vehicle-mounted terminal device can establish a communication connection through a wired manner or a wireless manner.
[0043] In some embodiments, the oxygen concentrator establishes a communication connection with the vehicle-mounted terminal device via a wired manner, and the present application does not limit the format of the communication interface of the vehicle-mounted terminal device. For example, it can be a source format or a USB format.
[0044] In some embodiments, the oxygen concentrator establishes a communication connection with the vehicle-mounted terminal device by wireless means. For example, the oxygen concentrator and the vehicle-mounted terminal device can establish a communication connection by means of Bluetooth, WIFI, CAN, LIN, Internet, etc. Bluetooth technology is a wireless communication technology, which is mainly used for data transmission and communication between short-range devices. It is widely used in smart phones, headphones, vehicle systems, smart homes and other fields. WIFI is a wireless communication technology that allows devices to transmit data in a wireless network. It is widely used in homes, offices and public places, and supports wireless connection of multiple devices (such as mobile phones, computers, tablets). CAN is a serial communication protocol, which is mainly used for inter-device communication in automobiles and industrial control systems. It has high reliability, real-time and anti-interference capabilities, and is widely used in communication between automotive electronic control units (ECUs). LIN is a low-cost serial communication protocol, which is mainly used for low-speed communication in automobiles. It is usually used to control devices such as windows, door locks, seat adjustments, etc., and is a supplement to the CAN network.
[0045] In some embodiments, after the vehicle-mounted terminal device establishes a communication connection with the oxygen concentrator, the vehicle-mounted terminal device can control the oxygen concentrator.
[0046] The vehicle provided in the embodiment of the present application is provided with an oxygen concentrator slot, and the oxygen concentrator can be placed in the oxygen concentrator slot, and oxygen is supplied to passengers through the oxygen outlet pipeline, so that passengers can use the oxygen concentrator in the vehicle. A separate fixing mechanism is designed, which can be stably placed in a fixed position on the vehicle without shaking or abnormal noise.
[0047] Vehicle terminal equipment
[0048] In some embodiments, after the vehicle-mounted terminal device establishes a communication connection with the oxygen concentrator, the vehicle-mounted terminal device can control the oxygen concentrator. How the vehicle-mounted terminal device controls the oxygen concentrator will be described in detail below.
[0049] In some embodiments, at least one control control is displayed on the screen of the vehicle-mounted terminal device, and the control control is used to control the oxygen concentrator. In some embodiments, the background system of the vehicle-mounted terminal device supports the control of the oxygen concentrator. In some embodiments, the vehicle-mounted terminal device supports the control of the oxygen concentrator through the installed APP.
[0050] In some embodiments, the background system of the vehicle terminal device supports the control of the oxygen concentrator, and the at least one control control is displayed on the system interface of the vehicle terminal device. In some embodiments, the system interface of the vehicle terminal device can be the main interface of the vehicle terminal device, or it can be other interfaces provided by the background system of the vehicle terminal device.
[0051] In some embodiments, the vehicle-mounted terminal device controls the oxygen concentrator through an APP, and the at least one control control is displayed on a user interface provided by the APP. In some embodiments, the user interface through the APP can be the main interface of the APP or the functional interface through the APP.
[0052] In some embodiments, at least one control comprises at least one of the following:
[0053] Oxygen outlet control control, the oxygen outlet control control is used to control the oxygen outlet of the vehicle-mounted oxygen concentrator;
[0054] Timing control, which is used to set timing information for the vehicle-mounted oxygen concentrator;
[0055] The gear control is used to control the oxygen output gear of the vehicle-mounted oxygen concentrator;
[0056] Start control, which is used to start the vehicle-mounted oxygen concentrator;
[0057] Shutdown control: The shutdown control is used to shut down the vehicle-mounted oxygen concentrator.
[0058] In some embodiments, the oxygen outlet control widget supports controlling whether the oxygen outlet of the oxygen concentrator discharges oxygen. In some embodiments, the oxygen outlet control widget supports individually controlling whether each oxygen outlet of the oxygen concentrator discharges oxygen. Exemplarily, the oxygen concentrator includes 4 oxygen outlets, oxygen outlets 1 to 4, and the oxygen outlet control widget supports individually controlling the discharge of oxygen from any one of the oxygen outlets 1 to 4, and also supports jointly controlling the discharge of oxygen from any multiple of the oxygen outlets 1 to 4. For example, the oxygen outlet control widget supports jointly controlling the discharge of oxygen from oxygen outlets 1 and 2, and also supports jointly controlling the discharge of oxygen from oxygen outlets 1, 2, and 3, and also supports jointly controlling the discharge of oxygen from oxygen outlets 1 to 4.
[0059] In some embodiments, the timing control can control the time when the oxygen concentrator produces oxygen, and can also control the start time of the oxygen concentrator. Exemplarily, the timing control can control the oxygen concentrator to produce oxygen within the next 30 minutes. Exemplarily, the timing control can control the oxygen concentrator to start producing oxygen after 30 minutes.
[0060] In some embodiments, the gear control is used to control the oxygen output gear of the vehicle-mounted terminal device. In some embodiments, the oxygen output gear includes at least one of the following: diffuse oxygen supply and spot oxygen supply. In some embodiments, the gear control is used to control the oxygen output gear of the oxygen concentrator, and the oxygen output gear of each oxygen outlet of the oxygen concentrator is consistent with the oxygen output gear of the oxygen concentrator. Exemplarily, the oxygen output gears of oxygen outlets 1 to 4 of the oxygen concentrator are all diffuse oxygen supply. In some embodiments, the gear control also supports separate control of the oxygen output gear of the oxygen outlet of the oxygen concentrator, and the oxygen output gears of different oxygen outlets can be the same or different. Exemplarily, the oxygen output gears of oxygen outlets 1 and 2 are diffuse oxygen supply, and the oxygen output gears of oxygen outlets 3 and 4 are spot oxygen supply.
[0061] In some embodiments, the oxygen outlet gear may also include the oxygen outlet pressure gear of the oxygen outlet. Exemplarily, the oxygen outlet pressure gear of the oxygen outlet includes three pressure gears: large, medium and small. In some embodiments, the gear control is used to control the oxygen outlet gear of the oxygen concentrator, and the oxygen outlet gears of each oxygen outlet of the oxygen concentrator are consistent with the oxygen outlet gear of the oxygen concentrator. Exemplarily, the oxygen outlet gears of oxygen outlets 1 to 4 of the oxygen concentrator are all high pressure. In some embodiments, the gear control also supports separate control of the oxygen outlet gear of the oxygen outlet of the oxygen concentrator, and the oxygen outlet gears of different oxygen outlets may be the same or different. Exemplarily, the oxygen outlet gears of oxygen outlets 1 and 2 are high pressure, and the oxygen outlet gears of oxygen outlets 3 and 4 are low pressure.
[0062] In some embodiments, diffuse oxygen supply and spot oxygen supply can also be combined with the oxygen outlet pressure gear of the oxygen outlet. Exemplarily, the gears that the oxygen outlet gear supports adjustment include at least one of the following: large, medium and small pressure gears of diffuse oxygen supply, and large, medium and small pressure gears of spot oxygen supply.
[0063] In some embodiments, the start control is used to control the start of the vehicle-mounted oxygen concentrator; the shutdown control is used to control the shutdown of the vehicle-mounted oxygen concentrator. In some embodiments, the vehicle-mounted terminal device is used to control the start of the oxygen concentrator in response to the start operation of the oxygen concentrator; in response to the shutdown operation of the oxygen concentrator, control the shutdown of the oxygen concentrator. In some embodiments, the start control and the shutdown control can be the same control or two different controls.
[0064] In some embodiments, the vehicle-mounted terminal device is also used to respond to the mode switching operation for the oxygen concentrator, and control the oxygen concentrator to switch from the vehicle-mounted oxygen production mode to the traditional oxygen production mode; in the vehicle-mounted oxygen production mode, the oxygen concentrator continuously discharges oxygen at the oxygen outlet connected to the oxygen outlet pipeline, and in the traditional oxygen production mode, the oxygen concentrator discharges oxygen in a point-suction manner at at least one oxygen outlet that is not connected to the oxygen outlet pipeline. In some embodiments, at least one control control also includes a mode switching control. In some embodiments, in the vehicle-mounted oxygen production mode, the oxygen concentrator adopts a diffuse oxygen supply gear at the oxygen outlet connected to the oxygen outlet pipeline, and adopts a point-suction oxygen outlet gear at the oxygen outlet not connected to the oxygen outlet pipeline. In some embodiments, in the traditional oxygen production mode, the oxygen outlets of the oxygen concentrator all adopt a point-suction oxygen outlet gear.
[0065] In some embodiments, after the vehicle-mounted terminal device establishes a communication connection with the oxygen concentrator, the oxygen concentrator enters the vehicle-mounted oxygen concentrator mode by default.
[0066] Mobile terminal equipment
[0067] In some embodiments, the oxygen concentrator also supports passengers to control it through a mobile terminal device. In some embodiments, after the mobile terminal device establishes a communication connection with the vehicle-mounted terminal device, the oxygen concentrator is controlled through the communication connection between the vehicle-mounted terminal device and the mobile terminal device. In some embodiments, the mobile terminal device directly establishes a communication connection with the oxygen concentrator, and the mobile terminal device directly controls the oxygen concentrator.
[0068] In some embodiments, the vehicle-mounted terminal device establishes a communication connection with the mobile terminal device, and at least one control control is displayed on the screen of the mobile terminal device, and the control control is used to control the oxygen concentrator. In some embodiments, the background system of the mobile terminal device supports the control of the oxygen concentrator. In some embodiments, the mobile terminal device supports the control of the oxygen concentrator through the installed APP.
[0069] In some embodiments, the background system of the mobile terminal device supports the control of the oxygen concentrator, and the at least one control control is displayed on the system interface of the mobile terminal device. In some embodiments, the system interface of the mobile terminal device can be the main interface of the mobile terminal device, or it can be other interfaces provided by the background system of the mobile terminal device.
[0070] In some embodiments, the mobile terminal device supports controlling the oxygen concentrator through an installed APP, and the at least one control control is displayed on a user interface provided by the APP. In some embodiments, the user interface through the APP can be the main interface of the APP or the functional interface through the APP.
[0071] In some embodiments, at least one control comprises at least one of the following:
[0072] Oxygen outlet control control, the oxygen outlet control control is used to control the oxygen outlet of the vehicle-mounted oxygen concentrator;
[0073] Timing control, which is used to set timing information for the vehicle-mounted oxygen concentrator;
[0074] The gear control is used to control the oxygen output gear of the vehicle-mounted oxygen concentrator;
[0075] Start control, which is used to start the vehicle-mounted oxygen concentrator;
[0076] Shutdown control: The shutdown control is used to shut down the vehicle-mounted oxygen concentrator.
[0077] In some embodiments, the oxygen outlet control widget supports controlling whether the oxygen outlet of the oxygen concentrator discharges oxygen. In some embodiments, the oxygen outlet control widget supports individually controlling whether each oxygen outlet of the oxygen concentrator discharges oxygen. Exemplarily, the oxygen concentrator includes 4 oxygen outlets, oxygen outlets 1 to 4, and the oxygen outlet control widget supports individually controlling the discharge of oxygen from any one of the oxygen outlets 1 to 4, and also supports jointly controlling the discharge of oxygen from any multiple of the oxygen outlets 1 to 4. For example, the oxygen outlet control widget supports jointly controlling the discharge of oxygen from oxygen outlets 1 and 2, and also supports jointly controlling the discharge of oxygen from oxygen outlets 1, 2, and 3, and also supports jointly controlling the discharge of oxygen from oxygen outlets 1 to 4.
[0078] In some embodiments, the timing control can control the time when the oxygen concentrator produces oxygen, and can also control the start time of the oxygen concentrator. Exemplarily, the timing control can control the oxygen concentrator to produce oxygen within the next 30 minutes. Exemplarily, the timing control can control the oxygen concentrator to start producing oxygen after 30 minutes.
[0079] In some embodiments, the gear control is used to control the oxygen output gear of the mobile terminal device. In some embodiments, the oxygen output gear includes at least one of the following: diffuse oxygen supply and spot oxygen supply. In some embodiments, the gear control is used to control the oxygen output gear of the oxygen concentrator, and the oxygen output gear of each oxygen outlet of the oxygen concentrator is consistent with the oxygen output gear of the oxygen concentrator. Exemplarily, the oxygen output gears of oxygen outlets 1 to 4 of the oxygen concentrator are all diffuse oxygen supply. In some embodiments, the gear control also supports separate control of the oxygen output gear of the oxygen outlet of the oxygen concentrator, and the oxygen output gears of different oxygen outlets can be the same or different. Exemplarily, the oxygen output gears of oxygen outlets 1 and 2 are diffuse oxygen supply, and the oxygen output gears of oxygen outlets 3 and 4 are spot oxygen supply.
[0080] In some embodiments, the oxygen outlet gear may also include the oxygen outlet pressure gear of the oxygen outlet. Exemplarily, the oxygen outlet pressure gear of the oxygen outlet includes three pressure gears: large, medium and small. In some embodiments, the gear control is used to control the oxygen outlet gear of the oxygen concentrator, and the oxygen outlet gears of each oxygen outlet of the oxygen concentrator are consistent with the oxygen outlet gear of the oxygen concentrator. Exemplarily, the oxygen outlet gears of oxygen outlets 1 to 4 of the oxygen concentrator are all high pressure. In some embodiments, the gear control also supports separate control of the oxygen outlet gear of the oxygen outlet of the oxygen concentrator, and the oxygen outlet gears of different oxygen outlets may be the same or different. Exemplarily, the oxygen outlet gears of oxygen outlets 1 and 2 are high pressure, and the oxygen outlet gears of oxygen outlets 3 and 4 are low pressure.
[0081] In some embodiments, diffuse oxygen supply and spot oxygen supply can also be combined with the oxygen outlet pressure gear of the oxygen outlet. Exemplarily, the gears that the oxygen outlet gear supports adjustment include at least one of the following: large, medium and small pressure gears of diffuse oxygen supply, and large, medium and small pressure gears of spot oxygen supply.
[0082] In some embodiments, the start control is used to control the start of the vehicle-mounted oxygen concentrator; the shutdown control is used to control the shutdown of the vehicle-mounted oxygen concentrator. In some embodiments, the mobile terminal device is used to control the start of the oxygen concentrator in response to the start operation of the oxygen concentrator; in response to the shutdown operation of the oxygen concentrator, control the shutdown of the oxygen concentrator. In some embodiments, the start control and the shutdown control can be the same control or two different controls.
[0083] In some embodiments, the mobile terminal device is also used to control the oxygen concentrator to switch from the vehicle-mounted oxygen production mode to the traditional oxygen production mode in response to a mode switching operation for the oxygen concentrator; in the vehicle-mounted oxygen production mode, the oxygen concentrator continuously discharges oxygen at the oxygen outlet connected to the oxygen outlet pipeline, and in the traditional oxygen production mode, the oxygen concentrator discharges oxygen in a point-suction manner at at least one oxygen outlet that is not connected to the oxygen outlet pipeline. In some embodiments, at least one control control also includes a mode switching control. In some embodiments, in the vehicle-mounted oxygen production mode, the oxygen concentrator adopts a diffuse oxygen supply gear at the oxygen outlet connected to the oxygen outlet pipeline, and adopts a point-suction oxygen outlet gear at the oxygen outlet not connected to the oxygen outlet pipeline. In some embodiments, in the traditional oxygen production mode, the oxygen outlets of the oxygen concentrator all adopt a point-suction oxygen outlet gear.
[0084] In some embodiments, after the mobile terminal device establishes a communication connection with the oxygen concentrator, the oxygen concentrator enters the vehicle-mounted oxygen concentrator mode by default. In some embodiments, when the oxygen concentrator establishes a communication connection with the mobile terminal device and the vehicle-mounted terminal device at the same time, the oxygen concentrator enters the vehicle-mounted oxygen concentrator mode by default.
[0085] In some embodiments, the mobile terminal device can be an electronic device such as a PC (Personal Computer), a mobile phone, a wearable device, a vehicle-mounted terminal, a VR (Virtual Reality) device, an AR (Augmented Reality) device, an MR (Mixed Reality) device, or the like.
[0086] In some embodiments, a vehicle and a vehicle-mounted oxygen generator system provided in an embodiment of the present application include at least one of the following: a portable vehicle-mounted oxygen generator system, an oxygen generator system and a vehicle installation structure, a vehicle communication system, a vehicle control system, a vehicle power supply system, a vehicle control interface, a mobile phone operation APP and interface, a vehicle oxygen outlet pipeline system with a quick connection mechanism, and a communication interface and power supply interface between the vehicle and the oxygen generator.
[0087] The technical solution of this application is implemented as follows.
[0088] Place a portable vehicle-mounted oxygen concentrator system with an oxygen concentrator and a vehicle mounting structure at a suitable position inside the vehicle, connect the oxygen outlet quick connection mechanism of the oxygen concentrator to the oxygen outlet pipeline of the vehicle with a quick connection mechanism and a terminal pressurization system, and connect the power supply interface and communication interface of the oxygen concentrator to the communication interface and power supply structure on the vehicle. When the oxygen outlet pipeline of the oxygen concentrator and the vehicle and the related communication and power supply connection of the oxygen concentrator and the vehicle are completed, the communication interface of the vehicle and the oxygen concentrator sends the relevant information to the vehicle's communication system, and the vehicle communication system transfers the signal to the vehicle control system, and the vehicle control system sends the signal to the oxygen concentrator through the vehicle's control interface or mobile phone APP. The oxygen machine is powered and functions are controlled, and the oxygen concentrator system starts working. The oxygen concentrator system enters the vehicle-mounted oxygen production mode by default. At this time, the high-concentration oxygen produced by the oxygen concentrator is blown to the mouth and nose of the driver and the co-driver through the oxygen outlet pipeline reserved in the car and the pressurized fan at the end of the oxygen outlet pipeline system reserved in the car, so as to realize local diffuse oxygen supply and allow the driver and co-driver passengers to breathe oxygen freely without feeling. At this time, if the rear passengers also need oxygen, they can connect the nasal suction tube or mask provided by the oxygen concentrator system to the two traditional oxygen outlets reserved at the rear of the oxygen concentrator and open the two traditional oxygen outlets reserved at the rear of the oxygen concentrator through the vehicle's control interface or mobile phone APP for the rear passengers to adopt point-inhalation oxygen.
[0089] Portable vehicle-mounted oxygen concentrator system with oxygen concentrator and vehicle mounting structure:
[0090] In the present application, a portable vehicle-mounted oxygen concentrator system with an oxygen concentrator and a vehicle mounting structure is responsible for preparing high-purity oxygen and communicating with a vehicle controller, and is fixed at a relevant specific position of the vehicle and connected to a vehicle oxygen outlet pipeline system with a quick connection mechanism.
[0091] Vehicle oxygen outlet pipe system with quick connection mechanism and terminal pressurization system:
[0092] In the present application, the vehicle oxygen outlet pipeline system with a quick connection mechanism and a terminal pressurization system is responsible for quickly connecting to the oxygen outlet quick connection mechanism of the portable vehicle oxygen concentrator system, and transporting the high-purity oxygen prepared by the portable vehicle oxygen concentrator system to the terminal pressurization system and then transporting it to the mouth and nose of the driver and the front passenger after pressurization.
[0093] Vehicle communication system:
[0094] In the present application, the vehicle's communication system serves as a communication link between the portable vehicle-mounted oxygen concentrator system and the vehicle controller system. This communication can be a variety of communication modes such as CAN interconnection, LIN interconnection, WiFi interconnection, and Internet interconnection.
[0095] Vehicle Control Systems:
[0096] In this application, the function of the vehicle control system is to receive the demand information of the portable vehicle-mounted oxygen concentrator system sent by the vehicle communication system, and the execution information request of the vehicle's operating interface and the mobile phone's operating APP and interface, and send the execution information to the portable vehicle-mounted oxygen concentrator system.
[0097] Vehicle control interface:
[0098] In this application, the function of the vehicle's control interface is to display the interconnection information required for the portable vehicle-mounted oxygen concentrator on the vehicle's large screen, and to design interconnection switches, such as the vehicle controlling the start and stop of the portable vehicle-mounted oxygen concentrator; opening and closing the traditional rear oxygen outlet; controlling the gear position, timing and other functions of the portable vehicle-mounted oxygen concentrator.
[0099] Operation APP and interface of mobile terminal equipment:
[0100] In this application, the interconnection information required for the portable vehicle-mounted oxygen concentrator is displayed on the mobile terminal device, and an interconnection switch is designed, such as the vehicle controls the portable vehicle-mounted oxygen concentrator to start and shut down; opens and closes the traditional rear oxygen outlet; controls the gear position, timing and other functions of the portable vehicle-mounted oxygen concentrator.
[0101] The technical solution provided in the embodiment of the present application is designed with a separate fixing mechanism, which can be stably placed in a fixed position on the vehicle without shaking or abnormal noise. The local diffuse oxygen supply does not require a large volume and weight, does not require high power, ensures that the machine produces less working noise, is compact, does not require a nasal cannula or mask, and allows the main and co-pilot passengers to breathe oxygen freely without feeling, ensuring driving safety and a comfortable user experience. The oxygen outlet of the oxygen concentrator can be quickly connected or removed from the oxygen outlet pipeline system reserved in the vehicle, which is convenient to use. The portable vehicle-mounted oxygen concentrator can be started and shut down on the screen of the vehicle-mounted terminal device or the APP installed on the mobile terminal device; the traditional oxygen outlet in the rear row can be opened and closed; the gear position, timing and other functions of the portable vehicle-mounted oxygen concentrator can be controlled to ensure safety and convenience of use.
[0102] Combination Figure 1 Figure 2 As shown, the specific implementation of the embodiment of the present application is as follows:
[0103] 1. Installation, fixation and connection of portable vehicle-mounted oxygen concentrator: a convenient storage structure that is easy to store and take out is designed on the vehicle; a power supply interface is designed at the same time, and a variety of power supply methods can be used; the oxygen concentrator and the vehicle can be interconnected in a variety of ways. Users can choose Bluetooth interconnection, CAN interconnection, LIN interconnection, WiFi interconnection, and Internet interconnection according to their preferences. At the same time, they can be controlled and interconnected through mobile phone APP and host large screen, and a special quick interface is designed in the car and on the oxygen concentrator to connect the oxygen outlet of the oxygen concentrator with the vehicle oxygen outlet pipeline system with a quick connection mechanism and terminal pressurization system reserved in the vehicle.
[0104] 2. Working principle of local diffusion system: The high-concentration oxygen produced by the oxygen generator is blown to the mouth and nose of the driver and the front passenger through the oxygen outlet pipeline reserved in the car and the pressurized fan at the end of the oxygen outlet pipeline system, so as to realize local diffusion oxygen supply and allow the driver and the front passenger to breathe oxygen freely without feeling. Since it is only local diffusion oxygen supply, compared with the traditional whole-car diffusion oxygen generator, a smaller power and smaller oxygen generator module can be used, which effectively reduces the size and weight of the oxygen generator and reduces noise.
[0105] It should be understood that the "plurality" mentioned in this article refers to two or more. "And / or" describes the association relationship of the associated objects, indicating that there can be three relationships. For example, A and / or B can mean: A exists alone, A and B exist at the same time, and B exists alone. The character " / " generally indicates that the associated objects are in an "or" relationship.
[0106] The above description is only an exemplary embodiment of the present application and is not intended to limit the present application. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present application shall be included in the protection scope of the present application.
Claims
1. A vehicle, characterized in that: The vehicle includes an oxygen concentrator slot, an oxygen outlet pipeline, an on-board terminal device, a power supply interface and a communication interface; The oxygen concentrator slot is used to place the oxygen concentrator; One end of the oxygen outlet pipeline is used to connect to the oxygen outlet of the oxygen concentrator, and the end is used to transport oxygen to the driver and co-driver positions; The power supply interface is used to connect to the power supply interface of the oxygen concentrator; The communication interface is used to establish a communication connection between the vehicle-mounted terminal device and the oxygen concentrator.
2. The vehicle according to claim 1, characterized in that The end of the oxygen outlet pipeline comprises a pressurizing fan, and the pressurizing fan is used to pressurize the oxygen in the oxygen outlet pipeline.
3. The vehicle according to claim 1, characterized in that At least one control control is displayed on the screen of the vehicle-mounted terminal device, and the control control is used to control the oxygen generator.
4. The vehicle according to claim 3, characterized in that The at least one control control comprises at least one of the following: An oxygen outlet control component, the oxygen outlet control component is used to control the oxygen outlet of the vehicle-mounted oxygen concentrator; A timing control, the timing control being used to set timing information for the vehicle-mounted oxygen concentrator; A gear control, the gear control is used to control the oxygen output gear of the vehicle-mounted oxygen concentrator; A start control, the start control is used to control the start of the vehicle-mounted oxygen concentrator; A shutdown control is used to control the shutdown of the vehicle-mounted oxygen concentrator.
5. The vehicle according to claim 3, characterized in that The vehicle-mounted terminal device is used to control the oxygen concentrator to turn on in response to a start operation on the oxygen concentrator.
6. The vehicle according to claim 1, characterized in that The vehicle-mounted terminal device is also used to control the oxygen concentrator to switch from the vehicle-mounted oxygen production mode to the traditional oxygen production mode in response to a mode switching operation for the oxygen concentrator; in the vehicle-mounted oxygen production mode, the oxygen concentrator continuously discharges oxygen at the oxygen outlet connected to the oxygen outlet pipeline, and in the traditional oxygen production mode, the oxygen concentrator discharges oxygen in a point-suction manner at at least one oxygen outlet that is not connected to the oxygen outlet pipeline.
7. The vehicle according to claim 1, characterized in that The vehicle-mounted terminal device controls the oxygen concentrator through an application APP.
8. The vehicle according to claim 1, characterized in that The vehicle-mounted terminal device establishes a communication connection with a mobile terminal device, and at least one control control is displayed on a screen of the mobile terminal device, and the control control is used to control the oxygen concentrator.
9. The vehicle according to claim 1, characterized in that One end of the oxygen outlet pipeline is used to connect to the oxygen outlet of the oxygen concentrator through a quick connection mechanism.
10. A vehicle-mounted oxygen production system, characterized in that: The vehicle-mounted oxygen production system includes a vehicle and an oxygen concentrator, and the vehicle includes an oxygen concentrator slot, an oxygen outlet pipeline, a vehicle-mounted terminal device, a power supply interface, and a communication interface; The oxygen concentrator is placed in the oxygen concentrator slot; The oxygen outlet of the oxygen concentrator is connected to one end of the oxygen outlet pipeline; The power interface of the oxygen concentrator is connected to the power supply interface; The oxygen concentrator establishes a communication connection with the vehicle-mounted terminal device through the communication interface.
Citation Information
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