NFC (Near Field Communication) service processing method, device and equipment for off-line intelligent wearable equipment

By combining automatic switching of NFC card readers and short-distance wireless communication on offline smart wearable devices, the problem that smart watches and other devices are difficult to realize NFC payments when offline, and convenient and low-energy NFC service processing is achieved.

CN119996984AActive Publication Date: 2025-05-13ALIPAY (HANGZHOU) INFORMATION TECH CO LTD

Patent Information

Application Number
CN202510243362.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-10-28
Publication Date
2025-05-13
Estimated Expiration
2044-10-28

AI Technical Summary

Technical Problem

The prior art is difficult to implement convenient NFC payment solutions on offline smart wearable devices such as smart watches, especially when the device is offline and energy consumption is limited.

Method used

The automatic switching function of the NFC card reader is realized on offline smart wearable devices, combined with short-distance wireless communication methods, such as Bluetooth, to complete NFC service processing. The specific steps include: receiving NFC service trigger instructions on the device, switching the NFC card reader to the open state, reading the target NFC device information, writing back the user information, and completing the service execution through a short-distance wireless communication connection.

Benefits of technology

It realizes the completion of NFC payment and other services on offline smart wearable devices, improves user experience, reduces energy consumption, and improves the application flexibility of the device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The embodiment of the invention discloses an offline intelligent wearable device NFC service processing scheme. Comprising the following steps: controlling an NFC card reader on the offline intelligent wearable equipment to be in a closed state; receiving an NFC service triggering instruction; entering a specified service application, and automatically switching the NFC card reader from a closed state to an open state through the specified service application; the target information is read from the target NFC machine tool through the NFC card reader in the open state, and the user information of the offline intelligent wearable device is written back to the target NFC machine tool, so that the target NFC machine tool interacts with the server side of the specified service application according to the user information and executes the corresponding target service; according to the target information, short-distance wireless communication connection with the target NFC machine tool is established, an execution result of the target service returned by the target NFC machine tool is received, and the maximum communication distance corresponding to the short-distance wireless communication connection is larger than the NFC communication distance of the target NFC machine tool.
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Description

[0001] This application is a divisional application of the invention patent application submitted to the China Patent Office on October 28, 2024, with application number 202411514802.4 and invention name "Offline smart wearable device NFC business processing method, device and equipment". The full text of the application is incorporated into this application by reference. Technical Field

[0002] The present invention relates to the field of near field communication technology, and in particular to a method, device and equipment for processing NFC services of an offline smart wearable device. Background Art

[0003] With the development of Internet technology and the popularization of smart phones, more and more business can be conducted through corresponding applications on smart phones, bringing great convenience to people's lives.

[0004] For business areas such as payment, QR codes are now widely used. However, in actual applications, for some users or in some scenarios, payment based on QR codes also requires relatively cumbersome operations. With the increase in mobile terminals with near-field communication (NFC) functions, especially smart phones, many smart phones support NFC payment methods. Specifically, the smart phone remains in card simulation mode and simulates itself as an NFC card for reading by NFC machines for payment. Alternatively, the smart phone remains in card reader mode and monitors whether there are NFC machines or NFC cards for payment nearby. During the process, the smart phone needs to interact with the server online to complete the business.

[0005] In addition to the popularity of smartphones, some offline smart wearable devices are also increasing, mainly smart watches. In order to enable smart watches to support payment, some payment service providers directly use the payment solutions on smartphones on smart watches.

[0006] Compared with smartphones, smartwatches are often offline, and there are also differences in energy consumption, screen size, etc. Based on this, a payment solution that is more suitable for offline smartwatches is needed. Summary of the invention

[0007] One or more embodiments of this specification provide an offline smart wearable device NFC service processing method, apparatus, and device to solve the following technical problem: a payment solution more suitable for offline smart watches is needed.

[0008] To solve the above technical problems, one or more embodiments of this specification are implemented as follows:

[0009] One or more embodiments of this specification provide an offline smart wearable device NFC service processing method, which is applied to an offline smart wearable device. The method includes:

[0010] Controlling the NFC card reader on the offline smart wearable device to be in a closed state;

[0011] In the closed state, receiving an NFC service trigger instruction for the offline smart wearable device;

[0012] In response to the NFC service trigger instruction, enter a designated service application on the offline smart wearable device, and automatically switch the NFC card reader from the closed state to the open state through the designated service application;

[0013] After the offline smart wearable device is close to the target NFC device, the target information is read from the target NFC device through the NFC card reader in the open state, and the user information of the offline smart wearable device is written back to the target NFC device, so that the target NFC device interacts with the server of the designated business application according to the user information and executes the corresponding target business;

[0014] Based on the target information, a short-range wireless communication connection is established with the target NFC device, and through the short-range wireless communication connection, the execution result of the target business returned by the target NFC device is received, so that the designated business application obtains the execution result, wherein the maximum communication distance corresponding to the short-range wireless communication connection is greater than the NFC communication distance of the target NFC device.

[0015] Another offline smart wearable device NFC service processing method provided in one or more embodiments of this specification is applied to a target NFC device, and the method includes:

[0016] When the offline smart wearable device is close to the target NFC device, the NFC card reader on the offline smart wearable device reads the target information from the target NFC device, and then receives the user information written back by the offline smart wearable device, wherein the offline smart wearable device enters the designated service application on the offline smart wearable device in response to the NFC service trigger instruction, and automatically switches the NFC card reader from the closed state to the open state through the designated service application;

[0017] According to the user information, interact with the server of the specified business application to execute the corresponding target business;

[0018] According to the target information, a short-range wireless communication connection is established with the offline smart wearable device, and the execution result of the target service is returned to the offline smart wearable device through the short-range wireless communication connection, so that the designated service application obtains the execution result, wherein the maximum communication distance corresponding to the short-range wireless communication connection is greater than the NFC communication distance of the target NFC device.

[0019] One or more embodiments of this specification provide an offline smart wearable device NFC service processing device, which is applied to an offline smart wearable device, and the device includes:

[0020] A control module controls the NFC card reader on the offline smart wearable device to be in a closed state;

[0021] A receiving module, in the closed state, receiving an NFC service trigger instruction for the offline smart wearable device;

[0022] a switching module, in response to the NFC service triggering instruction, entering a designated service application on the offline smart wearable device, and automatically switching the NFC card reader from the closed state to the open state through the designated service application;

[0023] A reading module, after the offline smart wearable device is close to a target NFC device, reads target information from the target NFC device through the NFC card reader in the open state, and writes back the user information of the offline smart wearable device to the target NFC device, so that the target NFC device interacts with the server of the designated business application according to the user information and executes the corresponding target business;

[0024] The connection module establishes a short-range wireless communication connection with the target NFC device according to the target information, and receives the execution result of the target business returned by the target NFC device through the short-range wireless communication connection, so that the designated business application obtains the execution result, wherein the maximum communication distance corresponding to the short-range wireless communication connection is greater than the NFC communication distance of the target NFC device.

[0025] One or more embodiments of this specification provide an offline smart wearable device NFC service processing device, which is applied to a target NFC device, and the device includes:

[0026] A receiving module, after the offline smart wearable device approaches the target NFC device to read the target information from the target NFC device through the NFC card reader in the turned-on state on the offline smart wearable device, receives the user information written back by the offline smart wearable device, wherein the offline smart wearable device enters the designated service application on the offline smart wearable device in response to the NFC service trigger instruction, and automatically switches the NFC card reader from the turned-off state to the turned-on state through the designated service application;

[0027] An execution module, which interacts with the server of the specified business application according to the user information and executes the corresponding target business;

[0028] The connection module connects to the offline smart wearable device through short-range wireless communication according to the target information, and returns the execution result of the target service to the offline smart wearable device through the short-range wireless communication connection, so that the designated service application obtains the execution result, wherein the maximum communication distance corresponding to the short-range wireless communication connection is greater than the NFC communication distance of the target NFC device.

[0029] One or more embodiments of this specification provide an offline smart wearable device NFC service processing device, which is applied to an offline smart wearable device, and the device includes:

[0030] at least one processor; and,

[0031] a memory communicatively connected to the at least one processor; wherein,

[0032] The memory stores instructions executable by the at least one processor, the instructions being executed by the at least one processor to enable the at least one processor to execute:

[0033] Controlling the NFC card reader on the offline smart wearable device to be in a closed state;

[0034] In the closed state, receiving an NFC service trigger instruction for the offline smart wearable device;

[0035] In response to the NFC service trigger instruction, enter a designated service application on the offline smart wearable device, and automatically switch the NFC card reader from the closed state to the open state through the designated service application;

[0036] After the offline smart wearable device is close to the target NFC device, the target information is read from the target NFC device through the NFC card reader in the open state, and the user information of the offline smart wearable device is written back to the target NFC device, so that the target NFC device interacts with the server of the designated business application according to the user information and executes the corresponding target business;

[0037] Based on the target information, a short-range wireless communication connection is established with the target NFC device, and through the short-range wireless communication connection, the execution result of the target business returned by the target NFC device is received, so that the designated business application obtains the execution result, wherein the maximum communication distance corresponding to the short-range wireless communication connection is greater than the NFC communication distance of the target NFC device.

[0038] One or more embodiments of this specification provide an offline smart wearable device NFC service processing device, which is applied to a target NFC device, and the device includes:

[0039] at least one processor; and,

[0040] a memory communicatively connected to the at least one processor; wherein,

[0041] The memory stores instructions executable by the at least one processor, the instructions being executed by the at least one processor to enable the at least one processor to execute:

[0042] When the offline smart wearable device is close to the target NFC device, the NFC card reader on the offline smart wearable device reads the target information from the target NFC device, and then receives the user information written back by the offline smart wearable device, wherein the offline smart wearable device enters the designated service application on the offline smart wearable device in response to the NFC service trigger instruction, and automatically switches the NFC card reader from the closed state to the open state through the designated service application;

[0043] According to the user information, interact with the server of the specified business application to execute the corresponding target business;

[0044] According to the target information, a short-range wireless communication connection is established with the offline smart wearable device, and the execution result of the target service is returned to the offline smart wearable device through the short-range wireless communication connection, so that the designated service application obtains the execution result, wherein the maximum communication distance corresponding to the short-range wireless communication connection is greater than the NFC communication distance of the target NFC device.

[0045] At least one of the above technical solutions adopted in one or more embodiments of the present specification can achieve the following beneficial effects: avoiding the use of QR codes to execute some target services such as payment, thereby avoiding the problem that users who want to use offline smart wearable devices to perform target services cannot execute the target services as expected when facing merchants without QR code scanning payment devices; in particular, it actively controls the NFC card reader on the offline smart wearable device to be in a closed state by default, instead of being kept in an open state like the NFC card reader on the smartphone. When it is needed, it will quickly trigger the NFC card reader to be automatically switched to an open state through the specified business application to complete the target business. In this way, for the specified business application, it has better pertinence and controllability, better security, and is very friendly to offline smart wearable devices that are very sensitive to resources and power consumption; more importantly, by integrating another short-range wireless communication method with NF C communication method is cleverly coordinated to achieve offline smart wearable devices can also complete the business normally, obtain sufficient business intermediate information (belonging to the target information) and result information, and provide users with a normal experience like online business. In the above cooperation, the business intermediate information can be directly provided to the offline smart wearable device through the NFC communication method, and the relevant information of the pairing object required by another short-range wireless communication method (also belonging to the target information) can be provided, so that the short-range wireless communication connection can be smoothly and automatically established to return the result information to the offline smart wearable device. In this process, for the user, only the offline smart wearable device needs to be close to the target NFC, and it can be retracted without keeping the close posture for a long time. In this way, the operation experience is very good; therefore, such a solution is very suitable for offline smart wearable devices such as offline smart watches for payment and other services. BRIEF DESCRIPTION OF THE DRAWINGS

[0046] In order to more clearly illustrate the embodiments of this specification or the technical solutions in the prior art, the drawings required for use in the embodiments or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments recorded in this specification. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative labor.

[0047] Figure 1 A flowchart of an offline smart wearable device NFC service processing method provided in one or more embodiments of this specification;

[0048] Figure 2 A schematic diagram of a process flow of a short-range wireless communication connection processing solution provided for one or more embodiments of this specification;

[0049] Figure 3A flowchart of a solution for assisting a parent's mobile terminal in interacting with a child's smart watch provided in one or more embodiments of this specification;

[0050] Figure 4 A flowchart of an NFC service cancellation assistance solution for a children's smart watch provided in one or more embodiments of this specification;

[0051] Figure 5 In an application scenario provided by one or more embodiments of this specification, Figure 1 A schematic diagram of an implementation scheme of the method;

[0052] Figure 6 A flowchart of another offline smart wearable device NFC service processing method provided in one or more embodiments of this specification;

[0053] Figure 7 A schematic diagram of the structure of an offline smart wearable device NFC service processing device provided in one or more embodiments of this specification;

[0054] Figure 8 A schematic diagram of the structure of another offline smart wearable device NFC service processing device provided in one or more embodiments of this specification;

[0055] Fig. 9 A schematic diagram of the structure of another offline smart wearable device NFC service processing device provided in one or more embodiments of this specification;

[0056] Fig.10 A schematic diagram of the structure of another offline smart wearable device NFC service processing device provided in one or more embodiments of this specification. DETAILED DESCRIPTION

[0057] The embodiments of this specification provide an offline smart wearable device NFC service processing method, apparatus, device and storage medium.

[0058] In order to enable those skilled in the art to better understand the technical solutions in this specification, the technical solutions in the embodiments of this specification will be clearly and completely described below in conjunction with the drawings in the embodiments of this specification. Obviously, the described embodiments are only part of the embodiments of this application, not all of them. Based on the embodiments of this specification, all other embodiments obtained by ordinary technicians in this field without creative work should fall within the scope of protection of this application.

[0059] The smart wearable devices mentioned in this application are mainly typified by smart watches. Of course, they can also be other devices such as smart bracelets and smart rings. Compared with smart phones, smart wearable devices usually have significantly smaller screens or no screens at all, and their power and processing power are often lower. Therefore, they are more sensitive to energy consumption and computing burden. More importantly, some smart wearable devices are often offline. Offline here means that there is no connection to the public network and only short-range wireless communication or local area network communication can be carried out. This application is designed to create solutions for such actual situations. Therefore, most of them are referred to as offline smart wearable devices in this application. Not only that, in particular, the solution is further polished and improved for children's smart watches (also for offline situations) to adapt to the situation where the users are minors such as children.

[0060] As mentioned in the background technology, currently, the payment scheme on the smart phone is mainly used directly on the smart watch. Taking the payment service based on QR code as an example, the payment code can be generated on the smart watch, and the merchant scans the code through the code scanning device. After scanning the code, the merchant backend initiates the payment. However, assuming that the merchant does not have a code scanning device, it may be difficult to use the smart watch for QR code-based payment; for smart phones, since the smart phone can scan the merchant's code, the merchant's lack of a code scanning device will not hinder the payment of the smart phone. Smart watches will have unique problems because they do not have a code scanning function or are not convenient for code scanning operations. Taking the NFC-based payment service as an example, for user mobile terminals, most of them adopt the card simulation working mode. However, this method is greatly restricted by mobile phone manufacturers and is not flexible enough. The applicant is considering transplanting the solution of actively adopting the card reader working mode on his own smartphone to the smart watch. This solution is to keep the NFC card reader on the smartphone open. When there is an NFC card or simulated card approaching, the information in the card can be read through NFC, and then the corresponding application on the smartphone can be evoked to execute the corresponding business according to the content of the information. However, when actually tested on the smart watch, the energy consumption is high, which will affect the battery life of the smart watch.

[0061] Compared with the energy consumption issue, the present application is more concerned with the following issue: there are still many smart wearable devices that only serve as an auxiliary to smartphones, allowing the same user to use their smart wearable devices to quickly view information on their smartphones or quickly perform simple operations on the smartphone. Therefore, these smart wearable devices basically work offline, and may not even have a remote communication module at all. Online services are completed through smartphones. In this case, it is difficult for smart wearable devices to work independently without smartphones.

[0062] In response to the above problems, this application creates an NFC business processing solution that is more suitable for smart wearable devices (typically smart watches), such as an NFC payment solution.

[0063] Based on this overall situation, the solution of the present application will be further described below.

[0064] Figure 1 A flowchart of an NFC service processing method for an offline smart wearable device is provided for one or more embodiments of this specification. The execution subject of the process may include an offline smart wearable device (of course, online smart wearable devices can also use this solution, and the offline situation can better reflect the advantages of this solution). At the software level, it may specifically involve the operating system of the offline smart wearable device, and the designated business applications carried on the offline smart wearable device, such as payment applications, instant messaging applications, etc. For the convenience of description, some embodiments mainly take smart wearable devices such as smart watches as an example for explanation. The smart wearable device supports NFC function, has an NFC card reader, and may have a screen or may not have a screen.

[0065] Figure 1 The process in includes the following steps:

[0066] S102: Control the NFC card reader on the offline smart wearable device to be in a closed state.

[0067] In one or more embodiments of the present specification, the NFC card reader on the smart wearable device is turned off by default. In the turned off state, it will not actively attempt to perform NFC card reading operations, and will not actively monitor whether there are NFC sensing objects approaching the surrounding area, which can effectively reduce the energy consumption of offline smart wearable devices.

[0068] S104: In the closed state, receiving an NFC service trigger instruction for the offline smart wearable device.

[0069] When the user needs to use the NFC function of the offline smart wearable device, the user triggers the NFC service in a predetermined convenient triggering manner so that the offline smart wearable device receives the NFC service triggering instruction.

[0070] For example, after the screen of an offline smart wearable device is turned on, an NFC service shortcut entry is displayed. The NFC service shortcut entry is generated based on the NFC service non-quick access path of the specified business application, and is used to quickly enter the NFC reader mode page of the specified business application; in response to the user's access operation to the NFC service shortcut entry (for example, the user can click on the NFC service shortcut entry; or based on gesture implementation, etc.), the corresponding generated NFC service trigger instruction for the offline smart wearable device is received. The NFC service shortcut entry can be displayed in a place that is easy to view or easy to access, such as directly on the desktop of the offline smart wearable device or a sub-desktop (for example, if there is a sub-desktop, the desktop can be switched by flipping up and down or flipping left and right). Of course, users can also trigger the NFC service through the above-mentioned NFC service non-quick access path, so the operation will be more cumbersome.

[0071] In one or more embodiments of the present specification, the NFC service trigger instruction is not simply used to trigger the NFC reader. It corresponds to a specified service application and will accurately trigger the NFC reader first. In this way, the subsequent state of the NFC reader can be controlled by the specified service application (for example, the NFC reader can be switched back to the off state in time after the service is completed) without affecting other applications, and it also helps to accurately control energy consumption.

[0072] S106: In response to the NFC service triggering instruction, enter a designated service application on the offline smart wearable device, and automatically switch the NFC card reader from the closed state to the open state through the designated service application.

[0073] In the solution previously attempted by the applicant, the NFC reader is in a dominant position, and in the default open state, it triggers the corresponding application according to the information read. However, in the solution of the present application, the designated business application is in a dominant position instead, and the state of the NFC reader can be controlled by the designated business application and used as needed.

[0074] After receiving the NFC service trigger instruction, if the designated service application has not been started, it will be automatically started and placed in the foreground. If the designated service application has been started before, it will be kept in the foreground to execute the target service. Not only can the designated service application be entered, but also the NFC service page in the designated service application (such as the above-mentioned NFC card reader mode page, etc.) can be directly reached. On this page, more information can be prompted to the user, such as what service the page corresponds to, what to do next, etc.

[0075] In order to improve security, you can also set up additional instant verification methods such as passwords or biometrics. If the verification is passed, the trigger can be realized normally. Otherwise, you can deny access to the specified business application and deny operation of the NFC card reader.

[0076] S108: After the offline smart wearable device is close to the target NFC device, the target information is read from the target NFC device through the NFC card reader in the open state, and the user information of the offline smart wearable device is written back to the target NFC device, so that the target NFC device interacts with the server of the designated business application according to the user information and executes the corresponding target business.

[0077] After the NFC card reader is switched to the on state through active triggering, if the distance between the offline smart wearable device and the target NFC device is sufficient for NFC communication, the NFC card reader can read the target information.

[0078] In one or more embodiments of the present specification, the target information may at least include identification information of the target NFC device, so as to perform pairing and identification on the target NFC device.

[0079] If necessary, the target information can also include target business information as business intermediate information, so that it can be displayed instantly on offline smart wearable devices according to user needs. For example, in the payment business scenario, payment information can be read; in the social scenario, business card information can be read; and so on.

[0080] The above-mentioned write-back operation can be performed by an NFC card reader or a separate NFC card writer. The former method, for example, can directly write back the information using the object generated in the process after the NFC card reader reads the information, which is more efficient and low-cost.

[0081] In one or more embodiments of the present specification, the offline smart wearable device provides its own user information (specifically, the user information currently logged in on the specified business application) to the target NFC device through write-back. Then, the target NFC device (rather than the offline smart wearable device itself) mainly interacts remotely with the server to complete the target business.

[0082] S110: Establish a short-range wireless communication connection with the target NFC device according to the target information, and receive the execution result of the target business returned by the target NFC device through the short-range wireless communication connection, so that the designated business application obtains the execution result, wherein the maximum communication distance corresponding to the short-range wireless communication connection is greater than the NFC communication distance of the target NFC device.

[0083] After the write-back, the target NFC device is mainly responsible for the subsequent business, and the business is closely related to the offline smart wearable device. Therefore, the offline smart wearable device needs a way to immediately understand or even intervene in the subsequent business process. It could have been considered to continue to use NFC communication to achieve this goal. However, the NFC communication distance is very short (usually within 10 cm or even need to touch each other). If NFC communication is continued, the user needs to keep the offline smart wearable device touching the target NFC device for a longer time, which will bring a bad experience to the user and increase the user's uncertainty. During this period, the user may not be able to normally view the information that may be displayed on the offline smart wearable device.

[0084] In order to solve this problem, another short-distance wireless communication method is actively introduced here to cleverly cooperate with the NFC communication method. Of course, offline smart wearable devices need to support this short-distance wireless communication method, which can be, for example, the more popular Bluetooth method. Of course, some other similar short-distance wireless communication methods are also possible. The key point is that compared with the NFC communication distance, the communication distance of the introduced short-distance wireless communication method is larger, so that after the user takes the offline smart wearable device away from the target NFC device, it is still within the communication distance of the short-distance wireless communication method, so that the user can continue to use the short-distance wireless communication method to instantly understand or even intervene in subsequent business processes.

[0085] For short-range wireless communication, device pairing is required for the first time, otherwise, the connection will not be established actively. Of course, even if it is not the first time, in the scenario of this application, if the solution of this application is not adopted, it will not be paired automatically. The reason is that in daily life, users often only allow their devices to pair automatically after the first device pairing, such as the user's smartphone and Bluetooth headset. In the scenario of this application, the target NFC device is not the user's own device. Therefore, normally, the device pairing will not be performed automatically. Otherwise, it may cause trouble to the target NFC device, because the user may not be the user currently conducting business, and it is easy to pair by mistake and may even lead to privacy leakage.

[0086] Based on the analysis in the previous paragraph, it can be seen that the cleverness of the clever cooperation mentioned above includes: during NFC interaction, the offline smart wearable device not only obtains the target business information, but also can obtain the identification information of the target NFC machine, and then, based on the identification information, actively pairs the device with the target NFC machine, thereby establishing a short-range wireless communication connection with the target NFC machine, thus preventing other users from mistakenly connecting to the target NFC machine.

[0087] After the connection is established, the offline smart wearable device can at least: receive the business execution results from the target NFC device in a timely manner through the connection. Of course, if there are other information needs, subsequent interactions can also be carried out through the connection, and even additional requests can be made to the target NFC device.

[0088] After the NFC card reader is deemed to have completed its task (for example, after the write-back is completed, after the business is completed, after the above connection is disconnected, or after the set countdown ends, etc., which can be set as needed), the NFC card reader can be automatically switched back to the off state in a timely manner through the specified business application to minimize energy consumption.

[0089] pass Figure 1 The method avoids the use of QR codes to execute some target services such as payment, thereby avoiding the problem that users who want to use offline smart wearable devices to perform target services cannot execute the target services as expected when facing merchants without QR code scanning payment devices; in particular, it actively controls the NFC card reader on the offline smart wearable device to be in a closed state by default, rather than being kept in an open state like the NFC card reader on the smartphone. When it is needed, it will quickly trigger the NFC card reader to be automatically switched to an open state through the specified business application to complete the target business. In this way, for the specified business application, it has better pertinence and controllability, better security, and is very friendly to offline smart wearable devices that are very sensitive to resources and power consumption; more importantly, by cleverly coordinating another short-range wireless communication method with the NFC communication method, it can be achieved Offline smart wearable devices can also complete the business normally, obtain sufficient business intermediate information (belonging to the target information) and result information, and provide users with a normal experience like online business. In the above cooperation, the business intermediate information can be directly provided to the offline smart wearable device through the NFC communication method, and the relevant information of the pairing object required by another short-range wireless communication method (also belonging to the target information) can be provided, so that the short-range wireless communication connection can be smoothly and automatically established to return the result information to the offline smart wearable device. In this process, for the user, only the offline smart wearable device needs to be close to the target NFC, and it can be retracted without keeping the close posture for a long time. Such an operation experience is very good; therefore, such a solution is very suitable for offline smart wearable devices such as offline smart watches for payment and other services.

[0090] based on Figure 1 This specification also provides some specific implementation plans and extension plans of the method, which will be described below.

[0091] In one or more embodiments of the present specification, after the screen of the smart wearable device is turned on, an NFC service shortcut entrance is displayed, and the NFC service shortcut entrance is generated according to the NFC service non-quick access path of the specified service application, and is used to quickly enter the NFC card reader mode page of the specified service application; in response to the user's access operation to the NFC service shortcut entrance, a correspondingly generated NFC service trigger instruction for the smart wearable device is received.

[0092] Furthermore, although the shortcut icon can be used as a quick entry for the NFC service and accessed by clicking, the operation is still not smooth enough. Based on this, the present application further provides a smoother triggering solution to trigger the NFC service.

[0093] Under this scheme, the screen of the smart wearable device can be triggered by the user through the first gesture, and the NFC service shortcut entry prompts the second gesture. The first gesture and the second gesture are not click operations, and may not be biometric verification operations. Therefore, in this case, the NFC service shortcut entry may not be used for click entry, and the user only needs to check the NFC service shortcut entry. The first gesture is, for example, a gesture of raising the hand to look at the watch, and the second gesture is, for example, a gesture of further changing the direction of the hand (for example, a gesture of sending the hand forward, another example, a gesture of quickly waving the hand horizontally, etc.). For example, the user can raise the hand to look at the smart watch, triggering the dial to light up the screen, and then see what the second gesture is through the displayed NFC service shortcut entry. Assuming that it is a gesture of sending the hand forward, the hand can be sent forward to the target NFC device in front of it, thereby triggering the NFC service. It can be seen that this operation process is very smooth, and redundant operations are minimized as much as possible. The user experience is good, and energy saving, security requirements and convenience requirements are taken into account.

[0094] Furthermore, in order to reduce the probability of misoperation, a second gesture that may be different may be dynamically adopted each time. In this case, the user may need to look at the NFC service shortcut entrance displayed on the bright screen each time.

[0095] Similarly, the above solution based on the coordination of the first gesture and the second gesture can also be used for smart wearable devices without screens. In this case, for example, a fixed first gesture and a second gesture can be used (for example, allowing the user to pre-set them), or a dynamic second gesture can be used based on voice prompts, and so on.

[0096] In one or more embodiments of the present specification, in order to facilitate users to grasp the real-time situation, the control status of the NFC card reader can also be explicitly displayed to guide and constrain the user to a certain extent, which helps to improve security and also helps to ensure that the control of energy consumption reaches the expected level. Based on this idea, a NFC card reader control coordination solution on an offline smart wearable device is provided.

[0097] The solution may specifically include: after switching the NFC card reader from a closed state to an open state, displaying progress change prompt information corresponding to the open state on an offline smart wearable device; based on the progress change prompt information, if it is determined that the corresponding progress is completed, placing the specified business application in the background or closing it, or switching the NFC card reader back to the closed state.

[0098] Progress change prompt information may include: countdown information, and / or progress information of the detected target business. In the case of countdown information, after switching to the on state, a countdown task can be established and executed, and the user can be prompted on the interface with the remaining operation time, or the remaining available time of the NFC reader. For users, this method is more mandatory. For the progress information of the detected target business, one or more landmark stage points in the execution process of the target business can be used to show which stage points the NFC reader is still needed, and can also prompt what specific work the NFC reader is involved in at these stage points. For users, this method is clearer and more transparent, especially for user groups such as minors or the elderly.

[0099] In order to prevent the NFC card reader from being in the open state unnecessarily, based on progress monitoring (for example, determining when the countdown ends; for example, determining when the landmark stage point after the NFC card reader is used is reached; etc.), the designated business application can be automatically deactivated as soon as possible. In particular, the NFC card reader can be automatically switched back to the closed state in a timely manner to prevent resource monopoly and increased energy consumption.

[0100] According to the above description of the idea for short-distance wireless communication connection, one or more embodiments of this specification further provide a flowchart of a short-distance wireless communication connection processing solution, see Figure 2 .

[0101] Figure 2 The process in includes the following steps:

[0102] S202: Read target business information and identification information of the target NFC device from the target NFC device as target information, wherein the target business information is used to be displayed or recorded on the offline smart wearable device.

[0103] S204: Monitor whether the offline smart wearable device is still within the NFC communication distance of the target NFC device.

[0104] S206: If not, automatically pairing the devices according to the identification information of the target NFC device, establishing a short-range wireless communication connection with the target NFC device, and switching the NFC card reader back to the off state.

[0105] If it is detected that it is no longer within the NFC communication distance, it is likely that the user has taken away the offline smart wearable device, and the offline smart wearable device is temporarily unable to obtain subsequent business related information. At this time, it is a good time to switch to short-range wireless communication.

[0106] If it is detected that the two devices are still within the NFC communication distance, NFC communication can continue to be used without establishing a short-range wireless communication connection for the time being. In this way, an adaptive and intelligent decision can be made as to whether automatic device pairing is required, thus avoiding a waste of resources. Moreover, since the identification information is read together, it will not bring any burden to both parties.

[0107] In practical applications, since many minors, especially children, are usually restricted from using smartphones by their parents or schools, this group uses children's smart watches as a substitute to a certain extent. In this case, the above-mentioned offline smart wearable device can specifically be a children's smart watch. This application focuses on the particularity of this case and further improves the above basic solution.

[0108] The applicant mainly summarized the problems caused by two special features in this case. First, the adaptability of children's smart watches is not as good as that of adult smart watches. Therefore, there may be fewer NFC devices that can better support it, or even if it is supported, the business is restricted and cannot be used normally, and the network capacity is also poor; second, because the users of children's smart watches are minors or even very young children, the safety and behavioral effectiveness are tested.

[0109] In response to the first aspect of the problem, the present application considers enabling children's smart watches to obtain the ability to determine the applicable NFC devices in the surrounding area. However, in actual applications, the children's smart watches themselves have limited capabilities and are difficult to achieve, and there are hidden dangers in terms of security. In order to solve this problem, the present application provides a solution for parents' mobile terminals to assist in interacting with children's smart watches. Figure 3 A schematic diagram of the process of the scheme is shown.

[0110] Figure 3 The process in includes the following steps:

[0111] S302: The child's smart watch as the offline smart wearable device interacts offline with the parent's mobile terminal, so that the parent's mobile terminal determines one or more nearby NFC devices suitable for the child's smart watch.

[0112] The parent mobile terminal is held by the parent of the user of the children's smart watch. The children's smart watch can, for example, display an interactive QR code, and the parent mobile terminal scans it (thereby, even if the children's smart watch is offline, interaction can be achieved. Of course, other short-distance communication methods that do not rely on the public network can also be used for offline interaction, and some of the following information can also be offline interaction), triggering the parent mobile terminal to query the nearby NFC equipment suitable for the children's smart watch for the children's smart watch. The interactive QR code can be used to determine information such as the model or capabilities of the children's smart watch. There can also be multiple optional interactive QR codes, corresponding to different functions or services. One is selected on the children's smart watch and provided to the parent mobile terminal for more detailed query and screening of applicable NFC equipment through such functional or business dimensions.

[0113] The parent's mobile terminal can be a smart phone, tablet computer, or car computer with a larger and better screen and capabilities than the child's smart watch, so that it can query and display one or more NFC devices suitable for the child's smart watch. Of course, if the capabilities are strong enough, the parent's mobile terminal can also be an adult's smart watch or other device.

[0114] S304: When performing offline interaction with the parent mobile terminal, sharing the location of the children's smart watch with the parent mobile terminal.

[0115] In the case of offline interaction, considering that the parent is likely to be near the child, the location sharing operation may not be performed, and the location of the parent's mobile terminal may be used directly, so that the location information does not need to be unnecessarily exposed from the child's smart watch. If location sharing is performed, for example, the location can be included in the above-mentioned interactive QR code.

[0116] S306: Receive the navigation route from the child's smart watch to the target NFC device and the authorization information for the target NFC device sent by the parent's mobile terminal, so as to perform business interaction with the target NFC device according to the authorization information; wherein the target NFC device is selected from the one or more NFC devices, and the navigation route is generated according to the location.

[0117] After the parent's mobile terminal searches and determines the applicable NFC equipment, there are multiple usage plans. For example, the parent can directly show these NFC equipment to the child on the parent's mobile terminal. The plan in steps S306 to S312 is a more comprehensive plan.

[0118] In one or more embodiments of this specification, the target NFC device is selected by the parents, and the authorization information is set by the parents precisely for the target NFC device, rather than generally for the children's smart watch. In this way, the risk of the business that the child can perform on the target NFC device can be accurately and more timely controlled. That is, the parents can accurately authorize the business object for the child, avoiding the child's abuse of the children's smart watch and NFC device to conduct business, and ensuring the parents' high instant control, which helps to improve security and also helps to prevent the target NFC device from doing evil.

[0119] S308: After the offline interaction with the parent's mobile terminal, it is determined that the child's smart watch has arrived near the target NFC device, and a service interaction is performed with the target NFC device.

[0120] S310: Acquire the service restriction information set by the parent mobile terminal for the target NFC device, where the service restriction information includes service type restriction information and / or service transaction amount restriction information.

[0121] The service restriction information may be included in the authorization information or may be set independently. In the latter case, the authorization information may not be required, and parents may only use the service restriction information to perform light control.

[0122] S312: Determine whether the service interaction exceeds the limit corresponding to the service restriction information; if so, block the service interaction.

[0123] It should be noted that in the above exemplary solution, based on the authorization information and / or business restriction information, the risk is blocked as much as possible from the source (i.e., the NFC device). This method can be implemented in cooperation with the server corresponding to the NFC device (which also belongs to the server corresponding to the children's smart watch). In this way, the judgment of the restriction can also be performed by the server, which can reduce the burden on the children's smart watch. In this case, parents can report the authorization information and / or business restriction information to the server, and not necessarily to the children's smart watch. The server will supervise and control the subsequent business behavior of the target NFC device. In this way, the burden on the children's smart watch will be further reduced, and the children themselves do not need to care about these behind-the-scenes actions to ensure the security of their own equipment and business.

[0124] Furthermore, in order to prevent children from abusing the NFC service of children's smart watches and causing losses, one or more embodiments of this specification also provide a flowchart of an auxiliary solution for revoking the NFC service of children's smart watches, see Figure 4 .

[0125] Figure 4 The process in includes the following steps:

[0126] S402: After the offline interaction with the parent's mobile terminal, the children's smart watch determines that it has arrived near the target NFC device and performs business interaction with the target NFC device.

[0127] S404: During the business interaction process, one or more predetermined sensors are used to collect evidence of transactions involving minors, and corresponding evidence collection information with privacy protection is generated.

[0128] Automatically collect transaction evidence before or during business interaction. It should be noted that the evidence collected by underage transaction evidence here is mainly to prove that the transaction person is a minor, not for identity verification. Audio, video or other sensors can be used for corresponding evidence collection.

[0129] Here, considering that children's smart watches may not have cameras, or the camera capabilities are not high enough, or the camera is not convenient to use. Therefore, a preferred solution for evidence collection based mainly on audio is further provided, and of course, image evidence collection can also be combined. However, it should be noted that the audio evidence collection here is not just a simple automatic recording, but also includes active guiding conversations, so as to ensure both friendliness to minors and sufficient effectiveness of evidence collection.

[0130] Under this solution, for example, a dialogue model for guiding evidence collection for minors is pre-trained. Here, special attention is paid to learning the way minors speak and the logical chain information of the rigor of the required evidence. According to the requirements of these two dimensions, the trained dialogue model for guiding evidence collection is used to instantly generate voice dialogues. Through children's smart watches, the dialogues are played in a timely manner before or during business interactions to guide the current minors to conduct question-and-answer dialogues, so as to make it clear that minors are indeed trading, as well as some required background information details (for example, whether there are parents around, whether they want to buy, whether there are merchants who are inducing them, etc.). The content of the automatically recorded voice dialogue is used as evidence information, or it can be further refined and then used as evidence information. Of course, the privacy of evidence information can also be protected through secure computing, encryption, or obfuscation to avoid exposing the privacy of minors and prevent the evidence information from being tampered with.

[0131] S406: Report the evidence information to the parent's mobile terminal, so that the server obtains the evidence information through the child's smart watch or the parent's mobile terminal, and associates it with the business information corresponding to the business interaction for responding to the business cancellation request.

[0132] After conducting business through children's smart watches, if parents feel that it is inappropriate or even involves deception (for example, merchants induce minors to spend money to recharge, etc.), they can initiate a corresponding business cancellation request to the server. The business cancellation request will be associated with the responsive evidence information. Thus, the server can more intelligently analyze and decide whether to allow the cancellation of the corresponding business based on the evidence information. This way, fairness and efficiency are better, which helps to avoid liability disputes between merchants and users and can truly protect the interests of the reasonable party.

[0133] According to the above description, in order to understand the main idea of ​​the present application in a typical and concise manner, one or more embodiments of this specification provide an application scenario. Figure 1 A schematic diagram of an embodiment of the method of Figure 5 .

[0134] In this application scenario, the subject of "watch payment" in the figure can specifically be a watch payment application, as the above-mentioned designated business application; the subject of "wearable device" can specifically be a smart watch, especially a children's smart watch, as the above-mentioned offline smart wearable device; the NFC machine is owned by the merchant, as the above-mentioned target NFC machine.

[0135] exist Figure 5 In the process, the NFC card reader of the smart watch is turned off by default; for example, the user can click the NFC shortcut on the smart watch to trigger the opening of the watch payment application and directly enter the NFC reader mode page in the watch payment application; the NFC card reader of the smart watch is automatically turned on by the watch payment application, making it temporarily on; thereafter, the user can bring the smart watch close to the merchant's NFC machine, so that the NFC card reader reads the payment information from the NFC machine and returns it to the watch payment application, and can also read the identification information of the NFC machine and write back its own user information; thereafter, the watch payment application can automatically trigger the establishment of a Bluetooth connection between the smart watch and the NFC machine based on the identification information, and the NFC machine interacts with the server based on the payment information and user information to promote payment, and obtains the payment result from the server, and returns the payment result to the watch payment application through the Bluetooth connection.

[0136] After turning on the NFC card reader, for example, a countdown can be displayed. After the countdown ends, the watch payment application can be placed in the background or even closed, and the NFC card reader can be automatically switched back to the off state.

[0137] In this way, even if the smart watch is offline throughout the process, the user can still complete the payment transaction normally, which is basically similar to the experience in the online scenario, thereby helping to expand the application scenarios of offline smart watches and meet more user needs.

[0138] The above is mainly described from the perspective of an offline smart wearable device. Based on the same idea, one or more embodiments of this specification also provide another offline smart wearable device NFC service processing method, which is described from the perspective of a target NFC device. Figure 6 A flow chart of another method is shown in FIG.

[0139] Figure 6 The process in includes the following steps:

[0140] S602: After the offline smart wearable device is close to the target NFC device and the target information is read from the target NFC device through the NFC reader in the turned-on state on the offline smart wearable device, the user information written back by the offline smart wearable device is received, wherein the offline smart wearable device enters the designated business application on the offline smart wearable device in response to the NFC business trigger instruction, and automatically switches the NFC reader from the turned-off state to the turned-on state through the designated business application.

[0141] S604: interact with the server of the designated business application according to the user information to execute the corresponding target business.

[0142] S606: According to the target information, establish a short-range wireless communication connection with the offline smart wearable device, and return the execution result of the target service to the offline smart wearable device through the short-range wireless communication connection, so that the designated service application obtains the execution result, wherein the maximum communication distance corresponding to the short-range wireless communication connection is greater than the NFC communication distance of the target NFC device.

[0143] For details, please refer to the previous instructions and will not be repeated here.

[0144] Based on the same idea, one or more embodiments of this specification also provide devices and apparatuses corresponding to the above methods, such as Figure 7 to Figure 10 The apparatus and device can accordingly execute the above method and related optional solutions.

[0145] Figure 7 A schematic diagram of the structure of an offline smart wearable device NFC service processing device provided in one or more embodiments of this specification, wherein the device is applied to an offline smart wearable device, and the device includes:

[0146] The control module 702 controls the NFC card reader on the offline smart wearable device to be in a closed state;

[0147] The receiving module 704 receives an NFC service trigger instruction for the offline smart wearable device in the closed state;

[0148] The switching module 706 enters a designated service application on the offline smart wearable device in response to the NFC service trigger instruction, and automatically switches the NFC card reader from the closed state to the open state through the designated service application;

[0149] The reading module 708 reads target information from the target NFC device through the NFC card reader in the open state after the offline smart wearable device is close to the target NFC device, and writes back the user information of the offline smart wearable device to the target NFC device, so that the target NFC device interacts with the server of the designated business application according to the user information and executes the corresponding target business;

[0150] The connection module 710 establishes a short-range wireless communication connection with the target NFC device according to the target information, and receives the execution result of the target business returned by the target NFC device through the short-range wireless communication connection, so that the designated business application obtains the execution result, wherein the maximum communication distance corresponding to the short-range wireless communication connection is greater than the NFC communication distance of the target NFC device.

[0151] Optionally, the switching module 706, after switching the NFC card reader from the closed state to the open state, displays progress change prompt information corresponding to the open state, wherein the progress change prompt information includes: countdown information, and / or progress information of the target business obtained by detection;

[0152] According to the progress change prompt information, if it is determined that the corresponding progress is completed, the designated business application is placed in the background or closed, or the NFC card reader is switched back to the closed state.

[0153] Optionally, the reading module 708 reads target business information and identification information of the target NFC device from the target NFC device as target information, wherein the target business information is used to be displayed or recorded on the offline smart wearable device;

[0154] The connection module 710 automatically performs device pairing according to the identification information of the target NFC device, and establishes a short-range wireless communication connection with the target NFC device.

[0155] Optionally, the connection module 710 monitors whether the offline smart wearable device is still within the NFC communication distance of the target NFC device;

[0156] If not, a short-range wireless communication connection is established with the target NFC device according to the target information, and the NFC card reader is switched back to the closed state.

[0157] Optionally, the short-range wireless communication connection is a Bluetooth connection.

[0158] Optionally, the offline smart wearable device is a smart watch.

[0159] Optionally, the offline smart wearable device is a children's smart watch;

[0160] The device also includes:

[0161] The interaction module 712 performs offline interaction with the parent's mobile terminal so that the parent's mobile terminal determines one or more nearby NFC devices suitable for the child's smart watch.

[0162] Optionally, the interaction module 712 shares the location of the child's smart watch with the parent's mobile terminal, where the parent's mobile terminal is a smart phone or a tablet computer;

[0163] Receive the navigation route from the child's smart watch to the target NFC device and the authorization information for the target NFC device sent by the parent's mobile terminal, so as to perform business interaction with the target NFC device according to the authorization information;

[0164] The target NFC device is selected from the one or more NFC devices, and the navigation route is generated according to the location.

[0165] Optionally, the interaction module 712, after the offline interaction with the parent mobile terminal, determines that the child smart watch has arrived near the target NFC device, and performs business interaction with the target NFC device;

[0166] Acquire the service restriction information set by the parent mobile terminal for the target NFC device, wherein the service restriction information includes service type restriction information and / or service transaction amount restriction information;

[0167] Determining whether the service interaction exceeds the limit corresponding to the service limit information;

[0168] If so, the service interaction is blocked.

[0169] Optionally, the interaction module 712, after the offline interaction with the parent mobile terminal, determines that the child smart watch has arrived near the target NFC device, and performs business interaction with the target NFC device;

[0170] During the business interaction process, one or more predetermined sensors are used to collect evidence of transactions involving minors, and corresponding evidence collection information with privacy protection is generated;

[0171] The evidence collection information is reported to the parent's mobile terminal so that the server obtains the evidence collection information through the child's smart watch or the parent's mobile terminal, and associates it with the business information corresponding to the business interaction for responding to the business cancellation request.

[0172] Optionally, the target business includes a payment business.

[0173] Figure 8 A schematic diagram of the structure of another offline smart wearable device NFC service processing device provided in one or more embodiments of this specification, wherein the device is applied to a target NFC device, and the device includes:

[0174] The receiving module 802 receives the user information written back by the offline smart wearable device after the offline smart wearable device approaches the target NFC device to read the target information from the target NFC device through the NFC card reader in the turned-on state on the offline smart wearable device, wherein the offline smart wearable device enters the designated service application on the offline smart wearable device in response to the NFC service trigger instruction, and automatically switches the NFC card reader from the turned-off state to the turned-on state through the designated service application;

[0175] An execution module 804 interacts with a server of the specified service application according to the user information to execute a corresponding target service;

[0176] The connection module 806 establishes a short-range wireless communication connection with the offline smart wearable device according to the target information, and returns the execution result of the target service to the offline smart wearable device through the short-range wireless communication connection, so that the designated service application obtains the execution result, wherein the maximum communication distance corresponding to the short-range wireless communication connection is greater than the NFC communication distance of the target NFC device.

[0177] Fig. 9 A schematic diagram of the structure of an offline smart wearable device NFC service processing device provided in one or more embodiments of this specification, wherein the device is applied to an offline smart wearable device, and the device includes:

[0178] at least one processor; and,

[0179] a memory communicatively connected to the at least one processor; wherein,

[0180] The memory stores instructions executable by the at least one processor, the instructions being executed by the at least one processor to enable the at least one processor to execute:

[0181] Controlling the NFC card reader on the offline smart wearable device to be in a closed state;

[0182] In the closed state, receiving an NFC service trigger instruction for the offline smart wearable device;

[0183] In response to the NFC service trigger instruction, enter a designated service application on the offline smart wearable device, and automatically switch the NFC card reader from the closed state to the open state through the designated service application;

[0184] After the offline smart wearable device is close to the target NFC device, the target information is read from the target NFC device through the NFC card reader in the open state, and the user information of the offline smart wearable device is written back to the target NFC device, so that the target NFC device interacts with the server of the designated business application according to the user information and executes the corresponding target business;

[0185] Based on the target information, a short-range wireless communication connection is established with the target NFC device, and through the short-range wireless communication connection, the execution result of the target business returned by the target NFC device is received, so that the designated business application obtains the execution result, wherein the maximum communication distance corresponding to the short-range wireless communication connection is greater than the NFC communication distance of the target NFC device.

[0186] Fig.10 A schematic diagram of the structure of another offline smart wearable device NFC service processing device provided in one or more embodiments of this specification, wherein the device is applied to a target NFC device, and the device includes:

[0187] at least one processor; and,

[0188] a memory communicatively connected to the at least one processor; wherein,

[0189] The memory stores instructions executable by the at least one processor, the instructions being executed by the at least one processor to enable the at least one processor to execute:

[0190] When the offline smart wearable device is close to the target NFC device, the NFC card reader on the offline smart wearable device reads the target information from the target NFC device, and then receives the user information written back by the offline smart wearable device, wherein the offline smart wearable device enters the designated service application on the offline smart wearable device in response to the NFC service trigger instruction, and automatically switches the NFC card reader from the closed state to the open state through the designated service application;

[0191] According to the user information, interact with the server of the specified business application to execute the corresponding target business;

[0192] According to the target information, a short-range wireless communication connection is established with the offline smart wearable device, and the execution result of the target service is returned to the offline smart wearable device through the short-range wireless communication connection, so that the designated service application obtains the execution result, wherein the maximum communication distance corresponding to the short-range wireless communication connection is greater than the NFC communication distance of the target NFC device.

[0193] Based on the same idea, one or more embodiments of this specification further provide a non-volatile computer storage medium, which is applied to an offline smart wearable device, wherein the medium stores computer executable instructions, and the computer executable instructions are configured as follows:

[0194] Controlling the NFC card reader on the offline smart wearable device to be in a closed state;

[0195] In the closed state, receiving an NFC service trigger instruction for the offline smart wearable device;

[0196] In response to the NFC service trigger instruction, enter a designated service application on the offline smart wearable device, and automatically switch the NFC card reader from the closed state to the open state through the designated service application;

[0197] After the offline smart wearable device is close to the target NFC device, the target information is read from the target NFC device through the NFC card reader in the open state, so that the designated business application obtains the target information;

[0198] The designated service application executes the corresponding target service according to the target information.

[0199] One or more embodiments of this specification also provide another non-volatile computer storage medium, which is applied to a target NFC device, wherein the medium stores computer executable instructions, and the computer executable instructions are configured to:

[0200] When the offline smart wearable device is close to the target NFC device, the NFC card reader on the offline smart wearable device reads the target information from the target NFC device, and then receives the user information written back by the offline smart wearable device, wherein the offline smart wearable device enters the designated service application on the offline smart wearable device in response to the NFC service trigger instruction, and automatically switches the NFC card reader from the closed state to the open state through the designated service application;

[0201] According to the user information, interact with the server of the specified business application to execute the corresponding target business;

[0202] According to the target information, a short-range wireless communication connection is established with the offline smart wearable device, and the execution result of the target service is returned to the offline smart wearable device through the short-range wireless communication connection, so that the designated service application obtains the execution result, wherein the maximum communication distance corresponding to the short-range wireless communication connection is greater than the NFC communication distance of the target NFC device.

[0203] In the 1990s, improvements to a technology could be clearly distinguished as hardware improvements (for example, improvements to the circuit structure of diodes, transistors, switches, etc.) or software improvements (improvements to the method flow). However, with the development of technology, many improvements to the method flow today can be regarded as direct improvements to the hardware circuit structure. Designers almost always obtain the corresponding hardware circuit structure by programming the improved method flow into the hardware circuit. Therefore, it cannot be said that an improvement in a method flow cannot be implemented using a hardware entity module. For example, a programmable logic device (PLD) (such as a field programmable gate array (FPGA)) is such an integrated circuit whose logical function is determined by the user's programming of the device. Designers can "integrate" a digital system on a PLD by programming it themselves, without having to ask a chip manufacturer to design and produce a dedicated integrated circuit chip. Moreover, nowadays, instead of manually making integrated circuit chips, this kind of programming is mostly implemented by "logic compiler" software, which is similar to the software compiler used when developing and writing programs, and the original code before compilation must also be written in a specific programming language, which is called hardware description language (HDL). There is not only one HDL, but many kinds, such as ABEL (Advanced Boolean Expression Language), AHDL (Altera Hardware Description Language), Confluence, CUPL (Cornell University Programming Language), HDCal, JHDL (Java Hardware Description Language), Lava, Lola, MyHDL, PALASM, RHDL (Ruby Hardware Description Language), etc. The most commonly used ones are VHDL (Very-High-Speed ​​Integrated Circuit Hardware Description Language) and Verilog. Those skilled in the art should also know that it is only necessary to program the method flow slightly in the above-mentioned hardware description languages ​​and program it into the integrated circuit, and then it is easy to obtain the hardware circuit that implements the logic method flow.

[0204] The controller can be implemented in any appropriate manner, for example, the controller can take the form of a microprocessor or processor and a computer-readable medium storing a computer-readable program code (such as software or firmware) that can be executed by the (micro)processor, a logic gate, a switch, an application-specific integrated circuit (ASIC), a programmable logic controller, and an embedded microcontroller. Examples of controllers include, but are not limited to, the following microcontrollers: ARC 625D, Atmel AT91SAM, Microchip PIC18F26K20, and Silicone Labs C8051F320. The memory controller can also be implemented as part of the control logic of the memory. Those skilled in the art also know that in addition to implementing the controller in a purely computer-readable program code manner, the controller can be implemented in the form of a logic gate, a switch, an application-specific integrated circuit, a programmable logic controller, and an embedded microcontroller by logically programming the method steps. Therefore, this controller can be considered as a hardware component, and the devices included therein for implementing various functions can also be regarded as structures within the hardware component. Or even, the devices for implementing various functions can be regarded as both software modules for implementing the method and structures within the hardware component.

[0205] The systems, devices, modules or units described in the above embodiments may be implemented by computer chips or entities, or by products with certain functions. A typical implementation device is a computer. Specifically, the computer may be, for example, a personal computer, a laptop computer, a cellular phone, a camera phone, a smart phone, a personal digital assistant, a media player, a navigation device, an email device, a game console, a tablet computer, a wearable device, or a combination of any of these devices.

[0206] For the convenience of description, the above device is described in various units according to their functions. Of course, when implementing this specification, the functions of each unit can be implemented in the same or multiple software and / or hardware.

[0207] Those skilled in the art will appreciate that the embodiments of this specification may be provided as methods, systems, or computer program products. Therefore, the embodiments of this specification may be in the form of complete hardware embodiments, complete software embodiments, or embodiments in combination with software and hardware. Moreover, the embodiments of this specification may be in the form of a computer program product implemented in one or more computer-usable storage media (including but not limited to disk storage, CD-ROM, optical storage, etc.) that contain computer-usable program code.

[0208] This specification is described with reference to the flowcharts and / or block diagrams of the methods, devices (systems), and computer program products according to the embodiments of this specification. It should be understood that each process and / or box in the flowchart and / or block diagram, as well as the combination of the processes and / or boxes in the flowchart and / or block diagram, can be implemented by computer program instructions. These computer program instructions can be provided to a processor of a general-purpose computer, a special-purpose computer, an embedded processor, or other programmable data processing device to produce a machine, so that the instructions executed by the processor of the computer or other programmable data processing device generate instructions for implementing the processes in the flowchart and / or block diagram. Figure 1 A process or multiple processes and / or boxes Figure 1 A device that provides the functions specified in a block or multiple blocks.

[0209] These computer program instructions may also be stored in a computer-readable memory capable of directing a computer or other programmable data processing device to operate in a specific manner, so that the instructions stored in the computer-readable memory produce an article of manufacture comprising an instruction device, which implements the process Figure 1 A process or multiple processes and / or boxes Figure 1 A function specified in one or more boxes.

[0210] These computer program instructions can also be loaded onto a computer or other programmable data processing device so that a series of operating steps are executed on the computer or other programmable device to produce a computer-implemented process, thereby providing instructions for implementing the process. Figure 1 A process or multiple processes and / or boxes Figure 1 The steps for the functions specified in one or more boxes.

[0211] It should also be noted that the terms "include", "comprises" or any other variations thereof are intended to cover non-exclusive inclusion, so that a process, method, commodity or device including a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, commodity or device. In the absence of more restrictions, the elements defined by the sentence "comprises a ..." do not exclude the existence of other identical elements in the process, method, commodity or device including the elements.

[0212] Each embodiment in this specification is described in a progressive manner, and the same or similar parts between the embodiments can be referred to each other, and each embodiment focuses on the differences from other embodiments. In particular, for the device, equipment, and non-volatile computer storage medium embodiments, since they are basically similar to the method embodiments, the description is relatively simple, and the relevant parts can be referred to the partial description of the method embodiment.

[0213] The above is a description of a specific embodiment of the specification. Other embodiments are within the scope of the appended claims. In some cases, the actions or steps recorded in the claims can be performed in an order different from that in the embodiments and still achieve the desired results. In addition, the processes depicted in the drawings do not necessarily require the specific order or continuous order shown to achieve the desired results. In some embodiments, multitasking and parallel processing are also possible or may be advantageous.

[0214] The above description is only one or more embodiments of this specification and is not intended to limit this specification. For those skilled in the art, one or more embodiments of this specification may have various changes and variations. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of one or more embodiments of this specification shall be included in the scope of the claims of this specification.

Claims

1. A method for processing NFC services of an offline smart wearable device, applied to an offline smart wearable device, the method comprising: After the offline smart wearable device is close to the target NFC device, the target information is read from the target NFC device through the NFC card reader, and the user information of the offline smart wearable device is written back to the target NFC device, so that the target NFC device executes the corresponding target service according to the user information; According to the target information, a short-range wireless communication connection is established with the target NFC device, and through the short-range wireless communication connection, the execution result of the target business returned by the target NFC device is received, wherein the short-range wireless communication method adopted by the short-range wireless communication connection is not the NFC communication method.

2. The method according to claim 1, before reading the target information from the target NFC device through the NFC reader, the method further comprises: Controlling the NFC card reader on the offline smart wearable device to be in a closed state; In the closed state, receiving an NFC service trigger instruction for the offline smart wearable device; In response to the NFC service trigger instruction, a designated service application on the offline smart wearable device is entered, and the NFC card reader is automatically switched from the closed state to the open state through the designated service application.

3. The method according to claim 2, after switching the NFC card reader from the closed state to the open state, the method further comprises: Displaying progress change prompt information corresponding to the open state, wherein the progress change prompt information includes: countdown information, and / or progress information of the target business obtained by detection; According to the progress change prompt information, if it is determined that the corresponding progress is completed, the designated business application is placed in the background or closed, or the NFC card reader is switched back to the closed state.

4. The method according to claim 1, wherein the step of reading target information from the target NFC device comprises: Reading target business information and identification information of the target NFC device from the target NFC device as target information, wherein the target business information is used to be displayed or recorded on the offline smart wearable device; The establishing of a short-range wireless communication connection with the target NFC device according to the target information specifically includes: According to the identification information of the target NFC device, device pairing is automatically performed to establish a short-range wireless communication connection with the target NFC device.

5. The method according to claim 1, wherein establishing a short-range wireless communication connection with the target NFC device according to the target information specifically comprises: Monitoring whether the offline smart wearable device is still within the NFC communication distance of the target NFC device; If not, a short-range wireless communication connection is established with the target NFC device according to the target information, and the NFC card reader is switched back to the off state, wherein the maximum communication distance corresponding to the short-range wireless communication connection is greater than the NFC communication distance of the target NFC device.

6. The method according to any one of claims 1 to 5, wherein the short-range wireless communication connection is a Bluetooth connection.

7. The method according to any one of claims 1 to 5, wherein the offline smart wearable device is a smart watch.

8. The method according to claim 1, wherein the offline smart wearable device is a children's smart watch; The method further comprises: Offline interaction is performed with a parent's mobile terminal so that the parent's mobile terminal determines one or more NFC devices suitable for the child's smart watch nearby.

9. The method according to claim 8, wherein the offline interaction with the parent mobile terminal further comprises: Sharing the location of the child's smart watch to the parent's mobile terminal, where the parent's mobile terminal is a smart phone or a tablet computer; Receive the navigation route from the child's smart watch to the target NFC device and the authorization information for the target NFC device sent by the parent's mobile terminal, so as to perform business interaction with the target NFC device according to the authorization information; The target NFC device is selected from the one or more NFC devices, and the navigation route is generated according to the location.

10. The method according to claim 9, after the offline interaction with the parent's mobile terminal, the method further comprises: Determine that the children's smart watch arrives near the target NFC device and performs business interaction with the target NFC device; Acquire the service restriction information set by the parent mobile terminal for the target NFC device, wherein the service restriction information includes service type restriction information and / or service transaction amount restriction information; Determining whether the service interaction exceeds the limit corresponding to the service limit information; If so, the service interaction is blocked.

11. The method according to claim 9, after the offline interaction with the parent's mobile terminal, the method further comprises: Determine that the children's smart watch arrives near the target NFC device and performs business interaction with the target NFC device; During the business interaction process, one or more predetermined sensors are used to collect evidence of transactions involving minors, and corresponding evidence collection information with privacy protection is generated; The evidence collection information is reported to the parent's mobile terminal so that the server obtains the evidence collection information through the child's smart watch or the parent's mobile terminal, and associates it with the business information corresponding to the business interaction for responding to the business cancellation request.

12. The method according to any one of claims 1 to 5, wherein the target service comprises a payment service.

13. An offline smart wearable device NFC service processing method, applied to a target NFC device, the method comprising: When the offline smart wearable device is close to the target NFC device, the target information is read from the target NFC device through the NFC reader on the offline smart wearable device, and then the user information written back by the offline smart wearable device is received; Execute corresponding target services according to the user information; According to the target information, a short-range wireless communication connection is established with the offline smart wearable device, and the execution result of the target service is returned to the offline smart wearable device through the short-range wireless communication connection, wherein the short-range wireless communication method adopted by the short-range wireless communication connection is not the NFC communication method.

14. An offline smart wearable device NFC service processing device, applied to an offline smart wearable device, the device comprising: A reading module, after the offline smart wearable device is close to the target NFC device, reads the target information from the target NFC device through the NFC card reader, and writes back the user information of the offline smart wearable device to the target NFC device, so that the target NFC device executes the corresponding target service according to the user information; The connection module establishes a short-range wireless communication connection with the target NFC device according to the target information, and receives the execution result of the target business returned by the target NFC device through the short-range wireless communication connection, wherein the short-range wireless communication method adopted by the short-range wireless communication connection is not the NFC communication method.

15. The device of claim 13, before reading the target information from the target NFC device through the NFC reader, the device further comprises: A control module controls the NFC card reader on the offline smart wearable device to be in a closed state; A receiving module, in the closed state, receiving an NFC service trigger instruction for the offline smart wearable device; The switching module enters the designated service application on the offline smart wearable device in response to the NFC service trigger instruction, and automatically switches the NFC card reader from the closed state to the open state through the designated service application.

16. The device of claim 15, wherein the switching module, after switching the NFC card reader from the closed state to the open state, displays progress change prompt information corresponding to the open state, wherein the progress change prompt information includes: Countdown information, and / or progress information of the target service obtained through detection; According to the progress change prompt information, if it is determined that the corresponding progress is completed, the designated business application is placed in the background or closed, or the NFC card reader is switched back to the closed state.

17. The device according to claim 14, wherein the reading module reads target business information and identification information of the target NFC device from the target NFC device as target information, wherein: The target service information is used to be displayed or recorded on the offline smart wearable device; The connection module automatically performs device pairing according to the identification information of the target NFC device and establishes a short-range wireless communication connection with the target NFC device.

18. The apparatus of claim 14, wherein the connection module monitors whether the offline smart wearable device is still within the NFC communication distance of the target NFC device; If not, a short-range wireless communication connection is established with the target NFC device according to the target information, and the NFC card reader is switched back to the off state, wherein: The maximum communication distance corresponding to the short-range wireless communication connection is greater than the NFC communication distance of the target NFC device.

19. The device according to any one of claims 14 to 18, wherein the short-range wireless communication connection is a Bluetooth connection.

20. The apparatus according to any one of claims 14 to 18, wherein the offline smart wearable device is a smart watch.

21. The apparatus according to claim 14, wherein the offline smart wearable device is a children's smart watch; The device also includes: The interaction module interacts offline with the parent's mobile terminal so that the parent's mobile terminal determines one or more NFC devices suitable for the children's smart watch nearby.

22. The device of claim 21, wherein the interaction module shares the location of the child's smart watch with the parent's mobile terminal, and the parent's mobile terminal is a smart phone or a tablet computer; Receive the navigation route from the child's smart watch to the target NFC device and the authorization information for the target NFC device sent by the parent's mobile terminal, so as to perform business interaction with the target NFC device according to the authorization information; in, The target NFC device is selected from the one or more NFC devices, and the navigation route is generated according to the location.

23. An offline smart wearable device NFC service processing device, applied to a target NFC device, the device comprising: A receiving module, when the offline smart wearable device is close to the target NFC device, so as to read the target information from the target NFC device through the NFC reader on the offline smart wearable device, and then receiving the user information written back by the offline smart wearable device; An execution module, executing corresponding target services according to the user information; The connection module establishes a short-range wireless communication connection with the offline smart wearable device according to the target information, and returns the execution result of the target service to the offline smart wearable device through the short-range wireless communication connection, wherein the short-range wireless communication mode adopted by the short-range wireless communication connection is not the NFC communication mode.

24. An offline smart wearable device NFC service processing device, applied to an offline smart wearable device, the device comprising: at least one processor; as well as, a memory communicatively connected to the at least one processor; wherein, The memory stores instructions executable by the at least one processor, the instructions being executed by the at least one processor to enable the at least one processor to execute: After the offline smart wearable device is close to the target NFC device, the target information is read from the target NFC device through the NFC card reader, and the user information of the offline smart wearable device is written back to the target NFC device, so that the target NFC device executes the corresponding target service according to the user information; According to the target information, a short-range wireless communication connection is established with the target NFC device, and through the short-range wireless communication connection, the execution result of the target business returned by the target NFC device is received, wherein the short-range wireless communication method adopted by the short-range wireless communication connection is not the NFC communication method.

25. An offline smart wearable device NFC service processing device, applied to a target NFC device, the device comprising: at least one processor; as well as, a memory communicatively connected to the at least one processor; wherein, The memory stores instructions executable by the at least one processor, the instructions being executed by the at least one processor to enable the at least one processor to execute: When the offline smart wearable device is close to the target NFC device, the target information is read from the target NFC device through the NFC reader on the offline smart wearable device, and then the user information written back by the offline smart wearable device is received; Execute corresponding target services according to the user information; According to the target information, a short-range wireless communication connection is established with the offline smart wearable device, and the execution result of the target service is returned to the offline smart wearable device through the short-range wireless communication connection, wherein the short-range wireless communication method adopted by the short-range wireless communication connection is not the NFC communication method.

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