WO2023130751A1 - 基于线下购物的信息获取方法、终端、系统及介质 - Google Patents

基于线下购物的信息获取方法、终端、系统及介质 Download PDF

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Publication number
WO2023130751A1
WO2023130751A1 PCT/CN2022/116747 CN2022116747W WO2023130751A1 WO 2023130751 A1 WO2023130751 A1 WO 2023130751A1 CN 2022116747 W CN2022116747 W CN 2022116747W WO 2023130751 A1 WO2023130751 A1 WO 2023130751A1
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Prior art keywords
sensing node
node device
information
sensing
user terminal
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PCT/CN2022/116747
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English (en)
French (fr)
Inventor
刘刚
彭程
孙权
金可威
詹成初
才华
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中国银联股份有限公司
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Publication of WO2023130751A1 publication Critical patent/WO2023130751A1/zh

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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q30/00Commerce
    • G06Q30/06Buying, selling or leasing transactions
    • G06Q30/0601Electronic shopping [e-shopping]
    • G06Q30/0639Item locations
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q30/00Commerce
    • G06Q30/02Marketing; Price estimation or determination; Fundraising
    • G06Q30/0207Discounts or incentives, e.g. coupons or rebates
    • G06Q30/0212Chance discounts or incentives
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q30/00Commerce
    • G06Q30/06Buying, selling or leasing transactions
    • G06Q30/0601Electronic shopping [e-shopping]
    • G06Q30/0631Item recommendations
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q30/00Commerce
    • G06Q30/06Buying, selling or leasing transactions
    • G06Q30/0601Electronic shopping [e-shopping]
    • G06Q30/0641Shopping interfaces

Definitions

  • the present application belongs to the field of data processing, and in particular relates to an information acquisition method, terminal, system and medium based on offline shopping.
  • the user can ask the shopping guide to explain the event information or preferential information of the product, or the user can search for the event information or preferential information of the corresponding product through the shopping software.
  • the above information acquisition process requires user participation, which is relatively cumbersome and takes a long time.
  • Embodiments of the present application provide an information acquisition method, terminal, system, and medium based on offline shopping, which can simplify the process of acquiring information for offline shopping.
  • the embodiment of the present application provides an information acquisition method based on offline shopping, which is applied to a user terminal.
  • the method includes: when the user terminal is located in the sensing area formed by the sensing node device group, receiving the information of the sensing node device group
  • the first message includes the node identification of the target sensing node device, and the target sensing node device is determined based on the sensing information of the user terminal obtained by the sensing node device group; based on the first message, it is sent to the background server
  • the second message the second message includes the node identification of the target sensing node device; receiving the push information sent by the background server and having a corresponding relationship with the node identification of the target sensing node device; displaying the push information having a corresponding relationship with the node identification of the target sensing node device information.
  • the embodiment of the present application provides an information acquisition method based on offline shopping, which is applied to a sensing node device group, the sensing node device group includes sensing node devices, and the sensing node device group forms a sensing area.
  • the method includes: In the case of being located in the sensing area, acquiring sensing information of the user terminal; determining a target sensing node device in the sensing node device group based on the sensing information; sending a first message by the target sensing node device so that the user terminal acquires the first message, and Sending a second message to the background server, so that the user terminal receives push information sent by the background server and having a corresponding relationship with the node identification of the target sensing node device, the first message includes the node identification of the target sensing node device, and the second message is based on the first message is generated, and the second message includes the node identifier of the target sensing node device.
  • the embodiment of the present application provides an information acquisition method based on offline shopping, which is applied to the background server.
  • the method includes: receiving the second message sent by the user terminal, and the second message is sent by the user terminal based on the information from the sensing node device group.
  • the first message sent by the target sensing node device is generated, the second message includes the node identification of the target sensing node device, the first message includes the node identification of the target sensing node device, the sensing node device group forms a sensing area, and the target sensing node is based on the sensing node device
  • the sensing information of the user terminal acquired by the group is determined; according to the node identification of the target sensing node device, the push information corresponding to the node identification of the target sensing node device is obtained; push information, so that the user terminal displays the push information corresponding to the node identifier of the target sensing node device.
  • the embodiment of the present application provides a user terminal, including: a receiving module, configured to receive the information sent by the target sensing node device in the sensing node device group when the user terminal is located in the sensing area formed by the sensing node device group
  • the first message the first message includes the node identification of the target sensing node device, and the target sensing node device is determined based on the sensing information of the user terminal obtained by the sensing node device group
  • the sending module is configured to send the second message to the background server based on the first message message, the second message includes the node identification of the target sensing node device
  • the receiving module is also used to receive the push information sent by the background server and has a corresponding relationship with the node identification of the target sensing node device
  • the display module is used to display the information related to the target sensing node device The node identification of the push information that has a corresponding relationship.
  • the embodiment of the present application provides a sensing node device, including: an acquisition module, configured to acquire sensing information of the user terminal when the user terminal is located in a sensing area formed by a sensing node device group, the sensing node device group includes The sensing node device; the processing module is used to determine the target sensing node device in the sensing node device group based on the sensing information; the sending module is used to send the first message when the sensing node device is the target sensing node device, so that The user terminal obtains the first message, and sends a second message to the background server, so that the user terminal receives the push information sent by the background server and has a corresponding relationship with the node identification of the target sensing node device, and the first message includes the node identification of the target sensing node device , the second message is generated based on the first message, and the second message includes the node identifier of the target sensing node device.
  • the embodiment of the present application provides a background server, including: a receiving module, configured to receive a second message sent by a user terminal, where the second message is sent by the user terminal based on the first message sent from the target sensing node device in the sensing node device group.
  • a message is generated, the second message includes the node identification of the target sensing node device, the first message includes the node identification of the target sensing node device, the sensing node device group forms a sensing area, and the target sensing node is based on the sensing of the user terminal obtained by the sensing node device group Information determination;
  • the acquisition module is used to obtain the push information corresponding to the node identification of the target sensing node device according to the node identification of the target sensing node device;
  • the sending module is used to send the node identification of the target sensing node device to the user terminal Push information with a corresponding relationship, so that the user terminal displays the pushed information with a corresponding relationship with the node identifier of the target sensing node device.
  • the embodiment of the present application provides a user terminal, including: a processor and a memory storing computer program instructions; when the processor executes the computer program instructions, the offline shopping-based information acquisition method of the first aspect is implemented.
  • the embodiment of the present application provides a sensor node device, including: a processor and a memory storing computer program instructions; when the processor executes the computer program instructions, the offline shopping-based information acquisition method of the second aspect is implemented.
  • the embodiment of the present application provides a background server, including: a processor and a memory storing computer program instructions; when the processor executes the computer program instructions, the offline shopping-based information acquisition method of the third aspect is implemented.
  • the embodiment of the present application provides an information acquisition system based on offline shopping, including the user terminal in the seventh aspect, the sensing node device in the eighth aspect, and the background server in the ninth aspect.
  • the embodiment of the present application provides a computer-readable storage medium, on which computer program instructions are stored.
  • the computer program instructions are executed by a processor, the information based on offline shopping as in the first aspect can be realized.
  • the embodiment of the present application provides an information acquisition method, terminal, system and medium based on offline shopping.
  • the user terminal When the user terminal is located in the sensing area formed by the sensing node device group, it can receive the information sent by the sensing node device group target sensing node device.
  • the node identification of the target sensing node device and send the node identification of the target sensing node to the background server, so that the background server can actively send push information corresponding to the node identification of the target sensing node to the user terminal, and the user
  • the terminal can display the push information spontaneously.
  • the process for the user terminal to acquire the push information saves the step of actively searching for information by the user, reduces user operations, simplifies the process of obtaining information, and reduces the time spent on obtaining information.
  • FIG. 1 is a schematic diagram of an example of an application scenario of an offline shopping-based information acquisition method provided by an embodiment of the present application
  • FIG. 2 is a schematic diagram of another example of an application scenario of an offline shopping-based information acquisition method provided by an embodiment of the present application
  • Fig. 3 is a flow chart of an embodiment of an information acquisition method based on offline shopping provided in the first aspect of the present application;
  • FIG. 4 is a flow chart of another embodiment of the method for obtaining information based on offline shopping provided in the first aspect of the present application;
  • FIG. 5 is a schematic diagram of an example of a pop-up window page of a user terminal provided by an embodiment of the present application
  • FIG. 6 is a schematic diagram of another example of a pop-up window page of a user terminal provided by an embodiment of the present application.
  • FIG. 7 is a schematic diagram of another example of a pop-up window page of a user terminal provided in an embodiment of the present application.
  • FIG. 8 is a flow chart of another embodiment of the method for obtaining information based on offline shopping provided in the first aspect of the present application.
  • FIG. 9 is a flow chart of an embodiment of an information acquisition method based on offline shopping provided by the second aspect of the present application.
  • FIG. 10 is a flow chart of another embodiment of the method for obtaining information based on offline shopping provided in the second aspect of the present application.
  • FIG. 11 is a flow chart of an embodiment of an offline shopping-based information acquisition method provided by the third aspect of the present application.
  • Fig. 12 is a flow chart of another embodiment of the method for obtaining information based on offline shopping provided by the third aspect of the present application.
  • Fig. 13 is a flowchart of another embodiment of the method for obtaining information based on offline shopping provided by the third aspect of the present application;
  • FIG. 14 is a flow chart of an example of the offline order shopping process provided by the embodiment of the present application.
  • FIG. 15 is a schematic structural diagram of an embodiment of a user terminal provided in the fourth aspect of the present application.
  • Fig. 16 is a schematic structural diagram of an embodiment of the sensing node device provided in the fifth aspect of the present application.
  • Fig. 17 is a schematic structural diagram of another embodiment of the sensing node device provided in the fifth aspect of the present application.
  • FIG. 18 is a schematic structural diagram of an embodiment of a background server provided in the sixth aspect of the present application.
  • Fig. 19 is a schematic structural diagram of another embodiment of the background server provided by the sixth aspect of the present application.
  • FIG. 20 is a schematic structural diagram of another embodiment of the background server provided in the sixth aspect of the present application.
  • FIG. 21 is a schematic structural diagram of an embodiment of a user terminal provided by the seventh aspect of the present application.
  • Fig. 22 is a schematic structural diagram of an embodiment of a sensing node device provided in the eighth aspect of the present application.
  • Fig. 23 is a schematic structural diagram of an embodiment of the background server provided in the ninth aspect of the present application.
  • the embodiment of the present application provides an information acquisition method, terminal, system and medium based on offline shopping, which can sense whether the user carrying the user terminal enters the sensing area when the user is shopping offline, and when the user terminal is located in the sensing area,
  • the target sensing node device can be determined in the sensing node device group, and the background server sends the activity corresponding to the target sensing node device to the user terminal Push information such as information or preferential information, so that the user terminal automatically displays push information such as event information or preferential information, without manual query by the user, which simplifies the process for users to obtain event information or preferential information, etc., and reduces the need for users to obtain event information or preferential information. Time spent on information etc.
  • the information acquisition method based on offline shopping in the embodiment of the present application may involve a sensing node device group, a user terminal, and a background server, and may be applied to offline shopping such as shopping in a physical store or shopping mall.
  • FIG. 1 is a schematic diagram of an example of an application scenario of a method for obtaining information based on offline shopping provided by an embodiment of the present application.
  • the application scenario shown in FIG. 1 may be in a physical store.
  • three sensing node device groups are set in the physical store, and each sensing node device group forms a sensing area.
  • the first sensing node device group includes a first sensing node device A1, a second sensing node device A2 and a third sensing node device A3, which can form a first sensing area B1.
  • the second sensing node device group includes a first sensing node device A1, a third sensing node device A3 and a fourth sensing node device A4, which can form a second sensing area B2.
  • the third sensing node device group includes the first sensing node device A1 , the fourth sensing node device A4 , the fifth sensing node device A5 and the sixth sensing node device A6 , which can form a third sensing area B3 .
  • the sensing node device group may include multiple sensing node devices, and the number of sensing node devices in each sensing node device group is not limited here. In some examples, the number of sensing node devices in the sensing node device group is greater than or equal to three. Different sensing node device groups may share some sensing node devices, which is not limited here.
  • the sensing node device has a sensing function and can sense a user terminal entering the sensing area. For example, when the user terminal is located in the second sensing area B2, the first sensing node device A1, the third sensing node device A3 and the fourth sensing node device A4 can sense the user terminal and determine that the user terminal is located in the second sensing area B2. Area B2. In some cases, when the user terminal is located in the second sensing area B2, sensing node devices other than the first sensing node device A1, the third sensing node device A3 and the fourth sensing node device A4 can also sense the user The terminal may determine the sensing area where the user terminal is located according to the sensing information of the user terminal acquired by each sensing node.
  • the sensing node device has a non-contact sensing function, that is, the sensing node device has a non-contact sensing unit, and the sensing area formed by the sensing node device group is a non-contact sensing area. In the non-contact sensing area, the user does not need to operate the user terminal, and the sensing node device can sense the user terminal.
  • the sensing node device has a WiFi access point sensing function, that is, a WiFi AP function and a Bluetooth sensing function.
  • the sensing node device has a WiFi access point unit, a Bluetooth unit, etc., which are not limited herein.
  • the user terminal 11 may include a mobile phone, a tablet computer, a smart wearable device, etc., and is not limited here.
  • the user terminal 11 has a communication function, and can communicate with the sensing node device, and can also communicate with the background server 12 .
  • the background server 12 can provide push information to the user terminal 11, and can also perform tasks related to the push information.
  • the backend server 12 may perform tasks related to push information, such as payment and bill ordering, which are not limited here.
  • the number of background servers is not limited here.
  • the embodiment of the present application can support the background server with multiple functional modules to implement the method performed by the background server 12 in the embodiment of the present application.
  • the embodiment of the present application can also support multiple The background server with one or several functions cooperates to realize the method executed by the background server 12 in the embodiment of the present application, which is not limited here.
  • FIG. 2 is a schematic diagram of another example of an application scenario of the offline shopping-based information acquisition method provided by the embodiment of the present application.
  • the application scenario shown in FIG. 2 may be in a shopping mall, and the shopping mall may include multiple physical stores.
  • the shopping mall includes a first physical store C1, a second physical store C2 and a third physical store C3, and the first physical store C1 is equipped with a seventh sensing node device A7, an eighth sensing node device A8, a The sensing node device group of the ninth sensing node device A9 and the sensing node device group including the seventh sensing node device A7, the ninth sensing node device A9, and the tenth sensing node device A10, including the seventh sensing node device A7, the eighth sensing node device The sensing node device group of the device A8 and the ninth sensing node device A9 forms the fourth sensing area B4, and the sensing node device group including the seventh sensing node device A7, the ninth sensing node device
  • the fifth sensing area B5; the sensing node device group including the eleventh sensing node device A11, the twelfth sensing node device A12, and the thirteenth sensing node device A13 is set in the second physical store C2, including the eleventh sensing node device A11, the sensing node device group of the thirteenth sensing node device A13, the fourteenth sensing node device A14 and the sensing node including the eleventh sensing node device A11, the fourteenth sensing node device A14, and the fifteenth sensing node device A15
  • the device group, including the eleventh sensing node device A11, the twelfth sensing node device A12, and the thirteenth sensing node device A13 forms a sixth sensing area B6, including the eleventh sensing node device A11, the tenth sensing node device
  • the sensing node device group of the third sensing node device A13 and the fourteenth sensing node device A14 forms the seventh sensing area B7,
  • the sensing node device group forms the eighth sensing area B8; the third physical store C3 is equipped with the sixteenth sensing node device A16, the seventeenth sensing node device A17, the eighteenth sensing node device A18, the nineteenth sensing node device
  • the sensing node device group of A19 including the sensing node device group of the sixteenth sensing node device A16, the seventeenth sensing node device A17, the eighteenth sensing node device A18, and the nineteenth sensing node device A19 forms the ninth sensing area B9 .
  • the sensing node device has a sensing function and can sense a user terminal entering the sensing area. For example, when the user terminal is located in the eighth sensing area B8 in the second physical store C2, the eleventh sensing node device A11, the fourteenth sensing node device A14 and the fifteenth sensing node device A15 can sense the user terminal , it is determined that the user terminal is located in the eighth sensing area B8 in the second physical store C2.
  • the sensing node devices other than the eleventh sensing node device A11, the fourteenth sensing node device A14, and the fifteenth sensing node device A15 in the second physical store C2 can also sense the user terminal, according to The sensing information of the user terminal obtained by each sensing node in the second physical store C2 determines the sensing area where the user terminal is located.
  • the sensing node devices in other physical stores other than the second physical store C2 may also sense the user terminal, and the user terminal can be determined according to the sensing information of the user terminal obtained by each sensing node in each physical store. The physical store where it is located and the specific sensing area.
  • the user terminal 13 and the background server 14 refer to the relevant description of the sensor node device, the user terminal 11 and the background server 12 in the previous example, and details will not be repeated here.
  • the information acquisition method based on offline shopping, user terminal, sensor node device, background server, system and computer-readable storage medium in the embodiment of the present application will be introduced in sequence below.
  • the first aspect of the embodiment of the present application provides a method for obtaining information based on offline shopping, which can be applied to a user terminal, that is, the method for obtaining information based on offline shopping can be executed by the user terminal.
  • Fig. 3 is a flow chart of an embodiment of the method for obtaining information based on offline shopping provided in the first aspect of the present application. As shown in FIG. 3 , the method for obtaining information based on offline shopping may include steps S201 to S204.
  • step S201 when the user terminal is located in the sensing area formed by the sensing node device group, a first message sent by the target sensing node device in the sensing node device group is received.
  • the first message includes the node identification of the target sensing node device.
  • the node ID is used to identify the sensing node device. Different sensing node devices have different node identifiers.
  • the node identifier may include a device number, a universally unique identifier (UUID, UUID) or other identifiers of the sensing node device, which is not limited here.
  • the target sensing node device is one of the sensing node device groups forming the sensing area where the user terminal is located.
  • the target sensing node device is determined based on the sensing information of the user terminal acquired by the sensing node device group.
  • the sensing node devices in the sensing node device group forming the sensing area can obtain the sensing information of the user terminal.
  • the sensing information includes information about the user terminal sensed by the sensing node device.
  • the sensing information may include one or more of the following items: user terminal signal strength, user terminal identification, time, and user terminal movement information.
  • the signal strength of the user terminal may be the signal strength of the user terminal sensed by the sensing node device.
  • the user terminal identifier is the identifier of the user terminal.
  • the user terminal identifier may include a device number of the user terminal, a media access control address (Media Access Control Address, MAC), etc., which is not limited herein.
  • the time may be the time point when the sensing node device senses the user terminal.
  • the user terminal motion information can represent the motion of the user terminal.
  • the user terminal motion information can include the signal scanning frequency and motion trajectory of the user terminal. According to the user terminal motion information, the motion of the user terminal in the same sensing area or in different sensing areas can be judged. .
  • the sensing node device can use its own non-contact sensing function to obtain the sensing information of the user terminal.
  • the user does not need to perform specific operations on the user terminal, and the sensing node device can obtain The sensing information of the user terminal, the sensing of the user terminal by the sensing node device is insensitive to the user, and also improves the user experience.
  • the user terminal interacts with each sensing node device in the sensing node device group, which will occupy and consume additional resources.
  • each sensing node device in the sensing node device group which will occupy and consume additional resources.
  • by communicating with the user terminal through the target sensing node device in the sensing node device group in the sensing area where the user terminal is located resources can be saved and communication confusion can be avoided. Results have no effect.
  • the target sensing node device broadcasts the first message, and all terminal devices within the sensing area can obtain the first message.
  • step S202 based on the first message, a second message is sent to the background server.
  • the second message includes a node identification of the target sensing node device.
  • the second message and the first message may be the same or different, which is not limited here.
  • the user terminal may forward the first message to the background server.
  • the user terminal may generate a second message according to the first message, and then send the second message to the background server.
  • step S203 the push information sent by the background server and having a corresponding relationship with the node identifier of the target sensor node device is received.
  • the background server receives the second message, and may acquire the node identifier of the target sensing node device from the second message.
  • the corresponding relationship between the node identification of the sensing node device and the push information is stored in the background server, and the background server can find the push information corresponding to the node identification of the target sensing node device according to the node identification of the target sensing node device, and send it to the user Terminal sends.
  • the corresponding relationship between the node identifier of the sensing node device and the push information may be pre-configured according to specific scenarios, requirements, etc., and is not limited here.
  • the push information corresponding to the node identifier of the sensing node device may be related to the physical store or commodity corresponding to the sensing area formed by the sensing node device.
  • the push information corresponding to the node identifier of the sensing node device may be related to the commodities in the sensing area formed by the sensing node device, or the push information corresponding to the node identifier of the sensing node device may be related to the sensing area.
  • Commodities in the area where the sensing area formed by the node device is related, or the push information corresponding to the node identifier of the sensing node device may be related to the physical store where the sensing area formed by the sensing node device is located.
  • the sensing node device group may include a first sensing node device group to an Nth sensing node device group, where N is an integer greater than 1.
  • the push information corresponding to the node identifier of the sensing node device in the i-th sensing node device group is different from the push information corresponding to the node identifier of the sensing node device in the j-th sensing node device group, i and j are integers, i ⁇ j, 1 ⁇ i ⁇ N, 1 ⁇ j ⁇ N, that is, the i-th sensing node device group and the j-th sensing node device group are not the same sensing node device group.
  • the first sensing node device group is set in the first physical store C1
  • the first sensing node device group includes the seventh sensing node device A7 , the eighth sensing node device A8 and the ninth sensing node device A9
  • the node identifier of the seventh sensing node device A7 is AA7
  • the node identifier of the eighth sensing node device A8 is AA8
  • the node identifier of the ninth sensing node device A9 is AA9
  • the second sensing node device group is set in the second physical store C2
  • the second sensing node device group includes the eleventh sensing node device A11, the twelfth sensing node device A12 and the thirteenth sensing node device A13, the eleventh sensing node device
  • the node identification of the sensing node device A11 is AA11
  • the node identification of the twelfth sensing node device A12 is AA12
  • the first sensing node device group is set in the second physical store C2
  • the first sensing node device group includes the eleventh sensing node device group The node device A11, the twelfth sensing node device A12 and the thirteenth sensing node device A13
  • the node identifier of the eleventh sensing node device A11 is AA11
  • the node identifier of the twelfth sensing node device A12 is AA12
  • the thirteenth sensing node device The node identifier of the node device A13 is AA13
  • the second sensing node device group is set in the second physical store C2
  • the first sensing node device group includes the eleventh sensing node device A11, the fourteenth sensing node device A14 and the fifteenth sensing node device
  • the sensing node device A15, the node identification of the eleventh sensing node device A11 is AA11
  • the fourteenth sensing node device A14 is the fifteenth sensing node
  • the sensing node device group may include a first sensing node device group to an Nth sensing node device group, where N is an integer greater than 1.
  • the push information corresponding to the node identifier of the sensing node device in the i-th sensing node device group is the same as the push information corresponding to the node identifier of the sensing node device in the j-th sensing node device group, i and j are integers, i ⁇ j, 1 ⁇ i ⁇ N, 1 ⁇ j ⁇ N, that is, the i-th sensing node device group and the j-th sensing node device group are not the same sensing node device group.
  • the first sensing node device group is set in the first physical store C1
  • the first sensing node device group includes the seventh sensing node device A7, the eighth sensing node device A8 and the ninth sensing node device A9
  • the node identifier of the seventh sensing node device A7 is AA7
  • the node identifier of the eighth sensing node device A8 is AA8
  • the node identifier of the ninth sensing node device A9 is AA9
  • the second sensing node device group is set in the first physical store C1
  • the first sensing node device group includes the seventh sensing node device A7, the ninth sensing node device A9 and the tenth sensing node device A10
  • the seventh sensing node device The node identifier of A7 is AA7
  • the node identifier of the ninth sensing node device A9 is AA9
  • the push information having a corresponding relationship with the node identifiers of the sensing node devices in the same sensing node device group is the same.
  • the sensing node device group is set in the first physical store C1
  • the sensing node device group includes the seventh sensing node device A7, the eighth sensing node device A8 and the ninth sensing node device A9, the seventh sensing node device
  • the node identification of the sensing node device A7 is AA7
  • the node identification of the eighth sensing node device A8 is AA8, and the node identification of the ninth sensing node device A9 is AA9
  • the push information corresponding to the node identification AA7 of the sensing node device and
  • the push information corresponding to the node identifier AA8 of the sensor node device and the push information corresponding to the node identifier AA9 of the sensor node device are all information related to the first physical store C1, that is, the node identifier
  • the push information is different from the node identifications of at least two sensing node devices in the same sensing node device group, that is, in the same sensing node device group, it is different from the node identification of at least one sensing node device in the same sensing node device group.
  • the push information having a corresponding relationship is different from the pushing information having a corresponding relationship between node identifiers of other sensing node devices.
  • the sensing node device group is set in the third physical store C3, and the sensing node device group includes the sixteenth sensing node device A16, the seventeenth sensing node device A17, and the eighteenth sensing node device A18.
  • the node identifier of the sixteenth sensing node device A16 is AA16
  • the node identifier of the seventeenth sensing node device A17 is AA17
  • the node identifier of the eighteenth sensing node device A18 is AA18
  • the tenth sensing node device A18 has a node identifier of AA18.
  • the node identification of the nine sensing node device A19 is AA19; the push information corresponding to the node identification AA16 of the sensing node device is the information related to the first commodity D1 near the sensing node device, and corresponds to the node identification AA17 of the sensing node device
  • the push information of the relationship is information related to the second commodity D2 near the sensing node device, and the push information corresponding to the node identifier AA18 of the sensing node device is information related to the third commodity D3 near the sensing node device.
  • the push information corresponding to the node identifier AA19 of the node device is information related to the fourth commodity D4 near the sensing node device; that is, the push information corresponding to the node identifier AA16 of the sensing node device and the node identifier
  • the push information corresponding to AA17, the push information corresponding to the node identifier AA18 of the sensing node device, and the push information corresponding to the node identifier AA19 of the sensing node device are different.
  • the push information in the above embodiments may include but not limited to coupon information and/or commodity order information.
  • Coupon information may include commodity coupon information, physical store coupon information, etc., and is not limited here.
  • the user terminal may receive the coupon indicated by the coupon information and use the received coupon for payment according to the user's input of the push information.
  • Commodity list information may include the name of the combined product, the model number of the combined product, the price of the combined product, etc., which is not limited here.
  • the user terminal can create or join a order, form orders with other users and perform order payment according to the user's input of the push information.
  • step S204 the push information corresponding to the node identifier of the target sensing node device is displayed.
  • the user terminal displays the push information corresponding to the node identification of the target sensor node device, and realizes the information push to the user, so that the user can intuitively obtain relevant information when shopping offline.
  • the form in which the user terminal displays the push information is not limited.
  • the user terminal when the user terminal is located in the sensing area formed by the sensing node device group, it can receive the node identification of the target sensing node device sent by the sensing node device group target sensing node device, and send the target sensing node device
  • the node identification of the target sensing node is sent to the background server, so that the background server can actively send push information corresponding to the node ID of the target sensor node to the user terminal, and the user terminal can spontaneously display the push information.
  • the process for the user terminal to acquire the push information saves the steps for the user to actively search for information, reduces user operations, simplifies the process of obtaining information, and also reduces the time spent in obtaining information, improving user experience.
  • the push information sent to the user terminal in the embodiment of the present application is related to the sensing area where the user terminal is located, which realizes accurate push of information and improves user experience.
  • Fig. 4 is a flow chart of another embodiment of the method for obtaining information based on offline shopping provided in the first aspect of the present application. The difference between FIG. 4 and FIG. 3 is that step S203 in FIG. 3 can be specifically refined into step S2031 in FIG. 4 , and step S204 in FIG. 3 can be specifically refined into step S2041 in FIG. 4 .
  • step S2031 the address of the pop-up window page sent by the background server is received.
  • step S2041 the address of the pop-up page is accessed to trigger the display of the pop-up page.
  • the pop-up page includes push information corresponding to the node identifier of the target sensing node device.
  • the pop-up page can be a pop-up page that is triggered by an application pre-installed on the user terminal, such as an APP pop-up page, or the pop-up page that is triggered by a system that comes with the user terminal, such as an FA pop-up page , is not limited here.
  • FIG. 5 is a schematic diagram of an example of a pop-up window page of a user terminal provided in an embodiment of the present application.
  • the push information includes coupon information
  • the pop-up page 15 includes coupon information.
  • the user can input to the pop-up window page 15, receive the coupon indicated by the coupon information or close the pop-up window page 15.
  • FIG. 6 is a schematic diagram of another example of a pop-up window page of a user terminal provided in an embodiment of the present application.
  • the push information includes product order information
  • the pop-up window page 15 is a list/shopping page. The user can input to the pop-up window 15, participate in order making or close the pop-up window 15.
  • FIG. 7 is a schematic diagram of another example of a pop-up window page of a user terminal provided in an embodiment of the present application.
  • the push information includes product order information
  • the pop-up page 15 is a list/shopping sharing page. The user can enter the pop-up page 15, share the order or close the pop-up page 15.
  • the push information is displayed to the user through the pop-up window, and the user can obtain the information without manually opening the shopping software or instant messaging software, and interact with the background server, and the technology that requires the user to open the instant messaging software to communicate with friends to complete the order.
  • users do not need to rely on resources such as their own social network or circle of friends to make orders, which is lighter and more convenient, and the range of users participating in order making is wider. Single mode is more flexible.
  • Fig. 8 is a flow chart of another embodiment of the method for obtaining information based on offline shopping provided in the first aspect of the present application. The difference between FIG. 8 and FIG. 3 is that the method for obtaining information based on offline shopping shown in FIG. 8 may further include steps S205 and S206.
  • step S205 in response to the first input to the user terminal, a third message is sent to the background server.
  • the first input can be click input, slide input or other input, and the manner of the first input is not limited here.
  • the third message is used to instruct the background server to execute the first task indicated by the first input.
  • the background server receives the third message and executes the first task.
  • the first task is related to pushing information.
  • step S206 the task execution result information sent by the background server is received.
  • the background server executes the first task, and can obtain the execution result of the first task.
  • the task execution result information is obtained based on the execution result of the first task.
  • the push information may include information on order consolidation
  • the first task may include an order consolidation task
  • the task execution result information may include an order consolidation result identifier and/or an order consolidation pickup code.
  • the sign of the order result can represent the success or failure of the order.
  • the order pickup code can be used to check with the physical store merchants to pick up the goods.
  • a list task can include creating a list task or joining a list task. Creating a list task means creating a list by the user of the user terminal. The join order task is for the user of this user terminal to join the order created by other users.
  • the push information may include coupon information
  • the first task may include a coupon payment task
  • the task execution result information may include a coupon payment result identifier.
  • the coupon payment task is a task of paying using the coupon indicated by the coupon information.
  • the coupon payment result flag may indicate that the payment of the coupon indicated by the coupon information is successful or the payment of the coupon indicated by the coupon information is failed.
  • the second aspect of the present application provides a method for obtaining information based on offline shopping, which can be applied to a sensing node device group, that is, the method for obtaining information based on offline shopping can be executed by sensing node devices in the sensing node device group.
  • FIG. 9 is a flow chart of an embodiment of an offline shopping-based information acquisition method provided in the second aspect of the present application. As shown in FIG. 9 , the method for obtaining information based on offline shopping may include steps S301 to S303.
  • step S301 when the user terminal is located in the sensing area, sensing information of the user terminal is acquired.
  • the sensing node devices in the sensing node device group forming the sensing area can acquire sensing information of the user terminal.
  • the sensing node devices in the sensing node device group in the sensing area adjacent to the sensing area where the user terminal is located may also acquire sensing information of the user terminal, which is not limited herein.
  • the sensing node device may use its own non-contact sensing technology to sense the sensing information of the user terminal.
  • the sensing node device may have a contactless sensing unit.
  • the sensing area formed by the sensing node device group is a non-contact sensing area.
  • the sensing information includes one or more of the following: user terminal signal strength, user terminal identification, time, and user terminal movement information.
  • user terminal signal strength For specific content of the sensing information, reference may be made to relevant descriptions in the foregoing embodiments, and details are not repeated here.
  • step S302 based on the sensing information, a target sensing node device in the sensing node device group is determined.
  • the sensing area where the user terminal is located can be determined, and then the target sensing node device in the sensing node device group forming the sensing area where the user terminal is located can be determined.
  • the target sensing node device is a target sensing node device in the sensing node device group forming the sensing area where the user terminal is located, and its selection method is not limited here.
  • step S303 the first message is sent by the target sensing node device, so that the user terminal obtains the first message, and sends the second message to the background server, so that the user terminal receives the node identifier sent by the background server and the node identification of the target sensing node device The push information of the corresponding relationship.
  • the first message includes the node identification of the target sensing node device.
  • the second message is generated based on the first message.
  • the second message includes a node identification of the target sensing node device.
  • the sensing node device may have a short-range wireless communication unit, and may interact with a user terminal through a short-range wireless communication technology.
  • the target sensing node device may broadcast the first message to the outside through the short-distance wireless communication technology, so that user terminals located in the sensing area corresponding to the target sensing node device can receive the first message.
  • the multiple user terminals can all receive the first message.
  • the push information can be used to trigger the user terminal to display a pop-up webpage.
  • the pop-up web page includes push information corresponding to the node identifier of the target sensing node device.
  • push information may include, but not limited to, coupon information and/or commodity order information.
  • coupon information may include, but not limited to, coupon information and/or commodity order information.
  • commodity order information For the specific content of the push information, refer to the relevant descriptions in the foregoing embodiments, and details are not repeated here.
  • the sensing node device group includes a first sensing node device group to an Nth sensing node device group, where N is an integer greater than 1.
  • the push information corresponding to the node identifier of the sensing node device in the i-th sensing node device group is different from the push information corresponding to the node identifier of the sensing node device in the j-th sensing node device group, i and j are integers, i ⁇ j, 1 ⁇ i ⁇ N, 1 ⁇ j ⁇ N.
  • the sensing node device group includes a first sensing node device group to an Nth sensing node device group, where N is an integer greater than 1.
  • the push information corresponding to the node identifier of the sensing node device in the i-th sensing node device group is the same as the push information corresponding to the node identifier of the sensing node device in the j-th sensing node device group, i and j are integers, i ⁇ j, 1 ⁇ i ⁇ N, 1 ⁇ j ⁇ N.
  • the push information having a corresponding relationship with the node identifiers of the sensing node devices in the same sensing node device group is the same.
  • the push information having a corresponding relationship with the node identifiers of at least two sensing node devices in the same sensing node device group is different.
  • step S301 to step S303 can refer to the relevant description in the above embodiment, and will not be repeated here.
  • the sensing node device in the sensing node device group can obtain the sensing information of the terminal device, and based on the sensing information, determine the sensing node device in the sensing node device group The target sensor node device.
  • the target sensing node device can send the node identification of the target sensing node device to the user terminal, so that the user terminal sends the node identification of the target sensing node device to the background server, so that the background server can actively send the node identification of the target sensing node device to the user terminal.
  • the node identification of the push information that has a corresponding relationship.
  • the user terminal can display the push information spontaneously.
  • the process for the user terminal to acquire the push information saves the steps for the user to actively search for information, reduces user operations, simplifies the process of obtaining information, and also reduces the time spent in obtaining information, improving user experience.
  • the push information sent to the user terminal in the embodiment of the present application is related to the sensing area where the user terminal is located, which realizes accurate push of information and improves user experience.
  • Fig. 10 is a flow chart of another embodiment of the method for obtaining information based on offline shopping provided in the second aspect of the present application. The difference between FIG. 10 and FIG. 9 is that step S302 in FIG. 9 can be specifically detailed into steps S3021 to S3023 in FIG. 10 .
  • step S3021 the sensing information is sent to the background server.
  • step S3022 the sensing node screening information sent by the background server is received.
  • the sensing node screening information is determined by the background server according to the sensing information.
  • the background server receives the sensing information, and can obtain sensing node screening information according to the sensing information.
  • the sensing node screening information may be used to assist in determining a target sensing node device, and may include but not limited to user terminal location information and/or sensing node operating information.
  • the user terminal location information may be used to indicate the location of the user terminal.
  • the background server can determine the sensing area where the user terminal is located according to the sensing information. Further, the background server may determine the specific location of the sensing node of the user terminal in the sensing area according to the sensing information such as the signal strength of the user terminal.
  • the sensing node operation information can be used to characterize the operating status and operating performance of the sensing node devices in the sensing node device group forming the sensing area where the user terminal is located, which is not limited here.
  • step S3023 a target sensing node device in the sensing node device group is determined according to the sensing node screening information.
  • a sensing node device is selected from the sensing node device group forming the sensing area where the user terminal is located as the target sensing node device.
  • the sensing node device in the sensing node device group that is closest to the location of the user terminal indicated by the user terminal location information may be selected according to the user terminal location information, Determined as the target sensing node device.
  • the sensing node device group, the distribution of the sensing area, and the location of the user terminal, the push information corresponding to the node identification of the sensing node device includes the commodity order information of the products near the sensing node device, and the user
  • the position of the user terminal 11 indicated by the terminal position information is the closest to the third sensing node device A3, and the third sensing node device A3 is determined as the target sensing node device, and the third sensing node device A3 broadcasts its own node identifier, and the user terminal 11
  • the sensing node screening information includes sensing node operation information, or the sensing node screening information includes sensing node operating information and user terminal location information
  • the sensing nodes in the sensing node device group are detected according to the sensing node screening information.
  • the node device polls to determine the target sensing node device. For example, the push information corresponding to the node identification of the sensing node device in the sensing node device group forming the sensing area where the user terminal is located is the same, and the sensing node running information can represent the running time of the sensing node device, which can be used to form the sensing node where the user terminal is located.
  • the sensing node devices in the sensing node device group in the area inquire about the running time in turn, and select the sensing node device with the shortest running time as the target sensing node device to avoid abnormal processing fatigue of the sensing node device with a long running time.
  • the sensing node screening information includes sensing node operation information, or the sensing node screening information includes sensing node operating information and user terminal location information, according to the sensing node screening information and preset voting rules, the The sensing node devices in the sensing node device group vote to determine the target sensing node device.
  • the push information corresponding to the node identification of the sensing node device in the sensing node device group forming the sensing area where the user terminal is located is the same, and the sensing node operation information can represent the number of other user terminals currently interacting with the sensing node device, according to the voting rules , the sensor node device can vote for the sensor node device with a lower number than other user terminals currently interacting with itself, and select the sensor node device with the largest number of votes as the target sensor node device, so that the sensor node device with the best condition can be used as the target sensor node device Use of equipment to achieve better information acquisition effect.
  • the third aspect of the embodiment of the present application provides a method for obtaining information based on offline shopping, which can be applied to a background server, that is, the method for obtaining information based on offline shopping can be executed by the background server.
  • Fig. 11 is a flow chart of an embodiment of the method for obtaining information based on offline shopping provided by the third aspect of the present application. As shown in FIG. 11 , the method for obtaining information based on offline shopping may include steps S401 to S403.
  • step S401 a second message sent by a user terminal is received.
  • the second message is generated by the user terminal based on the first message sent from the target sensing node device in the sensing node device group.
  • the second message includes a node identification of the target sensing node device.
  • the first message includes the node identification of the target sensing node device.
  • a sensing node device group may form a sensing area.
  • the target sensing node is determined based on the sensing information of the user terminal acquired by the sensing node device group.
  • the sensing node device has a non-contact sensing unit, and the sensing area formed by the sensing node device group is a non-contact sensing area.
  • the sensing information includes one or more of the following: user terminal signal strength, user terminal identification, time, and user terminal motion information.
  • user terminal signal strength For specific content, reference may be made to related descriptions in the foregoing embodiments, and details are not repeated here.
  • step S402 according to the node identifier of the target sensing node device, push information corresponding to the node identifier of the target sensing node device is obtained.
  • the background server can store the corresponding relationship between the node identification of the sensing node device and the push information, and the background server obtains the node identification of the target sensing node device from the second message, and can search according to the corresponding relationship between the node identification of the sensing node device and the push information.
  • Push information that has a corresponding relationship with the node identifier of the target sensing node device.
  • the sensing node device group includes a first sensing node device group to an Nth sensing node device group, where N is an integer greater than 1.
  • the push information corresponding to the node identifier of the sensing node device in the i-th sensing node device group is different from the push information corresponding to the node identifier of the sensing node device in the j-th sensing node device group, i and j are integers, i ⁇ j, 1 ⁇ i ⁇ N, 1 ⁇ j ⁇ N.
  • the sensing node device group includes a first sensing node device group to an Nth sensing node device group, where N is an integer greater than 1.
  • the push information corresponding to the node identifier of the sensing node device in the i-th sensing node device group is the same as the push information corresponding to the node identifier of the sensing node device in the j-th sensing node device group, i and j are integers, i ⁇ j, 1 ⁇ i ⁇ N, 1 ⁇ j ⁇ N.
  • the push information having a corresponding relationship with the node identifiers of the sensing node devices in the same sensing node device group is the same.
  • the push information having a corresponding relationship with the node identifiers of at least two sensing node devices in the same sensing node device group is different.
  • the push information may include, but not limited to, coupon information and/or commodity order information.
  • coupon information and/or commodity order information.
  • commodity order information for specific content, please refer to the related descriptions in the above embodiments, which will not be repeated here.
  • step S403 the push information corresponding to the node identifier of the target sensing node device is sent to the user terminal, so that the user terminal displays the push information corresponding to the node identifier of the target sensing node device.
  • the sensing node device in the sensing node device group can obtain the sensing information of the terminal device, and based on the sensing information, determine the sensing node device in the sensing node device group The target sensor node device.
  • the target sensing node device may send the node identifier of the target sensing node device to the user terminal.
  • the background server can receive the node identification of the target sensing node device sent by the user terminal, and actively send push information corresponding to the node identification of the target sensing node to the user terminal, so that the user terminal can spontaneously display the push information.
  • the process of obtaining the pushed information by the user terminal avoids the step of the user actively searching for information, reduces user operations, simplifies the process of obtaining information, and also reduces the time spent on obtaining information, thereby improving user experience.
  • the push information sent to the user terminal in the embodiment of the present application is related to the sensing area where the user terminal is located, which realizes accurate push of information and improves user experience.
  • Fig. 12 is a flow chart of another embodiment of the method for obtaining information based on offline shopping provided by the third aspect of the present application. The difference between FIG. 12 and FIG. 11 is that the method for obtaining information based on offline shopping shown in FIG. 12 may further include steps S404 to S406.
  • step S404 the sensing information sent by the sensing node device in the sensing node device group is received.
  • step S405 the sensing node screening information is obtained according to the sensing information.
  • the sensory node screening information is used to filter out target sensory node devices in the sensory node device group.
  • the sensing node screening information may include, but not limited to, user terminal location information and/or sensing node operating information.
  • the background server can determine the relative distance between the user terminal and the sensing node device, thereby determining the sensing area where the user terminal is located, and can further determine the specific location of the user terminal.
  • the background server can determine information such as the operating status of each sensing node device according to the sensing information received by the sensing node device within a period of time, so as to obtain the sensing node operating information.
  • the background server may store a database, and the database may store information such as the composition of each sensing node device group, the distribution of each sensing node device, and the like.
  • the background server can jointly determine the sensing node screening information according to the sensing information and the information stored in the database, which is not limited here.
  • step S406 the sensory node screening information is sent to the sensory node devices in the sensory node device group, so that the sensory node device group determines the target sensory node device according to the sensory node screening information.
  • the target sensing node device is the sensing node device in the sensing node device group that is closest to the location of the user terminal indicated by the user terminal location information.
  • the target sensing node device when the sensing node screening information includes sensing node operation information, or the sensing node screening information includes sensing node operating information and user terminal location information, the target sensing node device sends a message to the sensing node device according to the sensing node screening information.
  • the sensing node devices in the group perform polling for determination. For specific content, reference may be made to related descriptions in the foregoing embodiments, and details are not repeated here.
  • the target sensing node device uses the sensing node screening information and the preset The voting rules determine the sensing node devices in the sensing node device group by voting. For specific content, reference may be made to related descriptions in the foregoing embodiments, and details are not repeated here.
  • step S404 to step S406 can refer to the relevant description in the above embodiment, and will not be repeated here.
  • the user terminal may display the push information corresponding to the node identifier of the target sensing node device by displaying a pop-up window page.
  • the above step S403 can be detailed as: sending the address of the pop-up window page to the user terminal.
  • the pop-up page includes push information corresponding to the node identifier of the target sensing node device.
  • Fig. 13 is a flow chart of another embodiment of the method for obtaining information based on offline shopping provided by the third aspect of the present application. The difference between FIG. 13 and FIG. 11 is that the method for obtaining information based on offline shopping shown in FIG. 13 may further include steps S407 to S410.
  • step S407 a third message sent by the user terminal in response to the first input to the user terminal is received.
  • step S408 in response to the third message, execute the first task corresponding to the first input.
  • the first task is related to pushing information.
  • For specific content of the first task reference may be made to relevant descriptions in the foregoing embodiments, and details are not repeated here.
  • step S409 task execution result information is obtained based on the execution result of the first task.
  • the execution result includes whether the first task is executed successfully, task products, etc., which are not limited here.
  • the task execution result information may represent the execution result of the first task.
  • step S410 task execution result information is sent to the user terminal.
  • the push information includes commodity order information.
  • the first task may include an order combination task
  • the task execution result information may include an order combination result identifier and/or a combination order pickup code.
  • a list task can include creating a list task or joining a list task.
  • the push information includes coupon information
  • the first task may include a coupon payment task
  • the task execution result information may include a coupon payment result identifier
  • step S407 to step S410 can refer to the relevant description in the above embodiment, and will not be repeated here.
  • FIG. 14 is a flow chart of an example of an offline combined order shopping process provided by the embodiment of the present application.
  • the offline combined order shopping process may include steps S501 to S521.
  • step S501 the background server receives configuration instructions.
  • step S502 the background server configures the corresponding relationship between the node identification of the sensing node device and the push information in response to the configuration instruction.
  • step S503 when the user terminal is located in the sensing area formed by the sensing node device group, the sensing node device acquires sensing information of the user terminal.
  • step S504 the sensing node device sends sensing information to the background server.
  • step S505 the background server performs data calculation according to the sensing information to obtain sensing node screening information.
  • step S506 the background server sends sensing node screening information to the sensing node device.
  • step S507 the sensing node device determines a target sensing node device according to the sensing node screening information.
  • step S508 the target sensing node device broadcasts a first message to the user terminal, where the first message includes the node identifier of the target sensing node device.
  • step S509 the user terminal performs legality verification on the first message.
  • step S510 in the case that the validity verification of the first message is successful, the user terminal performs communication verification with the background server, and in the case of successful communication verification, sends a second message to the background server, the second message includes the target sensing node device node ID.
  • step S511 the backend server searches for commodity order information corresponding to the node identifier of the target sensing node device.
  • step S512 the backend server sends commodity order information corresponding to the node identifier of the target sensing node device to the user terminal.
  • step S513 the user terminal invokes and displays a pop-up window page, and the pop-up window page includes commodity order information corresponding to the node identifier of the target sensing node device.
  • step S514 the user terminal receives the user's input on the pop-up window page, and determines the combined order commodity information.
  • step S515 the user terminal sends the combined order commodity information to the background server.
  • step S5166 the backend server matches the users related to the combined item information.
  • step S517 the backend server sends the matching result of the user related to the information of the combined item to the user terminal.
  • step S5128 the user terminal receives the user's input, and determines to create or join the order.
  • step S519 the user terminal sends a message to the background server indicating to create or join a consolidation order.
  • step S520 the background server generates a commodity pickup code.
  • step S521 the background server sends the product pickup code to the user terminal.
  • the user can receive the push information of the product or physical store corresponding to the area where the user is in the absence of perception. It does not require the user to actively query the information, which simplifies the process of information acquisition. It also reduces the time required for users to obtain information, and improves the user's offline shopping experience.
  • FIG. 15 is a schematic structural diagram of an embodiment of a user terminal provided in the fourth aspect of the present application.
  • the user terminal 600 includes a first receiving module 601 , a first sending module 602 and a display module 603 .
  • the first receiving module 601 may be configured to receive a first message sent by a target sensing node device in the sensing node device group when the user terminal is located in the sensing area formed by the sensing node device group.
  • the first message includes the node identification of the target sensing node device.
  • the target sensing node device is determined based on the sensing information of the user terminal acquired by the sensing node device group.
  • the sensing information includes one or more of the following: user terminal signal strength, user terminal identification, time, and user terminal motion information.
  • the sensing node device has a non-contact sensing unit, and the sensing area formed by the sensing node device group is a non-contact sensing area.
  • the first sending module 602 may be configured to send a second message to the background server based on the first message.
  • the second message includes a node identification of the target sensing node device.
  • the first receiving module 601 is further configured to receive push information sent by the background server and having a corresponding relationship with the node identifier of the target sensing node device.
  • the sensing node device group includes a first sensing node device group to an Nth sensing node device group, where N is an integer greater than 1.
  • the push information corresponding to the node identifier of the sensing node device in the i-th sensing node device group is different from the push information corresponding to the node identifier of the sensing node device in the j-th sensing node device group, i and j are integers, i ⁇ j, 1 ⁇ i ⁇ N, 1 ⁇ j ⁇ N.
  • the sensing node device group includes a first sensing node device group to an Nth sensing node device group, where N is an integer greater than 1.
  • the push information corresponding to the node identifier of the sensing node device in the i-th sensing node device group is the same as the push information corresponding to the node identifier of the sensing node device in the j-th sensing node device group, i and j are integers, i ⁇ j, 1 ⁇ i ⁇ N, 1 ⁇ j ⁇ N.
  • the push information having a corresponding relationship with the node identifiers of the sensing node devices in the same sensing node device group is the same.
  • the push information having a corresponding relationship with the node identifiers of at least two sensing node devices in the same sensing node device group is different.
  • the push information includes coupon information and/or commodity order information.
  • the display module 603 can be used to display push information corresponding to the node identifier of the target sensing node device.
  • the user terminal when the user terminal is located in the sensing area formed by the sensing node device group, it can receive the node identification of the target sensing node device sent by the sensing node device group target sensing node device, and send the target sensing node device
  • the node identification of the target sensing node is sent to the background server, so that the background server can actively send push information corresponding to the node ID of the target sensor node to the user terminal, and the user terminal can spontaneously display the push information.
  • the process for the user terminal to acquire the push information saves the steps for the user to actively search for information, reduces user operations, simplifies the process of obtaining information, and also reduces the time spent in obtaining information, improving user experience.
  • the push information sent to the user terminal in the embodiment of the present application is related to the sensing area where the user terminal is located, which realizes accurate push of information and improves user experience.
  • the above-mentioned first receiving module 601 may be configured to receive the address of the pop-up page sent by the background server.
  • the pop-up page includes push information corresponding to the node identifier of the target sensing node device.
  • the above-mentioned first receiving module 601 and first sending module 602 can also be used to access the address of the pop-up window page.
  • the above-mentioned display module 603 can be used to trigger the display of the pop-up window page.
  • the above-mentioned first sending module 602 is further configured to send a third message to the background server in response to the first input to the user terminal.
  • the third message is used to instruct the background server to execute the first task corresponding to the first input.
  • the first task is related to pushing information.
  • the above-mentioned first receiving module 601 may also be configured to receive task execution result information sent by the background server, and the task execution result information is obtained based on the execution result of the first task.
  • the push information includes commodity order information
  • the first task includes an order combination task
  • the task execution result information includes an order combination result identifier and/or a combination order pickup code.
  • a list task includes creating a list task or joining a list task.
  • the push information includes coupon information
  • the first task includes a coupon payment task
  • the task execution result information includes a coupon payment result identifier
  • FIG. 16 is a schematic structural diagram of an embodiment of a sensing node device provided in the fifth aspect of the present application.
  • the sensing node device 700 may include a first acquiring module 701 , a processing module 702 and a second sending module 703 .
  • the first obtaining module 701 may be configured to obtain sensing information of the user terminal when the user terminal is located in a sensing area formed by a group of sensing node devices.
  • the sensing node device group includes sensing node devices.
  • the sensing node device has a non-contact sensing unit, and the sensing area formed by the sensing node device group is a non-contact sensing area.
  • the sensing information includes one or more of the following: user terminal signal strength, user terminal identification, time, and user terminal motion information.
  • the processing module 702 may be configured to determine a target sensing node device in the sensing node device group based on the sensing information.
  • the second sending module 703 can be used to send the first message when the sensing node device is the target sensing node device, so that the user terminal can obtain the first message, and send the second message to the background server, so that the user terminal can receive the message sent by the background server.
  • Push information that has a corresponding relationship with the node identifier of the target sensing node device.
  • the first message includes the node identification of the target sensing node device.
  • the second message is generated based on the first message, and the second message includes the node identifier of the target sensing node device.
  • the sensing node device group includes a first sensing node device group to an Nth sensing node device group, where N is an integer greater than 1.
  • the push information corresponding to the node identifier of the sensing node device in the i-th sensing node device group is different from the push information corresponding to the node identifier of the sensing node device in the j-th sensing node device group, i and j are integers, i ⁇ j, 1 ⁇ i ⁇ N, 1 ⁇ j ⁇ N.
  • the sensing node device group includes a first sensing node device group to an Nth sensing node device group, where N is an integer greater than 1.
  • the push information corresponding to the node identifier of the sensing node device in the i-th sensing node device group is the same as the push information corresponding to the node identifier of the sensing node device in the j-th sensing node device group, i and j are integers, i ⁇ j, 1 ⁇ i ⁇ N, 1 ⁇ j ⁇ N.
  • the push information having a corresponding relationship with the node identifiers of the sensing node devices in the same sensing node device group is the same.
  • the push information having a corresponding relationship with the node identifiers of at least two sensing node devices in the same sensing node device group is different.
  • the push information includes coupon information and/or commodity order information.
  • the push information is used to trigger the user terminal to display a pop-up webpage
  • the pop-up webpage includes push information corresponding to the node identifier of the target sensing node device.
  • the sensing node device in the sensing node device group can obtain the sensing information of the terminal device, and based on the sensing information, determine the sensing node device in the sensing node device group The target sensor node device.
  • the target sensing node device can send the node identification of the target sensing node device to the user terminal, so that the user terminal sends the node identification of the target sensing node device to the background server, so that the background server can actively send the node identification of the target sensing node device to the user terminal.
  • the node identification of the push information that has a corresponding relationship.
  • the user terminal can display the push information spontaneously.
  • the process for the user terminal to acquire the push information saves the steps for the user to actively search for information, reduces user operations, simplifies the process of obtaining information, and also reduces the time spent in obtaining information, improving user experience.
  • the push information sent to the user terminal in the embodiment of the present application is related to the sensing area where the user terminal is located, which realizes accurate push of information and improves user experience.
  • Fig. 17 is a schematic structural diagram of another embodiment of the sensing node device provided in the fifth aspect of the present application.
  • the difference between FIG. 17 and FIG. 16 is that the sensing node device 700 shown in FIG. 17 may further include a second receiving module 704 .
  • the above-mentioned second sending module 703 may be used to send sensing information to the background server.
  • the second receiving module 704 may be configured to receive the sensing node screening information sent by the background server.
  • the sensing node screening information is determined by the background server according to the sensing information.
  • the sensing node screening information includes user terminal location information and/or sensing node operating information.
  • the above-mentioned processing module 702 may be configured to determine a target sensing node device in the sensing node device group according to the sensing node screening information.
  • the above-mentioned processing module 702 may be configured to: in the case that the sensing node screening information includes user terminal location information, according to the user terminal location information, calculate the location distance between the sensing node device group and the user terminal indicated by the user terminal location information The closest sensing node device is determined as the target sensing node device.
  • the processing module 702 may be configured to: when the sensing node screening information includes sensing node operating information, or the sensing node screening information includes sensing node operating information and user terminal location information, according to the sensing node screening information is Polling is performed to determine the target sensing node device.
  • the above-mentioned processing module 702 may be configured to: when the sensing node screening information includes sensing node operation information, or the sensing node screening information includes sensing node operating information and user terminal location information, according to the sensing node screening information and The preset voting rules are used to vote the sensing node devices in the sensing node device group to determine the target sensing node device.
  • FIG. 18 is a schematic structural diagram of an embodiment of a background server provided in the sixth aspect of the present application.
  • the background server 800 may include a third receiving module 801 , a second acquiring module 802 and a third sending module 803 .
  • the third receiving module 801 may be configured to receive the second message sent by the user terminal.
  • the second message is generated by the user terminal based on the first message sent from the target sensing node device in the sensing node device group.
  • the second message includes a node identification of the target sensing node device.
  • the first message includes the node identification of the target sensing node device.
  • a sensing node device group forms a sensing area. The target sensing node is determined based on the sensing information of the user terminal acquired by the sensing node device group.
  • the sensing node device has a non-contact sensing unit, and the sensing area formed by the sensing node device group is a non-contact sensing area.
  • the sensing information includes one or more of the following: user terminal signal strength, user terminal identification, time, and user terminal motion information.
  • the second acquiring module 802 may be configured to acquire, according to the node identifier of the target sensing node device, push information corresponding to the node identifier of the target sensing node device.
  • the sensing node device group includes a first sensing node device group to an Nth sensing node device group, where N is an integer greater than 1.
  • the push information corresponding to the node identifier of the sensing node device in the i-th sensing node device group is different from the push information corresponding to the node identifier of the sensing node device in the j-th sensing node device group, i and j are integers, i ⁇ j, 1 ⁇ i ⁇ N, 1 ⁇ j ⁇ N.
  • the sensing node device group includes a first sensing node device group to an Nth sensing node device group, where N is an integer greater than 1.
  • the push information corresponding to the node identifier of the sensing node device in the i-th sensing node device group is the same as the push information corresponding to the node identifier of the sensing node device in the j-th sensing node device group, i and j are integers, i ⁇ j, 1 ⁇ i ⁇ N, 1 ⁇ j ⁇ N.
  • the push information having a corresponding relationship with the node identifiers of the sensing node devices in the same sensing node device group is the same.
  • the push information having a corresponding relationship with the node identifiers of at least two sensing node devices in the same sensing node device group is different.
  • the push information includes coupon information and/or commodity order information.
  • the third sending module 803 may be configured to send push information corresponding to the node identifier of the target sensing node device to the user terminal, so that the user terminal displays the push information corresponding to the node identifier of the target sensing node device.
  • the sensing node device in the sensing node device group can obtain the sensing information of the terminal device, and based on the sensing information, determine the sensing node device in the sensing node device group The target sensor node device.
  • the target sensing node device may send the node identifier of the target sensing node device to the user terminal.
  • the background server can receive the node identification of the target sensing node device sent by the user terminal, and actively send push information corresponding to the node identification of the target sensing node to the user terminal, so that the user terminal can spontaneously display the push information.
  • the process for the user terminal to acquire the push information saves the steps for the user to actively search for information, reduces user operations, simplifies the process of obtaining information, and also reduces the time spent in obtaining information, improving user experience.
  • the push information sent to the user terminal in the embodiment of the present application is related to the sensing area where the user terminal is located, which realizes accurate push of information and improves user experience.
  • Fig. 19 is a schematic structural diagram of another embodiment of the background server provided in the sixth aspect of the present application.
  • the difference between FIG. 19 and FIG. 18 is that the background server shown in FIG. 19 may further include a computing module 804 .
  • the above-mentioned third receiving module 801 may be configured to receive the sensing information sent by the sensing node devices in the sensing node device group.
  • the computing module 804 may be configured to obtain sensing node screening information according to the sensing information.
  • the sensing node screening information includes user terminal location information and/or sensing node operating information.
  • the above-mentioned third sending module 803 may be configured to send sensing node screening information to the sensing node device group, so that the sensing node device group determines the target sensing node device according to the sensing node screening information.
  • the target sensing node device is the sensing node device in the sensing node device group that is closest to the location of the user terminal indicated by the user terminal location information.
  • the target sensing node device when the sensing node screening information includes sensing node operation information, or the sensing node screening information includes sensing node operating information and user terminal location information, the target sensing node device sends a message to the sensing node device according to the sensing node screening information.
  • the sensing node devices in the group perform polling for determination.
  • the target sensing node device uses the sensing node screening information and the preset The voting rules determine the sensing node devices in the sensing node device group by voting.
  • the above-mentioned third sending module 803 may be configured to send the address of the pop-up window page to the user terminal.
  • the pop-up window page includes push information corresponding to the node identification of the target sensing node device.
  • FIG. 20 is a schematic structural diagram of another embodiment of the background server provided in the sixth aspect of the present application.
  • the difference between FIG. 20 and FIG. 18 is that the background server 800 shown in FIG. 20 may further include an execution module 805 .
  • the above-mentioned third receiving module 801 may also be configured to receive a third message sent by the user terminal in response to the first input to the user terminal.
  • the execution module 805 may be configured to execute the first task corresponding to the first input in response to the third message, and to obtain task execution result information based on the execution result of the first task.
  • the first task is related to pushing information.
  • the above-mentioned third sending module 803 may be configured to send task execution result information to the user terminal.
  • the push information includes commodity order information
  • the first task includes an order combination task
  • the task execution result information includes an order combination result identifier and/or a combination order pickup code.
  • a list task includes creating a list task or joining a list task.
  • the push information includes coupon information
  • the first task includes a coupon payment task
  • the task execution result information includes a coupon payment result identifier
  • the seventh aspect of the present application also provides a user terminal.
  • Fig. 21 is a schematic structural diagram of an embodiment of a user terminal provided in the seventh aspect of the present application.
  • the user terminal 900 includes a first memory 901 , a first processor 902 and computer programs stored in the first memory 901 and operable on the first processor 902 .
  • the above-mentioned first processor 902 may include a central processing unit (CPU), or a specific integrated circuit (Application Specific Integrated Circuit, ASIC), or may be configured to implement one or more integrated circuits of the embodiments of the present application .
  • CPU central processing unit
  • ASIC Application Specific Integrated Circuit
  • the first memory 901 may include a read-only memory (Read-Only Memory, ROM), a random access memory (Random Access Memory, RAM), a magnetic disk storage medium device, an optical storage medium device, a flash memory device, electrical, optical or other physical/ Tangible memory storage device.
  • ROM read-only memory
  • RAM random access memory
  • magnetic disk storage medium device e.g., a magnetic disk storage medium
  • optical storage medium device e.g., compact flash memory
  • flash memory e.g., compact flash memory
  • electrical, optical or other physical/ Tangible memory storage device e.g., electrically or other physical/ Tangible memory storage device.
  • memory includes one or more tangible (non-transitory) computer-readable storage media (e.g., memory devices) encoded with software comprising computer-executable instructions, and when the software is executed (e.g., by one or multiple processors), it is operable to execute the operations described with reference to the method for acquiring information based on offline shopping according to the first aspect of
  • the first processor 902 runs the computer program corresponding to the executable program code by reading the executable program code stored in the first memory 901, so as to realize the information acquisition based on offline shopping in the first aspect of the above-mentioned embodiment method.
  • the user terminal 900 may further include a first communication interface 903 and a first bus 904 .
  • the first memory 901 , the first processor 902 , and the first communication interface 903 are connected through a first bus 904 to complete mutual communication.
  • the first communication interface 903 is mainly used to implement communication between various modules, devices, units and/or devices in the embodiments of the present application. An input device and/or an output device may also be accessed through the first communication interface 903 .
  • the first bus 904 includes hardware, software or both, and couples the components of the user terminal 900 to each other.
  • the first bus 904 may include an Accelerated Graphics Port (AGP) or other graphics bus, an Enhanced Industry Standard Architecture (Enhanced Industry Standard Architecture, EISA) bus, a Front Side Bus (FSB) ), Hyper Transport (HT) interconnect, Industrial Standard Architecture (ISA) bus, InfiniBand interconnect, Low pin count (Low pin count, LPC) bus, memory bus, micro-channel architecture ( Micro Channel Architecture (MCA) bus, Peripheral Component Interconnect (PCI) bus, PCI-Express (PCI-X) bus, Serial Advanced Technology Attachment (SATA) bus, Video Electronics Standards Association Local (Video Electronics Standards Association Local Bus, VLB) bus or other suitable bus or a combination of two or more of these.
  • the first bus 904 may include one or more buses, where appropriate. Although the embodiments of this application describe and illustrate a particular bus, this application contemplates any suitable bus or interconnect.
  • the eighth aspect of the present application further provides a sensing node device.
  • Fig. 22 is a schematic structural diagram of an embodiment of a sensing node device provided in the eighth aspect of the present application.
  • the sensing node device 1000 includes a second memory 1001 , a second processor 1002 and a computer program stored in the second memory 1001 and operable on the second processor 1002 .
  • the above-mentioned second processor 1002 may include a central processing unit (CPU), or a specific integrated circuit (Application Specific Integrated Circuit, ASIC), or may be configured to implement one or more integrated circuits of the embodiments of the present application .
  • CPU central processing unit
  • ASIC Application Specific Integrated Circuit
  • the second memory 1001 may include a read-only memory (Read-Only Memory, ROM), a random access memory (Random Access Memory, RAM), a magnetic disk storage medium device, an optical storage medium device, a flash memory device, electrical, optical or other physical/ Tangible memory storage device.
  • ROM read-only memory
  • RAM random access memory
  • magnetic disk storage medium device e.g., a magnetic disk storage medium
  • optical storage medium device e.g., compact flash memory
  • flash memory e.g., compact flash memory
  • the second processor 1002 runs the computer program corresponding to the executable program code by reading the executable program code stored in the second memory 1001, so as to realize the acquisition of information based on offline shopping in the second aspect of the above-mentioned embodiment method.
  • the sensing node device 1000 may further include a second communication interface 1003 and a second bus 1004 .
  • the second memory 1001 , the second processor 1002 , and the second communication interface 1003 are connected through a second bus 1004 to complete mutual communication.
  • the second communication interface 1003 is mainly used to implement communication between modules, devices, units and/or devices in the embodiments of the present application. An input device and/or an output device may also be accessed through the second communication interface 1003 .
  • the second bus 1004 includes hardware, software or both, and couples the components of the sensing node device 1000 to each other.
  • the second bus 1004 may include an Accelerated Graphics Port (AGP) or other graphics bus, an Enhanced Industry Standard Architecture (Enhanced Industry Standard Architecture, EISA) bus, a Front Side Bus (FSB) ), Hyper Transport (HT) interconnect, Industrial Standard Architecture (ISA) bus, InfiniBand interconnect, Low pin count (Low pin count, LPC) bus, memory bus, micro-channel architecture ( Micro Channel Architecture (MCA) bus, Peripheral Component Interconnect (PCI) bus, PCI-Express (PCI-X) bus, Serial Advanced Technology Attachment (SATA) bus, Video Electronics Standards Association Local (Video Electronics Standards Association Local Bus, VLB) bus or other suitable bus or a combination of two or more of these.
  • Second bus 1004 may include one or more buses, where appropriate. Although the embodiments of this application describe and illustrate a particular bus, this application contemplates any suitable bus or interconnect.
  • the ninth aspect of the present application also provides a background server.
  • Fig. 23 is a schematic structural diagram of an embodiment of the background server provided in the ninth aspect of the present application.
  • the background server 1100 includes a third memory 1101 , a third processor 1102 and computer programs stored on the third memory 1101 and operable on the third processor 1102 .
  • the above-mentioned third processor 1102 may include a central processing unit (CPU), or a specific integrated circuit (Application Specific Integrated Circuit, ASIC), or may be configured to implement one or more integrated circuits of the embodiments of the present application .
  • CPU central processing unit
  • ASIC Application Specific Integrated Circuit
  • the third memory 1101 may include a read-only memory (Read-Only Memory, ROM), a random access memory (Random Access Memory, RAM), a disk storage medium device, an optical storage medium device, a flash memory device, electrical, optical or other physical/ Tangible memory storage device.
  • ROM read-only memory
  • RAM random access memory
  • disk storage medium device e.g., an optical storage medium
  • flash memory device e.g., electrical, optical or other physical/ Tangible memory storage device.
  • memory includes one or more tangible (non-transitory) computer-readable storage media (e.g., memory devices) encoded with software comprising computer-executable instructions, and when the software is executed (e.g., by one or multiple processors), it is operable to execute the operations described with reference to the method for acquiring information based on offline shopping according to the third aspect in the embodiments of the present application.
  • the third processor 1102 runs the computer program corresponding to the executable program code by reading the executable program code stored in the third memory 1101, so as to realize the information acquisition based on offline shopping in the third aspect of the above-mentioned embodiment method.
  • the background server 1100 may further include a third communication interface 1103 and a third bus 1104 .
  • the third memory 1101 , the third processor 1102 , and the third communication interface 1103 are connected through a third bus 1104 to complete mutual communication.
  • the third communication interface 1103 is mainly used to implement communication between various modules, devices, units and/or devices in the embodiments of the present application. An input device and/or an output device may also be accessed through the third communication interface 1103 .
  • the third bus 1104 includes hardware, software or both, and couples the components of the background server 1100 to each other.
  • the third bus 1104 may include an Accelerated Graphics Port (AGP) or other graphics bus, an Enhanced Industry Standard Architecture (Enhanced Industry Standard Architecture, EISA) bus, a Front Side Bus (FSB) ), Hyper Transport (HT) interconnect, Industrial Standard Architecture (ISA) bus, InfiniBand interconnect, Low pin count (Low pin count, LPC) bus, memory bus, micro-channel architecture ( Micro Channel Architecture (MCA) bus, Peripheral Component Interconnect (PCI) bus, PCI-Express (PCI-X) bus, Serial Advanced Technology Attachment (SATA) bus, Video Electronics Standards Association Local (Video Electronics Standards Association Local Bus, VLB) bus or other suitable bus or a combination of two or more of these.
  • Third bus 1104 may include one or more buses, where appropriate. Although the embodiments of this application describe and illustrate a particular bus, this application contemplates any suitable bus or interconnect.
  • the tenth aspect of the present application provides an information acquisition system based on offline shopping.
  • the information acquisition system based on offline shopping may include the user terminal, the sensing node device and the background server in the above-mentioned embodiments.
  • the relevant content in the above-mentioned embodiments which will not be repeated here.
  • the eleventh aspect of the present application also provides a computer-readable storage medium, on which computer program instructions are stored.
  • the wire-based The method for obtaining information about offline shopping, the method for obtaining information based on offline shopping in the second aspect, or the method for obtaining information based on offline shopping in the third aspect can achieve the same technical effect, and will not be repeated here to avoid repetition.
  • the above-mentioned computer-readable storage medium may include a non-transitory computer-readable storage medium, such as a read-only memory (Read-Only Memory, ROM for short), a random access memory (Random Access Memory, RAM for short), a magnetic disk or an optical disk. etc., are not limited here.
  • processors may be, but are not limited to, general purpose processors, special purpose processors, application specific processors, or field programmable logic circuits. It can also be understood that each block in the block diagrams and/or flowcharts and combinations of blocks in the block diagrams and/or flowcharts can also be realized by dedicated hardware for performing specified functions or actions, or can be implemented by dedicated hardware and Combination of computer instructions to achieve.

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Abstract

一种基于线下购物的信息获取方法、终端、系统及介质,属于数据处理领域。该方法包括:在用户终端位于感应节点设备组形成的感应区域内的情况下,接收感应节点设备组中目标感应节点设备发送的第一消息,第一消息包括目标感应节点设备的节点标识,目标感应节点设备基于感应节点设备组获取的用户终端的感应信息确定;基于第一消息,向后台服务器发送第二消息,第二消息包括目标感应节点设备的节点标识;接收后台服务器发送的与目标感应节点设备的节点标识具有对应关系的推送信息;显示与目标感应节点设备的节点标识具有对应关系的推送信息。

Description

基于线下购物的信息获取方法、终端、系统及介质
相关申请的交叉引用
本申请要求享有于2022年01月06日提交的名称为“基于线下购物的信息获取方法、终端、系统及介质”的中国专利申请202210007937.6的优先权,该申请的全部内容通过引用并入本文中。
技术领域
本申请属于数据处理领域,尤其涉及一种基于线下购物的信息获取方法、终端、系统及介质。
背景技术
随着信息技术的发展,线上购物在人们生活中越来越普遍,但线下购物在人们的生活中依然占据了重要地位。
在进行线下购物如在商场内的实体店内进行购物的情况下,用户可要求导购人员讲解商品的活动信息或优惠信息等,或者,用户可通过购物软件查找对应商品的活动信息或优惠信息。但上述信息获取的过程需要用户参与,较为繁琐,花费时间较长。
发明内容
本申请实施例提供一种基于线下购物的信息获取方法、终端、系统及介质,能够简化线下购物的获取信息的过程。
第一方面,本申请实施例提供一种基于线下购物的信息获取方法,应用于用户终端,方法包括:在用户终端位于感应节点设备组形成的感应区域内的情况下,接收感应节点设备组中目标感应节点设备发送的第一消息,第一消息包括目标感应节点设备的节点标识,目标感应节点设备基于感应节点设备组获取的用户终端的感应信息确定;基于第一消息,向后台 服务器发送第二消息,第二消息包括目标感应节点设备的节点标识;接收后台服务器发送的与目标感应节点设备的节点标识具有对应关系的推送信息;显示与目标感应节点设备的节点标识具有对应关系的推送信息。
第二方面,本申请实施例提供一种基于线下购物的信息获取方法,应用于感应节点设备组,感应节点设备组包括感应节点设备,感应节点设备组形成感应区域,方法包括:在用户终端位于感应区域的情况下,获取用户终端的感应信息;基于感应信息,确定感应节点设备组中的目标感应节点设备;由目标感应节点设备发送第一消息,以使用户终端获取第一消息,并向后台服务器发送第二消息,使用户终端接收后台服务器发送的与目标感应节点设备的节点标识具有对应关系的推送信息,第一消息包括目标感应节点设备的节点标识,第二消息基于第一消息生成,第二消息包括目标感应节点设备的节点标识。
第三方面,本申请实施例提供一种基于线下购物的信息获取方法,应用于后台服务器,方法包括:接收用户终端发送的第二消息,第二消息由用户终端基于从感应节点设备组中目标感应节点设备发送的第一消息生成,第二消息包括目标感应节点设备的节点标识,第一消息包括目标感应节点设备的节点标识,感应节点设备组形成感应区域,目标感应节点基于感应节点设备组获取的用户终端的感应信息确定;根据目标感应节点设备的节点标识,获取与目标感应节点设备的节点标识具有对应关系的推送信息;向用户终端发送与目标感应节点设备的节点标识具有对应关系的推送信息,以使用户终端显示与目标感应节点设备的节点标识具有对应关系的推送信息。
第四方面,本申请实施例提供一种用户终端,包括:接收模块,用于在用户终端位于感应节点设备组形成的感应区域内的情况下,接收感应节点设备组中目标感应节点设备发送的第一消息,第一消息包括目标感应节点设备的节点标识,目标感应节点设备基于感应节点设备组获取的用户终端的感应信息确定;发送模块,用于基于第一消息,向后台服务器发送第二消息,第二消息包括目标感应节点设备的节点标识;接收模块还用于接收后台服务器发送的与目标感应节点设备的节点标识具有对应关系的推送 信息;显示模块,用于显示与目标感应节点设备的节点标识具有对应关系的推送信息。
第五方面,本申请实施例提供一种感应节点设备,包括:获取模块,用于在用户终端位于感应节点设备组形成的感应区域的情况下,获取用户终端的感应信息,感应节点设备组包括感应节点设备;处理模块,用于基于感应信息,确定感应节点设备组中的目标感应节点设备;发送模块,用于在感应节点设备为目标感应节点设备的情况下,发送第一消息,以使用户终端获取第一消息,并向后台服务器发送第二消息,使用户终端接收后台服务器发送的与目标感应节点设备的节点标识具有对应关系的推送信息,第一消息包括目标感应节点设备的节点标识,第二消息基于第一消息生成,第二消息包括目标感应节点设备的节点标识。
第六方面,本申请实施例提供一种后台服务器,包括:接收模块,用于接收用户终端发送的第二消息,第二消息由用户终端基于从感应节点设备组中目标感应节点设备发送的第一消息生成,第二消息包括目标感应节点设备的节点标识,第一消息包括目标感应节点设备的节点标识,感应节点设备组形成感应区域,目标感应节点基于感应节点设备组获取的用户终端的感应信息确定;获取模块,用于根据目标感应节点设备的节点标识,获取与目标感应节点设备的节点标识具有对应关系的推送信息;发送模块,用于向用户终端发送与目标感应节点设备的节点标识具有对应关系的推送信息,以使用户终端显示与目标感应节点设备的节点标识具有对应关系的推送信息。
第七方面,本申请实施例提供一种用户终端,包括:处理器以及存储有计算机程序指令的存储器;处理器执行计算机程序指令时实现第一方面的基于线下购物的信息获取方法。
第八方面,本申请实施例提供一种感应节点设备,包括:处理器以及存储有计算机程序指令的存储器;处理器执行计算机程序指令时实现第二方面的基于线下购物的信息获取方法。
第九方面,本申请实施例提供一种后台服务器,包括:处理器以及存储有计算机程序指令的存储器;处理器执行计算机程序指令时实现第三方 面的基于线下购物的信息获取方法。
第十方面,本申请实施例提供一种基于线下购物的信息获取系统,包括第七方面的用户终端、第八方面的感应节点设备和第九方面的后台服务器。
第十一方面,本申请实施例提供一种计算机可读存储介质,计算机可读存储介质上存储有计算机程序指令,计算机程序指令被处理器执行时实现如第一方面的基于线下购物的信息获取方法、第二方面的基于线下购物的信息获取方法或第三方面的基于线下购物的信息获取方法。
本申请实施例提供一种基于线下购物的信息获取方法、终端、系统及介质,在用户终端位于感应节点设备组形成的感应区域内的情况下,能够接收感应节点设备组目标感应节点设备发送该目标感应节点设备的节点标识,并将该目标感应节点的节点标识向后台服务器发送,以使后台服务器能够根据主动向用户终端发送与该目标感应节点的节点标识具有对应关系的推送信息,用户终端可自发地显示该推送信息。用户终端获取该推送信息的过程省去了用户主动查找信息的步骤,减少了用户的操作,简化了获取信息的过程,也减少了获取信息花费的时间。
附图说明
为了更清楚地说明本申请实施例的技术方案,下面将对本申请实施例中所需要使用的附图作简单的介绍,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1为本申请实施例提供的基于线下购物的信息获取方法的应用场景的一示例的示意图;
图2为本申请实施例提供的基于线下购物的信息获取方法的应用场景的另一示例的示意图;
图3为本申请第一方面提供的基于线下购物的信息获取方法的一实施例的流程图;
图4为本申请第一方面提供的基于线下购物的信息获取方法的另一实施例的流程图;
图5为本申请实施例提供的用户终端的弹窗页面的一示例的示意图;
图6为本申请实施例提供的用户终端的弹窗页面的另一示例的示意图;
图7为本申请实施例提供的用户终端的弹窗页面的又一示例的示意图;
图8为本申请第一方面提供的基于线下购物的信息获取方法的又一实施例的流程图;
图9为本申请第二方面提供的基于线下购物的信息获取方法的一实施例的流程图;
图10为本申请第二方面提供的基于线下购物的信息获取方法的另一实施例的流程图;
图11为本申请第三方面提供的基于线下购物的信息获取方法的一实施例的流程图;
图12为本申请第三方面提供的基于线下购物的信息获取方法的另一实施例的流程图;
图13为本申请第三方面提供的基于线下购物的信息获取方法的又一实施例的流程图;
图14为本申请实施例提供的线下拼单购物流程的一示例的流程图;
图15为本申请第四方面提供的用户终端的一实施例的结构示意图;
图16为本申请第五方面提供的感应节点设备的一实施例的结构示意图;
图17为本申请第五方面提供的感应节点设备的另一实施例的结构示意图;
图18为本申请第六方面提供的后台服务器的一实施例的结构示意图;
图19为本申请第六方面提供的后台服务器的另一实施例的结构示意图;
图20为本申请第六方面提供的后台服务器的又一实施例的结构示意图;
图21为本申请第七方面提供的用户终端的一实施例的结构示意图;
图22为本申请第八方面提供的感应节点设备的一实施例的结构示意图;
图23为本申请第九方面提供的后台服务器的一实施例的结构示意图。
具体实施方式
下面将详细描述本申请的各个方面的特征和示例性实施例,为了使本申请的目的、技术方案及优点更加清楚明白,以下结合附图及具体实施例,对本申请进行进一步详细描述。应理解,此处所描述的具体实施例仅意在解释本申请,而不是限定本申请。对于本领域技术人员来说,本申请可以在不需要这些具体细节中的一些细节的情况下实施。下面对实施例的描述仅仅是为了通过示出本申请的示例来提供对本申请更好的理解。
随着信息技术的发展,线上购物在人们生活中越来越普遍,但线下购物在人们的生活中依然占据了重要地位。在进行线下购物如在实体店内进行购物的情况下,为了节省花费,用户可要求导购人员讲解商品的活动信息或优惠信息等,或者,用户可通过购物软件查找对应商品的活动信息或优惠信息等,但上述活动信息或优惠信息等获取的过程较为繁琐,需要花费较多时间。
本申请实施例提供一种基于线下购物的信息获取方法、终端、系统及介质,能够在用户进行线下购物的情况下,感应携带有用户终端的用户是否进入感应区域,在用户终端位于感应区域的情况下,根据形成感应区域的感应节点设备组获取到的用户终端的感应信息,可在感应节点设备组中确定目标感应节点设备,后台服务器向用户终端发送与目标感应节点设备对应的活动信息或优惠信息等推送信息,以使用户终端自动显示活动信息或优惠信息等推送信息,不需用户手动查询,简化了用户获取活动信息或优惠信息等的过程,减少了用户获取活动信息或优惠信息等所花费的时间。
本申请实施例中的基于线下购物的信息获取方法可涉及感应节点设备 组、用户终端和后台服务器,可应用于线下购物如实体店购物或商场购物等场景中。
图1为本申请实施例提供的基于线下购物的信息获取方法的应用场景的一示例的示意图。图1所示的应用场景可为一实体店内,如图1所示,实体店内设置有三个感应节点设备组,每个感应节点设备组形成一个感应区域。第一个感应节点设备组包括第一感应节点设备A1、第二感应节点设备A2和第三感应节点设备A3,可形成第一感应区域B1。第二个感应节点设备组包括第一感应节点设备A1、第三感应节点设备A3和第四感应节点设备A4,可形成第二感应区域B2。第三个感应节点设备组包括第一感应节点设备A1、第四感应节点设备A4、第五感应节点设备A5和第六感应节点设备A6,可形成第三感应区域B3。感应节点设备组可包括多个感应节点设备,在此并不限定每个感应节点设备组中感应节点设备的数量。在一些示例中,感应节点设备组中感应节点设备的数量大于或等于3。不同的感应节点设备组可共用部分感应节点设备,在此并不限定。
感应节点设备具有感应功能,能够感应到进入感应区域的用户终端。例如,在用户终端位于第二感应区域B2的情况下,第一感应节点设备A1、第三感应节点设备A3和第四感应节点设备A4可感应到该用户终端,确定该用户终端位于第二感应区域B2。在一些情况下,在用户终端位于第二感应区域B2的情况下,除第一感应节点设备A1、第三感应节点设备A3和第四感应节点设备A4以外的感应节点设备也可感应到该用户终端,可根据各感应节点获取到的用户终端的感应信息,确定用户终端所位于的感应区域。
在一些示例中,感应节点设备具有非接触感知功能,即感应节点设备具有非接触感知单元,感应节点设备组形成的感应区域为非接触感应区域。在非接触感应区域内,用户不需要对用户终端进行操作,感应节点设备即可感应到用户终端。例如,感应节点设备具有WiFi接入点感知功能即WiFi AP功能、蓝牙感知功能,对应地,感应节点设备具有WiFi接入点单元、蓝牙单元等,在此并不限定。
用户终端11可包括手机、平板电脑、智能穿戴设备等,在此并不限 定。用户终端11具有通信功能,可与感应节点设备进行通信,也可与后台服务器12进行通信。
后台服务器12可为用户终端11提供推送信息,也可执行与推送信息相关的任务。例如,后台服务器12可执行与推送信息相关的支付、拼单等任务,在此并不限定。在此并不限定后台服务器的数量,本申请实施例可支持具有多个功能模块的后台服务器实现本申请实施例中后台服务器12所执行的方法,本申请实施例也可支持多个具有某一项或几项功能的后台服务器协同实现本申请实施例中后台服务器12所执行的方法,在此并不限定。
图2为本申请实施例提供的基于线下购物的信息获取方法的应用场景的另一示例的示意图。图2所示的应用场景可为一商场内,该商场可包括多个实体店。如图2所示,商场包括第一实体店C1、第二实体店C2和第三实体店C3,第一实体店C1中设置有包括第七感应节点设备A7、第八感应节点设备A8、第九感应节点设备A9的感应节点设备组和包括第七感应节点设备A7、第九感应节点设备A9、第十感应节点设备A10的感应节点设备组,包括第七感应节点设备A7、第八感应节点设备A8、第九感应节点设备A9的感应节点设备组形成第四感应区域B4,包括第七感应节点设备A7、感第九应节点设备A9、第十感应节点设备A10的感应节点设备组形成第五感应区域B5;第二实体店C2中设置有包括第十一感应节点设备A11、第十二感应节点设备A12、第十三感应节点设备A13的感应节点设备组、包括第十一感应节点设备A11、第十三感应节点设备A13、第十四感应节点设备A14的感应节点设备组和包括第十一感应节点设备A11、第十四感应节点设备A14、第十五感应节点设备A15的感应节点设备组,包括第十一感应节点设备A11、第十二感应节点设备A12、第十三感应节点设备A13的感应节点设备组形成第六感应区域B6,包括第十一感应节点设备A11、第十三感应节点设备A13、第十四感应节点设备A14的感应节点设备组形成第七感应区域B7,包括第十一感应节点设备A11、第十四感应节点设备A14、第十五感应节点设备A15的感应节点设备组形成第八感应区域B8;第三实体店C3中设置有包括第十六感应节点设备A16、第 十七感应节点设备A17、第十八感应节点设备A18、第十九感应节点设备A19的感应节点设备组,包括第十六感应节点设备A16、第十七感应节点设备A17、第十八感应节点设备A18、第十九感应节点设备A19的感应节点设备组形成第九感应区域B9。
感应节点设备具有感应功能,能够感应到进入感应区域的用户终端。例如,在用户终端位于第二实体店C2中第八感应区域B8的情况下,第十一感应节点设备A11、第十四感应节点设备A14和第十五感应节点设备A15可感应到该用户终端,确定该用户终端位于第二实体店C2中的第八感应区域B8。在一些示例中,第二实体店C2中的除第十一感应节点设备A11、第十四感应节点设备A14和第十五感应节点设备A15以外的感应节点设备也可感应到用户终端,可根据第二实体店C2中各感应节点获取到的用户终端的感应信息,确定用户终端所位于的感应区域。在另一些示例中,除第二实体店C2以外的其他实体店中的感应节点设备也可能感应到用户终端,可根据各实体店中各感应节点获取到的用户终端的感应信息,确定用户终端所位于的实体店以及具体的感应区域。
感应节点设备、用户终端13和后台服务器14参见上一示例中感应节点设备、用户终端11和后台服务器12的相关说明,在此不再赘述。
下面依次介绍本申请实施例中的基于线下购物的信息获取方法、用户终端、感应节点设备、后台服务器、系统及计算机可读存储介质。
本申请实施例第一方面提供一种基于线下购物的信息获取方法,可应用于用户终端,即该基于线下购物的信息获取方法可由用户终端执行。图3为本申请第一方面提供的基于线下购物的信息获取方法的一实施例的流程图。如图3所示,该基于线下购物的信息获取方法可包括步骤S201至步骤S204。
在步骤S201中,在用户终端位于感应节点设备组形成的感应区域内的情况下,接收感应节点设备组中目标感应节点设备发送的第一消息。
第一消息包括目标感应节点设备的节点标识。节点标识用于标识感应节点设备。不同的感应节点设备的节点标识不同。节点标识可包括感应节点设备的设备编号、通用唯一标识码(Universally Unique Identifier, UUID)或其他标识等,在此并不限定。
目标感应节点设备是形成用户终端所处的感应区域的感应节点设备组中的一个感应节点设备。目标感应节点设备基于感应节点设备组获取的用户终端的感应信息确定。用户终端进入感应区域,形成该感应区域的感应节点设备组中的感应节点设备可获取到该用户终端的感应信息。感应信息包括感应节点设备感应到的与该用户终端的信息。例如,感应信息可包括以下一项或两项以上:用户终端信号强度、用户终端标识、时间、用户终端运动信息。用户终端信号强度可为感应节点设备感应到用户终端的信号强度。用户终端标识为用户终端的标识,如用户终端标识可包括用户终端的设备编号、媒体接入控制地址(Media Access Control Address,MAC)等,在此并不限定。时间可为感应节点设备感应到用户终端的时间点。用户终端运动信息能够表征用户终端的运动情况,如用户终端运动信息可包括用户终端的信号扫描频率和运动轨迹,根据用户终端运动信息可判断用户终端在同一感应区域或不同感应区域中的运动情况。
需要说明的是,用户终端进入感应区域,感应节点设备可利用自身的非接触感知功能来获取该用户终端的感应信息,用户并不需要对用户终端进行特定的操作,感应节点设备即可获取到用户终端的感应信息,感应节点设备对用户终端的感应对用户而言是无感的,也提高了用户的体验。
用户终端与感应节点设备组中的每个感应节点设备都进行交互,会占用以及消耗额外的资源。在本申请实施例中,通过用户终端所处的感应区域的感应节点设备组中的目标感应节点设备与用户终端进行通信,可节省资源,并避免通信混乱,且对线下购物的信息获取的结果不会产生影响。
在一些示例中,目标感应节点设备广播第一消息,位于感应区域内的终端设备均可获取第一消息。
在步骤S202中,基于第一消息,向后台服务器发送第二消息。
第二消息包括目标感应节点设备的节点标识。第二消息与第一消息可相同,也可不同,在此并不限定。在第二消息与第一消息相同的情况下,用户终端可将第一消息转发给后台服务器。在第二消息与第一消息不同的情况下,用户终端可根据第一消息,生成第二消息,再将第二消息向后台 服务器发送。
在步骤S203中,接收后台服务器发送的与目标感应节点设备的节点标识具有对应关系的推送信息。
后台服务器接收第二消息,可从第二消息中获取目标感应节点设备的节点标识。后台服务器中存储有感应节点设备的节点标识与推送信息的对应关系,后台服务器可根据目标感应节点设备的节点标识,查找到与目标感应节点设备的节点标识具有对应关系的推送信息,并向用户终端发送。
感应节点设备的节点标识与推送信息的对应关系可根据具体场景、需求等预先配置,在此并不限定。与感应节点设备的节点标识具有对应关系的推送信息可与该感应节点设备参与形成的感应区域对应的实体店或商品相关。例如,与感应节点设备的节点标识具有对应关系的推送信息可与该感应节点设备参与形成的感应区域中的商品相关,或者,与感应节点设备的节点标识具有对应关系的推送信息可与该感应节点设备参与形成的感应区域所属的区域的商品相关,或者,与感应节点设备的节点标识具有对应关系的推送信息可与该感应节点设备参与形成的感应区域所在的实体店相关。
在一些示例中,感应节点设备组可包括第一感应节点设备组至第N感应节点设备组,N为大于1的整数。与第i感应节点设备组中感应节点设备的节点标识具有对应关系的推送信息,与与第j感应节点设备组中感应节点设备的节点标识具有对应关系的推送信息不同,i、j为整数,i≠j,1≤i≤N,1≤j≤N,即第i感应节点设备组与第j感应节点设备组不是同一个感应节点设备组。例如,如图2所示,不同的感应节点设备组设置于不同的实体店中,第一感应节点设备组设置在第一实体店C1中,第一感应节点设备组包括第七感应节点设备A7、第八感应节点设备A8和第九感应节点设备A9,第七感应节点设备A7的节点标识为AA7,第八感应节点设备A8的节点标识为AA8,第九感应节点设备A9的节点标识为AA9;第二感应节点设备组设置在第二实体店C2中,第二感应节点设备组包括第十一感应节点设备A11、第十二感应节点设备A12和第十三感应节点设备A13,第十一感应节点设备A11的节点标识为AA11,第十二感应节点设 备A12的节点标识为AA12,第十三感应节点设备A13的节点标识为AA13;与感应节点设备的节点标识AA7、节点标识AA8和节点标识AA9具有对应关系的推送信息为与第一实体店C1相关的信息,与感应节点设备的节点标识AA11、节点标识AA12和节点标识AA13具有对应关系的推送信息为与第二实体店C2相关的信息;即与感应节点设备的节点标识AA7、节点标识AA8和节点标识AA9具有对应关系的推送信息,与与感应节点设备的节点标识AA11、节点标识AA12和节点标识AA13具有对应关系的推送信息不同。又例如,如图2所示,不同的感应节点设备组设置在同一实体店的不同位置,第一感应节点设备组设置在第二实体店C2中,第一感应节点设备组包括第十一感应节点设备A11、第十二感应节点设备A12和第十三感应节点设备A13,第十一感应节点设备A11的节点标识为AA11,第十二感应节点设备A12的节点标识为AA12,第十三感应节点设备A13的节点标识为AA13,第二感应节点设备组设置在第二实体店C2中,第一感应节点设备组包括第十一感应节点设备A11、第十四感应节点设备A14和第十五感应节点设备A15,第十一感应节点设备A11的节点标识为AA11,第十四感应节点设备A14的节点标识为AA14,第十五感应节点设备A15的节点标识为AA15;与感应节点设备的节点标识AA11、节点标识AA12和节点标识AA13具有对应关系的推送信息为与第六感应区域B6中商品相关的信息,与感应节点设备的节点标识AA11、节点标识AA14和节点标识AA15具有对应关系的推送信息为与第八感应区域B8中商品相关的信息;即与感应节点设备的节点标识AA11、节点标识AA12和节点标识AA13具有对应关系的推送信息,与与感应节点设备的节点标识AA11、节点标识AA14和节点标识AA15具有对应关系的推送信息不同。
在另一些示例中,感应节点设备组可包括第一感应节点设备组至第N感应节点设备组,N为大于1的整数。与第i感应节点设备组中感应节点设备的节点标识具有对应关系的推送信息,与与第j感应节点设备组中感应节点设备的节点标识具有对应关系的推送信息相同,i、j为整数,i≠j,1≤i≤N,1≤j≤N,即第i感应节点设备组与第j感应节点设备组不是同 一个感应节点设备组。例如,如图2所示,不同的感应节点设备组设置在同一实体店的不同位置,第一感应节点设备组设置在第一实体店C1中,第一感应节点设备组包括第七感应节点设备A7、第八感应节点设备A8和第九感应节点设备A9,第七感应节点设备A7的节点标识为AA7,第八感应节点设备A8的节点标识为AA8,第九感应节点设备A9的节点标识为AA9;第二感应节点设备组设置在第一实体店C1中,第一感应节点设备组包括第七感应节点设备A7、第九感应节点设备A9和第十感应节点设备A10,第七感应节点设备A7的节点标识为AA7,第九感应节点设备A9的节点标识为AA9,第十感应节点设备A10的节点标识为AA10;与感应节点设备的节点标识AA7、节点标识AA8和节点标识AA9具有对应关系的推送信息为与第一实体店C1相关的信息,与感应节点设备的节点标识AA7、节点标识AA9和节点标识AA10具有对应关系的推送信息为与第一实体店C1相关的信息;即与感应节点设备的节点标识AA7、节点标识AA8和节点标识AA9具有对应关系的推送信息,与与感应节点设备的节点标识AA7、节点标识AA9和节点标识AA10具有对应关系的推送信息相同。
在一些示例中,与同一所述感应节点设备组中感应节点设备的节点标识具有对应关系的推送信息相同。例如,如图2所示,感应节点设备组设置在第一实体店C1中,该感应节点设备组包括第七感应节点设备A7、第八感应节点设备A8和第九感应节点设备A9,第七感应节点设备A7的节点标识为AA7,第八感应节点设备A8的节点标识为AA8,第九感应节点设备A9的节点标识为AA9;与感应节点设备的节点标识AA7具有对应关系的推送信息、与感应节点设备的节点标识AA8具有对应关系的推送信息和与感应节点设备的节点标识AA9具有对应关系的推送信息均为与第一实体店C1相关的信息,即与感应节点设备的节点标识AA7具有对应关系的推送信息、与感应节点设备的节点标识AA8具有对应关系的推送信息和与感应节点设备的节点标识AA9具有对应关系的推送信息相同。
在另一些示例中,与同一所述感应节点设备组中至少两个感应节点设备的节点标识具有对应关系的推送信息不同,即在同一感应节点设备组 中,与至少一个感应节点设备的节点标识具有对应关系的推送信息,与其他感应节点设备的节点标识具有对应关系的推送信息不同。例如,如图2所示,感应节点设备组设置在第三实体店C3中,该感应节点设备组包括第十六感应节点设备A16、第十七感应节点设备A17、第十八感应节点设备A18和第十九感应节点设备A19,第十六感应节点设备A16的节点标识为AA16,第十七感应节点设备A17的节点标识为AA17,第十八感应节点设备A18的节点标识为AA18,第十九感应节点设备A19的节点标识为AA19;与感应节点设备的节点标识AA16具有对应关系的推送信息为与感应节点设备附近的第一商品D1相关的信息,与感应节点设备的节点标识AA17具有对应关系的推送信息为与感应节点设备附近的第二商品D2相关的信息,与感应节点设备的节点标识AA18具有对应关系的推送信息为与感应节点设备附近的第三商品D3相关的信息,与感应节点设备的节点标识AA19具有对应关系的推送信息为与感应节点设备附近的第四商品D4相关的信息;即与感应节点设备的节点标识AA16具有对应关系的推送信息、与感应节点设备的节点标识AA17具有对应关系的推送信息、与感应节点设备的节点标识AA18具有对应关系的推送信息和与感应节点设备的节点标识AA19具有对应关系的推送信息不同。
上述实施例中的推送信息可包括但不限于优惠券信息和/或商品拼单信息。优惠券信息可包括商品优惠券信息、实体店优惠券信息等,在此并不限定。在推送信息包括优惠券信息的情况下,用户终端可根据用户对推送信息的输入,领取优惠券信息指示的优惠券以及利用领取的优惠券进行支付等。商品拼单信息可包括拼单商品的名称、拼单商品的型号、拼单商品的价格等,在此并不限定。在推送信息包括商品拼单信息的情况下,用户终端可根据用户对推送信息的输入,创建拼单或加入拼单,与其他用户拼单以及进行拼单支付等。
在步骤S204中,显示与目标感应节点设备的节点标识具有对应关系的推送信息。
用户终端显示与目标感应节点设备的节点标识具有对应关系的推送信息,实现向用户的信息推送,使用户在线下购物时能够直观地获取相关信 息。在此并不限定用户终端显示推送信息的形式。
在本申请实施例中,在用户终端位于感应节点设备组形成的感应区域内的情况下,能够接收感应节点设备组目标感应节点设备发送该目标感应节点设备的节点标识,并将该目标感应节点的节点标识向后台服务器发送,以使后台服务器能够根据主动向用户终端发送与该目标感应节点的节点标识具有对应关系的推送信息,用户终端可自发地显示该推送信息。用户终端获取该推送信息的过程省去了用户主动查找信息的步骤,减少了用户的操作,简化了获取信息的过程,也减少了获取信息花费的时间,提升了用户的体验。而且,本申请实施例中向用户终端发送的推送信息与用户终端所处的感应区域相关,实现了信息的精确推送,也提高了用户体验。
在一些实施例中,为了便于用户在线下购物获取信息,可通过弹窗向用户展示上述推送信息。图4为本申请第一方面提供的基于线下购物的信息获取方法的另一实施例的流程图。图4与图3的不同之处在于,图3中的步骤S203可具体细化为图4中的步骤S2031,图3中的步骤S204可具体细化为图4中的步骤S2041。
在步骤S2031中,接收后台服务器发送的弹窗页面的地址。
在步骤S2041中,访问弹窗页面的地址,触发显示弹窗页面。
弹窗页面包括与目标感应节点设备的节点标识具有对应关系的推送信息。弹窗页面可为预先安装在用户终端的应用程序被触发弹出的弹窗页面如APP弹窗页面,弹窗页面也可为用户终端自带的系统被触发弹出的弹窗页面如FA弹窗页面,在此并不限定。
例如,图5为本申请实施例提供的用户终端的弹窗页面的一示例的示意图。如图5所示,推送信息包括优惠券信息,弹窗页面15包括优惠券信息。用户可对该弹窗页面15进行输入,接收优惠券信息指示的优惠券或关闭该弹窗页面15。
又例如,图6为本申请实施例提供的用户终端的弹窗页面的另一示例的示意图。如图6所示,推送信息包括商品拼单信息,弹窗页面15为拼单/购物页面。用户可对该弹窗页面15进行输入,参与拼单或关闭该弹窗页面15。
再例如,图7为本申请实施例提供的用户终端的弹窗页面的又一示例的示意图。如图7所示,推送信息包括商品拼单信息,弹窗页面15为拼单/购物分享页面。用户可对该弹窗页面15进行输入,分享拼单或关闭该弹窗页面15。
通过弹窗页面向用户展示推送信息,用户无需手动打开购物软件或即时通讯软件,即可获取信息,以及与后台服务器进行交互,与需要用户在打开即时通讯软件与好友沟通才能完成拼单的技术相比,本申请实施例中基于线下购物的信息获取方法也不需用户依赖自己的社交网络或朋友圈等资源进行拼单,更加轻量、便捷,参与拼单的用户范围更加广泛,拼单方式更加灵活。
在一些实施例中,用户可对用户终端进行输入,以使用户终端与后台服务器交互,执行与推送信息相关的任务。图8为本申请第一方面提供的基于线下购物的信息获取方法的又一实施例的流程图。图8与图3的不同之处在于,图8所示的基于线下购物的信息获取方法还可包括步骤S205和步骤S206。
在步骤S205中,响应于对用户终端的第一输入,向后台服务器发送第三消息。
第一输入可为点击输入、滑动输入或其他输入,在此并不限定第一输入的方式。第三消息用于指示后台服务器执行第一输入指示的第一任务。后台服务器接收到第三消息,执行第一任务。第一任务与推送信息相关。
在步骤S206中,接收后台服务器发送的任务执行结果信息。
后台服务器执行第一任务,可得到第一任务的执行结果。任务执行结果信息基于第一任务的执行结果得到。
在一些示例中,推送信息可包括商品拼单信息,对应地,第一任务可包括拼单任务,任务执行结果信息可包括拼单结果标识和/或拼单取货码。拼单结果标识可表征拼单成功或拼单失败。拼单取货码可用于与实体店商家进行核对提取商品。拼单任务可包括创建拼单任务或加入拼单任务。创建拼单任务即由该用户终端的用户创建拼单。加入拼单任务为该用户终端的用户加入其他用户创建的拼单。
在另一些示例中,推送信息可包括优惠券信息,对应地,第一任务可包括优惠券支付任务,任务执行结果信息可包括优惠券支付结果标识。优惠券支付任务即为利用优惠券信息指示的优惠券进行支付的任务。优惠券支付结果标识可表征利用优惠券信息指示的优惠券的支付成功或利用优惠券信息指示的优惠券的支付失败。
本申请第二方面提供一种基于线下购物的信息获取方法,可应用于感应节点设备组,即该基于线下购物的信息获取方法可由感应节点设备组中的感应节点设备执行。图9为本申请第二方面提供的基于线下购物的信息获取方法的一实施例的流程图。如图9所示,该基于线下购物的信息获取方法可包括步骤S301至步骤S303。
在步骤S301中,在用户终端位于感应区域的情况下,获取用户终端的感应信息。
在用户终端位于感应区域的情况下,形成该感应区域的感应节点设备组中的感应节点设备可获取用户终端的感应信息。在一些示例中,用户终端所处的感应区域邻近的感应区域的感应节点设备组中的感应节点设备也可获取用户终端的感应信息,在此并不限定。在一些示例中,感应节点设备可利用自身的非接触感知技术来感应得到用户终端的感应信息。感应节点设备可具有非接触感知单元。感应节点设备组形成的感应区域为非接触感应区域。
在一些示例中,上述感应信息包括以下一项或两项以上:用户终端信号强度、用户终端标识、时间、用户终端运动信息。感应信息的具体内容可参见上述实施例中的相关说明,在此不再赘述。
在步骤S302中,基于感应信息,确定感应节点设备组中的目标感应节点设备。
根据感应节点设备感应用户终端得到的感应信息,可确定用户终端所处的感应区域,进而确定形成用户终端所处的感应区域的感应节点设备组中的目标感应节点设备。目标感应节点设备为形成用户终端所处的感应区域的感应节点设备组中的一个目标感应节点设备,其选取方式在此并不限定。
在步骤S303中,由目标感应节点设备发送第一消息,以使用户终端获取第一消息,并向后台服务器发送第二消息,使用户终端接收后台服务器发送的与目标感应节点设备的节点标识具有对应关系的推送信息。
第一消息包括目标感应节点设备的节点标识。第二消息基于第一消息生成。第二消息包括目标感应节点设备的节点标识。
在一些示例中,感应节点设备可具有短距离无线通信单元,可通过短距离无线通信技术与用户终端进行交互。目标感应节点设备可通过短距离无线通信技术,向外广播第一消息,以使位于目标感应节点设备对应的感应区域内的用户终端能够接收到第一消息。在目标感应节点设备对应的感应区域内存在多个用户终端的情况下,这多个用户终端均可接收到第一消息。
在一些示例中,推送信息可用于触发用户终端显示弹窗网页。弹窗网页包括与目标感应节点设备的节点标识具有对应关系的推送信息。弹窗网页的具体内容可参见上述实施例中的相关说明,在此不再赘述。
在一些示例中,推送信息可包括但不限于优惠券信息和/或商品拼单信息。推送信息的具体内容可参见上述实施例中的相关说明,在此不再赘述。
在一些示例中,感应节点设备组包括第一感应节点设备组至第N感应节点设备组,N为大于1的整数。与第i感应节点设备组中感应节点设备的节点标识具有对应关系的推送信息,与与第j感应节点设备组中感应节点设备的节点标识具有对应关系的推送信息不同,i、j为整数,i≠j,1≤i≤N,1≤j≤N。
在另一些示例中,感应节点设备组包括第一感应节点设备组至第N感应节点设备组,N为大于1的整数。与第i感应节点设备组中感应节点设备的节点标识具有对应关系的推送信息,与与第j感应节点设备组中感应节点设备的节点标识具有对应关系的推送信息相同,i、j为整数,i≠j,1≤i≤N,1≤j≤N。
在一些示例中,与同一所述感应节点设备组中感应节点设备的节点标识具有对应关系的推送信息相同。
在另一些示例中,与同一所述感应节点设备组中至少两个感应节点设备的节点标识具有对应关系的推送信息不同。
与上述步骤S301至步骤S303相关的部分具体内容可参见上述实施例中的相关说明,在此不再赘述。
在本申请实施例中,在用户终端位于感应节点设备组形成的感应区域的情况下,感应节点设备组中的感应节点设备可获取终端设备的感应信息,基于感应信息,确定感应节点设备组中的目标感应节点设备。目标感应节点设备可向用户终端发送该目标感应节点设备的节点标识,以使用户终端将该目标感应节点设备的节点标识向后台服务器发送,使后台服务器能够主动向用户终端发送与该目标感应节点的节点标识具有对应关系的推送信息。用户终端可自发地显示该推送信息。用户终端获取该推送信息的过程省去了用户主动查找信息的步骤,减少了用户的操作,简化了获取信息的过程,也减少了获取信息花费的时间,提升了用户的体验。而且,本申请实施例中向用户终端发送的推送信息与用户终端所处的感应区域相关,实现了信息的精确推送,也提高了用户体验。
在一些实施例中,感应节点设备组中的感应节点设备可与后台服务器交互,以确定目标感应节点设备。图10为本申请第二方面提供的基于线下购物的信息获取方法的另一实施例的流程图。图10与图9的不同之处在于,图9中的步骤S302可具体细化为图10中的步骤S3021至步骤S3023。
在步骤S3021中,向后台服务器发送感应信息。
在步骤S3022中,接收后台服务器发送的感应节点筛选信息。
感应节点筛选信息是后台服务器根据感应信息确定的。后台服务器接收到感应信息,可根据感应信息得到感应节点筛选信息。感应节点筛选信息可用于协助确定目标感应节点设备,可包括但不限于用户终端位置信息和/或感应节点运行信息。用户终端位置信息可用于指示用户终端的位置。后台服务器根据感应信息,可确定用户终端所处的感应区域。进一步地,后台服务器可根据用户终端信号强度等感应信息,确定用户终端感应节点在所处的感应区域中的具体位置。感应节点运行信息可用于表征形成用户 终端所处的感应区域的感应节点设备组中感应节点设备的运行状态、运行性能等,在此并不限定。
在步骤S3023中,根据感应节点筛选信息,确定感应节点设备组中的目标感应节点设备。
根据感应节点筛选信息,在形成用户终端所处的感应区域的感应节点设备组中选取一个感应节点设备作为目标感应节点设备。
在一些示例中,在感应节点筛选信息包括用户终端位置信息的情况下,可根据用户终端位置信息,将感应节点设备组中与用户终端位置信息指示的用户终端的位置距离最近的感应节点设备,确定为目标感应节点设备。例如,感应节点设备组、感应区域的分布和用户终端的位置如图1所示,与感应节点设备的节点标识各自具有对应关系的推送信息包括感应节点设备附近的商品的商品拼单信息,用户终端位置信息指示的用户终端11的位置与第三感应节点设备A3的距离最近,将第三感应节点设备A3确定为目标感应节点设备,第三感应节点设备A3广播自身的节点标识,用户终端11获取到第三感应节点设备A3的节点标识,将第三感应节点设备A3的节点标识向后台服务器12发送,后台服务器12向用户终端11发送与第三感应节点设备A3的节点标识具有对应关系的第三感应节点设备A3附近的商品的商品拼单信息,以使用户终端11显示包括第三感应节点设备A3附近的商品的商品拼单信息的弹窗页面,使用户终端能够获取到合适、精准的推送信息。
在另一些示例中,在感应节点筛选信息包括感应节点运行信息,或者,感应节点筛选信息包括感应节点运行信息和用户终端位置信息的情况下,根据感应节点筛选信息对感应节点设备组中的感应节点设备进行轮询,确定目标感应节点设备。例如,形成用户终端所处的感应区域的感应节点设备组中感应节点设备的节点标识对应的推送信息相同,感应节点运行信息可表征感应节点设备的运行时长,可对形成用户终端所处的感应区域的感应节点设备组中感应节点设备依次询问运行时长,选取运行时长最短的感应节点设备作为目标感应节点设备,以避免运行时长较长的感应节点设备处理疲累出现异常。
在又一些示例中,在感应节点筛选信息包括感应节点运行信息,或者,感应节点筛选信息包括感应节点运行信息和用户终端位置信息的情况下,根据感应节点筛选信息和预设的投票规则,对感应节点设备组中的感应节点设备进行投票,确定目标感应节点设备。例如,形成用户终端所处的感应区域的感应节点设备组中感应节点设备的节点标识对应的推送信息相同,感应节点运行信息可表征与感应节点设备当前交互的其他用户终端的数量,按照投票规则,感应节点设备可为比自身当前交互的其他用户终端的数量低的感应节点设备投票,选取得票数最多的感应节点设备作为目标感应节点设备,以将条件最优的感应节点设备作为目标感应节点设备使用,达到更优的信息获取效果。
本申请实施例第三方面提供一种基于线下购物的信息获取方法,可应用于后台服务器,即该基于线下购物的信息获取方法可由后台服务器执行。图11为本申请第三方面提供的基于线下购物的信息获取方法的一实施例的流程图。如图11所示,该基于线下购物的信息获取方法可包括步骤S401至步骤S403。
在步骤S401中,接收用户终端发送的第二消息。
第二消息由用户终端基于从感应节点设备组中目标感应节点设备发送的第一消息生成。第二消息包括目标感应节点设备的节点标识。第一消息包括目标感应节点设备的节点标识。感应节点设备组可形成感应区域。目标感应节点基于感应节点设备组获取的用户终端的感应信息确定。
在一些示例中,感应节点设备具有非接触感知单元,感应节点设备组形成的感应区域为非接触感应区域,具体内容可参见上述实施例中的相关说明,在此不再赘述。
在一些示例中,感应信息包括以下一项或两项以上:用户终端信号强度、用户终端标识、时间、用户终端运动信息。具体内容可参见上述实施例中的相关说明,在此不再赘述。
在步骤S402中,根据目标感应节点设备的节点标识,获取与目标感应节点设备的节点标识具有对应关系的推送信息。
后台服务器可存储有感应节点设备的节点标识与推送信息的对应关 系,后台服务器从第二消息中获取目标感应节点设备的节点标识,可根据感应节点设备的节点标识与推送信息的对应关系,查找与目标感应节点设备的节点标识具有对应关系的推送信息。
在一些示例中,感应节点设备组包括第一感应节点设备组至第N感应节点设备组,N为大于1的整数。与第i感应节点设备组中感应节点设备的节点标识具有对应关系的推送信息,与与第j感应节点设备组中感应节点设备的节点标识具有对应关系的推送信息不同,i、j为整数,i≠j,1≤i≤N,1≤j≤N。具体内容可参见上述实施例中的相关说明,在此不再赘述。
在另一些示例中,感应节点设备组包括第一感应节点设备组至第N感应节点设备组,N为大于1的整数。与第i感应节点设备组中感应节点设备的节点标识具有对应关系的推送信息,与与第j感应节点设备组中感应节点设备的节点标识具有对应关系的推送信息相同,i、j为整数,i≠j,1≤i≤N,1≤j≤N。具体内容可参见上述实施例中的相关说明,在此不再赘述。
在一些示例中,与同一感应节点设备组中感应节点设备的节点标识具有对应关系的推送信息相同。具体内容可参见上述实施例中的相关说明,在此不再赘述。
在另一些示例中,与同一感应节点设备组中至少两个感应节点设备的节点标识具有对应关系的推送信息不同。具体内容可参见上述实施例中的相关说明,在此不再赘述。
在一些示例中,推送信息可包括但不限于优惠券信息和/或商品拼单信息,具体内容可参见上述实施例中的相关说明,在此不再赘述。
在步骤S403中,向用户终端发送与目标感应节点设备的节点标识具有对应关系的推送信息,以使用户终端显示与目标感应节点设备的节点标识具有对应关系的推送信息。
与上述步骤S401至步骤S403相关的部分具体内容可参见上述实施例中的相关说明,在此不再赘述。
在本申请实施例中,在用户终端位于感应节点设备组形成的感应区域 的情况下,感应节点设备组中的感应节点设备可获取终端设备的感应信息,基于感应信息,确定感应节点设备组中的目标感应节点设备。目标感应节点设备可向用户终端发送该目标感应节点设备的节点标识。后台服务器可接收用户终端发送的目标感应节点设备的节点标识,主动向用户终端发送与该目标感应节点的节点标识具有对应关系的推送信息,以使用户终端能够自发地显示该推送信息。用户终端获取该推送信息的过程避免了用户主动查找信息的步骤,减少了用户的操作,简化了获取信息的过程,也减少了获取信息花费的时间,提升了用户的体验。而且,本申请实施例中向用户终端发送的推送信息与用户终端所处的感应区域相关,实现了信息的精确推送,也提高了用户体验。
在一些实施例中,后台服务器可与感应节点设备组中的感应节点设备进行交互,后台服务器和感应节点设备组共同确定目标感应节点设备。图12为本申请第三方面提供的基于线下购物的信息获取方法的另一实施例的流程图。图12与图11的不同之处在于,图12所示的基于线下购物的信息获取方法还可包括步骤S404至步骤S406。
在步骤S404中,接收感应节点设备组中感应节点设备发送的感应信息。
在步骤S405中,根据感应信息,得到感应节点筛选信息。
感应节点筛选信息用于在感应节点设备组中筛选得到目标感应节点设备。感应节点筛选信息可包括但不限于用户终端位置信息和/或感应节点运行信息。后台服务器根据感应信息,可确定用户终端与感应节点设备的相对远近,从而确定用户终端所处的感应区域,进一步还可确定用户终端的具体位置。后台服务器根据感应节点设备在一段时间内接收的感应信息,可确定各感应节点设备的运行状态等信息,从而可得到感应节点运行信息。
在一些示例中,后台服务器可存储有数据库,数据库中可存储有各感应节点设备组的组成、各感应节点设备的分布等信息。后台服务器可根据感应信息和数据库中存储的信息,共同确定感应节点筛选信息,在此并不限定。
在步骤S406中,向感应节点设备组中感应节点设备发送感应节点筛选信息,以使感应节点设备组根据感应节点筛选信息确定目标感应节点设备。
在一些示例中,在感应节点筛选信息包括用户终端位置信息的情况下,目标感应节点设备为感应节点设备组中与用户终端位置信息指示的用户终端的位置距离最近的感应节点设备。具体内容可参见上述实施例中的相关说明,在此不再赘述。
在另一些示例中,在感应节点筛选信息包括感应节点运行信息,或者,感应节点筛选信息包括感应节点运行信息和用户终端位置信息的情况下,目标感应节点设备根据感应节点筛选信息对感应节点设备组中的感应节点设备进行轮询确定。具体内容可参见上述实施例中的相关说明,在此不再赘述。
在又一些示例中,在感应节点筛选信息包括感应节点运行信息,或者,感应节点筛选信息包括感应节点运行信息和用户终端位置信息的情况下,目标感应节点设备根据感应节点筛选信息和预设的投票规则对感应节点设备组中的感应节点设备进行投票确定。具体内容可参见上述实施例中的相关说明,在此不再赘述。
与上述步骤S404至步骤S406相关的部分具体内容可参见上述实施例中的相关说明,在此不再赘述。
在一些实施例中,用户终端可通过显示弹窗页面来显示与目标感应节点设备的节点标识具有对应关系的推送信息。上述步骤S403可具体细化为:向用户终端发送弹窗页面的地址。弹窗页面包括与目标感应节点设备的节点标识具有对应关系的推送信息。弹窗页面的具体内容可参见上述实施例中的相关说明,在此不再赘述。
在一些示例中,后台服务器可与接收用户的输入的用户终端交互,执行与推送信息相关的任务。图13为本申请第三方面提供的基于线下购物的信息获取方法的又一实施例的流程图。图13与图11的不同之处在于,图13所示的基于线下购物的信息获取方法还可包括步骤S407至步骤S410。
在步骤S407中,接收用户终端响应于对用户终端的第一输入发送的第三消息。
第三消息的具体内容可参见上述实施例中的相关说明,在此不再赘述。
在步骤S408中,响应于第三消息,执行第一输入对应的第一任务。
第一任务与推送信息相关。第一任务的具体内容可参见上述实施例中的相关说明,在此不再赘述。
在步骤S409中,基于第一任务的执行结果,得到任务执行结果信息。
后台服务器执行第一任务后,可得到执行结果,执行结果包括第一任务是否执行成功、任务产物等,在此并不限定。任务执行结果信息可表征第一任务的执行结果。
在步骤S410中,向用户终端发送任务执行结果信息。
在一些示例中,推送信息包括商品拼单信息,对应地,第一任务可包括拼单任务,任务执行结果信息可包括拼单结果标识和/或拼单取货码。拼单任务可包括创建拼单任务或加入拼单任务。具体内容可参见上述实施例中的相关说明,在此不再赘述。
在另一些示例中,推送信息包括优惠券信息,对应地,第一任务可包括优惠券支付任务,任务执行结果信息可包括优惠券支付结果标识。
与上述步骤S407至步骤S410相关的部分具体内容可参见上述实施例中的相关说明,在此不再赘述。
为了便于理解上述内容,下面以本申请实施例中基于线下购物的信息获取方法应用于线下拼单购物为例进行说明。图14为本申请实施例提供的线下拼单购物流程的一示例的流程图。如图14所示,该线下拼单购物流程可包括步骤S501至步骤S521。
在步骤S501中,后台服务器接收配置指令。
在步骤S502中,后台服务器响应于配置指令,配置感应节点设备的节点标识与推送信息的对应关系。
在步骤S503中,在用户终端位于感应节点设备组形成的感应区域的 情况下,感应节点设备获取用户终端的感应信息。
在步骤S504中,感应节点设备向后台服务器发送感应信息。
在步骤S505中,后台服务器根据感应信息进行数据运算,得到感应节点筛选信息。
在步骤S506中,后台服务器向感应节点设备发送感应节点筛选信息。
在步骤S507中,感应节点设备根据感应节点筛选信息,确定目标感应节点设备。
在步骤S508中,目标感应节点设备向用户终端广播第一消息,第一消息包括目标感应节点设备的节点标识。
在步骤S509中,用户终端对第一消息进行合法性验证。
在步骤S510中,在第一消息合法性验证成功的情况下,用户终端与后台服务器进行通信验证,在通信验证成功的情况下,向后台服务器发送第二消息,第二消息包括目标感应节点设备的节点标识。
在步骤S511中,后台服务器查找得到与目标感应节点设备的节点标识具有对应关系的商品拼单信息。
在步骤S512中,后台服务器向用户终端发送与目标感应节点设备的节点标识具有对应关系的商品拼单信息。
在步骤S513中,用户终端唤起显示弹窗页面,弹窗页面包括与目标感应节点设备的节点标识具有对应关系的商品拼单信息。
在步骤S514中,用户终端接收用户对弹窗页面的输入,确定拼单商品信息。
在步骤S515中,用户终端向后台服务器发送拼单商品信息。
在步骤S516中,后台服务器对与拼单商品信息相关的用户进行匹配。
在步骤S517中,后台服务器向用户终端发送拼单商品信息相关的用户的匹配结果。
在步骤S518中,用户终端接收用户的输入,确定创建拼单或加入拼单。
在步骤S519中,用户终端向后台服务器发送指示创建拼单或加入拼单的消息。
在步骤S520中,后台服务器生成商品取货码。
在步骤S521中,后台服务器向用户终端发送商品取货码。
在线下拼单购物的过程中,用户在无感知的情况下,即可收到与自身所处区域对应的商品或实体店的推送信息,不需要用户主动查询信息,简化了信息获取的流程,也减少了用户获取信息所需的时间,提高了用户线下拼单购物的体验。
本申请第四方面提供一种用户终端。图15为本申请第四方面提供的用户终端的一实施例的结构示意图。如图15所示,用户终端600包括第一接收模块601、第一发送模块602和显示模块603。
第一接收模块601可用于在用户终端位于感应节点设备组形成的感应区域内的情况下,接收感应节点设备组中目标感应节点设备发送的第一消息。
第一消息包括目标感应节点设备的节点标识。目标感应节点设备基于感应节点设备组获取的用户终端的感应信息确定。
在一些示例中,感应信息包括以下一项或两项以上:用户终端信号强度、用户终端标识、时间、用户终端运动信息。
在一些示例中,感应节点设备具有非接触感知单元,感应节点设备组形成的感应区域为非接触感应区域。
第一发送模块602可用于基于第一消息,向后台服务器发送第二消息。
第二消息包括目标感应节点设备的节点标识。
第一接收模块601还可用于接收后台服务器发送的与目标感应节点设备的节点标识具有对应关系的推送信息。
在一些示例中,感应节点设备组包括第一感应节点设备组至第N感应节点设备组,N为大于1的整数。与第i感应节点设备组中感应节点设备的节点标识具有对应关系的推送信息,与与第j感应节点设备组中感应节点设备的节点标识具有对应关系的推送信息不同,i、j为整数,i≠j,1≤i ≤N,1≤j≤N。
在另一些示例中,感应节点设备组包括第一感应节点设备组至第N感应节点设备组,N为大于1的整数。与第i感应节点设备组中感应节点设备的节点标识具有对应关系的推送信息,与与第j感应节点设备组中感应节点设备的节点标识具有对应关系的推送信息相同,i、j为整数,i≠j,1≤i≤N,1≤j≤N。
在一些示例中,与同一感应节点设备组中感应节点设备的节点标识具有对应关系的推送信息相同。
在另一些示例中,与同一感应节点设备组中至少两个感应节点设备的节点标识具有对应关系的推送信息不同。
在一些示例中,推送信息包括优惠券信息和/或商品拼单信息。
显示模块603可用于显示与目标感应节点设备的节点标识具有对应关系的推送信息。
在本申请实施例中,在用户终端位于感应节点设备组形成的感应区域内的情况下,能够接收感应节点设备组目标感应节点设备发送该目标感应节点设备的节点标识,并将该目标感应节点的节点标识向后台服务器发送,以使后台服务器能够根据主动向用户终端发送与该目标感应节点的节点标识具有对应关系的推送信息,用户终端可自发地显示该推送信息。用户终端获取该推送信息的过程省去了用户主动查找信息的步骤,减少了用户的操作,简化了获取信息的过程,也减少了获取信息花费的时间,提升了用户的体验。而且,本申请实施例中向用户终端发送的推送信息与用户终端所处的感应区域相关,实现了信息的精确推送,也提高了用户体验。
在一些示例中,上述第一接收模块601可用于接收后台服务器发送的弹窗页面的地址。
弹窗页面包括与目标感应节点设备的节点标识具有对应关系的推送信息。
上述第一接收模块601和第一发送模块602还可用于访问弹窗页面的地址。
上述显示模块603可用于触发显示弹窗页面。
在一些示例中,上述第一发送模块602还可用于响应于对用户终端的第一输入,向后台服务器发送第三消息。
第三消息用于指示后台服务器执行第一输入对应的第一任务。第一任务与推送信息相关。
上述第一接收模块601还可用于接收后台服务器发送的任务执行结果信息,任务执行结果信息基于第一任务的执行结果得到。
在一些示例中,推送信息包括商品拼单信息,对应地,第一任务包括拼单任务,任务执行结果信息包括拼单结果标识和/或拼单取货码。拼单任务包括创建拼单任务或加入拼单任务。
在另一些示例中,推送信息包括优惠券信息,对应地,第一任务包括优惠券支付任务,任务执行结果信息包括优惠券支付结果标识。
本申请第五方面提供一种用户终端。图16为本申请第五方面提供的感应节点设备的一实施例的结构示意图。如图16所示,感应节点设备700可包括第一获取模块701、处理模块702和第二发送模块703。
第一获取模块701可用于在用户终端位于感应节点设备组形成的感应区域的情况下,获取用户终端的感应信息。
感应节点设备组包括感应节点设备。
在一些示例中,感应节点设备具有非接触感知单元,感应节点设备组形成的感应区域为非接触感应区域。
在一些示例中,感应信息包括以下一项或两项以上:用户终端信号强度、用户终端标识、时间、用户终端运动信息。
处理模块702可用于基于感应信息,确定感应节点设备组中的目标感应节点设备。
第二发送模块703可用于在感应节点设备为目标感应节点设备的情况下,发送第一消息,以使用户终端获取第一消息,并向后台服务器发送第二消息,使用户终端接收后台服务器发送的与目标感应节点设备的节点标识具有对应关系的推送信息。
第一消息包括目标感应节点设备的节点标识。第二消息基于第一消息生成,第二消息包括目标感应节点设备的节点标识。
在一些示例中,感应节点设备组包括第一感应节点设备组至第N感应节点设备组,N为大于1的整数。与第i感应节点设备组中感应节点设备的节点标识具有对应关系的推送信息,与与第j感应节点设备组中感应节点设备的节点标识具有对应关系的推送信息不同,i、j为整数,i≠j,1≤i≤N,1≤j≤N。
在另一些示例中,感应节点设备组包括第一感应节点设备组至第N感应节点设备组,N为大于1的整数。与第i感应节点设备组中感应节点设备的节点标识具有对应关系的推送信息,与与第j感应节点设备组中感应节点设备的节点标识具有对应关系的推送信息相同,i、j为整数,i≠j,1≤i≤N,1≤j≤N。
在一些示例中,与同一感应节点设备组中感应节点设备的节点标识具有对应关系的推送信息相同。
在另一些示例中,与同一感应节点设备组中至少两个感应节点设备的节点标识具有对应关系的推送信息不同。
在一些示例中,推送信息包括优惠券信息和/或商品拼单信息。
在一些示例中,推送信息用于触发用户终端显示弹窗网页,弹窗网页包括与目标感应节点设备的节点标识具有对应关系的推送信息。
在本申请实施例中,在用户终端位于感应节点设备组形成的感应区域的情况下,感应节点设备组中的感应节点设备可获取终端设备的感应信息,基于感应信息,确定感应节点设备组中的目标感应节点设备。目标感应节点设备可向用户终端发送该目标感应节点设备的节点标识,以使用户终端将该目标感应节点设备的节点标识向后台服务器发送,使后台服务器能够主动向用户终端发送与该目标感应节点的节点标识具有对应关系的推送信息。用户终端可自发地显示该推送信息。用户终端获取该推送信息的过程省去了用户主动查找信息的步骤,减少了用户的操作,简化了获取信息的过程,也减少了获取信息花费的时间,提升了用户的体验。而且,本申请实施例中向用户终端发送的推送信息与用户终端所处的感应区域相关,实现了信息的精确推送,也提高了用户体验。
图17为本申请第五方面提供的感应节点设备的另一实施例的结构示 意图。图17与图16的不同之处在于,图17所示的感应节点设备700还可包括第二接收模块704。
上述第二发送模块703可用于向后台服务器发送感应信息。
第二接收模块704可用于接收后台服务器发送的感应节点筛选信息。感应节点筛选信息是后台服务器根据感应信息确定的。感应节点筛选信息包括用户终端位置信息和/或感应节点运行信息。
上述处理模块702可用于根据感应节点筛选信息,确定感应节点设备组中的目标感应节点设备。
在一些示例中,上述处理模块702可用于:在感应节点筛选信息包括用户终端位置信息的情况下,根据用户终端位置信息,将感应节点设备组中与用户终端位置信息指示的用户终端的位置距离最近的感应节点设备,确定为目标感应节点设备。
在另一些示例中,上述处理模块702可用于:在感应节点筛选信息包括感应节点运行信息,或者,感应节点筛选信息包括感应节点运行信息和用户终端位置信息的情况下,根据感应节点筛选信息被进行轮询,确定目标感应节点设备。
在又一些示例中,上述处理模块702可用于:在感应节点筛选信息包括感应节点运行信息,或者,感应节点筛选信息包括感应节点运行信息和用户终端位置信息的情况下,根据感应节点筛选信息和预设的投票规则,对感应节点设备组中的感应节点设备进行投票,确定目标感应节点设备。
本申请第六方面提供一种后台服务器。图18为本申请第六方面提供的后台服务器的一实施例的结构示意图。如图18所示,后台服务器800可包括第三接收模块801、第二获取模块802和第三发送模块803。
第三接收模块801可用于接收用户终端发送的第二消息。
第二消息由用户终端基于从感应节点设备组中目标感应节点设备发送的第一消息生成。第二消息包括目标感应节点设备的节点标识。第一消息包括目标感应节点设备的节点标识。感应节点设备组形成感应区域。目标感应节点基于感应节点设备组获取的用户终端的感应信息确定。
在一些示例中,感应节点设备具有非接触感知单元,感应节点设备组 形成的感应区域为非接触感应区域。
在一些示例中,感应信息包括以下一项或两项以上:用户终端信号强度、用户终端标识、时间、用户终端运动信息。
第二获取模块802可用于根据目标感应节点设备的节点标识,获取与目标感应节点设备的节点标识具有对应关系的推送信息。
在一些示例中,感应节点设备组包括第一感应节点设备组至第N感应节点设备组,N为大于1的整数。与第i感应节点设备组中感应节点设备的节点标识具有对应关系的推送信息,与与第j感应节点设备组中感应节点设备的节点标识具有对应关系的推送信息不同,i、j为整数,i≠j,1≤i≤N,1≤j≤N。
在另一些示例中,感应节点设备组包括第一感应节点设备组至第N感应节点设备组,N为大于1的整数。与第i感应节点设备组中感应节点设备的节点标识具有对应关系的推送信息,与与第j感应节点设备组中感应节点设备的节点标识具有对应关系的推送信息相同,i、j为整数,i≠j,1≤i≤N,1≤j≤N。
在一些示例中,与同一感应节点设备组中感应节点设备的节点标识具有对应关系的推送信息相同。
在另一些示例中,与同一感应节点设备组中至少两个感应节点设备的节点标识具有对应关系的推送信息不同。
在一些示例中,推送信息包括优惠券信息和/或商品拼单信息。
第三发送模块803可用于向用户终端发送与目标感应节点设备的节点标识具有对应关系的推送信息,以使用户终端显示与目标感应节点设备的节点标识具有对应关系的推送信息。
在本申请实施例中,在用户终端位于感应节点设备组形成的感应区域的情况下,感应节点设备组中的感应节点设备可获取终端设备的感应信息,基于感应信息,确定感应节点设备组中的目标感应节点设备。目标感应节点设备可向用户终端发送该目标感应节点设备的节点标识。后台服务器可接收用户终端发送的目标感应节点设备的节点标识,主动向用户终端发送与该目标感应节点的节点标识具有对应关系的推送信息,以使用户终 端能够自发地显示该推送信息。用户终端获取该推送信息的过程省去了用户主动查找信息的步骤,减少了用户的操作,简化了获取信息的过程,也减少了获取信息花费的时间,提升了用户的体验。而且,本申请实施例中向用户终端发送的推送信息与用户终端所处的感应区域相关,实现了信息的精确推送,也提高了用户体验。
图19为本申请第六方面提供的后台服务器的另一实施例的结构示意图。图19与图18的不同之处在于,图19所示的后台服务器还可包括运算模块804。
上述第三接收模块801可用于接收感应节点设备组中感应节点设备发送的感应信息。
运算模块804可用于根据感应信息,得到感应节点筛选信息。
感应节点筛选信息包括用户终端位置信息和/或感应节点运行信息。
上述第三发送模块803可用于向感应节点设备组中感应节点设备发送感应节点筛选信息,以使感应节点设备组根据感应节点筛选信息确定目标感应节点设备。
在一些示例中,在感应节点筛选信息包括用户终端位置信息的情况下,目标感应节点设备为感应节点设备组中与用户终端位置信息指示的用户终端的位置距离最近的感应节点设备。
在另一些示例中,在感应节点筛选信息包括感应节点运行信息,或者,感应节点筛选信息包括感应节点运行信息和用户终端位置信息的情况下,目标感应节点设备根据感应节点筛选信息对感应节点设备组中的感应节点设备进行轮询确定。
在又一些示例中,在感应节点筛选信息包括感应节点运行信息,或者,感应节点筛选信息包括感应节点运行信息和用户终端位置信息的情况下,目标感应节点设备根据感应节点筛选信息和预设的投票规则对感应节点设备组中的感应节点设备进行投票确定。
在一些示例中,上述第三发送模块803可用于向用户终端发送弹窗页面的地址。
弹窗页面包括与目标感应节点设备的节点标识具有对应关系的推送信 息。
图20为本申请第六方面提供的后台服务器的又一实施例的结构示意图。图20与图18的不同之处在于,图20所示的后台服务器800还可包括执行模块805。
上述第三接收模块801还可用于接收用户终端响应于对用户终端的第一输入发送的第三消息。
执行模块805可用于响应于第三消息,执行第一输入对应的第一任务,以及,用于基于第一任务的执行结果,得到任务执行结果信息。
第一任务与推送信息相关。
上述第三发送模块803可用于向用户终端发送任务执行结果信息。
在一些示例中,推送信息包括商品拼单信息,对应地,第一任务包括拼单任务,任务执行结果信息包括拼单结果标识和/或拼单取货码。拼单任务包括创建拼单任务或加入拼单任务。
在另一些示例中,推送信息包括优惠券信息,对应地,第一任务包括优惠券支付任务,任务执行结果信息包括优惠券支付结果标识。
本申请第七方面还提供了一种用户终端。图21为本申请第七方面提供的用户终端的一实施例的结构示意图。如图21所示,用户终端900包括第一存储器901、第一处理器902及存储在第一存储器901上并可在第一处理器902上运行的计算机程序。
在一些示例中,上述第一处理器902可以包括中央处理器(CPU),或者特定集成电路(Application Specific Integrated Circuit,ASIC),或者可以被配置成实施本申请实施例的一个或多个集成电路。
第一存储器901可包括只读存储器(Read-Only Memory,ROM),随机存取存储器(Random Access Memory,RAM),磁盘存储介质设备,光存储介质设备,闪存设备,电气、光学或其他物理/有形的存储器存储设备。因此,通常,存储器包括一个或多个编码有包括计算机可执行指令的软件的有形(非暂态)计算机可读存储介质(例如,存储器设备),并且当该软件被执行(例如,由一个或多个处理器)时,其可操作来执行参考 根据本申请实施例中第一方面的基于线下购物的信息获取方法所描述的操作。
第一处理器902通过读取第一存储器901中存储的可执行程序代码来运行与可执行程序代码对应的计算机程序,以用于实现上述实施例中第一方面的基于线下购物的信息获取方法。
在一些示例中,用户终端900还可包括第一通信接口903和第一总线904。其中,如图21所示,第一存储器901、第一处理器902、第一通信接口903通过第一总线904连接并完成相互间的通信。
第一通信接口903,主要用于实现本申请实施例中各模块、装置、单元和/或设备之间的通信。也可通过第一通信接口903接入输入设备和/或输出设备。
第一总线904包括硬件、软件或两者,将用户终端900的部件彼此耦接在一起。举例来说而非限制,第一总线904可包括加速图形端口(Accelerated Graphics Port,AGP)或其他图形总线、增强工业标准架构(Enhanced Industry Standard Architecture,EISA)总线、前端总线(Front Side Bus,FSB)、超传输(Hyper Transport,HT)互连、工业标准架构(Industrial Standard Architecture,ISA)总线、无限带宽互连、低引脚数(Low pin count,LPC)总线、存储器总线、微信道架构(Micro Channel Architecture,MCA)总线、外围组件互连(Peripheral Component Interconnect,PCI)总线、PCI-Express(PCI-X)总线、串行高级技术附件(Serial Advanced Technology Attachment,SATA)总线、视频电子标准协会局部(Video Electronics Standards Association Local Bus,VLB)总线或其他合适的总线或者两个或更多个以上这些的组合。在合适的情况下,第一总线904可包括一个或多个总线。尽管本申请实施例描述和示出了特定的总线,但本申请考虑任何合适的总线或互连。
本申请第八方面还提供了一种感应节点设备。图22为本申请第八方面提供的感应节点设备的一实施例的结构示意图。如图22所示,感应节点设备1000包括第二存储器1001、第二处理器1002及存储在第二存储器1001上并可在第二处理器1002上运行的计算机程序。
在一些示例中,上述第二处理器1002可以包括中央处理器(CPU),或者特定集成电路(Application Specific Integrated Circuit,ASIC),或者可以被配置成实施本申请实施例的一个或多个集成电路。
第二存储器1001可包括只读存储器(Read-Only Memory,ROM),随机存取存储器(Random Access Memory,RAM),磁盘存储介质设备,光存储介质设备,闪存设备,电气、光学或其他物理/有形的存储器存储设备。因此,通常,存储器包括一个或多个编码有包括计算机可执行指令的软件的有形(非暂态)计算机可读存储介质(例如,存储器设备),并且当该软件被执行(例如,由一个或多个处理器)时,其可操作来执行参考根据本申请实施例中第二方面的基于线下购物的信息获取方法所描述的操作。
第二处理器1002通过读取第二存储器1001中存储的可执行程序代码来运行与可执行程序代码对应的计算机程序,以用于实现上述实施例中第二方面的基于线下购物的信息获取方法。
在一些示例中,感应节点设备1000还可包括第二通信接口1003和第二总线1004。其中,如图22所示,第二存储器1001、第二处理器1002、第二通信接口1003通过第二总线1004连接并完成相互间的通信。
第二通信接口1003,主要用于实现本申请实施例中各模块、装置、单元和/或设备之间的通信。也可通过第二通信接口1003接入输入设备和/或输出设备。
第二总线1004包括硬件、软件或两者,将感应节点设备1000的部件彼此耦接在一起。举例来说而非限制,第二总线1004可包括加速图形端口(Accelerated Graphics Port,AGP)或其他图形总线、增强工业标准架构(Enhanced Industry Standard Architecture,EISA)总线、前端总线(Front Side Bus,FSB)、超传输(Hyper Transport,HT)互连、工业标准架构(Industrial Standard Architecture,ISA)总线、无限带宽互连、低引脚数(Low pin count,LPC)总线、存储器总线、微信道架构(Micro Channel Architecture,MCA)总线、外围组件互连(Peripheral Component Interconnect,PCI)总线、PCI-Express(PCI-X)总线、串行高级技术附件 (Serial Advanced Technology Attachment,SATA)总线、视频电子标准协会局部(Video Electronics Standards Association Local Bus,VLB)总线或其他合适的总线或者两个或更多个以上这些的组合。在合适的情况下,第二总线1004可包括一个或多个总线。尽管本申请实施例描述和示出了特定的总线,但本申请考虑任何合适的总线或互连。
本申请第九方面还提供了一种后台服务器。图23为本申请第九方面提供的后台服务器的一实施例的结构示意图。如图23所示,后台服务器1100包括第三存储器1101、第三处理器1102及存储在第三存储器1101上并可在第三处理器1102上运行的计算机程序。
在一些示例中,上述第三处理器1102可以包括中央处理器(CPU),或者特定集成电路(Application Specific Integrated Circuit,ASIC),或者可以被配置成实施本申请实施例的一个或多个集成电路。
第三存储器1101可包括只读存储器(Read-Only Memory,ROM),随机存取存储器(Random Access Memory,RAM),磁盘存储介质设备,光存储介质设备,闪存设备,电气、光学或其他物理/有形的存储器存储设备。因此,通常,存储器包括一个或多个编码有包括计算机可执行指令的软件的有形(非暂态)计算机可读存储介质(例如,存储器设备),并且当该软件被执行(例如,由一个或多个处理器)时,其可操作来执行参考根据本申请实施例中第三方面的基于线下购物的信息获取方法所描述的操作。
第三处理器1102通过读取第三存储器1101中存储的可执行程序代码来运行与可执行程序代码对应的计算机程序,以用于实现上述实施例中第三方面的基于线下购物的信息获取方法。
在一些示例中,后台服务器1100还可包括第三通信接口1103和第三总线1104。其中,如图23所示,第三存储器1101、第三处理器1102、第三通信接口1103通过第三总线1104连接并完成相互间的通信。
第三通信接口1103,主要用于实现本申请实施例中各模块、装置、单元和/或设备之间的通信。也可通过第三通信接口1103接入输入设备和/或输出设备。
第三总线1104包括硬件、软件或两者,将后台服务器1100的部件彼此耦接在一起。举例来说而非限制,第三总线1104可包括加速图形端口(Accelerated Graphics Port,AGP)或其他图形总线、增强工业标准架构(Enhanced Industry Standard Architecture,EISA)总线、前端总线(Front Side Bus,FSB)、超传输(Hyper Transport,HT)互连、工业标准架构(Industrial Standard Architecture,ISA)总线、无限带宽互连、低引脚数(Low pin count,LPC)总线、存储器总线、微信道架构(Micro Channel Architecture,MCA)总线、外围组件互连(Peripheral Component Interconnect,PCI)总线、PCI-Express(PCI-X)总线、串行高级技术附件(Serial Advanced Technology Attachment,SATA)总线、视频电子标准协会局部(Video Electronics Standards Association Local Bus,VLB)总线或其他合适的总线或者两个或更多个以上这些的组合。在合适的情况下,第三总线1104可包括一个或多个总线。尽管本申请实施例描述和示出了特定的总线,但本申请考虑任何合适的总线或互连。
本申请第十方面提供一种基于线下购物的信息获取系统。该基于线下购物的信息获取系统可包括上述实施例中的用户终端、感应节点设备和后台服务器,具体内容可参见上述实施例中的相关内容,在此不再赘述。
本申请第十一方面还提供一种计算机可读存储介质,该计算机可读存储介质上存储有计算机程序指令,该计算机程序指令被处理器执行时可实现上述实施例中第一方面的基于线下购物的信息获取方法、第二方面的基于线下购物的信息获取方法或第三方面的基于线下购物的信息获取方法,且能达到相同的技术效果,为避免重复,这里不再赘述。其中,上述计算机可读存储介质可包括非暂态计算机可读存储介质,如只读存储器(Read-Only Memory,简称ROM)、随机存取存储器(Random Access Memory,简称RAM)、磁碟或者光盘等,在此并不限定。
需要明确的是,本说明书中的各个实施例均采用递进的方式描述,各个实施例之间相同或相似的部分互相参见即可,每个实施例重点说明的都是与其他实施例的不同之处。对于用户终端实施例、感应节点设备实施例、后台服务器实施例、系统实施例和计算机可读存储介质实施例而言, 相关之处可以参见方法实施例的说明部分。本申请并不局限于上文所描述并在图中示出的特定步骤和结构。本领域的技术人员可以在领会本申请的精神之后,作出各种改变、修改和添加,或者改变步骤之间的顺序。并且,为了简明起见,这里省略对已知方法技术的详细描述。
上面参考根据本申请的实施例的方法、装置(系统)和计算机程序产品的流程图和/或框图描述了本申请的各方面。应当理解,流程图和/或框图中的每个方框以及流程图和/或框图中各方框的组合可以由计算机程序指令实现。这些计算机程序指令可被提供给通用计算机、专用计算机、或其它可编程数据处理装置的处理器,以产生一种机器,使得经由计算机或其它可编程数据处理装置的处理器执行的这些指令使能对流程图和/或框图的一个或多个方框中指定的功能/动作的实现。这种处理器可以是但不限于是通用处理器、专用处理器、特殊应用处理器或者现场可编程逻辑电路。还可理解,框图和/或流程图中的每个方框以及框图和/或流程图中的方框的组合,也可以由执行指定的功能或动作的专用硬件来实现,或可由专用硬件和计算机指令的组合来实现。
本领域技术人员应能理解,上述实施例均是示例性而非限制性的。在不同实施例中出现的不同技术特征可以进行组合,以取得有益效果。本领域技术人员在研究附图、说明书及权利要求书的基础上,应能理解并实现所揭示的实施例的其他变化的实施例。在权利要求书中,术语“包括”并不排除其他装置或步骤;数量词“一个”不排除多个;术语“第一”、“第二”用于标示名称而非用于表示任何特定的顺序。权利要求中的任何附图标记均不应被理解为对保护范围的限制。权利要求中出现的多个部分的功能可以由一个单独的硬件或软件模块来实现。某些技术特征出现在不同的从属权利要求中并不意味着不能将这些技术特征进行组合以取得有益效果。

Claims (37)

  1. 一种基于线下购物的信息获取方法,应用于用户终端,所述方法包括:
    在所述用户终端位于感应节点设备组形成的感应区域内的情况下,接收所述感应节点设备组中目标感应节点设备发送的第一消息,所述第一消息包括所述目标感应节点设备的节点标识,所述目标感应节点设备基于所述感应节点设备组获取的所述用户终端的感应信息确定;
    基于所述第一消息,向后台服务器发送第二消息,所述第二消息包括所述目标感应节点设备的节点标识;
    接收所述后台服务器发送的与所述目标感应节点设备的节点标识具有对应关系的推送信息;
    显示与所述目标感应节点设备的节点标识具有对应关系的推送信息。
  2. 根据权利要求1所述的方法,其中,所述感应节点设备组包括第一感应节点设备组至第N感应节点设备组,N为大于1的整数;
    其中,与第i感应节点设备组中感应节点设备的节点标识具有对应关系的推送信息,与与第j感应节点设备组中感应节点设备的节点标识具有对应关系的推送信息不同;
    或者,与第i感应节点设备组中感应节点设备的节点标识具有对应关系的推送信息,与与第j感应节点设备组中感应节点设备的节点标识具有对应关系的推送信息相同;
    i、j为整数,i≠j,1≤i≤N,1≤j≤N。
  3. 根据权利要求1所述的方法,其中,
    与同一所述感应节点设备组中感应节点设备的节点标识具有对应关系的推送信息相同;
    或者,
    与同一所述感应节点设备组中至少两个感应节点设备的节点标识具有对应关系的推送信息不同。
  4. 根据权利要求1所述的方法,其中,所述接收所述后台服务器发 送的与所述目标感应节点设备的节点标识具有对应关系的推送信息,包括:
    接收所述后台服务器发送的弹窗页面的地址,所述弹窗页面包括与所述目标感应节点设备的节点标识具有对应关系的推送信息;
    所述显示与所述目标感应节点设备的节点标识具有对应关系的推送信息,包括:
    访问所述弹窗页面的地址,触发显示所述弹窗页面。
  5. 根据权利要求1所述的方法,还包括:
    响应于对所述用户终端的第一输入,向所述后台服务器发送第三消息,所述第三消息用于指示后台服务器执行所述第一输入对应的第一任务,所述第一任务与所述推送信息相关;
    接收所述后台服务器发送的任务执行结果信息,所述任务执行结果信息基于所述第一任务的执行结果得到。
  6. 根据权利要求5所述的方法,其中,
    所述推送信息包括商品拼单信息,所述第一任务包括拼单任务,所述任务执行结果信息包括拼单结果标识和/或拼单取货码,拼单任务包括创建拼单任务或加入拼单任务;
    和/或,
    所述推送信息包括优惠券信息,所述第一任务包括优惠券支付任务,所述任务执行结果信息包括优惠券支付结果标识。
  7. 根据权利要求1所述的方法,其中,所述感应节点设备具有非接触感知单元,所述感应节点设备组形成的感应区域为非接触感应区域。
  8. 根据权利要求1所述的方法,其中,所述推送信息包括优惠券信息和/或商品拼单信息。
  9. 根据权利要求1至7中任意一项所述的方法,其中,所述感应信息包括以下一项或两项以上:
    用户终端信号强度、用户终端标识、时间、用户终端运动信息。
  10. 一种基于线下购物的信息获取方法,应用于感应节点设备组,所述感应节点设备组包括感应节点设备,所述感应节点设备组形成感应区 域,所述方法包括:
    在用户终端位于所述感应区域的情况下,获取所述用户终端的感应信息;
    基于所述感应信息,确定所述感应节点设备组中的目标感应节点设备;
    由所述目标感应节点设备发送第一消息,以使所述用户终端获取所述第一消息,并向后台服务器发送第二消息,使所述用户终端接收所述后台服务器发送的与目标感应节点设备的节点标识具有对应关系的推送信息,所述第一消息包括所述目标感应节点设备的节点标识,所述第二消息基于所述第一消息生成,所述第二消息包括所述目标感应节点设备的节点标识。
  11. 根据权利要求10所述的方法,其中,所述感应节点设备组包括第一感应节点设备组至第N感应节点设备组,N为大于1的整数;
    其中,与第i感应节点设备组中感应节点设备的节点标识具有对应关系的推送信息,与与第j感应节点设备组中感应节点设备的节点标识具有对应关系的推送信息不同;
    或者,与第i感应节点设备组中感应节点设备的节点标识具有对应关系的推送信息,与与第j感应节点设备组中感应节点设备的节点标识具有对应关系的推送信息相同;
    i、j为整数,i≠j,1≤i≤N,1≤j≤N。
  12. 根据权利要求10所述的方法,其中,
    与同一所述感应节点设备组中感应节点设备的节点标识具有对应关系的推送信息相同;
    或者,
    与同一所述感应节点设备组中至少两个感应节点设备的节点标识具有对应关系的推送信息不同。
  13. 根据权利要求10所述的方法,其中,所述基于所述感应信息,确定所述感应节点设备组中的目标感应节点设备,包括:
    向后台服务器发送所述感应信息;
    接收所述后台服务器发送的感应节点筛选信息,所述感应节点筛选信息是所述后台服务器根据所述感应信息确定的,所述感应节点筛选信息包括用户终端位置信息和/或感应节点运行信息;
    根据感应节点筛选信息,确定所述感应节点设备组中的所述目标感应节点设备。
  14. 根据权利要求13所述的方法,其中,所述根据感应节点筛选信息,确定所述感应节点设备组中的所述目标感应节点设备,包括:
    在所述感应节点筛选信息包括所述用户终端位置信息的情况下,根据所述用户终端位置信息,将所述感应节点设备组中与所述用户终端位置信息指示的所述用户终端的位置距离最近的感应节点设备,确定为所述目标感应节点设备;
    或者,
    在所述感应节点筛选信息包括所述感应节点运行信息,或者,所述感应节点筛选信息包括所述感应节点运行信息和所述用户终端位置信息的情况下,根据所述感应节点筛选信息对所述感应节点设备组中的感应节点设备进行轮询,确定所述目标感应节点设备;
    或者,
    在所述感应节点筛选信息包括所述感应节点运行信息,或者,所述感应节点筛选信息包括所述感应节点运行信息和所述用户终端位置信息的情况下,根据感应节点筛选信息和预设的投票规则,对所述感应节点设备组中的感应节点设备进行投票,确定所述目标感应节点设备。
  15. 根据权利要求10所述的方法,其中,所述感应节点设备具有非接触感知单元,所述感应节点设备组形成的感应区域为非接触感应区域。
  16. 根据权利要求10所述的方法,其中,所述推送信息用于触发用户终端显示弹窗网页,所述弹窗网页包括与所述目标感应节点设备的节点标识具有对应关系的推送信息。
  17. 根据权利要求10至16中任意一项所述的方法,其中,所述推送信息包括优惠券信息和/或商品拼单信息。
  18. 根据权利要求10至16中任意一项所述的方法,其中,所述感应 信息包括以下一项或两项以上:
    用户终端信号强度、用户终端标识、时间、用户终端运动信息。
  19. 一种基于线下购物的信息获取方法,应用于后台服务器,所述方法包括:
    接收用户终端发送的第二消息,所述第二消息由所述用户终端基于从感应节点设备组中目标感应节点设备发送的第一消息生成,所述第二消息包括所述目标感应节点设备的节点标识,所述第一消息包括所述目标感应节点设备的节点标识,所述感应节点设备组形成感应区域,所述目标感应节点基于所述感应节点设备组获取的所述用户终端的感应信息确定;
    根据所述目标感应节点设备的节点标识,获取与所述目标感应节点设备的节点标识具有对应关系的推送信息;
    向所述用户终端发送与所述目标感应节点设备的节点标识具有对应关系的推送信息,以使所述用户终端显示与所述目标感应节点设备的节点标识具有对应关系的推送信息。
  20. 根据权利要求19所述的方法,其中,
    所述感应节点设备组包括第一感应节点设备组至第N感应节点设备组,N为大于1的整数;
    其中,与第i感应节点设备组中感应节点设备的节点标识具有对应关系的推送信息,与与第j感应节点设备组中感应节点设备的节点标识具有对应关系的推送信息不同;
    或者,与第i感应节点设备组中感应节点设备的节点标识具有对应关系的推送信息,与与第j感应节点设备组中感应节点设备的节点标识具有对应关系的推送信息相同;
    i、j为整数,i≠j,1≤i≤N,1≤j≤N。
  21. 根据权利要求19所述的方法,其中,
    与同一所述感应节点设备组中感应节点设备的节点标识具有对应关系的推送信息相同;
    或者,
    与同一所述感应节点设备组中至少两个感应节点设备的节点标识具有 对应关系的推送信息不同。
  22. 根据权利要求19所述的方法,还包括:
    接收所述感应节点设备组中感应节点设备发送的所述感应信息;
    根据所述感应信息,得到感应节点筛选信息,所述感应节点筛选信息包括用户终端位置信息和/或感应节点运行信息;
    向所述感应节点设备组中感应节点设备发送所述感应节点筛选信息,以使所述感应节点设备组根据所述感应节点筛选信息确定所述目标感应节点设备。
  23. 根据权利要求22所述的方法,其中,
    在所述感应节点筛选信息包括所述用户终端位置信息的情况下,所述目标感应节点设备为所述感应节点设备组中与所述用户终端位置信息指示的所述用户终端的位置距离最近的感应节点设备;
    或者,
    在所述感应节点筛选信息包括所述感应节点运行信息,或者,所述感应节点筛选信息包括所述感应节点运行信息和所述用户终端位置信息的情况下,所述目标感应节点设备根据所述感应节点筛选信息对所述感应节点设备组中的感应节点设备进行轮询确定;
    或者,
    在所述感应节点筛选信息包括所述感应节点运行信息,或者,所述感应节点筛选信息包括所述感应节点运行信息和所述用户终端位置信息的情况下,所述目标感应节点设备根据感应节点筛选信息和预设的投票规则对所述感应节点设备组中的感应节点设备进行投票确定。
  24. 根据权利要求19所述的方法,其中,所述向所述用户终端发送与所述目标感应节点设备的节点标识具有对应关系的推送信息,包括:
    向所述用户终端发送弹窗页面的地址,所述弹窗页面包括与所述目标感应节点设备的节点标识具有对应关系的推送信息。
  25. 根据权利要求19所述的方法,还包括:
    接收所述用户终端响应于对所述用户终端的第一输入发送的第三消息;
    响应于所述第三消息,执行所述第一输入对应的第一任务,所述第一任务与所述推送信息相关;
    基于所述第一任务的执行结果,得到任务执行结果信息;
    向所述用户终端发送所述任务执行结果信息。
  26. 根据权利要求25所述的方法,其中,
    所述推送信息包括商品拼单信息,所述第一任务包括拼单任务,所述任务执行结果信息包括拼单结果标识和/或拼单取货码,拼单任务包括创建拼单任务或加入拼单任务;
    和/或,
    所述推送信息包括优惠券信息,所述第一任务包括优惠券支付任务,所述任务执行结果信息包括优惠券支付结果标识。
  27. 根据权利要求19所述的方法,其中,所述感应节点设备具有非接触感知单元,所述感应节点设备组形成的感应区域为非接触感应区域。
  28. 根据权利要求19所述的方法,其中,所述推送信息包括优惠券信息和/或商品拼单信息。
  29. 根据权利要求19至27中任意一项所述的方法,其中,所述感应信息包括以下一项或两项以上:
    用户终端信号强度、用户终端标识、时间、用户终端运动信息。
  30. 一种用户终端,包括:
    第一接收模块,用于在所述用户终端位于感应节点设备组形成的感应区域内的情况下,接收所述感应节点设备组中目标感应节点设备发送的第一消息,所述第一消息包括所述目标感应节点设备的节点标识,所述目标感应节点设备基于所述感应节点设备组获取的所述用户终端的感应信息确定;
    第一发送模块,用于基于所述第一消息,向后台服务器发送第二消息,所述第二消息包括所述目标感应节点设备的节点标识;
    所述第一接收模块还用于接收所述后台服务器发送的与所述目标感应节点设备的节点标识具有对应关系的推送信息;
    显示模块,用于显示与所述目标感应节点设备的节点标识具有对应关 系的推送信息。
  31. 一种感应节点设备,包括:
    第一获取模块,用于在用户终端位于感应节点设备组形成的感应区域的情况下,获取所述用户终端的感应信息,所述感应节点设备组包括所述感应节点设备;
    处理模块,用于基于所述感应信息,确定所述感应节点设备组中的目标感应节点设备;
    第二发送模块,用于在所述感应节点设备为目标感应节点设备的情况下,发送第一消息,以使所述用户终端获取所述第一消息,并向后台服务器发送第二消息,使所述用户终端接收所述后台服务器发送的与目标感应节点设备的节点标识具有对应关系的推送信息,所述第一消息包括所述目标感应节点设备的节点标识,所述第二消息基于所述第一消息生成,所述第二消息包括所述目标感应节点设备的节点标识。
  32. 一种后台服务器,包括:
    第三接收模块,用于接收用户终端发送的第二消息,所述第二消息由所述用户终端基于从感应节点设备组中目标感应节点设备发送的第一消息生成,所述第二消息包括所述目标感应节点设备的节点标识,所述第一消息包括所述目标感应节点设备的节点标识,所述感应节点设备组形成感应区域,所述目标感应节点基于所述感应节点设备组获取的所述用户终端的感应信息确定;
    第二获取模块,用于根据所述目标感应节点设备的节点标识,获取与所述目标感应节点设备的节点标识具有对应关系的推送信息;
    第三发送模块,用于向所述用户终端发送与所述目标感应节点设备的节点标识具有对应关系的推送信息,以使所述用户终端显示与所述目标感应节点设备的节点标识具有对应关系的推送信息。
  33. 一种用户终端,包括:处理器以及存储有计算机程序指令的存储器;
    所述处理器执行所述计算机程序指令时实现如权利要求1至9中任意一项所述的基于线下购物的信息获取方法。
  34. 一种感应节点设备,包括:处理器以及存储有计算机程序指令的存储器;
    所述处理器执行所述计算机程序指令时实现如权利要求10至18中任意一项所述的基于线下购物的信息获取方法。
  35. 一种后台服务器,包括:处理器以及存储有计算机程序指令的存储器;
    所述处理器执行所述计算机程序指令时实现如权利要求19至29中任意一项所述的基于线下购物的信息获取方法。
  36. 一种基于线下购物的信息获取系统,包括如权利要求33所述的用户终端、如权利要求34所述的感应节点设备和如权利要求35所述的后台服务器。
  37. 一种计算机可读存储介质,所述计算机可读存储介质上存储有计算机程序指令,所述计算机程序指令被处理器执行时实现如权利要求1至29中任意一项所述的基于线下购物的信息获取方法。
PCT/CN2022/116747 2022-01-06 2022-09-02 基于线下购物的信息获取方法、终端、系统及介质 WO2023130751A1 (zh)

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