A charging method of a vehicle-mounted wireless dust collector and a wireless dust collection system
By using in-vehicle display screens to push notification pop-ups and automated charging management, the problem of forgetting to charge cordless vacuum cleaners after use is solved, enabling timely charging and battery safety protection, thus improving ease of use and safety.
Patent Information
- Application Number
- CN202411353003.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-26
- Publication Date
- 2025-11-04
- Estimated Expiration
- 2044-09-26
AI Technical Summary
Cordless vacuum cleaners are easily forgotten to be charged after use, which limits their future use. Furthermore, traditional methods cannot remind users to charge them in a timely manner, affecting their performance.
The system pushes a notification pop-up window on the vehicle's display screen to obtain the connection status information of the charging port and the cordless vacuum cleaner, configures charging and power-off commands, and realizes automated charging management to ensure that the cordless vacuum cleaner is charged in a timely manner after use.
It enables timely charging of cordless vacuum cleaners, avoids forgetting to charge them, ensures device battery safety, improves charging safety and convenience, and solves the problem of limited use of cordless vacuum cleaners.
Smart Images

Figure CN119253793B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the automotive field, and in particular to a charging method and a wireless vacuum cleaner system for in-vehicle use. Background Technology
[0002] With the increasing prevalence of vehicles, the issue of dust inside cars has garnered growing attention. For example, dust, sand, and pollutants from the road can enter the car through airflow; dust may be brought in by the soles of shoes, clothing, and personal belongings; and the car's ventilation system draws in outside air, which in turn introduces dust. Especially in summer, frequent opening and closing of car doors provides an opportunity for dust to infiltrate. Once dust settles on the dashboard, it can affect the driver's ability to read vehicle parameters; if it accumulates on the windshield, it can obstruct the driver's view. Furthermore, a long-term buildup of dust inside the car increases the likelihood of respiratory and other health problems for the driver.
[0003] Traditionally, car interior cleaning involves manually wiping away dust with a cloth. However, manual wiping cannot completely remove dust and is time-consuming and laborious. Therefore, vacuum cleaners are now commonly used for car interior cleaning. They effectively remove dust, sand, hair, and other debris, and are relatively simple and quick to operate, requiring no complicated cleaning tools or methods, saving time and effort. However, in daily car interior cleaning, corded vacuum cleaners are easily tethered by the cord, limiting their cleaning distance. While cordless vacuum cleaners are not limited by cleaning distance, they often fail to recharge promptly after use due to users forgetting to charge them or leaving them lying around, thus affecting their future use. Summary of the Invention
[0004] The purpose of this invention is to provide a charging method and a wireless vacuum cleaner system for in-vehicle cordless vacuum cleaners, so as to solve the problem that cordless vacuum cleaners cannot be charged in time after use in the prior art.
[0005] To achieve the above objectives, the present invention adopts the following technical solution:
[0006] This invention discloses a charging method for a car-mounted cordless vacuum cleaner, comprising:
[0007] Obtain the connection status information of the preset charging interface in the vehicle. The connection status information includes the status information of successfully connecting to the vehicle cordless vacuum cleaner and the status information of disconnecting from the vehicle cordless vacuum cleaner.
[0008] Based on the obtained connection status information, a corresponding pop-up notification window is pushed through the vehicle display screen;
[0009] Configure charging commands to control the charging interface to charge the vehicle-mounted cordless vacuum cleaner in response to user-triggered charging commands;
[0010] Obtain the charging status information of the vehicle-mounted cordless vacuum cleaner, which includes the status information that the vehicle-mounted cordless vacuum cleaner is charging and the status information that the vehicle-mounted cordless vacuum cleaner is fully charged. Based on the status information that the vehicle-mounted cordless vacuum cleaner is charging, close the corresponding prompt pop-up window through the vehicle display screen.
[0011] Configure a power-off command to control the power disconnection between the charging interface and the vehicle cordless vacuum cleaner in response to a user-triggered power-off command, or control the power disconnection between the charging interface and the vehicle cordless vacuum cleaner based on the vehicle cordless vacuum cleaner's fully charged status information.
[0012] Optionally, the method of pushing a corresponding prompt pop-up window through the vehicle display screen based on the acquired connection status information:
[0013] Configure the first pop-up window for push notification, add a first close button and first display information matching the first pop-up window, and push the first pop-up window through the vehicle display screen according to the obtained status information of successful connection with the vehicle wireless vacuum cleaner. The first display information includes that the charging interface is connected normally.
[0014] Configure a second pop-up window, add a second close button and second display information matching the second pop-up window, and push the second pop-up window through the vehicle display screen based on the obtained status information of disconnection from the vehicle cordless vacuum cleaner. The second display information includes the charging interface connection error.
[0015] Optionally, a method for closing the first pop-up window is also included:
[0016] Configure the attribute information of the first pop-up window, the attribute information including the pop-up window closing time, and the first display information also includes a countdown timer corresponding to the pop-up window closing time;
[0017] In response to the end of the countdown, the triggering of the first close button, or the receipt of charging status information of the in-vehicle cordless vacuum cleaner, the first pop-up window is closed via the in-vehicle display screen.
[0018] Optionally, it also includes a method of pushing a notification pop-up window through the vehicle display screen when obtaining status information indicating that the connection with the vehicle's cordless vacuum cleaner has been lost:
[0019] Configure the third pop-up window and add third display information that matches the third pop-up window, the third display information including that the car wireless vacuum cleaner has been removed;
[0020] In response to the change from a successfully connected status to a disconnected status to a disconnected status, the third pop-up window is pushed through the vehicle display screen.
[0021] In response to the push of the third pop-up window, the connection status information of the charging interface is continuously obtained. If the status information of disconnection from the car wireless vacuum cleaner is obtained after a preset time, the third pop-up window is closed through the car display screen, and the second pop-up window is pushed.
[0022] In response to the push of the third pop-up window or the second pop-up window, the connection status information of the charging interface is continuously obtained. If the status information of successful connection with the vehicle wireless vacuum cleaner is obtained, the third pop-up window or the second pop-up window is closed through the vehicle display screen, and the first pop-up window is pushed.
[0023] Optionally, a method for pushing the second pop-up window is also included:
[0024] In response to the second pop-up being closed by the second close button, the connection status information of the charging interface is continuously acquired. If the status information of disconnection from the in-vehicle cordless vacuum cleaner is acquired after a preset time, the second pop-up is pushed through the in-vehicle display screen.
[0025] Optionally, it also includes a method for configuring charging commands and power-off commands to control the charging state of the charging interface:
[0026] The system can be configured to accept charging and power-off commands via voice input on the in-vehicle display screen. In response to user-triggered charging or power-off commands, the system controls the charging interface to charge or power off the in-vehicle cordless vacuum cleaner.
[0027] The system can be configured to accept charging and power-off commands input via a touchscreen switch on the vehicle display screen. In response to user-triggered charging or power-off commands, the system controls the charging interface to charge or power off the vehicle-mounted cordless vacuum cleaner.
[0028] The system can be configured to accept charging and power-off commands input via the button switch on the vehicle-mounted cordless vacuum cleaner. In response to user-triggered charging or power-off commands, the system controls the charging interface to charge or power off the vehicle-mounted cordless vacuum cleaner.
[0029] Optionally, the method of controlling the charging interface to charge the vehicle-mounted cordless vacuum cleaner in response to a user-triggered charging command includes:
[0030] Based on the charging command triggered by the user, the charging status information of the vehicle-mounted cordless vacuum cleaner is obtained, and the charging status information also includes the battery level information of the vehicle-mounted cordless vacuum cleaner;
[0031] The system presets charging conditions and configures corresponding charging modes. In response to the acquired power information meeting the preset charging conditions, it controls the charging interface to charge the vehicle-mounted cordless vacuum cleaner according to the corresponding charging mode.
[0032] Optionally, the method for preset charging conditions and configuring corresponding charging modes includes:
[0033] Preset charging conditions, including a power threshold;
[0034] If the obtained power information is greater than or equal to the charging condition, and the information that the vehicle cordless vacuum cleaner is fully charged is not obtained, a scheduled charging mode is configured. The scheduled charging mode is when the vehicle's main power supply is in an idle state, the charging interface is controlled to charge the vehicle cordless vacuum cleaner.
[0035] If the acquired power information is less than the charging condition, an instant charging mode is configured. The instant charging mode is a mode that responds to a user-triggered charging command and controls the charging interface to charge the vehicle-mounted cordless vacuum cleaner.
[0036] Optionally, it also includes a method for controlling the charging interface to charge the vehicle-mounted cordless vacuum cleaner according to the configured scheduled charging mode:
[0037] Configure a scheduled charging mode and add multiple initial time periods that match the scheduled charging mode;
[0038] In response to the initial time period selected by the user and the acquired power information, a scheduled charging information is generated, and the charging interface is controlled to charge the vehicle cordless vacuum cleaner according to the scheduled charging information.
[0039] The system obtains the scheduled charging information from multiple scheduled charging modes, filters out the initial time period with the highest selection frequency as the frequently used time period, and automatically selects the frequently used time period to generate the scheduled charging information in the next scheduled charging mode.
[0040] This invention also discloses a cordless vacuum cleaner system, employing the charging method described above for a car-mounted cordless vacuum cleaner, wherein the cordless vacuum cleaner system includes:
[0041] A vacuum charging device includes a center console, a charging port, and a car-mounted cordless vacuum cleaner. The center console is located inside the vehicle and has a accommodating chamber for storing the car-mounted cordless vacuum cleaner. The charging port is located inside the accommodating chamber and is correspondingly connected to the car-mounted cordless vacuum cleaner.
[0042] The charging control module includes an information acquisition unit, a charging control unit, and a human-machine interaction unit. The charging control unit is connected to the charging interface and is used to control the charging interface to charge the vehicle-mounted cordless vacuum cleaner. The information acquisition unit is connected to the charging control unit and is used to acquire the connection status information of the charging interface and the charging status information of the vehicle-mounted cordless vacuum cleaner. The human-machine interaction unit is connected to the information acquisition unit and is used to control the vehicle display screen to push notification pop-ups and input charging commands or power-off commands.
[0043] Compared with the prior art, the charging method and wireless vacuum cleaner system for in-vehicle cordless vacuum cleaners provided in this invention have the following advantages:
[0044] By first confirming the connection status between the charging port and the cordless vacuum cleaner, and then sending a notification pop-up to the vehicle's display screen, the system continuously reminds the user whether the cordless vacuum cleaner is placed in the charging position. Utilizing the configured charging and power-off commands, the system automatically controls the charging port to charge or disconnect the cordless vacuum cleaner upon user intervention, preventing users from forgetting to charge it after use and ensuring timely charging. Simultaneously, by acquiring the charging status information during the charging process, the system ensures the cordless vacuum cleaner is charging normally and automatically disconnects the power once fully charged to protect the battery and prevent overcharging that could lead to dangerous accidents, effectively improving charging safety. Attached Figure Description
[0045] The technical solution of the present invention will be further described in detail below with reference to the accompanying drawings and embodiments. In the accompanying drawings:
[0046] Figure 1 A schematic block diagram illustrating the steps of a charging method for a vehicle-mounted cordless vacuum cleaner provided in an embodiment of the present invention;
[0047] Figure 2 A flowchart illustrating the charging method for a vehicle-mounted cordless vacuum cleaner provided in an embodiment of the present invention;
[0048] Figure 3 This is a schematic diagram of the overall structure of the wireless vacuum cleaner system provided in an embodiment of the present invention.
[0049] The markings in the attached diagram are as follows:
[0050] 1. Armrest box; 11. Receiving chamber; 2. Charging port; 3. Car cordless vacuum cleaner. Detailed Implementation
[0051] It should be noted that, unless otherwise specified, the embodiments and features described in this application can be combined with each other. The preferred embodiments of the present invention will now be described in detail with reference to the accompanying drawings.
[0052] This invention discloses a charging method for a vehicle-mounted cordless vacuum cleaner, such as... Figure 1 and Figure 3 As shown, it includes:
[0053] Obtain the connection status information of the preset charging interface 2 in the vehicle. The connection status information includes the status information of successful connection with the vehicle cordless vacuum cleaner 3 and the status information of disconnection from the vehicle cordless vacuum cleaner 3.
[0054] Based on the obtained connection status information, a corresponding pop-up notification window is pushed through the vehicle display screen;
[0055] Configure charging commands and respond to user-triggered charging commands to control charging interface 2 to charge the vehicle cordless vacuum cleaner 3;
[0056] Obtain the charging status information of the car wireless vacuum cleaner 3. The charging status information includes the status information that the car wireless vacuum cleaner 3 is charging and the status information that the car wireless vacuum cleaner 3 is fully charged. Based on the charging status information of the car wireless vacuum cleaner 3, close the corresponding prompt pop-up window through the car display screen.
[0057] Configure a power-off command to control the power outage between the charging port 2 and the vehicle cordless vacuum cleaner 3 in response to a user-triggered power-off command, or control the power outage between the charging port 2 and the vehicle cordless vacuum cleaner 3 based on the status information that the vehicle cordless vacuum cleaner 3 is fully charged.
[0058] By implementing the charging method for the aforementioned car-mounted cordless vacuum cleaner 3, the connection status between the charging port 2 and the car-mounted cordless vacuum cleaner 3 is first determined, and a pop-up notification is pushed through the vehicle's display screen to remind the user in real time whether the car-mounted cordless vacuum cleaner 3 has been placed in the charging position. Then, utilizing the configuration of charging and power-off commands, upon responding to the user's triggering of relevant commands, the system automatically controls the charging port 2 to charge or disconnect the car-mounted cordless vacuum cleaner 3, preventing users from forgetting to charge it after use, thus achieving timely charging and ensuring normal use of the car-mounted cordless vacuum cleaner 3 next time. Simultaneously, by acquiring the charging status information of the car-mounted cordless vacuum cleaner 3 during the charging process, the system ensures that the car-mounted cordless vacuum cleaner 3 is charging normally, and automatically disconnects the power after the car-mounted cordless vacuum cleaner 3 is fully charged to protect the battery of the car-mounted cordless vacuum cleaner 3, avoiding overcharging and potential dangerous accidents, effectively improving charging safety, and thus solving the problem of vacuum cleaners being limited by power supply and distance during daily in-vehicle dust removal.
[0059] Furthermore, based on the obtained connection status information, a corresponding pop-up notification is pushed through the vehicle's display screen:
[0060] Configure the first pop-up window for push notification, add a first close button and first display information matching the first pop-up window, and push the first pop-up window through the vehicle display screen based on the obtained status information of successful connection with the vehicle cordless vacuum cleaner 3. The first display information includes that the charging interface 2 is connected normally.
[0061] Configure the second pop-up window, add a second close button and second display information that match the second pop-up window, and push the second pop-up window through the vehicle display screen based on the status information of disconnection from the vehicle cordless vacuum cleaner 3. The second display information includes charging port 2 connection error.
[0062] By implementing the charging method of the above-mentioned car cordless vacuum cleaner 3, corresponding prompt pop-ups are pushed according to different connection status information of the charging interface 2, so that users can understand the connection status of the charging interface 2 and the car cordless vacuum cleaner 3 in real time. When the second pop-up shows that the connection of the charging interface 2 is abnormal, users can discover it in time and take corresponding measures, thereby reminding users to charge the car cordless vacuum cleaner 3 in time.
[0063] Furthermore, it also includes a method for closing the first pop-up window:
[0064] Configure the attribute information of the first pop-up window, including the pop-up window closing time. The first display information also includes a countdown timer corresponding to the pop-up window closing time.
[0065] In response to the end of the countdown, the triggering of the first close button, or the receipt of charging status information for the in-vehicle cordless vacuum cleaner 3, the first pop-up window is closed via the in-vehicle display screen.
[0066] By implementing the charging method of the aforementioned in-vehicle cordless vacuum cleaner 3, based on the set pop-up closing time, when the first pop-up window indicates that the charging interface 2 is connected normally, it will automatically close after the pop-up closing time is reached, thus eliminating the need for complex operations. Preferably, the pop-up closing time is set to a short duration, such as 5 seconds, to provide intuitive status prompts and interactive control. By automatically closing the first pop-up window, it is possible to avoid the first pop-up window occupying system resources for an extended period, thereby improving the performance and efficiency of the device. Simultaneously, displaying a countdown in the first pop-up window clearly informs the user that the first pop-up window will close after the specified time, increasing the visualization and prompting of information. Furthermore, the first pop-up window can also be closed by clicking the first close button or by obtaining the charging status information of the in-vehicle cordless vacuum cleaner 3, thus providing multiple ways to close the first pop-up window and enhancing the user's interactive experience with the device.
[0067] Furthermore, it also includes a method for pushing a notification pop-up window to the vehicle display screen when obtaining status information indicating a disconnection from the in-vehicle cordless vacuum cleaner 3:
[0068] Configure the third pop-up window and add third display information that matches the third pop-up window. The third display information includes that the car cordless vacuum cleaner 3 has been removed.
[0069] In response to the change from the obtained status information of successfully connecting with the car wireless vacuum cleaner 3 to the status information of disconnecting from the car wireless vacuum cleaner 3, a third pop-up window is pushed through the car display screen.
[0070] In response to the push of the third pop-up window, the connection status information of the charging port 2 is continuously obtained. If the status information of disconnection from the car wireless vacuum cleaner 3 is obtained after a preset time, the third pop-up window is closed through the car display screen and the second pop-up window is pushed.
[0071] In response to the push notification of the third or second pop-up window, continuously obtain the connection status information of the charging port 2. If the status information of successful connection with the in-vehicle wireless vacuum cleaner 3 is obtained, close the third or second pop-up window through the in-vehicle display screen and push the first pop-up window.
[0072] By implementing the charging method for the car-mounted cordless vacuum cleaner 3 described above, when the connection status information of the charging port 2 changes, a push notification pop-up window allows the user to promptly understand the connection status, avoiding forgotten charging or safety hazards caused by abnormal connection of the charging port 2. The addition of a third pop-up window displaying information that the car-mounted cordless vacuum cleaner 3 has been removed clearly informs the user of any abnormalities. Specifically, there are two possibilities: either the car-mounted cordless vacuum cleaner 3 and the charging port 2 are not properly connected, or the car-mounted cordless vacuum cleaner 3 has been removed from the charging port 2, allowing the user to take appropriate measures accordingly. For example, checking the connection between the charging port 2 and the car-mounted cordless vacuum cleaner 3, or reconnecting the car-mounted cordless vacuum cleaner 3 to the charging port 2 after use. Meanwhile, by continuously acquiring the connection status information of the charging port 2, and using the push conditions corresponding to the first, second, and third pop-ups, the user can be guided to perform the correct operation on the car wireless vacuum cleaner 3, thereby ensuring that the user accurately obtains the status of the car wireless vacuum cleaner 3 and completes the charging operation of the car wireless vacuum cleaner 3 in a timely manner, ensuring that the car wireless vacuum cleaner 3 is always in a state of sufficient power when in use.
[0073] Furthermore, it also includes a method for pushing a second pop-up window:
[0074] In response to the second pop-up window being closed by the second close button, the connection status information of the charging port 2 is continuously obtained. If the status information of disconnection from the in-vehicle cordless vacuum cleaner 3 is obtained after a preset time, the second pop-up window is pushed again through the in-vehicle display screen.
[0075] By implementing the charging method for the car-mounted cordless vacuum cleaner 3 described above, and continuously acquiring the connection status information of the charging port 2 within a preset time, the system can determine whether to continue pushing the second pop-up window based on the actual connection status if the user accidentally clicks the second close button to close the second pop-up window. That is, if the system still acquires information indicating a disconnection from the car-mounted cordless vacuum cleaner 3, it can continue pushing the second pop-up window, allowing the user to be aware of and handle abnormal situations in real time, thus preventing the car-mounted cordless vacuum cleaner 3 from being forgotten to be charged after use.
[0076] Furthermore, combined Figure 2 As shown, it also includes a method for configuring charging commands and power-off commands to control the charging state of charging interface 2:
[0077] The system is configured to respond to user-triggered charging or power-off commands via voice input on the vehicle display screen, controlling the charging interface 2 to charge or power off the vehicle-mounted cordless vacuum cleaner 3.
[0078] The system can be configured to accept charging and power-off commands input via a touchscreen switch on the vehicle display screen. In response to user-triggered charging or power-off commands, the system controls the charging interface 2 to charge or power off the vehicle-mounted cordless vacuum cleaner 3.
[0079] The system can be configured to receive charging and power-off commands via the button switch on the vehicle-mounted cordless vacuum cleaner 3. In response to the user-triggered charging or power-off command, the system controls the charging interface 2 to charge or power off the vehicle-mounted cordless vacuum cleaner 3.
[0080] By implementing the charging method of the aforementioned car-mounted cordless vacuum cleaner 3, multiple input methods for charging and power-off commands are provided, such as voice input on the vehicle display screen, touch screen switch, and button switch on the car-mounted cordless vacuum cleaner 3. This provides various command input methods to meet different user habits and needs, enabling users to more conveniently operate and control the charging process of the car-mounted cordless vacuum cleaner 3, thereby improving the convenience and flexibility of user operation. Furthermore, by utilizing the response to user input commands, the charging interface 2 is controlled to charge or power off the car-mounted cordless vacuum cleaner 3, achieving automated charging management and improving the convenience and safety of use.
[0081] Furthermore, in response to a user-triggered charging command, the method for controlling the charging port 2 to charge the vehicle-mounted cordless vacuum cleaner 3 includes:
[0082] Based on the charging command triggered by the user, the charging status information of the car wireless vacuum cleaner 3 is obtained, which also includes the battery level information of the car wireless vacuum cleaner 3.
[0083] The system presets charging conditions and configures corresponding charging modes. In response to the acquired power information meeting the preset charging conditions, it controls the charging interface 2 to charge the vehicle cordless vacuum cleaner 3 according to the corresponding charging mode.
[0084] Furthermore, the method for preset charging conditions and configuring corresponding charging modes includes:
[0085] Preset charging conditions, including a power threshold;
[0086] If the obtained power information is greater than or equal to the charging condition, and the information that the vehicle cordless vacuum cleaner 3 is fully charged is not obtained, the scheduled charging mode is configured. The scheduled charging mode is when the vehicle's main power supply is in an idle state, the charging interface 2 is controlled to charge the vehicle cordless vacuum cleaner 3.
[0087] If the acquired power level is less than the charging condition, an instant charging mode is configured. Instant charging mode responds to a user-triggered charging command and controls the charging interface 2 to charge the vehicle cordless vacuum cleaner 3.
[0088] By implementing the charging method described above for the in-vehicle cordless vacuum cleaner 3, the system automatically determines and selects the appropriate charging mode based on the user-triggered charging command and the vacuum cleaner's battery level. Specifically, when the battery level meets the preset charging conditions and the vehicle's main power supply is in an idle state (i.e., when the vacuum cleaner still has a significant amount of battery remaining), the system automatically activates the scheduled charging mode. This avoids charging during peak vehicle power consumption, saving energy and preventing disruption to normal vehicle use, especially for new energy electric vehicles. Conversely, when the vacuum cleaner's battery level is low, the system immediately activates the instant charging mode upon receiving a charging command from the user, quickly charging the vacuum cleaner and reducing waiting time. Furthermore, the preset charging conditions and modes better protect the vacuum cleaner's battery life, preventing damage from overcharging or over-discharging. This intelligent charging control improves charging efficiency and convenience.
[0089] Furthermore, it also includes a method for controlling the charging interface 2 to charge the vehicle-mounted cordless vacuum cleaner 3 according to the configured scheduled charging mode:
[0090] Configure the scheduled charging mode and add multiple initial time periods that match the scheduled charging mode;
[0091] In response to the initial time period selected by the user and the obtained power information, a scheduled charging information is generated, and the charging interface 2 is controlled to charge the vehicle cordless vacuum cleaner 3 according to the scheduled charging information.
[0092] The system retrieves charging reservation information from multiple charging reservations, filters out the most frequently selected initial time period as the preferred time period, and automatically selects the preferred time period to generate charging reservation information in the next charging reservation.
[0093] By implementing the charging method for the aforementioned car-mounted cordless vacuum cleaner 3, multiple initial time periods are configured, allowing users to choose a suitable scheduled charging time according to their needs and habits, increasing charging flexibility and convenience. Scheduled charging information is generated based on the user-selected initial time period and battery level, and charging interface 2 is controlled to begin charging, achieving automated scheduled charging and reducing user steps. Furthermore, by acquiring scheduled charging information from multiple charging modes, the most frequently selected initial time period is filtered out as the frequently used time period and automatically selected in the next scheduled charging mode, improving charging efficiency and convenience. Its personalized charging selection, automated operation, and intelligent optimization of scheduled charging all contribute to improving the charging efficiency of the car-mounted cordless vacuum cleaner 3, reducing charging costs, and optimizing energy management.
[0094] This invention also discloses a cordless vacuum cleaner system, employing the charging method of the aforementioned vehicle-mounted cordless vacuum cleaner 3, such as... Figure 3 As shown, the cordless vacuum system includes a vacuum charging device and a charging control module. The vacuum charging device includes a center console box 1, a charging interface 2, and a cordless vacuum cleaner 3. The center console box 1 is located inside the vehicle, and its interior has a accommodating chamber 11 for storing the cordless vacuum cleaner 3. The charging interface 2 is located within the accommodating chamber 11 and is connected to the cordless vacuum cleaner 3. The charging control module includes an information acquisition unit, a charging control unit, and a human-machine interface unit. The charging control unit interfaces with the charging interface 2 to control the charging interface 2 to charge the cordless vacuum cleaner 3. The information acquisition unit interfaces with the charging control unit to acquire the connection status information of the charging interface 2 and the charging status information of the cordless vacuum cleaner 3. The human-machine interface unit interfaces with the information acquisition unit to control the vehicle display screen to push notification pop-ups and to input charging commands or power-off commands.
[0095] As described above, the charging control unit is a Battery Management System (BMS), used to manage the vehicle battery and perform charging operations; the information acquisition unit is a Body Control Module (BCM), used to detect the high voltage power supply status of the vehicle and the power consumption status of related electrical appliances in the vehicle body; and the human-machine interaction unit is an Infotainment Head Unit (IHU), used to realize human-vehicle information interaction functions.
[0096] As described above, the specific operation process of the wireless vacuum cleaner system of the present invention is as follows:
[0097] Remove the cordless vacuum cleaner 3 and related accessories from the receiving chamber 11 of the armrest box 1, and assemble the cordless vacuum cleaner 3 as needed. Press the power button of the cordless vacuum cleaner 3 to start dust removal, and clean the cordless vacuum cleaner 3 after use. After cleaning, disassemble the cordless vacuum cleaner 3 and related accessories, put the related accessories back into the receiving chamber 11 of the armrest box 1, and put the cordless vacuum cleaner 3 back into the receiving chamber 11 of the armrest box 1 and connect it to the charging port 2. The BCM controller acquires the connection status information of the preset charging port 2 in the vehicle; the IHU controller pushes a corresponding prompt pop-up window through the vehicle display screen based on the acquired connection status information; the BCM controller configures a charging command, and in response to the user-triggered charging command, the BMS controller receives the charging command and controls the charging port 2 to charge the vehicle cordless vacuum cleaner 3; the BCM controller acquires the charging status information of the vehicle cordless vacuum cleaner 3, and the IHU controller closes the corresponding prompt pop-up window through the vehicle display screen based on the charging status information of the vehicle cordless vacuum cleaner 3; the BCM controller configures a power-off command, and in response to the user-triggered power-off command, the BMS controller receives the power-off command and controls the power disconnection between the charging port 2 and the vehicle cordless vacuum cleaner 3, or controls the power disconnection between the charging port 2 and the vehicle cordless vacuum cleaner 3 based on the fully charged status information of the vehicle cordless vacuum cleaner 3.
[0098] By using the aforementioned cordless vacuum system to store the car-mounted cordless vacuum cleaner 3 in the armrest box 1, the storage problem of the main body and accessories of the car-mounted cordless vacuum cleaner 3 can be effectively solved, greatly reducing the risk of accessories being lost. Furthermore, the charging port 2 is located within the accommodating chamber 11. While storing the car-mounted cordless vacuum cleaner 3, it can also be charged using the charging control module. This effectively cultivates the user's habit of storing the car-mounted cordless vacuum cleaner 3 in a designated location and enables timely intelligent charging of the car-mounted cordless vacuum cleaner 3. This effectively solves the problems of corded vacuum cleaners being limited by the distance of the wiring harness, cordless vacuum cleaners being forgotten to be charged, and vacuum cleaner accessories being difficult to find after a period of use.
[0099] It should be understood that the above embodiments are only used to illustrate the technical solutions of the present invention, and are not intended to limit them. Those skilled in the art can modify the technical solutions described in the above embodiments, or make equivalent substitutions for some of the technical features; and all such modifications and substitutions should fall within the protection scope of the appended claims of the present invention.
Claims
1. A charging method for a vehicle-mounted cordless vacuum cleaner, characterized in that, The charging method includes: Obtain the connection status information of the preset charging interface in the vehicle. The connection status information includes the status information of successfully connecting to the vehicle cordless vacuum cleaner and the status information of disconnecting from the vehicle cordless vacuum cleaner. Based on the obtained connection status information, a corresponding pop-up notification window is pushed through the vehicle display screen; Configure charging commands, respond to user-triggered charging commands, and obtain the charging status information of the vehicle-mounted cordless vacuum cleaner, the charging status information also including the battery level information of the vehicle-mounted cordless vacuum cleaner; The system presets charging conditions and configures corresponding charging modes. In response to the acquired power information satisfying the preset charging conditions, it controls the charging interface to charge the vehicle-mounted cordless vacuum cleaner according to the corresponding charging mode. The charging conditions include a power threshold. If the obtained power information is greater than or equal to the charging condition, and the information that the vehicle cordless vacuum cleaner is fully charged is not obtained, a scheduled charging mode is configured. The scheduled charging mode is when the vehicle's main power supply is in an idle state, the charging interface is controlled to charge the vehicle cordless vacuum cleaner. If the obtained power information is less than the charging condition, configure an instant charging mode. The instant charging mode is to control the charging interface to charge the vehicle cordless vacuum cleaner in response to a user-triggered charging command. When configuring the scheduled charging mode, add multiple initial time periods that match the scheduled charging mode; In response to the initial time period selected by the user and the acquired power information, a scheduled charging information is generated, and the charging interface is controlled to charge the vehicle cordless vacuum cleaner according to the scheduled charging information. The system obtains the scheduled charging information when multiple scheduled charging modes are used, filters out the initial time period with the highest selection frequency as the commonly used time period, and automatically selects the commonly used time period to generate the scheduled charging information in the next scheduled charging mode. Obtain the charging status information of the vehicle-mounted cordless vacuum cleaner, which includes the status information that the vehicle-mounted cordless vacuum cleaner is charging and the status information that the vehicle-mounted cordless vacuum cleaner is fully charged. Based on the status information that the vehicle-mounted cordless vacuum cleaner is charging, close the corresponding prompt pop-up window through the vehicle display screen. Configure a power-off command to control the power disconnection between the charging interface and the vehicle cordless vacuum cleaner in response to a user-triggered power-off command, or control the power disconnection between the charging interface and the vehicle cordless vacuum cleaner based on the vehicle cordless vacuum cleaner's fully charged status information.
2. The charging method for the vehicle-mounted cordless vacuum cleaner according to claim 1, characterized in that, The method of pushing a corresponding prompt pop-up window through the vehicle display screen based on the acquired connection status information: Configure the first pop-up window for push notification, add a first close button and first display information matching the first pop-up window, and push the first pop-up window through the vehicle display screen according to the obtained status information of successful connection with the vehicle wireless vacuum cleaner. The first display information includes that the charging interface is connected normally. Configure a second pop-up window, add a second close button and second display information matching the second pop-up window, and push the second pop-up window through the vehicle display screen based on the obtained status information of disconnection from the vehicle cordless vacuum cleaner. The second display information includes the charging interface connection error.
3. The charging method for the vehicle-mounted cordless vacuum cleaner according to claim 2, characterized in that, It also includes a method for closing the first pop-up window: Configure the attribute information of the first pop-up window, the attribute information including the pop-up window closing time, and the first display information also includes a countdown timer corresponding to the pop-up window closing time; In response to the end of the countdown, the triggering of the first close button, or the receipt of charging status information of the in-vehicle cordless vacuum cleaner, the first pop-up window is closed via the in-vehicle display screen.
4. The charging method for a vehicle-mounted cordless vacuum cleaner according to claim 2 or 3, characterized in that, This also includes a method to push a notification pop-up window to the vehicle's display screen when the status information of disconnection from the car's cordless vacuum cleaner is obtained: Configure the third pop-up window and add third display information that matches the third pop-up window, the third display information including that the car wireless vacuum cleaner has been removed; In response to the change from a successfully connected status to a disconnected status to a disconnected status, the third pop-up window is pushed through the vehicle display screen. In response to the push of the third pop-up window, the connection status information of the charging interface is continuously obtained. If the status information of disconnection from the car wireless vacuum cleaner is obtained after a preset time, the third pop-up window is closed through the car display screen, and the second pop-up window is pushed. In response to the push of the third pop-up window or the second pop-up window, the connection status information of the charging interface is continuously obtained. If the status information of successful connection with the vehicle wireless vacuum cleaner is obtained, the third pop-up window or the second pop-up window is closed through the vehicle display screen, and the first pop-up window is pushed.
5. The charging method for the vehicle-mounted cordless vacuum cleaner according to claim 4, characterized in that, It also includes a method for pushing the second pop-up window: In response to the second pop-up being closed by the second close button, the connection status information of the charging interface is continuously acquired. If the status information of disconnection from the in-vehicle cordless vacuum cleaner is acquired after a preset time, the second pop-up is pushed through the in-vehicle display screen.
6. The charging method for the vehicle-mounted cordless vacuum cleaner according to claim 1, characterized in that, It also includes methods for configuring charging commands and power-off commands to control the charging status of the charging interface: The system can be configured to accept charging and power-off commands via voice input on the in-vehicle display screen. In response to user-triggered charging or power-off commands, the system controls the charging interface to charge or power off the in-vehicle cordless vacuum cleaner. The system can be configured to accept charging and power-off commands input via a touchscreen switch on the vehicle display screen. In response to user-triggered charging or power-off commands, the system controls the charging interface to charge or power off the vehicle-mounted cordless vacuum cleaner. The system can be configured to accept charging and power-off commands input via the button switch on the vehicle-mounted cordless vacuum cleaner. In response to user-triggered charging or power-off commands, the system controls the charging interface to charge or power off the vehicle-mounted cordless vacuum cleaner.
7. A cordless vacuuming system, characterized in that, The charging method for the vehicle-mounted cordless vacuum cleaner according to any one of claims 1-6, wherein the cordless vacuum system comprises: A vacuum charging device includes a center console, a charging port, and a car-mounted cordless vacuum cleaner. The center console is located inside the vehicle and has a accommodating chamber for storing the car-mounted cordless vacuum cleaner. The charging port is located inside the accommodating chamber and is correspondingly connected to the car-mounted cordless vacuum cleaner. The charging control module includes an information acquisition unit, a charging control unit, and a human-machine interaction unit. The charging control unit is connected to the charging interface and is used to control the charging interface to charge the vehicle-mounted cordless vacuum cleaner. The information acquisition unit is connected to the charging control unit and is used to acquire the connection status information of the charging interface and the charging status information of the vehicle-mounted cordless vacuum cleaner. The human-machine interaction unit is connected to the information acquisition unit and is used to control the vehicle display screen to push notification pop-ups and input charging commands or power-off commands.
Citation Information
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