A vehicle door handle control method, device, system, equipment and storage medium

Through the collaborative work of the rain sensing device and the controller, the shielding command shielding capacitor switch signal is generated, which solves the problem of error triggering of capacitor switches in car washing or raining scenarios, and improves the safety of vehicle door handles.

CN115142746BActive Publication Date: 2025-08-01ZHEJIANG ZEEKR INTELLIGENT TECH CO LTD +1
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Patent Information

Application Number
CN202210554845.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-05-20
Publication Date
2025-08-01
Estimated Expiration
2042-05-20

AI Technical Summary

Technical Problem

In the prior art, the capacitive switch of the vehicle door handle is easily triggered by mistake in car washing or raining scenarios, resulting in the car door being opened by mistake, and there is a lack of effective anti-touch solutions.

Method used

The rainfall information of the surrounding environment of the vehicle is monitored through the rainfall sensing device. The vehicle controller generates a shielding command to shield the capacitor switch signal. The driver controller performs a shielding process to prevent the capacitor switch from being triggered when the rainfall meets the conditions.

Benefits of technology

It effectively avoids the capacitor switch being accidentally triggered in car washing or raining scenarios, improves the safety performance of the vehicle door handle, and ensures that the vehicle cannot be turned on incorrectly in a specific environment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application discloses a vehicle door handle control method, device, system, equipment and storage medium, which are applied to a vehicle controller. The method includes: responding to the rainfall information of the surrounding environment of the target vehicle sent by a rainfall sensing device, and parsing and processing the rainfall information; when it is parsed that the rainfall information meets a first preset rainfall condition, generating a shielding instruction carrying a shielding signal of a capacitive switch signal, where the capacitive switch signal is a signal for turning on the vehicle door handle; sending the shielding instruction to a drive controller, so that the drive controller performs shielding processing on the capacitive switch signal based on the shielding signal. The technical solution provided by the present application can achieve the control of the vehicle door handle, improve the safety performance of the vehicle door handle, and further avoid the situation that the capacitive switch on the vehicle door handle is accidentally triggered in a car wash or rain scenario.
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Description

Technical Field

[0001] This application relates to the technical field of vehicle automatic identification, and particularly relates to a vehicle door handle control method, device, system, equipment, and storage medium. Background Art

[0002] With the large-scale market launch of automated and intelligent vehicles, the application of vehicle exterior door handles in the market has become more widespread. Car owners no longer need to rummage through their bags to find the keys. They can simply touch the capacitive switch on the door handle, gently touch it to wake up the induction circuit, and then unlock the car door, thus obtaining a more convenient and safe car-using experience.

[0003] Currently, the situation where the capacitive switches applied in the vehicle exterior door handles on the market are accidentally triggered is not uncommon. For example, they are triggered in scenarios such as car washing and rain. In response to the above problems, vehicle manufacturers cannot avoid the accidental triggering of capacitive switches by changing the threshold range of the capacitive sensor itself or calibrating the capacitive sensor, etc. At the same time, there is currently no technical solution in the prior art designed to avoid the accidental triggering of capacitive switches for the above problems.

[0004] Therefore, a technical solution for preventing accidental opening of vehicle door handles is needed to solve the problem that the capacitive switch of the car door handle is accidentally triggered in car washing or rain scenarios. Summary of the Invention

[0005] To solve the problems of the prior art, embodiments of this application provide a vehicle door handle control method, device, system, equipment, and storage medium to achieve the control of vehicle door handles and improve the safety performance of vehicle door handles, so as to solve the problem that the capacitive switch of the car door handle is accidentally triggered in car washing or rain scenarios. The technical solution is as follows:

[0006] On the one hand, a vehicle door handle control method is provided, which is applied to a vehicle controller. The method includes:

[0007] Respond to the rainfall information of the target vehicle's surrounding environment sent by the rainfall sensing device, and perform parsing and processing on the rainfall information;

[0008] When it is parsed that the rainfall information meets the first preset rainfall condition, generate a shielding instruction carrying a shielding signal of the capacitive switch signal, where the capacitive switch signal is a signal to open the vehicle door handle;

[0009] Send the shielding instruction to the drive controller so that the drive controller performs shielding processing on the capacitive switch signal based on the shielding signal.

[0010] On the other hand, a vehicle door handle control device is provided, which is applied to a vehicle controller. The device includes:

[0011] Information parsing module: configured to parse and process the rainfall information of the surrounding environment of the target vehicle in response to the rainfall information sent by the rainfall sensing device;

[0012] First shielding instruction generation module: configured to generate a shielding instruction carrying a shielding signal with a capacitive switch signal when it is parsed that the rainfall information meets the first preset rainfall condition, where the capacitive switch signal is a signal for opening the vehicle door handle;

[0013] First shielding processing module: configured to send the shielding instruction to the drive controller, so that the drive controller performs shielding processing on the capacitive switch signal based on the shielding signal.

[0014] On the other hand, a vehicle door handle control system is provided. The system includes a vehicle controller and a drive controller, and the vehicle controller is communicatively connected to the drive controller;

[0015] The vehicle controller is configured to parse and process the rainfall information of the surrounding environment of the target vehicle in response to the rainfall information sent by the rainfall sensing device; when it is parsed that the rainfall information meets the first preset rainfall condition, generate a shielding instruction carrying a shielding signal with a capacitive switch signal, where the capacitive switch signal is a signal for opening the vehicle door handle;

[0016] Send the shielding instruction to the drive controller;

[0017] The drive controller is configured to receive the shielding instruction carrying the shielding signal with the capacitive switch signal, and perform shielding processing on the capacitive switch signal based on the shielding signal.

[0018] On the other hand, a vehicle door handle control device is provided. The vehicle door handle control device includes a processor and a memory, and at least one instruction, at least one program, a code set or an instruction set is stored in the memory. The at least one instruction, the at least one program, the code set or the instruction set is loaded and executed by the processor to implement the vehicle door handle control method as described above.

[0019] On the other hand, a computer-readable storage medium is provided. At least one instruction, at least one program, a code set or an instruction set is stored in the storage medium. The at least one instruction, the at least one program, the code set or the instruction set is loaded and executed by a processor to implement the vehicle door handle control method as described above.

[0020] A vehicle door handle control method, device, system, device and storage medium provided by the present application have the following technical effects:

[0021] In response to the rainfall information of the surrounding environment of the target vehicle sent by the rainfall sensing device, this application analyzes and processes the rainfall information, and then generates corresponding instructions according to the analysis results. When it is parsed that the rainfall information meets the first preset rainfall condition, a shielding instruction carrying a shielding signal with a capacitance switch signal is generated, where the capacitance switch signal is a signal to turn on the vehicle door handle; the shielding instruction is sent to the drive controller, so that the drive controller shields the capacitance switch signal based on the shielding signal. The technical solution provided by this application can realize the control of the vehicle door handle, improve the safety performance of the vehicle door handle, and thus avoid the situation that the capacitance switch on the vehicle door handle is accidentally triggered in the car wash or rain scene. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] In order to more clearly illustrate the technical solutions in the embodiments of this application, the following will briefly introduce the drawings required for the description of the embodiments. Obviously, the following drawings are only some embodiments of this application. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0023] Figure 1 It is a schematic structural diagram of a vehicle door handle control system provided by an embodiment of this application;

[0024] Figure 2 It is a schematic flowchart of a vehicle door handle control method provided by an embodiment of this application;

[0025] Figure 3 It is a schematic flowchart of a method for exiting the shielding operation provided by an embodiment of this application;

[0026] Figure 4 It is a schematic flowchart of another vehicle door handle control method provided by an embodiment of this application;

[0027] Figure 5 It is a schematic flowchart of a vehicle door handle control method provided by an embodiment of this application;

[0028] Figure 6 It is a schematic flowchart of another vehicle door handle control method provided by an embodiment of this application;

[0029] Figure 7 It is a schematic structural diagram of a vehicle handle control device provided by an embodiment of this application;

[0030] Figure 8 It is a schematic structural diagram of a server provided by an embodiment of this application;

[0031] Among them, the reference numerals correspond to: 01 - vehicle controller; 02 - drive controller. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0032] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present application without creative efforts shall fall within the protection scope of the present application.

[0033] It should be noted that this specification provides method operation steps as described in the embodiments or flowcharts, but may include more or fewer operation steps based on routine or non-creative efforts. The step order listed in the embodiments is only one way among the execution orders of numerous steps and does not represent the only execution order. When the actual system or server product executes, it can be executed in the order shown in the embodiments or the drawings or in parallel (for example, in an environment of parallel processors or multi-threaded processing).

[0034] Please refer to Figure 1 , which shows a schematic structural diagram of a vehicle door handle control system provided by an embodiment of the present application. As Figure 1 shown, the system includes a vehicle controller 01 and a drive controller 02. In actual applications, the vehicle controller 01 and the drive controller 02 can be connected through a wired or wireless communication method to achieve the interaction between the vehicle controller 01 and the drive controller 02.

[0035] In the embodiment of the present application, the vehicle controller 01 can be an independent physical server, or a server cluster or distributed system composed of multiple physical servers, or a cloud server that provides basic cloud computing services such as cloud services, cloud databases, cloud computing, cloud functions, cloud storage, network services, cloud communications, middleware services, domain name services, security services, CDN (Content Delivery Network), and big data and artificial intelligence platforms. Further, the vehicle controller 01 can include physical devices, which can specifically include a network communication unit, a processor, a memory, etc., or can include software running on the physical devices, which can specifically include application programs, etc. Specifically, the vehicle controller 01 is used to control the control tasks of the entire vehicle. The vehicle controller 01 is used to respond to the rainfall information of the target vehicle's surrounding environment sent by the rainfall sensing device, and parse and process the rainfall information; when it is parsed that the rainfall information meets the first preset rainfall condition, a shielding instruction carrying a shielding signal of a capacitive switch signal is generated and sent to the drive controller 02 to achieve the interaction between the vehicle controller 01 and the drive controller 02.

[0036] Further, the drive controller 02 can be a drive control unit, which is configured to receive instructions sent by the vehicle controller 01 and drive the vehicle to perform various tasks according to the information carried in the instructions. Specifically, the drive controller 02 is configured to receive a shielding instruction carrying a shielding signal of a capacitance switch signal and perform a shielding process on the capacitance switch signal based on the shielding signal.

[0037] In addition, it should be noted that Figure 1 the vehicle door handle control system shown is merely one type, and this system can include more or fewer nodes, which is not limited in this application.

[0038] Next, the vehicle door handle control method based on the above system of this application will be introduced. Please refer to Figure 2 , Figure 2 which is a schematic flowchart of a vehicle door handle control method provided by an embodiment of this application. This specification provides method operation steps such as in the embodiment or flowchart, but based on routine or non-creative labor, it can include more or fewer operation steps. The step order listed in the embodiment is only one way among the execution orders of numerous steps and does not represent the only execution order. When the actual system or server product executes, it can be executed in the order shown in the embodiment or the drawing or in parallel (for example, in an environment of parallel processors or multi-threaded processing). Specifically, as Figure 2 shown, the method can include:

[0039] S201: The vehicle controller responds to the rainfall information of the target vehicle's surrounding environment sent by the rainfall sensing device.

[0040] S202: The vehicle controller performs parsing processing on the rainfall information.

[0041] S203: When the vehicle controller parses that the rainfall information meets the first preset rainfall condition, the vehicle controller generates a shielding instruction carrying a shielding signal of a capacitance switch signal, where the capacitance switch signal is a signal for opening the vehicle door handle.

[0042] In the embodiment of this application, the rainfall sensing device is communicatively connected to the vehicle controller. The rainfall sensing device is configured to monitor the rainfall information of the target vehicle's surrounding environment and upload the monitored rainfall information to the vehicle controller in real time so that the vehicle controller can parse the rainfall information.

[0043] The first preset rainfall condition is used to characterize the rainfall condition for the vehicle controller to generate a shielding instruction, and can be set according to actual conditions. In one embodiment, the rainfall information includes the current rainfall value. The first preset rainfall condition is satisfied when the current rainfall value is greater than or equal to the first rainfall value. That is, when the rain sensing device detects that the current rainfall information is greater than or equal to the first preset rainfall value, the vehicle controller generates a shielding instruction, which carries a shielding signal of the capacitor switch signal, so as to drive the controller to shield the capacitor switch signal used to open the vehicle door handle based on the shielding signal carried in the shielding instruction, so as to avoid the capacitor switch being triggered in the case of car washing or rain, and thus unable to trigger the capacitor switch to release the capacitor switch signal to open the vehicle door handle, thereby improving the safety performance of the vehicle.

[0044] In an optional embodiment, if Figure 3 As shown, it is a flow chart of a method for exiting a shielding operation provided in an embodiment of the present application. After step S203, the method may include:

[0045] S301: The vehicle controller monitors rainfall information through a rainfall sensing device.

[0046] S302: When the vehicle controller monitors that the rainfall information meets the second preset rainfall condition, the vehicle controller generates a shielding closing instruction carrying an exit shielding signal.

[0047] S303: The vehicle controller sends a shielding closing instruction to the driving controller.

[0048] S304: The driving controller receives a shield closing instruction.

[0049] S305: The driving controller releases the shielding operation on the capacitor switch signal based on the exit shielding signal.

[0050] In an embodiment of the present application, the second preset rainfall condition is used to characterize the rainfall condition for the vehicle controller to generate a shielding closing instruction, which can be set according to actual conditions. In one embodiment, the rainfall information includes the current rainfall value. The second preset rainfall condition is satisfied when the current rainfall value is less than or equal to the second rainfall value. That is, when the rainfall sensing device monitors that the current rainfall information is less than or equal to the second preset rainfall value, the vehicle controller generates a shielding closing instruction to enable the drive controller to release the shielding operation of the capacitor switch signal to exit the shielding of the capacitor switch signal. When the capacitor switch signal is in an unshielded state, the vehicle door handle can be opened by the capacitor switch signal, thereby improving the safety performance of the vehicle door handle.

[0051] S204: The vehicle controller sends a shielding instruction to the drive controller.

[0052] S205: The driving controller receives the shielding instruction.

[0053] S206: The drive controller shields the capacitance switch signal based on the shielding signal.

[0054] In the embodiment of the present application, when the drive controller receives a shielding instruction, the drive controller shields the capacitance switch signal for opening the vehicle door handle based on the shielding signal carried in the shielding instruction. When the capacitance switch signal is shielded, the vehicle door handle cannot be opened, ensuring the safety of the vehicle in the situations of car washing or rain, and improving the vehicle experience.

[0055] In an alternative embodiment, as Figure 4 shown, it is a schematic flowchart of another vehicle door handle control method provided by the embodiment of the present application. A microswitch is provided on the vehicle door handle. Among them, the microswitch is communicatively connected to the vehicle controller. The method may include:

[0056] S401: The vehicle controller receives the switch state information sent by the microswitch.

[0057] S402: When the switch state information is in the on state, the vehicle controller generates a shielding instruction.

[0058] S403: The vehicle controller sends the shielding instruction to the drive controller.

[0059] S404: The drive controller receives the shielding instruction.

[0060] S405: The drive controller shields the capacitance switch signal based on the shielding signal.

[0061] In an embodiment, the switch state information of the microswitch may include the on state and the off state. The vehicle controller generates corresponding control instructions based on the received switch state information to shield the capacitance switch signal for opening the vehicle door handle, avoiding the situation that the capacitance switch is triggered in the situations of car washing or rain, and thus unable to trigger the capacitance switch to release the capacitance switch signal to open the vehicle door handle, improving the safety performance of the vehicle.

[0062] Specifically, when the switch state information received by the vehicle controller is in the on state, the vehicle controller generates a shielding instruction, and the vehicle controller sends the generated shielding instruction to the drive controller so that the drive controller shields the capacitance switch signal to shield the capacitance switch signal for opening the vehicle door handle, thereby realizing the control of the vehicle door handle.

[0063] In an alternative embodiment, the method may further include:

[0064] S410: When the switch state information is in the closed state, the vehicle controller generates a shield closing instruction.

[0065] S411: The vehicle controller sends a shielding closing instruction to the drive controller.

[0066] S412: The driving controller receives a shield closing instruction.

[0067] S413: The driving controller releases the shielding operation on the capacitor switch signal based on the exit shielding signal.

[0068] In one embodiment, a shielding closing instruction can be generated by monitoring the switch status information, so that the driving controller can release the shielding operation of the capacitive switch signal based on the exit shielding signal carried in the shielding closing instruction to exit the shielding of the capacitive switch signal. When the capacitive switch signal is in an unshielded state, the vehicle door handle can be opened by the capacitive switch signal, thereby improving the safety performance of the vehicle door handle.

[0069] In an optional embodiment, the vehicle controller may generate corresponding control instructions based on two parameters: rainfall information and switch status information of the micro switch. The method may further include:

[0070] S420: When the vehicle controller parses and finds that the rainfall information meets the first preset rainfall condition and receives the switch status information, if the switch status information is closed, the vehicle controller generates a shield closing instruction.

[0071] S421: The vehicle controller sends a shielding closing instruction to the drive controller.

[0072] S422: The driving controller receives a shield closing instruction.

[0073] S423: The driving controller releases the shielding operation on the capacitor switch signal based on the exit shielding signal.

[0074] In one embodiment, when the rainfall information and the switch status information of the micro switch meet the preset conditions, the vehicle controller generates a shielding off instruction so as to drive the controller to release the shielding operation of the capacitor switch signal based on the exit shielding signal carried by the shielding off instruction.

[0075] Specifically, when the vehicle controller parses the rainfall information to meet the first preset rainfall condition and receives the switch status information, if the switch status information is closed, the vehicle controller generates a shielding closing instruction; if the switch status information is open, the vehicle controller generates a shielding instruction.

[0076] In another optional embodiment, the method may further include:

[0077] S430: When the vehicle controller parses that the rainfall information meets the second preset rainfall condition and receives the switch status information, if the switch status information is in the on state, the vehicle controller generates a shielding instruction.

[0078] S431: The vehicle controller sends the shielding instruction to the drive controller.

[0079] S432: The drive controller receives the shielding instruction.

[0080] S433: The drive controller performs shielding processing on the capacitive switch signal based on the shielding signal.

[0081] Specifically, when the vehicle controller parses that the rainfall information meets the second preset rainfall condition and receives the switch status information, if the switch status information is in the on state, the vehicle controller generates a shielding instruction so that the drive controller shields the capacitive switch signal for opening the vehicle door handle based on the shielding signal carried in the shielding instruction, to avoid the situation where the capacitive switch is triggered in a car wash or rain situation; if the switch status information is in the off state, the vehicle controller generates a shielding cancellation instruction to enable the drive controller to cancel the shielding operation on the capacitive switch signal.

[0082] In one embodiment, based on the above vehicle door handle control method, the control process of the vehicle door handle is described below.

[0083] A rainfall sensing device is provided on the vehicle door handle. The rainfall sensing device is used to monitor the rainfall information of the surrounding environment of the target vehicle in real time. The rainfall information includes the current rainfall value. When the rainfall sensing device monitors that the current rainfall information is greater than or equal to the first rainfall value, the vehicle controller generates a shielding instruction and sends the shielding instruction to the drive controller, so that the drive controller performs shielding processing on the capacitive switch signal based on the shielding signal carried in the shielding instruction. At this time, an external person cannot trigger the capacitive switch to release the capacitive switch signal to open the vehicle door handle, so that the vehicle enters the car wash or rain mode; when the rainfall sensing device monitors that the current rainfall value of the surrounding environment of the target vehicle is less than or equal to the second rainfall value, the vehicle controller generates a shielding cancellation instruction carrying an exit shielding signal and sends the shielding cancellation instruction to the drive controller. The drive controller cancels the shielding operation on the capacitive switch signal based on the exit shielding signal to exit the shielding of the capacitive switch signal. At this time, an external person can trigger the capacitive switch to release the capacitive switch signal to open the vehicle door handle, so that the vehicle exits the car wash or rain mode.

[0084] In another embodiment, a micro switch is further provided on the vehicle door handle, wherein the micro switch is communicatively connected to the vehicle controller, and a person on the outside can press the micro switch. When the vehicle controller receives the switch status information of the micro switch, it generates a corresponding control instruction. Specifically, when the switch status information received by the vehicle controller is in the open state, the vehicle controller generates a shielding instruction and sends the shielding instruction to the drive controller so that the drive controller shields the capacitive switch signal. At this time, the person on the outside cannot open the vehicle door handle by triggering the capacitive switch to release the capacitive switch signal, so that the vehicle enters the car wash or rain mode; when the switch status information received by the vehicle controller is in the closed state, the vehicle controller generates a shielding closing instruction carrying an exit shielding signal, and sends the shielding closing instruction to the drive controller. The drive controller releases the shielding operation of the capacitive switch signal based on the exit shielding signal to exit the shielding of the capacitive switch signal. At this time, the person on the outside can open the vehicle door handle by triggering the capacitive switch to release the capacitive switch signal, so that the vehicle exits the car wash or rain mode.

[0085] From the technical solutions provided in the above embodiments of this specification, it can be seen that this application has the following technical effects:

[0086] The present application responds to the rainfall information of the target vehicle's surrounding environment sent by the rain sensing device, parses and processes the rainfall information, and then generates corresponding instructions based on the analysis results. When it is parsed that the rainfall information meets the first preset rainfall condition, a shielding instruction carrying a shielding signal of a capacitive switch signal is generated, wherein the capacitive switch signal is a signal for opening the vehicle door handle; the shielding instruction is sent to the drive controller so that the drive controller shields the capacitive switch signal based on the shielding signal. The technical solution provided by the present application can realize the control of the vehicle door handle, improve the safety performance of the vehicle door handle, and thus avoid the capacitor switch on the vehicle door handle from being accidentally triggered in the car washing or rain scenes.

[0087] The following describes a specific embodiment of a vehicle door handle control method of the present application using a vehicle controller as the execution body, such as Figure 5 As shown, Figure 5 A flow chart of the vehicle door handle control method provided in the embodiment of the present application, combined with Figure 5 As shown, the method may include:

[0088] S501: In response to the rainfall information of the surrounding environment of the target vehicle sent by the rainfall sensing device, the rainfall information is analyzed and processed.

[0089] S502: When it is determined that the rainfall information satisfies a first preset rainfall condition, a shielding instruction is generated that carries a shielding signal of a capacitive switch signal, where the capacitive switch signal is a signal for opening a vehicle door handle.

[0090] S503: Sending a shielding instruction to the driving controller, so that the driving controller performs shielding processing on the capacitor switch signal based on the shielding signal.

[0091] Furthermore, after step S502, the method further includes:

[0092] S5021: Monitor rainfall information through a rainfall sensing device.

[0093] S5022: When the monitored rainfall information satisfies the second preset rainfall condition, a shielding closing instruction carrying a shielding exit signal is generated.

[0094] S5023: Sending a shielding off instruction to the driving controller, so that the driving controller cancels the shielding operation on the capacitor switch signal based on the exit shielding signal.

[0095] Further, if Figure 6 As shown, it is a flow chart of another vehicle door handle control method provided by an embodiment of the present application. A micro switch is provided on the vehicle door handle, and the micro switch is communicatively connected to the vehicle controller. The method further includes:

[0096] S601: Receive switch status information sent by the micro switch.

[0097] S602: When the switch status information is in the on state, a shielding instruction is generated;

[0098] S603: Sending a shielding instruction to the driving controller, so that the driving controller performs shielding processing on the capacitor switch signal based on the shielding signal.

[0099] Furthermore, the method further comprises:

[0100] S611: When the switch state information is the closed state, generate a shield closing instruction.

[0101] S612: Sending a shielding off instruction to the driving controller, so that the driving controller cancels the shielding operation on the capacitor switch signal based on the exit shielding signal.

[0102] Furthermore, the method further comprises:

[0103] S621: When it is parsed that the rainfall information meets the first preset rainfall condition and the switch status information is received, if the switch status information is a closed state, a shield closing instruction is generated.

[0104] S622: Sending a shielding off instruction to the driving controller, so that the driving controller cancels the shielding operation on the capacitor switch signal based on the exit shielding signal.

[0105] Furthermore, the method further comprises:

[0106] S631: When it is parsed that the rainfall information meets the second preset rainfall condition and the switch status information is received, if the switch status information is an open state, a shielding instruction is generated.

[0107] S632: Send a shielding instruction to the driving controller, so that the driving controller performs shielding processing on the capacitor switch signal based on the shielding signal.

[0108] The embodiment of the present invention also provides a vehicle handle control device, which is applied to a vehicle controller, such as Figure 7 , which is a schematic structural diagram of a vehicle handle control device provided in an embodiment of the present application, the device includes:

[0109] The information analysis module 10 is configured to analyze the rainfall information of the surrounding environment of the target vehicle in response to the rainfall information sent by the rainfall sensing device.

[0110] The first shielding instruction generating module 20 is configured to generate a shielding instruction carrying a shielding signal of a capacitive switch signal when the rainfall information is parsed to meet a first preset rainfall condition, where the capacitive switch signal is a signal for opening a vehicle door handle.

[0111] The first shielding processing module 30 is configured to send a shielding instruction to the driving controller, so that the driving controller performs shielding processing on the capacitor switch signal based on the shielding signal.

[0112] Furthermore, the device further comprises:

[0113] The monitoring module is used to monitor rainfall information through a rainfall sensing device.

[0114] The first shielding closing instruction generating module generates a shielding closing instruction carrying a shielding exit signal when the monitored rainfall information satisfies the second preset rainfall condition.

[0115] The first shielding release module is configured to send a shielding closing instruction to the driving controller, so that the driving controller releases the shielding operation on the capacitor switch signal based on the shielding exit signal.

[0116] Furthermore, a micro switch is provided on the vehicle door handle, and the micro switch is communicatively connected to the vehicle controller. The device further comprises:

[0117] Receiving module: used to receive the switch status information sent by the micro switch.

[0118] The second shielding instruction generating module is used to generate a shielding instruction when the switch state information is in the on state.

[0119] The second shielding processing module is used to send a shielding instruction to the driving controller, so that the driving controller performs shielding processing on the capacitor switch signal based on the shielding signal.

[0120] Furthermore, the device further comprises:

[0121] The second shielding closing instruction generating module is used to generate a shielding closing instruction when the switch state information is the closed state.

[0122] The second shielding release module is configured to send a shielding closing instruction to the driving controller, so that the driving controller releases the shielding operation on the capacitor switch signal based on the shielding exit signal.

[0123] Furthermore, the device further comprises:

[0124] The third shielding closing instruction generating module is used to generate a shielding closing instruction if the switch state information is closed when the rainfall information is parsed to meet the first preset rainfall condition and the switch state information is received.

[0125] The third shielding release module is configured to send a shielding closing instruction to the driving controller, so that the driving controller releases the shielding operation on the capacitor switch signal based on the shielding exit signal.

[0126] Furthermore, the device further comprises:

[0127] The third shielding instruction generating module is used to generate a shielding instruction if the switch status information is an open state when the rainfall information is parsed to meet the second preset rainfall condition and the switch status information is received.

[0128] The third shielding processing module is configured to send a shielding instruction to the driving controller, so that the driving controller performs shielding processing on the capacitor switch signal based on the shielding signal.

[0129] Regarding the apparatus in the above embodiment, the specific manner in which each module performs operations has been described in detail in the embodiment of the method, and will not be elaborated here.

[0130] An embodiment of the present application provides a vehicle door handle control device, which includes a processor and a memory, wherein the memory stores at least one instruction, at least one program, a code set or an instruction set, and the at least one instruction, the at least one program, the code set or the instruction set is loaded and executed by the processor to implement the vehicle door handle control method provided in the above-mentioned method embodiment.

[0131] The memory can be used to store software programs and modules. By running the software programs and modules stored in the memory, the processor can execute various functional applications and data processing. The memory mainly includes a program storage area and a data storage area. Among them, the program storage area can store the operating system, application programs required for functions, etc.; the data storage area can store data created according to the use of the device, etc. In addition, the memory can include high-speed random access memory and can also include non-volatile memory, such as at least one magnetic disk storage device, flash memory device, or other volatile solid-state storage devices. Accordingly, the memory can also include a memory controller to provide the processor with access to the memory.

[0132] The vehicle door handle control device can be a server. An embodiment of the present application also provides a schematic structural diagram of a server. Please refer to Figure 8 , and this server 800 is used to implement the data processing method provided in the above embodiment. This server 800 may vary greatly due to configuration or performance differences and may include one or more processors 810 (for example, one or more processors) and a memory 830, and one or more storage media 820 (for example, one or more mass storage devices) for storing application programs 823 or data 822. Among them, the memory 830 and the storage medium 820 can be transient storage or persistent storage. The program stored in the storage medium 820 can include one or more modules, and each module can include a series of instruction operations on the server. Further, the processor 810 can be set to communicate with the storage medium 820 and execute a series of instruction operations in the storage medium 820 on the server 800. The server 800 can also include one or more power supplies 860, one or more wired or wireless network interfaces 850, one or more input / output interfaces 840, and / or one or more operating systems 821, such as Windows ServerTM, Mac OS XTM, UnixTM, LinuxTM, FreeBSDTM, and so on.

[0133] An embodiment of the present application also provides a computer-readable storage medium. The storage medium can be arranged in the server to store at least one instruction, at least one segment of program, code set, or instruction set related to implementing a vehicle door handle control method in a method embodiment. The at least one instruction, the at least one segment of program, the code set, or the instruction set is loaded and executed by the processor to implement the vehicle door handle control method provided in the above method embodiment.

[0134] Each embodiment in this specification is described in a progressive manner. For the same or similar parts among the embodiments, reference can be made to each other, and each embodiment focuses on the differences from other embodiments. In particular, for the system and server embodiments, since they are basically similar to the method embodiments, the description is relatively simple, and for the relevant parts, reference can be made to the partial description of the method embodiments.

[0135] The above is only the specific implementation manner of the present application, but the protection scope of the present application is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present application can easily think of changes or substitutions, which should all be covered within the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.

Claims

1. A vehicle door handle control method is applied to a vehicle controller. A micro switch is provided on the vehicle door handle, and the micro switch is communicatively connected to the vehicle controller. It is characterized in that, The method comprises: In response to the rainfall information of the target vehicle's surrounding environment sent by the rain sensing device, the rainfall information is analyzed and processed; Receiving switch status information sent by the micro switch; When the rainfall information is parsed to satisfy a second preset rainfall condition and the switch state information is received, if the switch state information indicates an open state, generating a shielding instruction carrying a shielding signal of a capacitive switch signal, the capacitive switch signal being a signal for opening the vehicle door handle; The shielding instruction is sent to a driving controller, so that the driving controller performs shielding processing on the capacitive switch signal based on the shielding signal.

2. The vehicle door handle control method according to claim 1, wherein The method further comprises: When the switch state information indicates a closed state, generating a shielding closing instruction carrying a shielding exit signal; The shielding closing instruction is sent to the driving controller, so that the driving controller releases the shielding operation of the capacitive switch signal based on the exit shielding signal.

3. The vehicle door handle control method according to claim 1, wherein The method further comprises: When it is parsed that the rainfall information satisfies the first preset rainfall condition and the switch state information is received, if the switch state information indicates a closed state, generating a shielding closing instruction carrying a shielding exit signal; The shielding closing instruction is sent to the driving controller, so that the driving controller releases the shielding operation of the capacitive switch signal based on the exit shielding signal.

4. A vehicle door handle control device is applied to a vehicle controller. A micro switch is arranged on the vehicle door handle, and the micro switch is communicatively connected to the vehicle controller. It is characterized in that, The device comprises: An information analysis module is configured to analyze and process the rainfall information of the surrounding environment of the target vehicle in response to the rainfall information sent by the rainfall sensing device; Receiving module: used to receive the switch status information sent by the micro switch; a third shielding instruction generating module configured to, upon parsing that the rainfall information satisfies a second preset rainfall condition and receiving the switch state information, generate a shielding instruction carrying a shielding signal of a capacitive switch signal, if the switch state information indicates an open state, the capacitive switch signal being a signal for opening the vehicle door handle; The third shielding processing module is configured to send the shielding instruction to the driving controller, so that the driving controller performs shielding processing on the capacitor switch signal based on the shielding signal.

5. A vehicle door handle control system, characterized in that, The vehicle door handle control system includes a vehicle controller and a drive controller, wherein the vehicle controller is in communication with the drive controller, and a micro switch is provided on the vehicle door handle, wherein the micro switch is in communication with the vehicle controller; The vehicle controller is configured to analyze and process rainfall information of a target vehicle's surrounding environment in response to rainfall information transmitted by a rain sensing device; receive switch status information transmitted by the micro switch; and, upon determining that the rainfall information satisfies a second preset rainfall condition and receiving the switch status information, generate a shielding instruction including a shielding signal of a capacitive switch signal, if the switch status information indicates an open state, wherein the capacitive switch signal is a signal for opening the vehicle door handle; The driving controller is configured to receive the shielding instruction of the shielding signal carrying the capacitor switch signal, and perform shielding processing on the capacitor switch signal based on the shielding signal.

6. A vehicle door handle control device, characterized in that, The device includes a processor and a memory. At least one instruction, at least one program, a code set, or an instruction set is stored in the memory. The at least one instruction, the at least one program, the code set, or the instruction set is loaded and executed by the processor to implement the vehicle door handle control method according to any one of claims 1 to 3.

7. A computer-readable storage medium, characterized in that, At least one instruction or at least one program is stored in the storage medium. The at least one instruction or the at least one program is loaded and executed by the processor to implement the vehicle door handle control method according to any one of claims 1 to 3.

Citation Information

Patent Citations

  • KR20200137454A