A method and system for automatically heating beverages in a car cabin using induction heating
By obtaining the driver's single driving time and body temperature information, the controller generates a heating instruction, controls the beverage heating device to heat the beverage to a suitable temperature, and reminds the driver to drink after the set time. This solves the problem of unsafe drinking water in the existing technology, realizes the reasonable control of drinking frequency and temperature, and improves the driver's drinking water health and comfort.
Patent Information
- Application Number
- CN202411032231.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-30
- Publication Date
- 2025-09-30
- Estimated Expiration
- 2044-07-30
AI Technical Summary
Existing automotive technology fails to effectively guarantee the temperature and frequency of drivers' drinking water, resulting in insufficient protection of drinking water health.
By obtaining the driver's single driving time and body temperature information, the controller generates a heating instruction, controls the beverage heating device to heat the beverage to the appropriate temperature, and reminds the driver to drink after the set time. It supports the selection of hot beverage mode and normal temperature mode to achieve control of drinking frequency and temperature.
It realizes the reasonable control of drinking frequency and personalized matching of beverage temperature, improves the driver's drinking health and comfort, and shortens the waiting time for beverage heating.
Smart Images

Figure CN118790127B_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the field of new energy vehicle manufacturing, and in particular relates to a method and system for automatically induction heating of beverages in a vehicle cabin. Background Art
[0002] With the continuous progress and development of the times, the concept of healthy living is becoming more and more popular. Health has different aspects, including healthy diet, healthy drinking water, etc., among which healthy drinking water is a very important aspect.
[0003] Today, cars are becoming increasingly commonplace in every household. The "car dream" is no longer exclusive to the wealthy; owning a car is no longer a luxury for many Chinese families. With cars entering the homes and streets of ordinary people on a large scale, the ranks of drivers are growing. Drivers' health, especially their drinking water health, deserves greater attention, and more effective measures should be taken to protect their drinking water health.
[0004] Currently, there are some measures in place to protect drivers' drinking water safety, but these measures primarily focus on purifying drinking water. These measures rarely address aspects such as controlling the temperature or frequency of drinking water or beverages, resulting in a lack of effective protection for drivers' drinking water safety. The present invention addresses these shortcomings, providing improvements. Summary of the Invention
[0005] In order to overcome the shortcomings of the background technology, the present invention provides a method and system for automatic induction heating of beverages in a car cabin, which can realize the control of the frequency of drinking beverages, ensure that the drinking time intervals are more reasonable, and match the temperature of beverages suitable for the driver according to the driver's body temperature information, thereby better protecting the driver's drinking water health.
[0006] The technical solution adopted by the present invention is: a method for automatically heating beverages in a car cabin by induction, the method comprising:
[0007] S1. Obtain the driver's single driving time and determine whether it exceeds the set time;
[0008] S2. When a single driving time exceeds a set time, the driver's body temperature information is collected and sent to the controller;
[0009] S3. The controller calculates and processes the collected body temperature information and generates a heating instruction, which is sent to a beverage heating device located in the vehicle cabin. The heating instruction includes the beverage heating temperature.
[0010] S4. The beverage heating device starts heating after receiving the heating instruction, stops heating after the beverage reaches a specified temperature, and reminds the driver to drink.
[0011] Further,
[0012] Before step S1, the method further includes:
[0013] Select a drinking mode, which includes a hot drinking mode and a normal temperature mode. If the normal temperature mode is selected, subsequent steps will not be executed. If the hot drinking mode is selected, subsequent steps will be executed. After selecting a drinking mode once, the mode will be set by default until the drinking mode is selected again.
[0014] Further,
[0015] Selecting the hot drink mode also includes selecting a drink type, and the drink types include at least two. By selecting a drink type, the maximum drink heating temperature corresponding to the drink type is determined. After selecting a drink type once, the drink type is set by default until the drink type is selected again.
[0016] Further,
[0017] The beverage types include a first beverage and a second beverage, the first beverage is set to tea, and the corresponding maximum beverage heating temperature is specified to be 60°C, and the second beverage is set to boiled water, and the corresponding maximum beverage heating temperature is specified to be 40°C.
[0018] Further,
[0019] In the hot beverage mode, the method further includes preheating the beverage, and the preheating of the beverage specifically includes:
[0020] After detecting that the driver has taken his seat, the controller sends a preheating instruction to the beverage heating device. The preheating instruction includes the minimum drinking temperature. After receiving the preheating instruction, the beverage heating device starts heating. After the beverage is heated to the minimum drinking temperature, it stops heating and automatically turns on the constant temperature mode to keep the beverage at the minimum drinking temperature.
[0021] Further,
[0022] The controller calculates and processes the collected body temperature information and generates heating instructions including:
[0023] 36.0℃<driver's body temperature≤36.2℃, then the corresponding maximum beverage heating temperature is specified as T℃,
[0024] If the driver's body temperature is 36.2℃<≤36.4℃, the beverage heating temperature is set to T-1℃.
[0025] If the driver's body temperature is 36.4℃<≤36.6℃, the beverage heating temperature is set to T-2℃.
[0026] If the driver's body temperature is 36.6℃<≤36.8℃, the beverage heating temperature is set to T-3℃.
[0027] If the driver's body temperature is 36.8℃<37.2℃, the corresponding minimum beverage heating temperature is T-4℃.
[0028] Further,
[0029] The method of reminding the driver to drink includes:
[0030] A warning sound is used to remind the driver to drink. If it is detected that the driver has not drunk within 3 minutes, the warning sound will be sounded again. If drinking behavior is detected, the single driving time will be reset to zero and the single driving time will be restarted.
[0031] Further,
[0032] After step S4, the method further includes:
[0033] The beverage heating device automatically turns on the constant temperature mode to keep the beverage at a specified temperature until the end of the driving.
[0034] The present invention also provides a system for automatically heating beverages in a vehicle cabin by induction, for implementing the aforementioned method for automatically heating beverages in a vehicle cabin by induction, the system comprising:
[0035] A data collection unit, which is used for data collection, including but not limited to the driver's single driving time and the driver's body temperature information;
[0036] A data processing unit, which is used for data calculation and processing, including determining whether the driver's single driving time exceeds a set time, and also includes calculating and processing the collected body temperature information and generating a heating instruction to send to the beverage heating device located in the vehicle cabin;
[0037] An execution unit is used to execute the control instructions issued by the data processing unit. The execution unit includes a beverage heating device. After receiving the heating instruction issued by the data processing unit, the beverage heating device starts heating, stops heating after the beverage is heated to a specified temperature, and reminds the driver to drink.
[0038] The present invention also provides a new energy vehicle, a method for automatically heating beverages in the vehicle cabin using the aforementioned induction heating method; or a system including the aforementioned automatic induction heating method for beverages in the vehicle cabin.
[0039] Compared with the prior art, the present invention has the following beneficial effects:
[0040] 1. Obtain the driver's single driving time and determine whether it exceeds the set time. The set time determines the approximate drinking interval. The result of comparing the driver's single driving time with the set time determines whether to execute the subsequent steps, thereby achieving control over the frequency of beverage consumption and ensuring a more reasonable drinking interval;
[0041] 2. The driver's body temperature is collected and sent to the controller. The controller calculates and processes the collected temperature information and generates a heating instruction, which is sent to the beverage heating device to heat the beverage. This can better match the driver's actual body temperature with the beverage temperature suitable for the driver, not only increasing the driver's comfort but also promoting the driver's drinking health.
[0042] 3. Setting hot drink mode and normal temperature mode can better meet the drinking needs of different drivers. Setting drink preheating can effectively shorten the waiting time for drink heating.
[0043] Other features and advantages of the present invention will be described in the following description, and in part will become apparent from the description, or will be understood by practicing the present invention. The purpose and other advantages of the present invention can be realized and obtained by the structures pointed out in the description, claims and drawings.
[0044] The present invention will be further described below with reference to the accompanying drawings. BRIEF DESCRIPTION OF THE DRAWINGS
[0045] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.
[0046] Figure 1 This is a flow chart of a method for automatically induction heating beverages in a vehicle cabin according to an embodiment of the present invention;
[0047] Figure 2 This is a schematic diagram of a system for automatic induction heating of beverages in a car cabin according to an embodiment of the present invention. DETAILED DESCRIPTION
[0048] To make the objectives, technical solutions, and advantages of the present invention more clear, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of them. All other embodiments obtained by ordinary technicians in this field based on the embodiments of the present invention without making any creative efforts shall fall within the scope of protection of the present invention.
[0049] like Figure 1 As shown, this embodiment discloses a method for automatically induction heating beverages in a vehicle cabin, the method comprising:
[0050] S1. Obtain the driver's single driving time and determine whether it exceeds the set time;
[0051] In this step, the set time can be preset. In this embodiment, the set time is preset to 40 minutes. By executing this step, it can be determined whether the driver's single driving time is greater than 40 minutes. During specific implementation, the set time can be adjusted according to the driver's personalized needs. By adjusting the length of the set time, the actual time interval for reminding to drink water can be changed, thereby realizing the control of the frequency of drinking water.
[0052] S2. When a single driving time exceeds a set time, the driver's body temperature information is collected and sent to the controller;
[0053] In this step, if it is determined that a single driving time exceeds the set time (40 minutes), the driver's body temperature information is collected and sent to the controller. The collection of the driver's body temperature information is triggered by the condition being met (i.e., the single driving time exceeds the set time), thereby realizing the subsequent automatic induction heating of the beverage.
[0054] S3. The controller calculates and processes the collected body temperature information and generates a heating instruction, which is sent to a beverage heating device located in the vehicle cabin. The heating instruction includes the beverage heating temperature.
[0055] In this step, the controller calculates and processes the collected driver's body temperature information to generate a heating instruction (mainly including the beverage heating temperature) and sends it to the beverage heating device located in the vehicle cabin. In this embodiment, the heating instruction specifies a beverage heating temperature for the beverage heating device to achieve automatic heating of the beverage.
[0056] S4. The beverage heating device starts heating after receiving the heating instruction, stops heating after the beverage reaches a specified temperature, and reminds the driver to drink.
[0057] In this step, the beverage heating device receives the heating command and starts heating the beverage, gradually heating it. When the beverage reaches the specified temperature, the heating stops and the driver is reminded to drink. This reminder includes, but is not limited to, a one-second buzzer sound to remind the driver to take the beverage. In specific implementations, the reminder can also use different voice prompts based on the driver's individual needs to provide a better user experience.
[0058] In the above technical solution, when a single driving time exceeds the set time, the automatic induction heating mode of the beverage will be turned on, and the driver will be reminded to drink when the beverage reaches the specified temperature. This not only realizes the control of the frequency of drinking beverages and ensures a more reasonable drinking time interval, but also can match the temperature of the beverage suitable for the driver according to the driver's body temperature information, so that the driver's drinking water health can be better protected. In specific implementation, the controller is preferably located in the car cabin, and the pre-setting of the set time can be achieved directly through the central control screen in the car. The method of collecting and obtaining the driver's single driving time includes but is not limited to monitoring and recording through the car's driving recorder. The collected driver's single driving time will be transmitted to the controller to determine whether it exceeds the set time. The driver's body temperature information can be collected by any one of infrared body temperature detection cameras, face recognition technology and thermal imaging technology to achieve contactless body temperature detection, or it can be collected based on other existing technologies. The collected driver's body temperature information will be sent to the controller for calculation and processing.
[0059] During actual implementation, relevant functions can be further optimized. For example, the beverage heating device can also add a judgment of the current temperature of the beverage before starting heating. If the current temperature is lower than the specified heating temperature, heating will be started. If the current temperature is not lower than the specified heating temperature but lower than the maximum hot drink temperature (which can be pre-set to 70°C or other suitable temperatures), heating will not be started and a reminder will be given "Be careful when drinking water, as it may burn your mouth" or the driver will be reminded to drink the hot drink directly when the temperature drops to the specified heating temperature.
[0060] To better meet the drinking needs of different drivers, the process, before step S1, also includes selecting a drinking mode. These drinking modes include a hot drink mode and a room temperature mode. Selecting the room temperature mode disregards subsequent steps, while selecting the hot drink mode does. After selecting a drinking mode once, this mode is set by default until the next drinking mode selection is made. In this embodiment, a drinking mode selection is added. The room temperature mode maintains the drink at room temperature and does not interfere with the drink. Therefore, selecting the room temperature mode disregards subsequent steps S1-S4. The hot drink mode utilizes the aforementioned method to control the frequency of drink consumption and implements automatic induction heating. Therefore, selecting the hot drink mode continues with subsequent steps S1-S4. Setting this mode by default after a single drinking mode selection avoids repeated configuration by the driver, reducing operations. The driver can change the drinking mode the next time they select a drinking mode. During specific implementation, the normal temperature mode function can be further optimized. Selecting the normal temperature mode means that the beverage is at room temperature and no intervention is made to the beverage, but the driver's drinking frequency can still be controlled. Here is only a brief explanation. The implementation method includes: in normal temperature mode, obtaining the driver's single driving time and judging whether it exceeds the set time; when the single driving time exceeds the set time, the controller is used to control and remind the driver to drink. Through the above two steps, the driver's drinking frequency can be easily controlled.
[0061] As a preferred technical solution, selecting the hot drink mode also includes selecting a drink type, including at least two drink types. By selecting a drink type, the maximum drink heating temperature corresponding to that drink type is determined. After selecting a drink type once, that drink type is set by default until the drink type is selected again. Furthermore, the drink types include a first drink and a second drink. The first drink is set as tea, and its corresponding maximum drink heating temperature is specified as 60°C. The second drink is set as boiled water, and its corresponding maximum drink heating temperature is specified as 40°C. In this embodiment, the additional drink type selection, including at least two drink types, can better meet the diverse needs of hot drinks. Each drink type is pre-set with a corresponding maximum drink heating temperature. By selecting a drink type, the driver automatically determines the maximum drink heating temperature corresponding to that drink type. Setting the drink type by default after selecting a drink type once avoids repeated settings for the driver, reducing operations, and allowing the driver to change the drink type when selecting the drink type again. When the beverage types include a first beverage and a second beverage, this embodiment selects based on common drinking preferences and habits in life, setting the first beverage to tea and correspondingly specifying a maximum beverage heating temperature of 60°C, and setting the second beverage to boiled water and correspondingly specifying a maximum beverage heating temperature of 40°C. After adopting the above technical solution, the driver can select the beverage type according to the type of beverage they actually want to drink, thereby automatically determining the maximum beverage heating temperature corresponding to the beverage type based on the pre-set or system-recommended settings. By specifying the maximum beverage heating temperature corresponding to the beverage type, the controller can easily process and generate subsequent heating instructions. The above-mentioned drinking mode selection, beverage type selection, etc. can be directly implemented through the central control screen in the car, which can facilitate the driver's operation.
[0062] To effectively shorten the waiting time for beverage heating, in hot beverage mode, the method further includes preheating the beverage. The preheating specifically includes: upon detecting that the driver has taken a seat, the controller sends a preheating instruction to the beverage heating device, wherein the preheating instruction includes a minimum drinking temperature. Upon receiving the preheating instruction, the beverage heating device starts heating, stops heating after the beverage reaches the minimum drinking temperature, and automatically activates a constant temperature mode to maintain the beverage at the minimum drinking temperature. In this embodiment, beverage preheating is enabled by default in hot beverage mode. Upon the driver's seat, the controller sends a preheating instruction to the beverage heating device to start preheating, stops heating after the beverage reaches the minimum drinking temperature, and automatically activates a constant temperature mode to maintain the beverage at the minimum drinking temperature. In this way, when the controller subsequently sends a heating instruction to the beverage heating device, the beverage heating device can directly heat the beverage from the current minimum drinking temperature to the specified temperature before stopping heating and reminding the driver to drink. It can be seen that by adding beverage preheating, the waiting time for beverage heating can be effectively shortened, thereby better meeting actual application needs. The above-mentioned preheating of beverages will have a better effect when the temperature is lower in autumn and winter, because the starting temperature of the beverage is often lower when the temperature is lower. In addition, when the temperature is lower in autumn and winter, even without being reminded to drink, the driver can directly drink beverages with the lowest drinking temperature, avoiding the adverse stimulation and harm that may be caused to the body by drinking cold drinks directly.
[0063] Currently, driver occupancy detection relies primarily on a variety of sensors and monitoring systems. Common detection methods include millimeter-wave sensors, cabin monitoring systems (DMS), near-infrared sensing systems, image recognition and touch sensing technologies, and intelligent cabin monitoring systems (IMS). The combination of these technologies and systems enables modern vehicles to effectively detect driver occupancy. In practice, one of these technologies can be used to detect driver occupancy and transmit the detection results to the controller for appropriate control.
[0064] As a preferred technical solution, the controller calculates and processes the collected body temperature information and generates a heating instruction, including:
[0065] 36.0℃<driver's body temperature≤36.2℃, then the corresponding maximum beverage heating temperature is specified as T℃,
[0066] If the driver's body temperature is 36.2℃<≤36.4℃, the beverage heating temperature is set to T-1℃.
[0067] If the driver's body temperature is 36.4℃<≤36.6℃, the beverage heating temperature is set to T-2℃.
[0068] If the driver's body temperature is 36.6℃<≤36.8℃, the beverage heating temperature is set to T-3℃.
[0069] If the driver's body temperature is 36.8℃<37.2℃, the corresponding minimum beverage heating temperature is T-4℃.
[0070] In this embodiment, the maximum beverage heating temperature T can be pre-defined or determined based on the driver's selection of beverage types. Once the maximum beverage heating temperature T is determined, other beverage heating temperatures that need to be specified can be obtained. In this embodiment, the single temperature drop of the beverage heating temperature is preferably 1°C (this value can also be changed to 2°C according to actual needs). In this embodiment, the length of a single temperature interval of the driver's body temperature is preferably 0.2°C. Given that the average normal human body temperature is around 36-37°C, this embodiment also adopts this temperature range for the normal driver's body temperature. The upper limit of the normal human body temperature is preferably 37.2°C, that is, when 36.8°C < driver's body temperature ≤ 37.2°C, a minimum beverage heating temperature is correspondingly specified. When the driver's body temperature is within the normal human body temperature range, the specified beverage heating temperature is reduced by 1°C for every 0.2°C increase in the driver's body temperature. By adopting the above technical solution, the beverage temperature suitable for the driver can be better matched according to the driver's actual body temperature, which not only increases the driver's comfort but also is beneficial to the driver's drinking health.
[0071] When the driver's body temperature is greater than the upper limit of normal body temperature, the driver is usually in an abnormal temperature state such as fever (including low fever, moderate fever, and high fever). Generally speaking, a driver's fever will affect safe driving to a certain extent, which is not conducive to driving safety. Considering safe driving, it is generally not advisable to drive when the driver's body temperature is abnormal. Therefore, this embodiment does not consider the abnormal driver's body temperature and only makes settings when the driver is healthy and has a normal body temperature.
[0072] In specific implementation, take tea as an example, and the maximum heating temperature of tea is 60°C. Then:
[0073] If the driver's body temperature is 36.0℃<36.2℃, the maximum beverage heating temperature is 60℃.
[0074] If the driver's body temperature is 36.2℃<≤36.4℃, the corresponding beverage heating temperature is 59℃.
[0075] If the driver's body temperature is 36.4℃<≤36.6℃, the corresponding beverage heating temperature is 58℃.
[0076] If the driver's body temperature is 36.6℃<≤36.8℃, the corresponding beverage heating temperature is 57℃.
[0077] If the driver's body temperature is 36.8℃<37.2℃, the corresponding minimum beverage heating temperature is 56℃.
[0078] From the above, we can see that the heating temperature range of tea is 56-60℃, which can not only ensure a better tea drinking experience, but also be beneficial to the driver's drinking health.
[0079] As a preferred technical solution, the driver's drinking reminder includes: using a warning sound to remind the driver to drink. If the driver fails to drink within three minutes, the warning sound is repeated. If drinking is detected, the driving time is reset and the driving time is restarted. In this embodiment, the warning sound can be emitted by a buzzer, which beeps for one second to remind the driver to take a drink. If the driver fails to take a drink within three minutes (this duration is customizable), the warning sound is repeated. This technical solution not only effectively reminds the driver to drink, but also provides repeated reminders after a certain period of time if the driver fails to take a drink in a timely manner, thus better encouraging drivers to drink water healthily.
[0080] As a preferred technical solution, after step S4, the beverage heating device automatically activates a constant temperature mode to maintain the beverage at the specified temperature until the end of the current driving session. In this embodiment, the constant temperature mode is automatically activated after the beverage is heated to the specified temperature and consumed by the driver. This helps maintain the beverage at the current specified temperature, making it easier for the driver to consume the beverage the next time and effectively avoiding the problem of repeated heating.
[0081] Based on the same inventive concept, the present invention also provides a system for automatically heating beverages in a car cabin by induction, which is used to implement the aforementioned method for automatically heating beverages in a car cabin by induction, such as Figure 2 As shown, the system includes:
[0082] The data acquisition unit is used for data acquisition, and the collected data includes but is not limited to the driver's single driving time and the driver's body temperature information. The data acquisition unit of this embodiment mainly includes a single driving time acquisition module for collecting the driver's single driving time and a body temperature information acquisition module for collecting the driver's body temperature information.
[0083] The data processing unit is used for data calculation and processing, including determining whether the driver's single driving time exceeds the set time, and also includes calculating and processing the collected body temperature information and generating a heating instruction to send to the beverage heating device located in the vehicle cabin; the data processing unit of this embodiment mainly includes a single driving time judgment module for determining whether the driver's single driving time exceeds the set time, and a temperature information processing module for calculating and processing the collected body temperature information and generating a heating instruction to send to the beverage heating device.
[0084] An execution unit is configured to execute control instructions issued by the data processing unit. The execution unit includes a beverage heating device. Upon receiving the heating instruction from the data processing unit, the beverage heating device initiates heating, stops heating when the beverage reaches a specified temperature, and reminds the driver to drink. The beverage heating device in this embodiment primarily includes a heating module, a beverage temperature detection module, and a voice reminder module, wherein the voice reminder module utilizes a buzzer.
[0085] In the above technical solution, the data collected by the data acquisition unit mainly include the driver's single driving time, the driver's body temperature information, etc. During specific implementation, other data information can also be collected according to the actual function settings, such as drinking mode selection, beverage type selection, and detection of whether the driver is seated, etc. The above-mentioned data processing unit mainly performs calculations and processing based on the various data information collected by the data acquisition unit, and then outputs control instructions to the execution unit, thereby realizing various functional controls, such as beverage heating, beverage preheating, automatic beverage insulation, drinking reminders, etc.
[0086] Based on the same inventive concept, the present invention also provides a new energy vehicle, a method for automatically heating beverages in a vehicle cabin using the aforementioned inductive heating method; or a system including the aforementioned automatic inductive heating method for beverages in a vehicle cabin.
[0087] Parts not involved in this embodiment are the same as those in the prior art or can be implemented using the prior art and will not be further described here.
[0088] Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or make equivalent replacements for some of the technical features therein; and these modifications or replacements do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.
Claims
1. A method for automatically heating beverages in a car cabin by induction, characterized in that: The method comprises: Obtain the driver's single driving time and determine whether it exceeds the set time; When a single driving time exceeds a set time, the driver's body temperature information is collected and sent to the controller; The controller calculates and processes the collected body temperature information and generates a heating instruction which is sent to a beverage heating device located in the vehicle cabin. The heating instruction includes the beverage heating temperature. The beverage heating device starts heating after receiving the heating instruction, stops heating after the beverage is heated to a specified temperature, and reminds the driver to drink.
2. The method for automatically heating beverages in a car cabin according to claim 1, characterized in that: Before obtaining the driver's single driving time and judging whether it exceeds the set time, the following steps are also included: Select a drinking mode, which includes a hot drinking mode and a normal temperature mode. If the normal temperature mode is selected, subsequent steps will not be executed. If the hot drinking mode is selected, subsequent steps will be executed. After selecting a drinking mode once, the mode will be set by default until the drinking mode is selected again.
3. The method for automatically heating beverages in a car cabin by induction heating according to claim 2, characterized in that: Selecting the hot drink mode also includes selecting a drink type, and the drink types include at least two. By selecting a drink type, the maximum drink heating temperature corresponding to the drink type is determined. After selecting a drink type once, the drink type is set by default until the drink type is selected again.
4. The method for automatically heating beverages in a car cabin by induction heating according to claim 3, characterized in that: The beverage types include a first beverage and a second beverage, the first beverage is set to tea, and the corresponding maximum beverage heating temperature is specified to be 60°C, and the second beverage is set to boiled water, and the corresponding maximum beverage heating temperature is specified to be 40°C.
5. The method for automatically heating beverages in a car cabin by induction heating according to claim 2, characterized in that: In the hot beverage mode, the method further includes preheating the beverage, and the preheating of the beverage specifically includes: After detecting that the driver has taken his seat, the controller sends a preheating instruction to the beverage heating device. The preheating instruction includes the minimum drinking temperature. After receiving the preheating instruction, the beverage heating device starts heating. After the beverage is heated to the minimum drinking temperature, it stops heating and automatically turns on the constant temperature mode to keep the beverage at the minimum drinking temperature.
6. The method for automatically heating beverages in a car cabin by induction heating according to claim 1, characterized in that: The controller calculates and processes the collected body temperature information and generates heating instructions including: 36.0℃<driver's body temperature≤36.2℃, then the corresponding maximum beverage heating temperature is specified as T℃, If the driver's body temperature is 36.2℃<≤36.4℃, the beverage heating temperature is set to T-1℃. If the driver's body temperature is 36.4℃<≤36.6℃, the beverage heating temperature is set to T-2℃. If the driver's body temperature is 36.6℃<≤36.8℃, the beverage heating temperature is set to T-3℃. If the driver's body temperature is 36.8℃<37.2℃, the corresponding minimum beverage heating temperature is T-4℃.
7. A method for automatically heating beverages in a car cabin by induction heating according to any one of claims 1 to 6, characterized in that: The method of reminding the driver to drink includes: A warning sound is used to remind the driver to drink. If it is detected that the driver has not drunk within 3 minutes, the warning sound will be sounded again. If drinking behavior is detected, the single driving time will be reset to zero and the single driving time will be restarted.
8. The method for automatically heating beverages in a car cabin by induction heating according to claim 1, characterized in that: After the beverage is heated to the specified temperature, it stops heating and reminds the driver to drink it, and also includes: The beverage heating device automatically turns on the constant temperature mode to keep the beverage at a specified temperature until the end of the driving.
9. A system for automatically heating beverages in a car cabin by induction, for implementing the method for automatically heating beverages in a car cabin by induction according to any one of claims 1 to 8, characterized in that: The system comprises: A data collection unit, which is used for data collection, including but not limited to the driver's single driving time and the driver's body temperature information; A data processing unit, which is used for data calculation and processing, including determining whether the driver's single driving time exceeds a set time, and also includes calculating and processing the collected body temperature information and generating a heating instruction to send to the beverage heating device located in the vehicle cabin; An execution unit is used to execute the control instructions issued by the data processing unit. The execution unit includes a beverage heating device. After receiving the heating instruction issued by the data processing unit, the beverage heating device starts heating, stops heating after the beverage is heated to a specified temperature, and reminds the driver to drink.
10. A new energy vehicle, characterized in that: A method for automatically heating beverages in a vehicle cabin by induction heating according to any one of claims 1 to 8; or, A system for automatically induction heating beverages in a vehicle cabin as claimed in claim 9.
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