Method, device and equipment for achieving vehicle control based on NFC key and medium

By intelligently identifying the vehicle unlocking method, the detection of the NFC module in the car is suppressed, and the vehicle is directly started and NFC certification is solved, and the problem of turning off wireless charging in NFC key certification is achieved, achieving convenient vehicle startup and charging.

CN120412129APending Publication Date: 2025-08-01DONGFENG MOTOR GRP
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Patent Information

Application Number
CN202510555923.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-29
Publication Date
2025-08-01

AI Technical Summary

Technical Problem

In the prior art, the NFC key authentication function requires the wireless charging function to be turned off first, resulting in poor user experience and low intelligence, making it difficult to achieve convenient vehicle start-up control.

Method used

By judging the vehicle unlocking method, the detection operation of the NFC module in the vehicle is suppressed, the vehicle starts directly, and the vehicle starts is performed in the NFC mode, and the wireless charging function is maintained while the vehicle starts.

Benefits of technology

It improves the intelligence level of NFC key detection, simplifies user operations, improves user experience, and achieves the consideration of fast vehicle start-up and wireless charging.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a method, a device, equipment and a medium for realizing vehicle control based on an NFC (Near Field Communication) key, and relates to the technical field of vehicle intelligent control, the method comprises the following steps: judging whether a vehicle currently executes an unlocking operation based on an NFC module outside the vehicle: if so, inhibiting an NFC detection operation of an NFC module inside the vehicle, and executing a vehicle starting operation at the same time; and if not, vehicle starting operation is executed according to detection of the in-vehicle NFC module on the out-vehicle NFC module. And the NFC control module monitors the outside-vehicle NFC module in real time and compares the received authentication request information with the identity information stored in the NFC control module for authentication when receiving the authentication request information sent by the outside-vehicle NFC module, and if the authentication is passed, vehicle unlocking operation is executed. Starting control of the vehicle is achieved based on the unlocking mode of the vehicle, the charging requirement of the vehicle-mounted wireless charging device is met while quick starting of the vehicle is met, and starting control over the vehicle through the NFC key is effectively achieved.
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Description

Technical Field

[0001] This application relates to the field of vehicle intelligent control technology, and particularly relates to a method, device, equipment and medium for realizing vehicle control based on an NFC key. Background Art

[0002] With the development of electronic technology, portable electronic products are widely used. As an indispensable part of people's daily life, cars are trending towards establishing NFC (Near Field Communication) and wireless charging inside the vehicle. NFC is a short-range high-frequency wireless communication technology that allows non-contact point-to-point data transmission and exchange between electronic devices. Compared with traditional short-range communications such as Bluetooth and infrared, NFC has a faster connection establishment speed and higher security.

[0003] Currently, in the field of automotive electronics, an NFC card reader is generally integrated into a wireless charger to support wireless charging of NFC mobile phones and quick authentication of NFC mobile phones. Specifically, for the existing in-vehicle NFC key control method, based on an NFC key detection request sent by the vehicle, the in-vehicle wireless charging device switches to the NFC mode. In the NFC mode, the in-vehicle wireless charging device performs NFC key polling authentication. When the authentication is completed, the in-vehicle wireless charging device provides an NFC key authentication result to instruct the vehicle to execute services corresponding to the driving scenario and exits the NFC mode. As long as the vehicle meets a specific driving scenario, it can trigger the in-vehicle wireless charging device to switch to the NFC mode for NFC key authentication to achieve NFC key detection.

[0004] However, wireless chargers generally focus on wireless charging functions. To enable their NFC authentication function, the wireless charging function needs to be turned off first and then the NFC authentication function is started. For drivers, NFC key authentication is not convenient and has low intelligence, resulting in a poor user experience. Therefore, how to effectively realize vehicle start control based on an NFC key has become an urgent problem to be solved currently. Summary of the Invention

[0005] This application provides a method, device, equipment and medium for realizing vehicle control based on an NFC key, which realizes vehicle start control based on the vehicle unlocking method, meets the charging requirements of the in-vehicle wireless charging device while satisfying the quick start of the vehicle, and effectively realizes the start control of the vehicle by the NFC key.

[0006] In a first aspect, an embodiment of this application provides a method for realizing vehicle control based on an NFC key. The method for realizing vehicle control based on an NFC key includes:

[0007] Determine whether the vehicle is currently unlocked based on the operation of the external NFC module:

[0008] If so, inhibit the NFC detection operation of the in-vehicle NFC module and perform the vehicle start-up operation simultaneously;

[0009] If not, perform the vehicle start-up operation according to the detection of the external NFC module by the in-vehicle NFC module.

[0010] Combined with the first aspect, in one embodiment, before determining whether the vehicle is currently unlocked based on the operation of the external NFC module, it further includes:

[0011] The NFC control module monitors the external NFC module in real time, and when receiving the authentication request information sent by the external NFC module, compares the received authentication request information with the identity information stored in itself for authentication:

[0012] If the authentication is passed, perform the vehicle unlocking operation;

[0013] If the authentication fails, do nothing.

[0014] Combined with the first aspect, in one embodiment, the inhibiting the NFC detection operation of the in-vehicle NFC module and performing the vehicle start-up operation simultaneously specifically includes:

[0015] The NFC control module generates an instruction to inhibit the in-vehicle NFC module from detecting the external NFC module, and simultaneously generates an authentication passed signal of the external NFC module and sends it to the body control module;

[0016] The body control module determines whether the preconditions for vehicle start-up are met, and starts the vehicle when the preconditions for vehicle start-up are met.

[0017] Combined with the first aspect, in one embodiment, before generating the authentication passed signal of the external NFC module and sending it to the body control module, it further includes:

[0018] Determine whether the external NFC module moves from outside the vehicle to inside the vehicle within a preset time after the vehicle is unlocked:

[0019] If so, generate an authentication passed signal of the external NFC module and send it to the body control module;

[0020] If not, do nothing.

[0021] Combined with the first aspect, in one embodiment, the NFC control module generates an instruction to inhibit the in-vehicle NFC module from detecting the external NFC module, specifically including:

[0022] The NFC control module controls the vehicle to enter the NFC mode and generates an instruction to suppress the detection of the external NFC module by the internal NFC module of the vehicle, and the instruction is valid during the current power-on cycle of the vehicle.

[0023] In conjunction with the first aspect, in one implementation, in NFC mode:

[0024] If the in-vehicle wireless charging device where the NFC module is located is currently in standby mode, it switches from standby mode to charging mode when sensing a wireless charging device to wirelessly charge the wireless charging device;

[0025] If the in-vehicle wireless charging device where the NFC module is located is currently in charging mode, when the external NFC module is close to the in-vehicle wireless charging device, the in-vehicle wireless charging device continues to maintain the charging mode to wirelessly charge the wireless charging device.

[0026] In conjunction with the first aspect, in one embodiment, performing the vehicle startup operation based on the detection of the external NFC module by the internal NFC module specifically includes:

[0027] The NFC control module initiates an authentication request to the in-car NFC module and determines whether the in-car NFC module detects the external NFC module within the set time:

[0028] If so, identity authentication is performed based on the authentication request information sent by the external NFC module, and after the authentication is passed, the vehicle is started when the vehicle start preconditions are met;

[0029] If not, no action will be taken.

[0030] In a second aspect, an embodiment of the present application provides a device for implementing vehicle control based on an NFC key, wherein the device for implementing vehicle control based on an NFC key includes:

[0031] a determination module, configured to determine whether the vehicle is currently unlocked based on an off-vehicle NFC module, and if so, to activate the first execution module; if not, to activate the second execution module;

[0032] a first execution module, configured to suppress an NFC detection operation of an in-vehicle NFC module and simultaneously execute a vehicle startup operation;

[0033] The second execution module is configured to execute a vehicle startup operation according to the detection of the external NFC module by the internal NFC module.

[0034] In a third aspect, an embodiment of the present application provides a device for vehicle control based on an NFC key. The device for vehicle control based on an NFC key includes a processor, a memory, and a program for vehicle control based on an NFC key stored on the memory and executable by the processor. When the program for vehicle control based on an NFC key is executed by the processor, the steps of the method for vehicle control based on an NFC key described above are implemented.

[0035] In a fourth aspect, an embodiment of the present application provides a computer-readable storage medium with a program for vehicle control based on an NFC key stored thereon. When the program for vehicle control based on an NFC key is executed by a processor, the steps of the method for vehicle control based on an NFC key described above are implemented.

[0036] The beneficial effects brought by the technical solutions provided in the embodiments of the present application include:

[0037] By intelligently identifying the vehicle unlocking method, it is possible to trigger the in-vehicle wireless charging device to switch to the NFC mode for NFC key authentication and then start the vehicle, or directly start the vehicle and continue to maintain the charging mode of the in-vehicle wireless charging device, effectively improving the intelligent level of NFC key detection, making the in-vehicle NFC key detection more convenient, and improving the user experience. BRIEF DESCRIPTION OF THE DRAWINGS

[0038] Figure 1 is a schematic flowchart of the method for vehicle control based on an NFC key in the present application;

[0039] Figure 2 is a logical relationship diagram of related components;

[0040] Figure 3 is a schematic diagram of the functional modules of the device for vehicle control based on an NFC key in the present application;

[0041] Figure 4 is a schematic diagram of the hardware structure of the device for vehicle control based on an NFC key in the present application. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0042] In order to enable those skilled in the art to better understand the solutions of the present application, 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 without creative efforts based on the embodiments in the present application belong to the scope of protection of the present application.

[0043] To make the objectives, technical solutions, and advantages of this application more clear, the following will further describe the embodiments of this application in detail with reference to the accompanying drawings.

[0044] In a first aspect, an embodiment of this application provides a method for implementing vehicle control based on an NFC key, which realizes start control of the vehicle based on the unlocking method of the vehicle, meets the charging requirements of the in-vehicle wireless charging device while enabling the vehicle to start quickly.

[0045] In one embodiment, referring to Figure 1 , Figure 1 is a schematic flowchart of the method for implementing vehicle control based on an NFC key in this application. As Figure 1 shown, the method for implementing vehicle control based on an NFC key includes:

[0046] S1: Determine whether the vehicle is currently unlocked based on the out-of-vehicle NFC module. If so, go to S2; if not, go to S3.

[0047] S2: Suppress the NFC detection operation of the in-vehicle NFC module and simultaneously perform the vehicle start operation.

[0048] S3: Perform the vehicle start operation according to the detection of the out-of-vehicle NFC module by the in-vehicle NFC module.

[0049] Specifically, when the vehicle is currently unlocked based on the out-of-vehicle NFC module, after the driver enters the vehicle, there is no need to detect and sense the out-of-vehicle NFC module through the in-vehicle NFC module, and the vehicle can be directly started. At the same time, the NFC detection operation of the in-vehicle NFC module will be suppressed at this time, that is, the in-vehicle NFC module cannot sense the out-of-vehicle NFC module or other NFC modules at this time, and the in-vehicle wireless charging device where the in-vehicle NFC module is located can only perform wireless charging operations; when the vehicle is currently unlocked based on the vehicle key radio frequency method or other methods, after the driver enters the vehicle, the in-vehicle NFC module needs to detect and sense the out-of-vehicle NFC module before the vehicle can be started. It should be noted that the out-of-vehicle NFC module generally follows the driver, so when the driver enters the vehicle, the out-of-vehicle NFC module also enters the vehicle together.

[0050] It should be noted that the out-of-vehicle NFC module can be an NFC card key or integrated as part of the vehicle key in the vehicle key. The out-of-vehicle NFC module is used for identity authentication based on the NFC authentication method to realize operations such as vehicle unlocking and vehicle starting. The in-vehicle NFC module is integrated in the in-vehicle wireless charging device and is used to sense the out-of-vehicle NFC module or other NFC modules for identity authentication to realize the vehicle start operation.

[0051] Further, in one embodiment, before determining whether the vehicle is currently unlocked based on the operation of the external NFC module, the following steps are also included:

[0052] The NFC control module monitors the external NFC module in real time. When receiving the authentication request information sent by the external NFC module, it compares the received authentication request information with the identity information stored in itself for authentication:

[0053] If the authentication is passed, the vehicle unlocking operation is performed;

[0054] If the authentication fails, no action is taken.

[0055] Specifically, the NFC control module monitors the external NFC module in real time. When the driver fits or approaches the external NFC module to a specific part of the vehicle, the NFC control module controls the induction of the external NFC module, and the NFC control module will receive the authentication request information sent by the external NFC module. The NFC control module compares the received authentication request information with the identity information stored in itself. If they are consistent, it means the authentication is passed and the vehicle unlocking operation is performed. If they are inconsistent, it means the authentication fails, and no action or reminder action is taken. The NFC control module is located inside the vehicle and is composed of an MCU processing unit, a communication module, a power supply module, a secure storage module, etc. The NFC control module is used to perform operations such as induction control of the external NFC module and the internal NFC module, identity authentication, vehicle unlocking control, and vehicle start control.

[0056] In a possible real-time mode, after the vehicle unlocking operation is achieved based on the external NFC module, the NFC control module generates a first control instruction, which is used to instruct the vehicle to execute the service corresponding to the driving scenario. That is, after the vehicle unlocking operation is achieved based on the external NFC module, if the driver enters the vehicle within the preset time, the vehicle can be directly started without the internal NFC module detecting and inducing the external NFC module.

[0057] Further, in one embodiment, suppressing the NFC detection operation of the internal NFC module while performing the vehicle start operation specifically includes:

[0058] S201: The NFC control module generates an instruction to suppress the internal NFC module from detecting the external NFC module, and at the same time generates an authentication passed signal for the external NFC module and sends it to the body control module;

[0059] S202: The body control module determines whether the vehicle start preconditions are met and starts the vehicle when the vehicle start preconditions are met.

[0060] Specifically, the NFC control module generates an instruction to inhibit the in-vehicle NFC module from detecting the out-of-vehicle NFC module. At this time, the in-vehicle NFC module no longer detects the out-of-vehicle NFC module or other NFC modules, and the charging operation of the in-vehicle wireless charging device where the in-vehicle NFC module is located will not be interrupted. The NFC control module generates an authentication passed signal for the out-of-vehicle NFC module and sends it to the body control module. When the body control module receives the authentication passed signal for the out-of-vehicle NFC module, there is no need to detect and sense the out-of-vehicle NFC module through the in-vehicle NFC module anymore. When the preconditions for vehicle startup are met, the vehicle can be directly started. The preconditions for vehicle startup include the presence of a brake signal, the vehicle being in the P gear, and the vehicle not being started currently, etc.

[0061] Further, before generating the authentication passed signal for the out-of-vehicle NFC module and sending it to the body control module, it further includes:

[0062] Determine whether the out-of-vehicle NFC module moves from outside the vehicle to inside the vehicle within a preset time after the vehicle is unlocked:

[0063] If so, generate an authentication passed signal for the out-of-vehicle NFC module and send it to the body control module;

[0064] If not, do nothing.

[0065] Specifically, after unlocking the vehicle based on the out-of-vehicle NFC module, if the out-of-vehicle NFC module moves from outside the vehicle to inside the vehicle within the preset time, then generate an authentication passed signal for the out-of-vehicle NFC module and send it to the body control module, so that there is no need to detect and sense the out-of-vehicle NFC module through the in-vehicle NFC module anymore, and the vehicle can be directly started. That is, after unlocking the vehicle based on the out-of-vehicle NFC module, if the driver performs an opening operation and enters the vehicle, then subsequent operations are carried out. On the contrary, if the out-of-vehicle NFC module does not move from outside the vehicle to inside the vehicle within the preset time, it means that the driver does not perform an opening operation to enter the vehicle. At this time, no subsequent operations are required, and the vehicle is locked again after a certain time.

[0066] Further, in one embodiment, the NFC control module generates an instruction to inhibit the in-vehicle NFC module from detecting the out-of-vehicle NFC module, specifically including: the NFC control module controls the vehicle to enter the NFC mode and generates an instruction to inhibit the in-vehicle NFC module from detecting the out-of-vehicle NFC module, and the instruction is valid within the current power-on cycle of the vehicle. That is, within the current power-on cycle of the vehicle, the in-vehicle NFC module no longer detects the out-of-vehicle NFC module or other NFC modules, and the charging operation of the in-vehicle wireless charging device where the in-vehicle NFC module is located will not be interrupted by the out-of-vehicle NFC module or other NFC modules.

[0067] Further, in one embodiment, in the NFC mode:

[0068] If the in-vehicle wireless charging device where the in-vehicle NFC module is located is currently in the standby mode, when a wireless charging device is detected, it switches from the standby mode to the charging mode to wirelessly charge the wireless charging device.

[0069] If the in-vehicle wireless charging device where the in-vehicle NFC module is located is currently in the charging mode, when the out-vehicle NFC module approaches the in-vehicle wireless charging device, the in-vehicle wireless charging device continues to maintain the charging mode to wirelessly charge the wireless charging device.

[0070] Specifically, after unlocking the vehicle based on the out-vehicle NFC module, for the in-vehicle wireless charging device where the in-vehicle NFC module is located, if the in-vehicle wireless charging device is currently in the standby mode, when a wireless charging device is detected, it switches from the standby mode to the charging mode to wirelessly charge the wireless charging device; if the in-vehicle wireless charging device is currently in the charging mode, when the out-vehicle NFC module or other NFC modules approach or are attached to the in-vehicle wireless charging device, the working state of the in-vehicle wireless charging device will not be interrupted, and the in-vehicle wireless charging device continues to maintain the charging mode to wirelessly charge the wireless charging device.

[0071] Further, in one embodiment, the vehicle start operation is performed according to the detection of the out-vehicle NFC module by the in-vehicle NFC module, which specifically includes:

[0072] The NFC control module sends an authentication request to the in-vehicle NFC module and determines whether the in-vehicle NFC module detects the out-vehicle NFC module within a set time:

[0073] If so, identity authentication is performed based on the authentication request information sent by the out-vehicle NFC module, and when the preconditions for vehicle start are met after successful authentication, the vehicle is started;

[0074] If not, no action is taken.

[0075] Specifically, after unlocking the vehicle based on the vehicle key radio frequency method or other methods, the NFC control module sends an authentication request to the in-vehicle NFC module to monitor the in-vehicle NFC module's detection of the out-vehicle NFC module. When the in-vehicle NFC module detects the out-vehicle NFC module within the set time, the in-vehicle NFC module sends the authentication request information sent by the out-vehicle NFC module to the NFC control module. The NFC control module compares and authenticates the received authentication request information with the identity information stored in itself. If the authentication is successful, when the preconditions for vehicle start are met, the vehicle start operation can be performed. That is, in the case where the vehicle is unlocked based on a non-out-vehicle NFC module, before starting the vehicle, the in-vehicle NFC module needs to detect the out-vehicle NFC module and perform identity authentication based on the authentication request information sent by the out-vehicle NFC module, and then the vehicle can be started when the preconditions for vehicle start are met.

[0076] Further, for the logical relationship among the external vehicle NFC module, the internal vehicle NFC module, the NFC control module, and the body control module in this application, see Figure 2 As shown, the NFC control module establishes a logical connection with the external vehicle NFC module and the internal vehicle NFC module through a private CANFD bus, and establishes a logical connection with the body control module through a public CAN bus.

[0077] The method for realizing vehicle control based on the NFC key in the embodiment of this application can trigger the in-vehicle wireless charging device to switch to the NFC mode for NFC key authentication and then start the vehicle by intelligently identifying the vehicle unlocking method, or directly start the vehicle and continue to maintain the charging mode of the in-vehicle wireless charging device, effectively improving the intelligent level of NFC key detection, making the detection of the in-vehicle NFC key more convenient, and improving the user experience.

[0078] In a second aspect, the embodiment of this application further provides a device for realizing vehicle control based on the NFC key.

[0079] In one embodiment, referring to Figure 3 , Figure 3 is a schematic diagram of the functional modules of the device for realizing vehicle control based on the NFC key in this application. As Figure 3 shown, the device for realizing vehicle control based on the NFC key includes: a judgment module, a first execution module, and a second execution module.

[0080] The judgment module is used to judge whether the vehicle is currently performing an unlocking operation based on the external vehicle NFC module. If so, it drives the first execution module to work; if not, it drives the second execution module to work. The first execution module is used to inhibit the NFC detection operation of the internal vehicle NFC module and at the same time perform the vehicle start operation. The second execution module is used to perform the vehicle start operation according to the detection of the external vehicle NFC module by the internal vehicle NFC module.

[0081] In a third aspect, the embodiment of this application provides a device for realizing vehicle control based on the NFC key. The device for realizing vehicle control based on the NFC key can be a device with data processing functions such as a personal computer (PC), a laptop computer, a server, etc.

[0082] Referring to Figure 4 , Figure 4 is a schematic diagram of the hardware structure of the device for realizing vehicle control based on the NFC key involved in the embodiment of this application. In the embodiment of this application, the device for realizing vehicle control based on the NFC key may include a processor, a memory, a communication interface, and a communication bus.

[0083] Among them, the communication bus can be of any type and is used to interconnect the processor, the memory, and the communication interface.

[0084] The communication interface includes input / output (I / O) interfaces, physical interfaces, and logical interfaces, etc., which are used to interconnect the components inside the device for implementing vehicle control based on the NFC key, and interfaces for interconnecting the device for implementing vehicle control based on the NFC key with other devices (such as other computing devices or user devices). The physical interface can be an Ethernet interface, a fiber optic interface, an ATM interface, etc.; the user device can be a display, a keyboard, etc.

[0085] The memory can be various types of storage media, such as random access memory (RAM), read-only memory (ROM), non-volatile RAM (NVRAM), flash memory, optical memory, hard disk, programmable ROM (PROM), erasable PROM (EPROM), electrically erasable PROM (EEPROM), etc.

[0086] The processor can be a general-purpose processor, and the general-purpose processor can call the program for implementing vehicle control based on the NFC key stored in the memory and execute the method for implementing vehicle control based on the NFC key provided in the embodiments of the present application. For example, the general-purpose processor can be a central processing unit (CPU). Among them, the method executed when the program for implementing vehicle control based on the NFC key is called can refer to the various embodiments of the method for implementing vehicle control based on the NFC key in the present application, which will not be elaborated here.

[0087] Those skilled in the art can understand that Figure 4 the hardware structure shown in

[0088] does not constitute a limitation to the present application and may include more or fewer components than shown in the figure, or combine certain components, or have a different component layout.

[0089] The computer-readable storage medium of the present application stores a program for implementing vehicle control based on the NFC key. When the program for implementing vehicle control based on the NFC key is executed by a processor, the steps of the method for implementing vehicle control based on the NFC key as described above are implemented.

[0090] Among them, when the program for implementing vehicle control based on the NFC key is executed, the implemented method can refer to the various embodiments of the method for implementing vehicle control based on the NFC key in this application, which will not be elaborated here.

[0091] In the description of the embodiments of this application, the terms "including" and "having" and any variations thereof in the specification, claims, and the above-mentioned drawings are intended to cover non-exclusive inclusion. For example, a process, method, system, product, or device that includes a series of steps or units is not limited to the listed steps or units, but optionally further includes steps or units not listed, or optionally further includes other steps or units inherent to these processes, methods, products, or devices. The descriptions such as "first", "second", and "third" are used to distinguish different objects, etc., and do not represent a sequential order, nor do they limit that "first", "second", and "third" are different types.

[0092] In the description of the embodiments of this application, "exemplary", "for example", or "for instance" are used to indicate examples, illustrations, or explanations. Any embodiment or design solution described as "exemplary", "for example", or "for instance" in the embodiments of this application should not be construed as being more preferred or having more advantages than other embodiments or design solutions. Rather, the use of words such as "exemplary", "for example", or "for instance" is intended to present relevant concepts in a specific manner.

[0093] In the description of the embodiments of this application, unless otherwise specified, " / " means "or". For example, A / B can mean A or B; "and / or" in the text is merely a description of the association relationship of associated objects, indicating that there can be three relationships. For example, A and / or B can mean: A exists alone, A and B exist simultaneously, and B exists alone. Additionally, in the description of the embodiments of this application, "a plurality of" means two or more than two.

[0094] In some processes described in the embodiments of this application, a plurality of operations or steps appear in a specific order. However, it should be understood that these operations or steps may not be executed in the order in which they appear in the embodiments of this application or may be executed in parallel. The serial numbers of the operations are only used to distinguish different operations, and the serial numbers themselves do not represent any execution order. Additionally, these processes may include more or fewer operations, and these operations or steps may be executed in sequence or in parallel, and these operations or steps may be combined.

[0095] Through the description of the above embodiments, those skilled in the art can clearly understand that the above-described embodiment methods can be implemented by means of software plus a necessary general hardware platform. Of course, they can also be implemented by hardware, but in many cases the former is a better implementation. Based on such an understanding, the technical solution of the present application, in essence, or the part that contributes to the prior art can be embodied in the form of a software product. This computer software product is stored in a storage medium (such as ROM / RAM, magnetic disk, optical disk) as described above and includes several instructions for causing a terminal device to execute the methods described in various embodiments of the present application.

[0096] The above are only the preferred embodiments of the present application, and do not limit the patent scope of the present application. Any equivalent structure or equivalent process transformation made by using the content of the specification and drawings of the present application, or directly or indirectly applied in other related technical fields, shall be equally included in the patent protection scope of the present application.

Claims

1. A method for realizing vehicle control based on an NFC key, characterized in that The method for realizing vehicle control based on an NFC key includes: Determine whether the vehicle is currently unlocked based on the operation of the external NFC module: If so, inhibit the NFC detection operation of the in-vehicle NFC module and simultaneously perform the vehicle start-up operation; If not, perform the vehicle start-up operation according to the detection of the external NFC module by the in-vehicle NFC module.

2. The method for implementing vehicle control based on an NFC key as claimed in claim 1, wherein, Before determining whether the vehicle is currently unlocked based on the operation of the external NFC module, it further includes: The NFC control module monitors the external NFC module in real time, and when receiving the authentication request information sent by the external NFC module, compares and authenticates the received authentication request information with the identity information stored in itself: If the authentication is passed, perform the vehicle unlocking operation; If the authentication fails, do nothing.

3. The method for realizing vehicle control based on an NFC key according to claim 2, wherein The inhibition of the NFC detection operation of the in-vehicle NFC module and the simultaneous performance of the vehicle start-up operation specifically include: The NFC control module generates an instruction for inhibiting the in-vehicle NFC module from detecting the external NFC module, and simultaneously generates an authentication passed signal of the external NFC module and sends it to the body control module; The body control module determines whether the preconditions for vehicle start-up are met, and starts the vehicle when the preconditions for vehicle start-up are met.

4. The method for implementing vehicle control based on an NFC key according to claim 3, wherein, Before generating the authentication passed signal of the external NFC module and sending it to the body control module, it further includes: Determine whether the external NFC module moves from outside the vehicle to inside the vehicle within a preset time after the vehicle is unlocked: If so, generate an authentication passed signal of the external NFC module and send it to the body control module; If not, do nothing.

5. The method for realizing vehicle control based on an NFC key according to claim 3, characterized in that, The NFC control module generates an instruction for inhibiting the in-vehicle NFC module from detecting the external NFC module, specifically including: The NFC control module controls the vehicle to enter the NFC mode, generates an instruction for inhibiting the in-vehicle NFC module from detecting the external NFC module, and the instruction is valid within the current power-on cycle of the vehicle.

6. The method for implementing vehicle control based on an NFC key as claimed in claim 5, wherein In the NFC mode: If the in-vehicle wireless charging device where the in-vehicle NFC module is located is currently in the standby mode, when detecting a wireless charging device, switch from the standby mode to the charging mode to perform wireless charging on the wireless charging device; If the in-vehicle wireless charging device where the in-vehicle NFC module is located is currently in the charging mode, when the external NFC module approaches the in-vehicle wireless charging device, the in-vehicle wireless charging device continues to maintain the charging mode to perform wireless charging on the wireless charging device.

7. The method for realizing vehicle control based on an NFC key according to claim 1, characterized in that, The execution of the vehicle start-up operation according to the detection of the external NFC module by the in-vehicle NFC module specifically includes: The NFC control module sends an authentication request to the in-vehicle NFC module and determines whether the in-vehicle NFC module detects the external NFC module within a set time: If so, perform identity authentication based on the authentication request information sent by the external NFC module, and start the vehicle when the preconditions for vehicle start-up are met after the authentication is passed; If not, do nothing.

8. A device for realizing vehicle control based on an NFC key, characterized in that, The device for realizing vehicle control based on an NFC key includes: A judgment module, which is used to judge whether the vehicle is currently unlocked based on the operation of the external NFC module. If so, drive the first execution module to work; if not, drive the second execution module to work; The first execution module is used to inhibit the NFC detection operation of the in-vehicle NFC module and simultaneously execute the vehicle starting operation; The second execution module is used to execute the vehicle starting operation according to the detection of the out-vehicle NFC module by the in-vehicle NFC module.

9. A device for implementing vehicle control based on an NFC key, characterized in that, The device for realizing vehicle control based on an NFC key includes a processor, a memory, and a program for realizing vehicle control based on an NFC key stored on the memory and executable by the processor. When the program for realizing vehicle control based on an NFC key is executed by the processor, the steps of the method for realizing vehicle control based on an NFC key according to any one of claims 1 to 7 are realized.

10. A computer-readable storage medium, characterized in that, A program for realizing vehicle control based on an NFC key is stored on the computer-readable storage medium. When the program for realizing vehicle control based on an NFC key is executed by a processor, the steps of the method for realizing vehicle control based on an NFC key according to any one of claims 1 to 7 are realized.