WO2019007246A1 - 一种物流对象的接收方法、装置及系统和电子设备 - Google Patents

一种物流对象的接收方法、装置及系统和电子设备 Download PDF

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Publication number
WO2019007246A1
WO2019007246A1 PCT/CN2018/093224 CN2018093224W WO2019007246A1 WO 2019007246 A1 WO2019007246 A1 WO 2019007246A1 CN 2018093224 W CN2018093224 W CN 2018093224W WO 2019007246 A1 WO2019007246 A1 WO 2019007246A1
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Prior art keywords
logistics object
receiving
information
target
terminal
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PCT/CN2018/093224
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English (en)
French (fr)
Inventor
聂洪杰
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菜鸟智能物流控股有限公司
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Publication of WO2019007246A1 publication Critical patent/WO2019007246A1/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
    • G06Q10/00Administration; Management
    • G06Q10/08Logistics, e.g. warehousing, loading or distribution; Inventory or stock management
    • G06Q10/083Shipping
    • G06Q10/0833Tracking
    • 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
    • G06Q10/00Administration; Management
    • G06Q10/08Logistics, e.g. warehousing, loading or distribution; Inventory or stock management

Definitions

  • the technical field of the Internet of the present application relates to a method, a device, a system, and an electronic device for receiving a logistics object.
  • the courier company in order to prevent false reception, the courier company usually asks the dispatcher to retrieve the receipt with the user's signature, or ask the dispatcher to provide electronic equipment for the user to electronically sign.
  • user signatures can still be forged, and it is more common to find someone to sign in the real world.
  • the present invention provides a method, device, system and electronic device for receiving a logistics object to solve the problem that the prior art cannot effectively prevent false reception.
  • a method for receiving a logistics object according to an embodiment of the present application is applied to a server, and the method includes:
  • the first scenario information is scenario information based on the receiving location that is pre-uploaded by the second terminal.
  • a method for receiving a logistics object according to an embodiment of the present application is applied to a first terminal, where the method includes:
  • the first scenario information is a receiving location that is pre-uploaded by the second terminal to the server for receiving Scene information;
  • a method for receiving a logistics object according to an embodiment of the present application is applied to a second terminal, where the method includes:
  • the receiving manner for the logistics object is the scene receiving, the receiving location-based scene information for signing; the scene information is generated at the receiving location based on the augmented reality technology;
  • a receiving device for a logistics object is applied to a server, and the device includes:
  • An information determining unit configured to determine target first scene information associated with the target logistics object
  • the information acquiring unit acquires second scene information based on the current location and sent by the first terminal;
  • the state determining unit determines the receiving state of the target logistics object according to the target first scenario information and the second scenario information; the first scenario information is scenario information based on the receiving location that is pre-uploaded by the second terminal.
  • a receiving device for a logistics object is applied to a first terminal, where the device includes:
  • the first sending unit sends a receiving request of the target logistics object to the server
  • a first acquiring unit configured to acquire the target logistics object information provided by the server, and the first scenario information associated with the target logistics object information; the first scenario information is used by the second terminal to be pre-uploaded to the server for Received scene information based on the receiving location;
  • a second acquiring unit acquiring second scene information based on the current location
  • the second sending unit sends the second scenario information based on the current location to the server.
  • a memory for storing processor executable instructions
  • processor is configured to:
  • the first scenario information is scenario information based on the receiving location that is pre-uploaded by the second terminal.
  • a memory for storing processor executable instructions
  • processor is configured to:
  • the first scenario information is a receiving location that is pre-uploaded by the second terminal to the server for receiving Scene information;
  • a memory for storing processor executable instructions
  • processor is configured to:
  • the receiving manner for the logistics object is the scene receiving, the receiving location-based scene information for signing; the scene information is generated at the receiving location based on the augmented reality technology;
  • a method for receiving a logistics object includes:
  • the server provides a plurality of logistics object information, and the logistics object information is associated with the first scene information;
  • the first terminal acquires and sends the second scenario information based on the current location to the server;
  • the server determines the receiving state of the target logistics object according to the target first scenario information and the second scenario information; the first scenario information is scenario information based on the receiving location that is pre-uploaded by the second terminal.
  • a receiving system for a logistics object includes a first terminal, a second terminal, and a server;
  • the second terminal is configured to upload, to the server, first scenario information based on the receiving location;
  • the server is configured to provide a plurality of logistics object information, where the logistics object information is associated with the first scenario information; acquiring a target logistics object receiving request sent by the first terminal; and determining a target first scenario information associated with the target logistics object Obtaining second scene information based on the current location sent by the first terminal; determining, according to the target first scenario information and the second scenario information, a receiving state of the target logistics object;
  • the first terminal is configured to send a receiving request of the target logistics object to the server, acquire the target logistics object information provided by the server, and first scene information associated with the target logistics object information; and obtain the current location based on the current location
  • the second scene information is sent to the server by the second scene information based on the current location.
  • the second terminal information of the current location is uploaded by the first terminal, and the server matches the first scenario information based on the receiving location that is pre-uploaded for receiving by the second terminal; if the matching succeeds
  • the dispatcher first terminal
  • the target logistics object to the receiving location designated by the user (second terminal)
  • the receiving can be completed automatically. Since the location-based scene information cannot be forged, if the dispatcher wants to complete the reception, it must reach the receiving position specified by the user, or the reception cannot be completed, thereby effectively preventing the false reception.
  • FIG. 1 is a flowchart of a method for receiving a logistics object according to an embodiment of the present application
  • FIG. 2 is a schematic diagram of an interface of a second terminal according to an embodiment of the present application.
  • FIG. 3 is a schematic diagram of setting an AR red packet by a second terminal according to an embodiment of the present application
  • FIG. 4 is a flowchart of a method for receiving a logistics object according to an embodiment of the present application
  • FIG. 5 is a flowchart of a method for receiving a logistics object according to an embodiment of the present application.
  • FIG. 6 is a schematic block diagram of a receiving device for a logistics object according to an embodiment of the present application.
  • FIG. 7 is a schematic block diagram of a receiving device for a logistics object according to an embodiment of the present application.
  • FIG. 8 is a schematic block diagram of a receiving device for a logistics object according to an embodiment of the present application.
  • first, second, third, etc. may be used to describe various information in this application, such information should not be limited to these terms. These terms are only used to distinguish the same type of information from each other.
  • first information may also be referred to as the second information without departing from the scope of the present application.
  • second information may also be referred to as the first information.
  • word "if” as used herein may be interpreted as "when” or "when” or "in response to determination.”
  • the embodiment of the present application provides a method, a device, and a system for receiving a logistics object, and an electronic device.
  • the first terminal uploads the second scenario information of the current location by using the first terminal, and the server sends the second scenario to the second terminal for pre-uploading for receiving.
  • the first scene information of the location is matched; in the case of successful matching, it can be stated that the dispatcher (first terminal) does send the target logistics object to the receiving location designated by the user (second terminal), so that the receiving can be completed automatically. Since the location-based scene information cannot be forged, if the dispatcher wants to complete the reception, it must reach the receiving position specified by the user, or the reception cannot be completed, thereby effectively preventing the false reception.
  • the first terminal may be a dispatcher terminal that assigns a delivery object
  • the second terminal may refer to a user terminal that receives a logistics object.
  • the following describes the embodiments of the present application in combination with a plurality of stages in which a user places an order, a server generates an order, a dispatcher delivers, and a server determines a receiving status.
  • FIG. 1 a flowchart of a method for receiving a logistics object according to an embodiment of the present disclosure is applied to a second terminal, where the method includes the following steps:
  • Step 110 Acquire scene information based on the receiving location for receiving when the receiving manner for the logistics object is the scene receiving; the scene information is generated at the receiving location based on the augmented reality technology AR.
  • Step 120 Upload the scene information based on the receiving location to the server.
  • the second terminal may be a terminal installed with user client software, such as a terminal installed with a SF Express APP.
  • user client software such as a terminal installed with a SF Express APP.
  • the second terminal obtains the scene information for receiving, and the scene information may be based on the AR technology at the receiving location. Generated.
  • the receiving location may be geographic location information, such as latitude and longitude, located by the positioning device on the second terminal.
  • the second terminal may upload the scene information based on the receiving location to the server.
  • the scene information may include any combination of photos, audio, video, temperature, and humidity.
  • the second terminal may invoke the camera to take a photo or use the already taken photo, and the user may use the captured photo as the received scene information, and the corresponding location of the scene information is the geographic location at which the photo was taken.
  • the user can use the photo of the receiving location as the scene information for reception; thus, the dispatcher also needs to take a same or similar photo to receive after receiving the receiving location.
  • the second terminal may call the camera to perform video recording or use the already recorded video, and the user may use the video as the received scene information, and the corresponding location of the scene information is the geographic location at which the video was captured. For example, the user can use a video captured at the receiving location as the scene information for reception; thus, the dispatcher also needs to take a same or similar video for reception after reaching the receiving location.
  • the second terminal can call the microphone for audio recording or use the already recorded audio, and the user can use the audio as the scene information for receiving, and the corresponding location of the scene information is the geographic location at which the audio was recorded.
  • the user can record the sound that can be heard at the receiving position (preferably a special sound) as audio and use the audio as the scene information for receiving; thus, the dispatcher also needs to record the same piece after reaching the receiving position. Or similar audio to receive.
  • the second terminal may obtain the temperature reported by the temperature sensor in real time or set a temperature (which may also be a temperature range), and the user may use the temperature as the scene information for receiving, and the receiving position corresponding to the scene information may be a user setting. Geographic location. For example, if the target logistics object is a temperature-sensitive object such as fruit, the fruit is usually prone to spoil at high temperatures, and the user can set a temperature (such as 20 degrees Celsius) and use that temperature as the scene information for reception; The dispatcher also needs to upload the current temperature to receive after receiving the receiving location. When the temperature uploaded by the second terminal is exceeded, the license can be automatically rejected.
  • a temperature which may also be a temperature range
  • the second terminal may obtain the humidity reported by the humidity sensor in real time or set a humidity (which may also be a humidity range), and the user may use the humidity as the scene information for receiving, and the receiving position corresponding to the scene information may be a user setting. Geographic location. For example, if the target logistics object is a humidity-sensitive object such as an electronic component, the electronic component is generally prone to failure in a humid environment, and the user can set a humidity and use the humidity as scene information for reception; The dispatcher also needs to upload the current humidity to receive after receiving the receiving location. When the humidity uploaded by the second terminal is exceeded, the license can be automatically refused.
  • a humidity which may also be a humidity range
  • the logistics object is not limited to a "courier package", and may also be, for example, a letter or the like.
  • the user opens the courier APP, and in the process of placing an order: when the user clicks on the scene to receive, it is not necessary to fill in the receiving information such as the mobile phone, name, address, etc.; only need to take a photo, and take the photographed photo as a receiving
  • the scene information can be.
  • the receiving location of the scene information is the geographic location of the current user.
  • the courier APP may upload the scene information based on the receiving location to the server after the user clicks upload. It is worth mentioning that the user can also add notes to the captured scene information. For example, if the user is a photo taken in front of the company's building, you can add a text note: Lejia International Building No. 3.
  • the user's personal information is very important, such as mobile phone, name, home address, etc. Many of the information relates to user property security.
  • the dispatcher since the dispatcher needs to be dispatched, the user must fill in the receipt information, so that the user's personal information is easily leaked, thereby causing certain hidden dangers.
  • the user In the embodiment of the present application, the user is not required to provide the receipt information, and the risk of leakage of the user information can be effectively avoided.
  • the method before the acquiring the location information based on the receiving location for receiving, the method further includes:
  • the selected scene information based on the receiving location is uploaded to the server.
  • the second terminal may use the historically used scene information for the user to select.
  • the historically used scene information For example, photos of homes used by user history, photos of companies, photos of rookie stations, and the like.
  • Each historical scene information corresponds to the geographical location at the time of photographing. That is to say, after the user selects the photo of the home, the receiving location on which the photo is based is the geographic location of the home, not the current geographic location of the user.
  • the user can select multiple scene information. For example, the user can select a photo of the home and a photo of the company for one express package. In this way, the dispatcher can select a closer location for the dispatch according to its dispatch path.
  • the method before the step 120, the method further includes:
  • the step 120 includes:
  • the user in order to prompt the dispatcher to dispatch the order in time, the user can reward the dispatcher, that is, set a certain number of virtual resources. In this way, when the dispatcher dispatches the order and the reception is successful, the virtual resource set by the user can be obtained.
  • the virtual resource may be that the second terminal is set in the scenario information based on an augmented reality technology.
  • the virtual resource is a "virtual red envelope" as an example.
  • the virtual resource may also be other virtual items other than the “virtual red envelope”; for example, an electronic voucher, an electronic shopping voucher, an electronic coupon, or the like;
  • the setting of the virtual red envelope (hereinafter referred to as the red envelope) may be a common red envelope, or the red envelope may be set in the scene information based on the AR technology.
  • FIG. 3 a schematic diagram of setting a red envelope in scene information.
  • the second terminal can click "Set AR Red Packet" so that the red envelope can be set.
  • the user can input the amount of the red envelope, and after clicking "carry in the red envelope", the AR red envelope can be set in the photo.
  • the server described in the embodiment of the present application may be a server, a server cluster, or a cloud platform built based on a server cluster that provides services to the second terminal and the first terminal.
  • a SF Express server, a SF Express server cluster or a cloud platform built on a SF Express server cluster is provided to the SF Express App.
  • the server may associate the receiving location, the scenario information, and the target logistics object into a database.
  • the second terminal may also upload other data such as notes, virtual resources, and the like, and the data may be associated with the target logistics object and stored in the database.
  • Table 1 below shows the scene table defined in the database:
  • the server finds the scene information id (scene_id) according to the target logistics object order_no; further, finds the user id, location information, and the like associated with the scene information according to the scene information id.
  • the server may provide a plurality of logistics object information, where the logistics object information is associated with the first scene information.
  • a flowchart of a method for receiving a logistics object according to an embodiment of the present disclosure is applied to a first terminal, where the method includes the following steps:
  • Step 210 Send a receiving request of the target logistics object to the server.
  • Step 220 Acquire the target logistics object information provided by the server, and the first scenario information associated with the target logistics object information.
  • the first scenario information is pre-uploaded by the second terminal to the server for receiving. Scene information based on the receiving location;
  • Step 230 Acquire second scenario information based on the current location.
  • Step 240 Send the second scenario information based on the current location to the server.
  • the first terminal described in the embodiment of the present application may be the client software as the second terminal.
  • the dispatcher uses the first terminal.
  • the dispatcher can view the logistics object information provided by the server through the first terminal, and the logistics object information is associated with the first scene information.
  • the dispatcher can initiate a request for receiving the target logistics object to the server through the first terminal.
  • the dispatcher can call the camera through the first terminal to scan the offline service identifier of the target logistics object, such as a barcode or a two-dimensional code, thereby triggering the sending of the receiving request for the target logistics object to the server.
  • the dispatcher can also send a request for receiving the target logistics object to the server by manually inputting the identifier of the target logistics object.
  • the first scene information associated with the target logistics object may be returned, where the first scene information is pre-uploaded to the server for receiving the scene information based on the receiving location.
  • the first terminal may receive and display the first scenario information returned by the server. And sending, by the dispatcher, second scene information that is the same as or similar to the first scene information according to the first scene information; the second scene information is scene information based on the current location. After the dispatcher clicks the uploading scene information, the first terminal uploads the second scene information based on the current location to the server.
  • the second scene information is the same as the first scene information, and may also include any combination of photos, audio, video, temperature, and humidity. That is, if the first scene information is a photo, the second scene information is also a photo; if the second scene information is a photo and temperature, the second scene information is also a photo and temperature.
  • the first terminal can display the camera returned by the server, and the transmitter can call the same or similar photo based on the current location; then, the first terminal can take the photo based on the current location. Upload to the server.
  • the first terminal can call the camera after playing the video returned by the server, and the dispatcher can shoot a video based on the current position that is the same or similar to the picture in the video; then, the first terminal can capture the current based on the current position.
  • the video of the location is uploaded to the server.
  • the first terminal can call the microphone after playing the audio returned by the server, and the dispatcher can record a live position-based audio with the sound in the played audio; then, the first terminal can record the audio based on the current position. Upload to the server.
  • the first terminal can display the temperature returned by the server, and the temperature sensor can be called.
  • the dispatcher can obtain the temperature based on the current location in the field; then, the first terminal can upload the acquired temperature based on the current location to the server.
  • the first terminal displays the humidity returned by the server, and the humidity sensor can be called.
  • the dispatcher can obtain the humidity based on the current location on the spot; then, the first terminal can upload the acquired humidity based on the current location to the server.
  • a flowchart of a method for receiving a logistics object according to an embodiment of the present disclosure is applied to a server.
  • the method includes the following steps:
  • Step 310 Provide a plurality of logistics object information, where the logistics object information is associated with the first scene information;
  • Step 320 Acquire a target logistics object receiving request sent by the first terminal.
  • Step 330 Determine target first scenario information associated with the target logistics object.
  • Step 340 Acquire second scenario information based on the current location sent by the first terminal.
  • Step 350 Determine, according to the target first scenario information and the second scenario information, a receiving state of the target logistics object; the first scenario information is scenario information based on the receiving location that is pre-uploaded by the second terminal.
  • the server may query, in the database, the target first scene information associated with the target logistics object and the target first according to the target logistics object. Receiving the location information of the scene information, and returning the target first scene information to the first terminal.
  • step 350 After receiving the second scenario information based on the current location uploaded by the first terminal, step 350 is performed. Specifically, the step 350 may include:
  • A1 Match the target first scene information based on the receiving location with the second scenario information based on the current location.
  • A2 determining that the target logistics object is successfully received if the matching is successful
  • A3 In the case that the matching fails, it is determined that the target logistics object reception fails.
  • Step A1 described herein may include:
  • performing the location matching between the receiving location corresponding to the target first scenario information and the current location corresponding to the second scenario specifically including:
  • the calculation of the distance value may use a formula or an algorithm commonly used in the industry, which is not described in this embodiment.
  • the preset threshold may be an empirical value defined by an artificial one.
  • the dispatcher When the distance between the receiving location corresponding to the target first scenario information and the current location corresponding to the second scenario information is less than the preset threshold, it may be stated that the dispatcher has reached the location specified by the user, and then the location matching may be determined to be successful;
  • the dispatcher When the distance between the receiving location corresponding to the target first scenario information and the current location corresponding to the second scenario information is greater than a preset threshold, it indicates that the dispatcher has not returned to the location specified by the user, and may return a prompt message to the first terminal, for example. Please arrive at the user-specified receiving location for reception.
  • the scene information in this embodiment may include any combination of photos, audio, video, temperature, and humidity.
  • C2 determining whether the similarity is greater than a preset threshold
  • C3 Determine that the scene matching is successful if the similarity is greater than a preset threshold.
  • the similarity calculation may utilize an image recognition algorithm.
  • the image recognition algorithm may be a Scale Invariant Feature Transform (SIFT).
  • SIFT Scale Invariant Feature Transform
  • the image recognition algorithm may also be other such as SURF (Speeded Up Robust Features), ORB (ORiented Brief), LIOP (Local). Intensity Order Pattern et al., this application does not limit it.
  • the server may determine whether the similarity between the target first scene information and the second scene information is greater than a preset threshold
  • the similarity is greater than the preset threshold, it may be determined that the second scene information captured by the dispatcher is the same scene information as the target first scene information captured by the user.
  • the server can determine that the target logistics object is successfully received.
  • the similarity can be calculated according to an audio recognition technique such as Automatic Speech Recognition (ASR).
  • ASR Automatic Speech Recognition
  • the similarity can be calculated based on video recognition technology.
  • the temperature it can be determined whether the second temperature meets the first temperature; if it is met, it can be determined that the scene matching is successful, and conversely, the scene matching failure is determined.
  • the humidity it can be determined whether the second humidity meets the first humidity; if it is met, it can be determined that the scene matching is successful, and vice versa, it is determined that the scene matching fails.
  • the A2 specifically includes:
  • the A3 specifically includes:
  • the first terminal uploads the second scenario information of the current location, and the server matches the first scenario information based on the receiving location that is previously uploaded by the second terminal for receiving; if the matching succeeds, It can be stated that the dispatcher (first terminal) does send the target logistics object to the receiving location designated by the user (second terminal), so the receiving can be completed automatically. Since the location-based scene information cannot be forged, if the dispatcher wants to complete the reception, it must reach the receiving position specified by the user, or the reception cannot be completed, thereby effectively preventing the false reception. Moreover, for the user, since there is no need to fill in the receipt information (such as name, phone, address, etc.), the risk of information leakage is avoided.
  • the receipt information such as name, phone, address, etc.
  • the method may further include:
  • the receiving success information is returned to the first terminal.
  • the method may further include:
  • the prompt information is output.
  • the output prompt information may be, for example, displaying a text prompt in the first terminal interface, for example, “the target logistics object has been received”; or controlling the terminal where the first terminal is located to issue a voice prompt.
  • the method may further include:
  • the server may set the first scenario information to a valid duration after the first matching of the first scenario information for the user to be received.
  • the effective duration may be an empirical value preset by an artificial person, for example, 1 hour. That is, within one hour after the first target logistics object is successfully received, if the target logistics object using the first scenario information needs to be received again, the server can directly receive the message.
  • the method may further include:
  • the virtual resource associated with the target logistics object is sent to the virtual resource storage space corresponding to the first terminal.
  • the user can set a certain number of virtual resources for the target logistics object.
  • the server may further send the virtual resource associated with the target logistics object to the virtual resource storage space corresponding to the first terminal.
  • the virtual resource may be a virtual resource generated by the second terminal in the first scene information based on an augmented reality technology.
  • the virtual resource includes a virtual red packet, where the virtual red packet stores funds provided by a user;
  • the virtual resource storage space corresponding to the first terminal includes a fund account corresponding to the first terminal.
  • the method may further include:
  • the virtual resource includes a virtual red envelope
  • the virtual red envelope stores funds provided by a user.
  • the user is a virtual resource set in the first scene information based on the AR technology. And the receiving the virtual resource associated with the target logistics object that is sent by the server after determining that the target logistics object is successfully received, specifically:
  • the target logistics object in this embodiment may include a courier package.
  • the application also provides a system for implementing reception of a logistics object, the system may include a first terminal, a second terminal, and a server;
  • the second terminal is configured to upload, to the server, first scenario information based on the receiving location;
  • the server is configured to provide a plurality of logistics object information, where the logistics object information is associated with the first scenario information; acquiring a target logistics object receiving request sent by the first terminal; and determining a target first scenario information associated with the target logistics object Obtaining second scene information based on the current location sent by the first terminal; determining, according to the target first scenario information and the second scenario information, a receiving state of the target logistics object;
  • the first terminal is configured to send a receiving request of the target logistics object to the server, acquire the target logistics object information provided by the server, and first scene information associated with the target logistics object information; and obtain the current location based on the current location
  • the second scene information is sent to the server by the second scene information based on the current location.
  • the first terminal, the second terminal, and the server shown in the system may refer to the foregoing embodiments, and details are not described herein again.
  • the application also provides a method for receiving a logistics object, and the method may include:
  • the server provides a plurality of logistics object information, and the logistics object information is associated with the first scene information;
  • the first terminal acquires and sends the second scenario information based on the current location to the server;
  • the server determines the receiving state of the target logistics object according to the target first scenario information and the second scenario information; the first scenario information is scenario information based on the receiving location that is pre-uploaded by the second terminal.
  • the present application also provides an embodiment of a receiving device for a logistics object.
  • the device embodiment may be implemented by software, or may be implemented by hardware or a combination of hardware and software.
  • the processor of the device in which it is located reads the corresponding computer program instructions in the non-volatile memory into the memory.
  • a hardware structure diagram of the device where the receiving device of the logistics object of the present application is located including a processor, a network interface, a memory, and a non-volatile memory, wherein the device in which the device is located in the embodiment is generally
  • the actual function of receiving the logistics object may also include other hardware, which will not be described again.
  • FIG. 6 is a block diagram of a receiving device for a logistics object according to an embodiment of the present disclosure, which is applied to a server, where the device includes:
  • the providing unit 410 provides a plurality of logistics object information, where the logistics object information is associated with the first scene information;
  • the request obtaining unit 420 is configured to acquire a target logistics object receiving request sent by the first terminal;
  • the information determining unit 430 is configured to determine target first scene information associated with the target logistics object
  • the information acquiring unit 440 is configured to acquire second scenario information that is sent by the first terminal and is based on the current location.
  • the state determining unit 450 determines the receiving state of the target logistics object according to the target first scenario information and the second scenario information; the first scenario information is scenario information based on the receiving location that is pre-uploaded by the second terminal.
  • the status determining unit 450 specifically includes:
  • the matching subunit specifically includes:
  • a position matching sub-unit wherein the receiving position corresponding to the target first scene information and the current position corresponding to the second scene are matched with each other;
  • the scene matching subunit performs scene matching on the target first scene information and the second scene information
  • the first determining subunit specifically includes:
  • the location matching subunit specifically includes:
  • a distance calculation unit that calculates a distance value according to the receiving position and the current position
  • Determining the subunit determining whether the distance value is less than a preset threshold
  • the location matching success sub-unit determines that the location matching is successful if the distance value is less than a preset threshold.
  • the scenario matching subunit specifically including:
  • a similarity calculation subunit calculating a similarity between the target first scene information and the second scene information
  • Determining a subunit determining whether the similarity is greater than a preset threshold
  • the scenario matching success sub-unit determines that the scenario matching is successful if the similarity is greater than a preset threshold.
  • the scene information includes any combination of photos, audio, video, temperature, and humidity.
  • the device also includes:
  • a third determining subunit in the valid duration, if the receiving request of the other logistics object is acquired, and the other logistics object is also associated with the target first scene information, it is determined that the receiving is successful.
  • the device also includes:
  • the sending subunit after determining that the target logistics object is successfully received, sends the virtual resource associated with the target logistics object to the virtual resource storage space corresponding to the first terminal.
  • the virtual resource is a virtual resource that is set in the target first scenario information by the second terminal based on an augmented reality technology.
  • the virtual resource includes a virtual red envelope, and the virtual red envelope stores funds provided by a user;
  • the virtual resource storage space corresponding to the first terminal includes a fund account corresponding to the first terminal.
  • the first and second scene information are generated at a corresponding location based on an augmented reality technology.
  • the present application also provides an embodiment of a receiving device for a logistics object.
  • the device embodiment may be implemented by software, or may be implemented by hardware or a combination of hardware and software.
  • the processor of the device in which it is located reads the corresponding computer program instructions in the non-volatile memory into the memory.
  • a hardware structure diagram of the device where the receiving device of the logistics object of the present application is located, except for the processor, the network interface, the memory, and the non-volatile memory, the device in which the device is located in the embodiment is generally
  • the actual function of receiving the logistics object may also include other hardware, which will not be described again.
  • FIG. 7 a block diagram of a receiving device for a logistics object according to an embodiment of the present disclosure is applied to a first terminal, where the device includes:
  • the first sending unit 510 sends a receiving request of the target logistics object to the server;
  • the first obtaining unit 520 is configured to acquire the target logistics object information provided by the server, and the first scenario information associated with the target logistics object information; the first scenario information is used by the second terminal to be pre-uploaded to the server. The received scene information based on the receiving location;
  • the second obtaining unit 530 is configured to acquire second scene information based on the current location
  • the second sending unit 540 sends the second scenario information based on the current location to the server.
  • the scene information includes any combination of photos, audio, video, temperature, and humidity.
  • the device also includes:
  • the receiving unit receives the virtual resource associated with the target logistics object that is sent by the server after determining that the target logistics object is successfully received.
  • the receiving unit specifically includes:
  • the virtual resource includes a virtual red envelope, and the virtual red envelope stores funds provided by a user.
  • the first and second scene information are generated at a corresponding location based on an augmented reality technology.
  • the present application also provides an embodiment of a receiving apparatus for a logistics object.
  • the device embodiment may be implemented by software, or may be implemented by hardware or a combination of hardware and software.
  • the processor of the device in which it is located reads the corresponding computer program instructions in the non-volatile memory into the memory.
  • a hardware structure diagram of the device where the receiving device of the logistics object of the present application is located, except for the processor, the network interface, the memory, and the non-volatile memory, the device in which the device is located in the embodiment is generally
  • the actual function of receiving the logistics object may also include other hardware, which will not be described again.
  • FIG. 8 is a block diagram of a receiving device for a logistics object according to an embodiment of the present disclosure, which is applied to a second terminal, where the device includes:
  • the obtaining unit 610 if the receiving manner for the logistics object is the scene receiving, acquiring the scene information based on the receiving location for signing; the scene information is generated at the receiving location based on the augmented reality technology;
  • the uploading unit 620 uploads the scene information based on the receiving location to the server.
  • the system, device, module or unit illustrated in the above embodiments may be implemented by a computer chip or an entity, or by a product having a certain function.
  • a typical implementation device is a computer, and the specific form of the computer may be a personal computer, a laptop computer, a cellular phone, a camera phone, a smart phone, a personal digital assistant, a media player, a navigation device, an email transceiver, and a game control.
  • the device embodiment since it basically corresponds to the method embodiment, reference may be made to the partial description of the method embodiment.
  • the device embodiments described above are merely illustrative, wherein the units described as separate components may or may not be physically separate, and the components displayed as units may or may not be physical units, ie may be located A place, or it can be distributed to multiple network units. Some or all of the modules may be selected according to actual needs to achieve the objectives of the present application. Those of ordinary skill in the art can understand and implement without any creative effort.
  • the substantial execution body may be an electronic device, including:
  • a memory for storing processor executable instructions
  • processor is configured to:
  • the first scenario information is scenario information based on the receiving location that is pre-uploaded by the second terminal.
  • Determining, according to the target first scenario information and the second scenario information, the receiving state of the target logistics object specifically:
  • the matching the target first scenario information based on the receiving location with the second scenario information based on the current location specifically includes:
  • the determining that the target logistics object is successfully received, where the matching is successful specifically includes:
  • the distance value is less than a preset threshold, it is determined that the location matching is successful.
  • the similarity is greater than a preset threshold, it is determined that the scene matching is successful.
  • the scene information includes any combination of photos, audio, video, temperature, and humidity.
  • the processor is also configured to:
  • the processor is also configured to:
  • the virtual resource associated with the target logistics object is sent to the virtual resource storage space corresponding to the first terminal.
  • the virtual resource is a virtual resource that is set in the target first scenario information by the second terminal based on an augmented reality technology.
  • the virtual resource includes a virtual red envelope, and the virtual red envelope stores funds provided by a user;
  • the virtual resource storage space corresponding to the first terminal includes a fund account corresponding to the first terminal.
  • the first and second scene information are generated at a corresponding location based on an augmented reality technology.
  • the substantial execution body may be an electronic device, including:
  • a memory for storing processor executable instructions
  • processor is configured to:
  • the first scenario information is a receiving location that is pre-uploaded by the second terminal to the server for receiving Scene information;
  • the scene information includes any combination of photos, audio, video, temperature, and humidity.
  • the processor is also configured to:
  • the virtual resource includes a virtual red envelope, and the virtual red envelope stores funds provided by a user.
  • the first and second scene information are generated at a corresponding location based on an augmented reality technology.
  • the substantial execution body may be an electronic device, including:
  • a memory for storing processor executable instructions
  • processor is configured to:
  • the receiving manner for the logistics object is the scene receiving, the receiving location-based scene information for signing; the scene information is generated at the receiving location based on the augmented reality technology;
  • the processor may be a central processing unit (English: Central Processing Unit, CPU for short), or other general-purpose processor, digital signal processor (English: Digital Signal Processor) , referred to as: DSP), ASIC (English: Application Specific Integrated Circuit, referred to as: ASIC).
  • the general-purpose processor may be a microprocessor or the processor may be any conventional processor or the like, and the foregoing memory may be a read-only memory (English: read-only memory, abbreviation: ROM), a random access memory (English) :random access memory (abbreviation: RAM), flash memory, hard disk or solid state disk.
  • the steps of the method disclosed in the embodiments of the present invention may be directly implemented as a hardware processor, or may be performed by a combination of hardware and software modules in the processor.

Abstract

本申请提供一种物流对象的接收方法、装置及系统和电子设备,所述方法包括:提供多个物流对象信息,所述物流对象信息关联有第一场景信息;获取第一终端发送的目标物流对象接收请求;确定所述目标物流对象关联的目标第一场景信息;获取第一终端发送的基于当前位置的第二场景信息;根据所述目标第一场景信息和第二场景信息,确定所述目标物流对象的接收状态;所述第一场景信息为第二终端预先上传的基于接收位置的场景信息。应用本申请实施例,可以防止物流对象的虚假接收。

Description

一种物流对象的接收方法、装置及系统和电子设备
本申请要求2017年07月04日递交的申请号为201710537608.1、发明名称为“一种物流对象的接收方法、装置及系统和电子设备”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本申请互联网技术领域,尤其涉及一种物流对象的接收方法、装置及系统和电子设备。
背景技术
在物流行业一直以来都面临一个虚假接收的问题。造成虚假接收的原因有很多,例如为了提高派送率,在用户还未实际接收前就将目标物流对象标记为已接收。
以快递包裹为例,为了防止虚假接收的情况,快递公司通常要求派送员取回带有用户签名的回执,或者要求派送员提供电子设备让用户进行电子签名。然而,用户签名依然是可以伪造的,而且现实中找人代签的情况较为普遍。
发明内容
本申请提供的一种物流对象的接收方法、装置及系统和电子设备,以解决现有技术中无法有效防止虚假接收的问题。
根据本申请实施例提供的一种物流对象的接收方法,应用于服务端,所述方法包括:
提供多个物流对象信息,所述物流对象信息关联有第一场景信息;
获取第一终端发送的目标物流对象接收请求;
确定所述目标物流对象关联的目标第一场景信息;
获取第一终端发送的基于当前位置的第二场景信息;
根据所述目标第一场景信息和第二场景信息,确定所述目标物流对象的接收状态;所述第一场景信息为第二终端预先上传的基于接收位置的场景信息。
根据本申请实施例提供的一种物流对象的接收方法,应用于第一终端,所述方法包括:
向服务端发送目标物流对象的接收请求;
获取所述服务端提供的所述目标物流对象信息,以及所述目标物流对象信息关联的 第一场景信息;所述第一场景信息为第二终端预先上传到服务端用于接收的基于接收位置的场景信息;
获取基于当前位置的第二场景信息;
将所述基于当前位置的第二场景信息发送至所述服务端。
根据本申请实施例提供的一种物流对象的接收方法,应用于第二终端,所述方法包括:
在针对物流对象的接收方式为场景接收的情况下,获取用于签收的基于接收位置的场景信息;所述场景信息是基于增强现实技术在所述接收位置处生成的;
将所述基于接收位置的场景信息上传至服务端。
根据本申请实施例提供的一种物流对象的接收装置,应用于服务端,所述装置包括:
提供单元,提供多个物流对象信息,所述物流对象信息关联有第一场景信息;
请求获取单元,获取第一终端发送的目标物流对象接收请求;
信息确定单元,确定所述目标物流对象关联的目标第一场景信息;
信息获取单元,获取第一终端发送的基于当前位置的第二场景信息;
状态确定单元,根据所述目标第一场景信息和第二场景信息,确定所述目标物流对象的接收状态;所述第一场景信息为第二终端预先上传的基于接收位置的场景信息。
根据本申请实施例提供的一种物流对象的接收装置,应用于第一终端,所述装置包括:
第一发送单元,向服务端发送目标物流对象的接收请求;
第一获取单元,获取所述服务端提供的所述目标物流对象信息,以及所述目标物流对象信息关联的第一场景信息;所述第一场景信息为第二终端预先上传到服务端用于接收的基于接收位置的场景信息;
第二获取单元,获取基于当前位置的第二场景信息;
第二发送单元,将所述基于当前位置的第二场景信息发送至所述服务端。
根据本申请实施例提供的一种电子设备,包括:
处理器;
用于存储处理器可执行指令的存储器;
其中,所述处理器被配置为:
提供多个物流对象信息,所述物流对象信息关联有第一场景信息;
获取第一终端发送的目标物流对象接收请求;
确定所述目标物流对象关联的目标第一场景信息;
获取第一终端发送的基于当前位置的第二场景信息;
根据所述目标第一场景信息和第二场景信息,确定所述目标物流对象的接收状态;所述第一场景信息为第二终端预先上传的基于接收位置的场景信息。
根据本申请实施例提供的一种电子设备,包括:
处理器;
用于存储处理器可执行指令的存储器;
其中,所述处理器被配置为:
向服务端发送目标物流对象的接收请求;
获取所述服务端提供的所述目标物流对象信息,以及所述目标物流对象信息关联的第一场景信息;所述第一场景信息为第二终端预先上传到服务端用于接收的基于接收位置的场景信息;
获取基于当前位置的第二场景信息;
将所述基于当前位置的第二场景信息发送至所述服务端。
根据本申请实施例提供的一种电子设备,包括:
处理器;
用于存储处理器可执行指令的存储器;
其中,所述处理器被配置为:
在针对物流对象的接收方式为场景接收的情况下,获取用于签收的基于接收位置的场景信息;所述场景信息是基于增强现实技术在所述接收位置处生成的;
将所述基于接收位置的场景信息上传至服务端。
根据本申请实施例提供的一种物流对象的接收方法,所述方法包括:
服务端提供多个物流对象信息,所述物流对象信息关联有第一场景信息;
第一终端向所述服务端发送目标物流对象的接收请求;
所述服务端确定所述目标物流对象关联的目标第一场景信息;
所述第一终端获取并向所述服务端发送基于当前位置的第二场景信息;
所述服务端根据所述目标第一场景信息和第二场景信息,确定所述目标物流对象的接收状态;所述第一场景信息为第二终端预先上传的基于接收位置的场景信息。
根据本申请实施例提供的一种物流对象的接收系统,所述系统包括第一终端、第二终端和服务端;
所述第二终端用于向服务端上传基于接收位置的第一场景信息;
所述服务端用于提供多个物流对象信息,所述物流对象信息关联有第一场景信息;获取第一终端发送的目标物流对象接收请求;确定所述目标物流对象关联的目标第一场景信息;获取第一终端发送的基于当前位置的第二场景信息;根据所述目标第一场景信息和第二场景信息,确定所述目标物流对象的接收状态;
所述第一终端用于向服务端发送目标物流对象的接收请求;获取所述服务端提供的所述目标物流对象信息,以及所述目标物流对象信息关联的第一场景信息;获取基于当前位置的第二场景信息;将所述基于当前位置的第二场景信息发送至所述服务端。
本申请实施例中,通过第一终端上传当前位置的第二场景信息,服务端将其与第二终端预先上传用于接收的基于接收位置的第一场景信息进行匹配;在匹配成功的情况下,可以说明派送员(第一终端)的确是将目标物流对象派送到用户(第二终端)指定的接收位置,因此可以自动完成接收。由于基于位置的场景信息无法伪造,如果派送员想要完成接收,必须到达用户指定的接收位置,不然就无法完成接收,从而有效防止了虚假接收的情况。
附图说明
图1是本申请一实施例提供的物流对象的接收方法的流程图;
图2是本申请一实施例提供的第二终端的界面示意图;
图3是本申请一实施例提供的第二终端设置AR红包的示意图;
图4是本申请一实施例提供的物流对象的接收方法的流程图;
图5是本申请一实施例提供的物流对象的接收方法的流程图;
图6是本申请一实施例提供的物流对象的接收装置的模块示意图;
图7是本申请一实施例提供的物流对象的接收装置的模块示意图;
图8是本申请一实施例提供的物流对象的接收装置的模块示意图。
具体实施方式
这里将详细地对示例性实施例进行说明,其示例表示在附图中。下面的描述涉及附图时,除非另有表示,不同附图中的相同数字表示相同或相似的要素。以下示例性实施例中所描述的实施方式并不代表与本申请相一致的所有实施方式。相反,它们仅是与如所附权利要求书中所详述的、本申请的一些方面相一致的装置和方法的例子。
在本申请使用的术语是仅仅出于描述特定实施例的目的,而非旨在限制本申请。在本申请和所附权利要求书中所使用的单数形式的“一种”、“所述”和“该”也旨在包括多数形式,除非上下文清楚地表示其他含义。还应当理解,本文中使用的术语“和/或”是指并包含一个或多个相关联的列出项目的任何或所有可能组合。
应当理解,尽管在本申请可能采用术语第一、第二、第三等来描述各种信息,但这些信息不应限于这些术语。这些术语仅用来将同一类型的信息彼此区分开。例如,在不脱离本申请范围的情况下,第一信息也可以被称为第二信息,类似地,第二信息也可以被称为第一信息。取决于语境,如在此所使用的词语“如果”可以被解释成为“在……时”或“当……时”或“响应于确定”。
本申请实施例提供了一种物流对象的接收方法、装置及系统和电子设备,通过第一终端上传当前位置的第二场景信息,服务端将其与第二终端预先上传用于接收的基于接收位置的第一场景信息进行匹配;在匹配成功的情况下,可以说明派送员(第一终端)的确是将目标物流对象派送到用户(第二终端)指定的接收位置,因此可以自动完成接收。由于基于位置的场景信息无法伪造,如果派送员想要完成接收,必须到达用户指定的接收位置,不然就无法完成接收,从而有效防止了虚假接收的情况。
以物流场景为例,所述第一终端可以是指派送物流对象的派送员终端;
所述第二终端可以是指接收物流对象的用户终端。
以下结合现实中从用户下单、服务端生成订单、派送员进行派送、以及服务端确定接收状态的多个阶段对本申请实施例进行说明。
首先,用户下单阶段:
请参见图1,为本申请一实施例提供的物流对象的接收方法的流程图,应用于第二终端,所述方法包括如下步骤:
步骤110:在针对物流对象的接收方式为场景接收的情况下,获取用于接收的基于接收位置的场景信息;所述场景信息是基于增强现实技术AR在所述接收位置处生成的。
步骤120:将所述基于接收位置的场景信息上传至服务端。
上述第二终端,可以是指安装有用户客户端软件的终端,例如安装有顺丰快递APP的终端。通过该第二终端,用户在针对目标物流对象下单时,如果选择场景接收这种接收方式后,第二终端通过获取用于接收的场景信息,该场景信息可以是基于AR技术在接收位置处生成的。
所述接收位置可以是所述第二终端上定位装置定位的地理位置信息,例如经纬度。
在用户确定使用所获取的场景信息作为用于接收的场景信息后,第二终端就可以将所述基于接收位置的场景信息上传至服务端。
所述场景信息可以包括照片、音频、视频、温度、湿度的任意组合。
具体地,第二终端可以调用摄像头进行拍照或者使用已经拍好的照片,用户可以将拍到的照片作为用于接收的场景信息,该场景信息对应的接收位置为拍摄照片当时的地理位置。例如,用户可以将接收位置的照片作为用于接收的场景信息;如此,派送员在到达接收位置后同样需要拍一张相同或相似的照片来进行接收。
第二终端可以调用摄像头进行视频录制或者使用已经录制好的视频,用户可以将所述视频作为用于接收的场景信息,该场景信息对应的接收位置为拍摄视频当时的地理位置。例如,用户可以将在接收位置拍摄到的一段视频作为用于接收的场景信息;如此,派送员在到达接收位置后同样需要拍一段相同或相似的视频来进行接收。
第二终端可以调用麦克风进行音频录制或者使用已经录制好的音频,用户可以将所述音频作为用于接收的场景信息,该场景信息对应的接收位置为录制音频当时的地理位置。例如,用户可以将接收位置能听到的声音(最好是特殊的声音)录制为音频,并将该音频作为用于接收的场景信息;如此,派送员在到达接收位置后同样需要录制一段相同或相似的音频来进行接收。
第二终端可以获取温度传感器实时上报的温度或者设定一个温度(也可以是一个温度范围),用户可以将所述温度作为用于接收的场景信息,该场景信息对应的接收位置可以是用户设置的地理位置。例如,如果目标物流对象是一个对温度比较敏感的物体例如水果,通常在高温下水果容易腐败,用户可以设置一个温度(如20摄氏度),并将该温度作为用于接收的场景信息;如此,派送员在到达接收位置后同样需要上传当前的温度进行接收。在超过第二终端上传的温度时,可以自动拒签。
第二终端可以获取湿度传感器实时上报的湿度或者设定一个湿度(也可以是一个湿度范围),用户可以将所述湿度作为用于接收的场景信息,该场景信息对应的接收位置可以是用户设置的地理位置。例如,如果目标物流对象是一个对湿度比较敏感的物体例如电子元件,通常在潮湿的环境下电子元件容易发生故障,用户可以设置一个湿度,并将该湿度作为用于接收的场景信息;如此,派送员在到达接收位置后同样需要上传当前的湿度进行接收。在超过第二终端上传的湿度时,可以自动拒签。
以下以上述物流对象为“快递包裹”为例加以说明。该例子仅为示例,在别的实施例中所述物流对象并不限定为“快递包裹”,还可以是例如信件等。
如图2所示,用户打开快递APP,在下单过程中:当用户点击场景接收后,无需填写手机、姓名、地址等收件信息;只需要进行拍照,将所拍到的照片作为用于接收的场景信息即可。如前所述,该场景信息的接收位置是当前用户的地理位置。所述快递APP可以在用户点击上传后,将所述基于接收位置的场景信息上传到服务端。值得一提的是,用户还可以对拍摄到的场景信息添加备注。例如,用户是公司所在大楼前拍的照片,则可以添加文字备注:乐佳国际三号楼。
在现实生活中,用户的个人信息十分重要,例如手机、姓名、家庭住址等,很多信息都涉及到用户财产安全。但是现有技术中,由于需要派送员进行派送,因此用户必须填写收货信息,这样用户的个人信息就容易被泄露,从而造成一定的隐患。本申请实施例,无需用户提供收货信息,可以有效避免用户信息泄露的风险。
在另一个具体地实施例中,在所述获取用于接收的基于接收位置的场景信息之前,所述方法还包括:
显示历史使用过的基于接收位置的场景信息;
在任意历史使用过的场景信息被选中的情况下,将所述被选中的基于接收位置的场景信息上传至服务端。
该实施例中,在用户选择针对物流对象的接收方式为场景接收后,第二终端可以将历史使用过的场景信息供用户选择。例如,用户历史使用过的家的照片、公司的照片、菜鸟驿站的照片等。每一个历史的场景信息对应有拍照时的地理位置。也就是说,用户选中家的照片后,该照片基于的接收位置是家的地理位置,而不是用户当前的地理位置。
值得一提的是,用户可以选择多个场景信息,例如,用户针对一个快递包裹,可以同时选择家的照片、公司的照片。这样,派送员可以根据其派单路径选择较近的地点进行派单。
在另一个具体地实施例中,在所述步骤120之前,所述方法还包括:
获取用户设置的虚拟资源;
则,所述步骤120,具体包括:
将所述基于定位位置的场景信息以及所述虚拟资源上传至服务端。
该实施例中,为了激励派送员及时派单,用户可以对派送员进行打赏,即设置一定数量的虚拟资源。如此,当派送员派单完成,接收成功后,就可以获得所述用户设置的虚拟资源了。
在一个具体地实施例中,所述虚拟资源该可以是所述第二终端基于增强现实技术在 所述场景信息中设置的。
以下以所述虚拟资源为“虚拟红包”为例仅为示例性的。在实际应用中,上述虚拟资源也可以是“虚拟红包”以外的能够其它虚拟物品;例如,电子凭证、电子购物券、电子优惠券等等;
在本例子中,虚拟红包(以下简称红包)的设置,可以普通红包,也可以是基于AR技术实现将红包设置在场景信息中。
如图3所示一种在场景信息中设置红包的示意图。图3中,当用户拍摄了一张用于接收的照片后,第二终端可以点击“设置AR红包”,从而可以对红包进行设置。用户可以输入红包的金额,在点击了“塞入红包”后,就可以在所述照片中设置AR红包了。
接着,服务端生成订单阶段:
本申请实施例中所述的服务端可以是面向第二终端和第一终端提供服务的服务器、服务器集群或者基于服务器集群构建的云平台。例如,向顺丰快递APP提供服务的顺丰快递服务器、顺丰快递服务器集群或者基于顺丰快递服务器集群构建的云平台。
服务端接收到第二终端上传的基于接收位置的场景信息后,可以将所述接收位置、场景信息和目标物流对象关联后存储到数据库中。
如前述实施例所示的,第二终端还可以上传备注、虚拟资源等其它的一些数据,这些数据都可以与目标物流对象关联后存储到数据库中。
如下表1所示为数据库中定义的场景表:
表1
字段名 字段类型 字段说明
scene_id varchar 场景信息id(具有唯一性)
consumer_id varchar 用户id
pic_url varchar 场景信息存储地址url
lbs_info varchar 定位位置
remark varchar 备注
bonus_info varchar 虚拟资源
以及表2订单表:
表2
字段名 字段类型 字段说明
order_no varchar 目标物流对象(具有唯一性)
scene_id varchar 场景信息id(允许多个)
根据上述表2所示,服务端根据目标物流对象order_no,查找到场景信息id(scene_id);进一步的,根据场景信息id查找到该场景信息关联的用户id、位置信息等。
并且,所述服务端可以提供多个物流对象信息,所述物流对象信息关联有第一场景信息。
派送员进行派送的阶段:
请参见图4,为本申请一实施例提供的物流对象的接收方法的流程图,应用于第一终端,所述方法包括如下步骤:
步骤210:向服务端发送目标物流对象的接收请求;
步骤220:获取所述服务端提供的所述目标物流对象信息,以及所述目标物流对象信息关联的第一场景信息;所述第一场景信息为第二终端预先上传到服务端用于接收的基于接收位置的场景信息;
步骤230:获取基于当前位置的第二场景信息;
步骤240:将所述基于当前位置的第二场景信息发送至所述服务端。
本申请实施例中所述的第一终端,与前述第二终端同样都可以是客户端软件。通常,派送员使用的为第一终端。
派送员可以通过第一终端查看服务端提供的物流对象信息,所述物流对象信息关联有第一场景信息。
派送员可以通过所述第一终端向服务端发起针对目标物流对象的接收请求。一般的,派单员可以通过第一终端调用摄像头,扫描目标物流对象的线下业务标识例如条形码、二维码,从而触发向服务端发送针对所述目标物流对象的接收请求。
或者,
派单员也可以通过手动输入目标物流对象的标识,向服务端发送针对所述目标物流对象的接收请求。
如果服务端响应所述接收请求,可以返回所述目标物流对象关联的第一场景信息,所述第一场景信息为第二终端预先上传到服务端用于接收的基于接收位置的场景信息。 所述第一终端可以接收并显示所述服务端返回的第一场景信息。派送员根据所述第一场景信息,在接收现场,获取与所述第一场景信息相同或相似的第二场景信息;所述第二场景信息是基于当前位置的场景信息。在派送员点击上传场景信息后,第一终端会将所述基于当前位置的第二场景信息上传至所述服务端。
需要说明的是,所述第二场景信息与第一场景信息相同,同样可以包括照片、音频、视频、温度、湿度的任意组合。也就是说,如果第一场景信息是照片,则第二场景信息也是照片;如果第二场景信息是照片和温度,则第二场景信息也是照片和温度。
对于照片,第一终端显示服务端返回的照片后可以调用摄像头,派送员可以在现场拍一张相同或相似的基于当前位置的照片;然后,第一终端可以将拍到的基于当前位置的照片上传到服务端。
对于视频,第一终端播放服务端返回的视频后可以调用摄像头,派送员可以在现场拍摄一段与视频中画面相同或相似的基于当前位置的视频;然后,第一终端可以将拍摄到的基于当前位置的视频上传到服务端。
对于音频,第一终端播放服务端返回的音频后可以调用麦克风,派送员可以在现场录制一段有播放音频中声音的基于当前位置的音频;然后,第一终端可以将录制的基于当前位置的音频上传到服务端。
对于温度,第一终端显示服务端返回的温度后可以调用温度传感器,派送员可以在现场获取基于当前位置的温度;然后,第一终端可以将获取的基于当前位置的温度上传到服务端。
对于湿度,第一终端显示服务端返回的湿度后可以调用湿度传感器,派送员可以在现场获取基于当前位置的湿度;然后,第一终端可以将获取的基于当前位置的湿度上传到服务端。
最后,在服务端确定接收状态的阶段:
请参见图5,为本申请一实施例提供的物流对象的接收方法的流程图,应用于服务端,所述方法包括如下步骤:
步骤310:提供多个物流对象信息,所述物流对象信息关联有第一场景信息;
步骤320:获取第一终端发送的目标物流对象接收请求;
步骤330:确定所述目标物流对象关联的目标第一场景信息;
步骤340:获取第一终端发送的基于当前位置的第二场景信息;
步骤350:根据所述目标第一场景信息和第二场景信息,确定所述目标物流对象的 接收状态;所述第一场景信息为第二终端预先上传的基于接收位置的场景信息。
本实施例中,服务端在接收第一终端发送的针对目标物流对象的接收请求后,可以根据所述目标物流对象在数据库中查询该目标物流对象关联的目标第一场景信息以及该目标第一场景信息的接收位置,并将所述目标第一场景信息返回给第一终端。
在接收到第一终端上传的基于当前位置的第二场景信息后,执行步骤350。具体的,所述步骤350可以包括:
A1:将所述基于接收位置的目标第一场景信息与所述基于当前位置的第二场景信息进行匹配。
A2:在所述匹配成功的情况下,确定所述目标物流对象接收成功;
A3:在所述匹配失败的情况下,确定所述目标物流对象接收失败。
这里所述步骤A1,可以包括:
将所述目标第一场景信息对应的接收位置和所述第二场景对应的当前位置进行位置匹配;
将所述目标第一场景信息和第二场景信息进行场景匹配。
具体地,将所述目标第一场景信息对应的接收位置和所述第二场景对应的当前位置进行位置匹配,具体包括:
B1:根据所述接收位置和当前位置,计算距离值;
B2:判断所述距离值是否小于预设阈值;
B3:在所述距离值小于预设阈值的情况下,确定位置匹配成功。
该实施例中,所述计算距离值可以使用业内常用的公式或算法,本实施例不再赘述。
所述预设阈值可以是人为定义的一个经验值。
在目标第一场景信息对应的接收位置和第二场景信息对应的当前位置之间的距离值小于预设阈值时,可以说明派送员已经到达用户指定的地点,进而可以确定位置匹配成功;
在目标第一场景信息对应的接收位置和第二场景信息对应的当前位置之间的距离值大于预设阈值时,说明派送员还没到用户指定的地点,可以向第一终端返回提示信息例如请到达用户指定接收位置进行接收。
如前述实施例相同的,本实施例中所述场景信息可以包括照片、音频、视频、温度、湿度的任意组合。
所述将所述目标第一场景信息和第二场景信息进行场景匹配,具体包括;
C1:计算所述目标第一场景信息和第二场景信息的相似度;
C2:判断所述相似度是否大于预设阈值;
C3:在所述相似度大于预设阈值的情况下,确定场景匹配成功。
以所述场景信息为照片为例,则所述相似度计算可以利用图像识别算法。所述图像识别算法可以是尺度不变特征变换算法(Scale Invariant Feature Transform,SIFT),当然所述图像识别算法还可以是其它例如SURF(Speeded Up Robust Features)、ORB(ORiented Brief)、LIOP(Local Intensity Order Pattern)等,本申请并不对其加以限定。
由于图像识别算法在图像识别领域的通用算法,本实施例中不再赘述其详细的图像识别过程。
通过图像识别算法,可以计算得出两个场景信息的相似度。因此,服务端可以判断所述目标第一场景信息和第二场景信息的相似度是否大于预设阈值;
在相似度大于预设阈值时,可以认定派送员拍摄的第二场景信息与用户拍摄的目标第一场景信息为同一场景信息。
如此,在位置匹配和场景匹配都成功的情况下,服务端可以确定所述目标物流对象接收成功。
类似的,对于音频,可以根据音频识别技术,例如自动语音识别(Automatic Speech Recognition,ASR)计算相似度。
对于视频,可以根据视频识别技术,计算相似度。
对于温度,可以判断派第二温度是否符合第一温度;如果符合,则可以确定场景匹配成功,反之,确定场景匹配失败。
对于湿度,可以判断派第二湿度是否符合第一湿度;如果符合,则可以确定场景匹配成功,反之,确定场景匹配失败。
相应地,所述A2,具体包括:
在所述位置匹配和场景匹配都成功的情况下,确定所述目标物流对象接收成功。
所述A3,具体包括:
在所述位置匹配和场景匹配至少一种不匹配的情况下,确定所述目标物流对象接收失败。
通过本申请实施例中,第一终端上传当前位置的第二场景信息,服务端将其与第二终端预先上传用于接收的基于接收位置的第一场景信息进行匹配;在匹配成功的情况下,可以说明派送员(第一终端)的确是将目标物流对象派送到用户(第二终端)指定的接 收位置,因此可以自动完成接收。由于基于位置的场景信息无法伪造,如果派送员想要完成接收,必须到达用户指定的接收位置,不然就无法完成接收,从而有效防止了虚假接收的情况。并且,对于用户来说,由于无需填写收货信息(如姓名、电话、地址等信息),也就避免了信息泄露的风险。
在一个具体地实施例中,在图5所述服务端侧实施例的基础上,该方法还可以包括:
在所述场景匹配成功的情况下,向所述第一终端返回接收成功信息。
相应地,在图4所述第一终端侧实施例的基础上,该方法还可以包括:
在接收到所述服务端返回的接收成功信息后,输出提示信息。
该实施例中,所述输出提示信息可以是例如在第一终端界面中显示文字提示,例如“该目标物流对象已完成接收”;还可以是控制第一终端所在终端发出语音提示等。
在另一个具体地实施例中,在图5所述服务端侧实施例的基础上,该方法还可以包括:
在确定所述目标物流对象接收成功之后,对所述基于接收位置的目标第一场景信息设置有效时长;
在所述有效时长内,若获取到其它物流对象的接收请求,并且所述其它物流对象同样关联了所述目标第一场景信息时,确定为接收成功。
在实际应用中,用户可能将多个派送的目标物流对象使用同一个场景信息。为了提高派送员的效率,服务端在第一次根据用户上传的用于接收的第一场景信息匹配成功后,可以将所述第一场景信息设置一个有效时长。所述有效时长可以是人为预先设置的一个经验值,例如1个小时。即第一个目标物流对象接收成功之后的1小时内,如果再次需要接收使用该第一场景信息的目标物流对象则服务端直接可以完成接收。
在另一个具体地实施例中,在图5所述服务端侧实施例的基础上,该方法还可以包括:
在确定所述目标物流对象接收成功之后,将所述目标物流对象关联的虚拟资源发送给所述第一终端对应的虚拟资源存储空间。
如前所述,用户为了鼓励派送员及时派单,可以针对目标物流对象设置一定数量的虚拟资源。
因此,服务端在确定所述目标物流对象接收成功之后,还可以将所述目标物流对象关联的虚拟资源发送给所述第一终端对应的虚拟资源存储空间。
需要说明的是,所述虚拟资源可以为所述第二终端基于增强现实技术在所述第一场 景信息中生成的虚拟资源。
具体地,所述虚拟资源包括虚拟红包,所述虚拟红包存储有用户提供的资金;
所述第一终端对应的虚拟资源存储空间包括第一终端对应的资金账号。
相应的,在图4所述第一终端侧实施例的基础上,该方法还可以包括:
接收所述服务端在确定所述目标物流对象接收成功后发送的所述目标物流对象关联的虚拟资源。
类似的,所述虚拟资源包括虚拟红包,所述虚拟红包存储有用户提供的资金。
值得一提的是,如果用户是基于AR技术在第一场景信息中设置的虚拟资源。则所述接收所述服务端在确定所述目标物流对象接收成功后发送的所述目标物流对象关联的虚拟资源,具体包括:
基于增强现实技术在所述第二场景信息中显示所述第二终端设置的虚拟资源。
与前述实施例相同的,本实施例中所述目标物流对象可以包括快递包裹。
本申请还提供有实现物流对象的接收的系统,该系统可以包括第一终端、第二终端和服务端;
所述第二终端用于向服务端上传基于接收位置的第一场景信息;
所述服务端用于提供多个物流对象信息,所述物流对象信息关联有第一场景信息;获取第一终端发送的目标物流对象接收请求;确定所述目标物流对象关联的目标第一场景信息;获取第一终端发送的基于当前位置的第二场景信息;根据所述目标第一场景信息和第二场景信息,确定所述目标物流对象的接收状态;
所述第一终端用于向服务端发送目标物流对象的接收请求;获取所述服务端提供的所述目标物流对象信息,以及所述目标物流对象信息关联的第一场景信息;获取基于当前位置的第二场景信息;将所述基于当前位置的第二场景信息发送至所述服务端。
该系统中所示的第一终端、第二终端和服务端可以参考前述实施例,此次不再赘述。
本申请还提供有一种物流对象的接收方法,所述方法可以包括:
服务端提供多个物流对象信息,所述物流对象信息关联有第一场景信息;
第一终端向所述服务端发送目标物流对象的接收请求;
所述服务端确定所述目标物流对象关联的目标第一场景信息;
所述第一终端获取并向所述服务端发送基于当前位置的第二场景信息;
所述服务端根据所述目标第一场景信息和第二场景信息,确定所述目标物流对象的接收状态;所述第一场景信息为第二终端预先上传的基于接收位置的场景信息。
该方法中第一终端、第二终端和服务端执行的步骤可以参考前述实施例,此次不再赘述。
与前述图5所示物流对象的接收方法实施例相对应,本申请还提供了一种物流对象的接收装置的实施例。所述装置实施例可以通过软件实现,也可以通过硬件或者软硬件结合的方式实现。以软件实现为例,作为一个逻辑意义上的装置,是通过其所在设备的处理器将非易失性存储器中对应的计算机程序指令读取到内存中运行形成的。从硬件层面而言,为本申请物流对象的接收装置所在设备的一种硬件结构图,包括处理器、网络接口、内存以及非易失性存储器之外,实施例中装置所在的设备通常根据该物流对象的接收实际功能,还可以包括其他硬件,对此不再赘述。
参见图6,为本申请一实施例提供的物流对象的接收装置的模块图,应用于服务端,所述装置包括:
提供单元410,提供多个物流对象信息,所述物流对象信息关联有第一场景信息;
请求获取单元420,获取第一终端发送的目标物流对象接收请求;
信息确定单元430,确定所述目标物流对象关联的目标第一场景信息;
信息获取单元440,获取第一终端发送的基于当前位置的第二场景信息;
状态确定单元450,根据所述目标第一场景信息和第二场景信息,确定所述目标物流对象的接收状态;所述第一场景信息为第二终端预先上传的基于接收位置的场景信息。
在一个可选的实施例中:
所述状态确定单元450,具体包括:
匹配子单元,将所述基于接收位置的目标第一场景信息与所述基于当前位置的第二场景信息进行匹配;
第一确定子单元,在所述匹配成功的情况下,确定所述目标物流对象接收成功;
或者,
第二确定子单元,在所述匹配失败的情况下,确定所述目标物流对象接收失败。
在一个可选的实施例中:
所述匹配子单元,具体包括:
位置匹配子单元,将所述目标第一场景信息对应的接收位置和所述第二场景对应的当前位置进行位置匹配;
场景匹配子单元,将所述目标第一场景信息和第二场景信息进行场景匹配;
所述第一确定子单元,具体包括:
在所述位置匹配和场景匹配都成功的情况下,确定所述目标物流对象接收成功。
在一个可选的实施例中:
所述位置匹配子单元,具体包括:
距离计算子单元,根据所述接收位置和当前位置,计算距离值;
判断子单元,判断所述距离值是否小于预设阈值;
位置匹配成功子单元,在所述距离值小于预设阈值的情况下,确定位置匹配成功。
在一个可选的实施例中:
所述场景匹配子单元,具体包括;
相似度计算子单元,计算所述目标第一场景信息和第二场景信息的相似度;
判断子单元,判断所述相似度是否大于预设阈值;
场景匹配成功子单元,在所述相似度大于预设阈值的情况下,确定场景匹配成功。
在一个可选的实施例中:
所述场景信息包括照片、音频、视频、温度、湿度的任意组合。
在一个可选的实施例中:
所述装置还包括:
设置子单元,在确定所述目标物流对象接收成功之后,对所述基于接收位置的目标第一场景信息设置有效时长;
第三确定子单元,在所述有效时长内,若获取到其它物流对象的接收请求,并且所述其它物流对象同样关联了所述目标第一场景信息时,确定为接收成功。
在一个可选的实施例中:
所述装置还包括:
发送子单元,在确定所述目标物流对象接收成功之后,将所述目标物流对象关联的虚拟资源发送给所述第一终端对应的虚拟资源存储空间。
在一个可选的实施例中:
所述虚拟资源为所述第二终端基于增强现实技术在所述目标第一场景信息中设置的虚拟资源。
在一个可选的实施例中:
所述虚拟资源包括虚拟红包,所述虚拟红包存储有用户提供的资金;
所述第一终端对应的虚拟资源存储空间包括第一终端对应的资金账号。
在一个可选的实施例中:
所述第一、第二场景信息是基于增强现实技术在对应位置处生成的。
与前述图4所示物流对象的接收方法实施例相对应,本申请还提供了一种物流对象的接收装置的实施例。所述装置实施例可以通过软件实现,也可以通过硬件或者软硬件结合的方式实现。以软件实现为例,作为一个逻辑意义上的装置,是通过其所在设备的处理器将非易失性存储器中对应的计算机程序指令读取到内存中运行形成的。从硬件层面而言,为本申请物流对象的接收装置所在设备的一种硬件结构图,除了包括处理器、网络接口、内存以及非易失性存储器之外,实施例中装置所在的设备通常根据该物流对象的接收实际功能,还可以包括其他硬件,对此不再赘述。
参见图7,为本申请一实施例提供的物流对象的接收装置的模块图,应用于第一终端,所述装置包括:
第一发送单元510,向服务端发送目标物流对象的接收请求;
第一获取单元520,获取所述服务端提供的所述目标物流对象信息,以及所述目标物流对象信息关联的第一场景信息;所述第一场景信息为第二终端预先上传到服务端用于接收的基于接收位置的场景信息;
第二获取单元530,获取基于当前位置的第二场景信息;
第二发送单元540,将所述基于当前位置的第二场景信息发送至所述服务端。
在一个可选的实施例中:
所述场景信息包括照片、音频、视频、温度、湿度的任意组合。
在一个可选的实施例中:
所述装置还包括:
接收单元,接收所述服务端在确定所述目标物流对象接收成功后发送的所述目标物流对象关联的虚拟资源。
在一个可选的实施例中:
所述接收单元,具体包括:
基于增强现实技术在所述第二场景信息中显示所述第一终端设置的虚拟资源。
在一个可选的实施例中:
所述虚拟资源包括虚拟红包,所述虚拟红包存储有用户提供的资金。
在一个可选的实施例中:
所述第一、第二场景信息是基于增强现实技术在对应位置处生成的。
与前述图1所示物流对象的接收方法实施例相对应,本申请还提供了一种物流对象 的接收装置的实施例。所述装置实施例可以通过软件实现,也可以通过硬件或者软硬件结合的方式实现。以软件实现为例,作为一个逻辑意义上的装置,是通过其所在设备的处理器将非易失性存储器中对应的计算机程序指令读取到内存中运行形成的。从硬件层面而言,为本申请物流对象的接收装置所在设备的一种硬件结构图,除了包括处理器、网络接口、内存以及非易失性存储器之外,实施例中装置所在的设备通常根据该物流对象的接收实际功能,还可以包括其他硬件,对此不再赘述。
如图8所示为本申请一实施例提供的物流对象的接收装置的模块图,应用于第二终端,所述装置包括:
获取单元610,在针对物流对象的接收方式为场景接收的情况下,获取用于签收的基于接收位置的场景信息;所述场景信息是基于增强现实技术在所述接收位置处生成的;
上传单元620,将所述基于接收位置的场景信息上传至服务端。
上述实施例阐明的系统、装置、模块或单元,具体可以由计算机芯片或实体实现,或者由具有某种功能的产品来实现。一种典型的实现设备为计算机,计算机的具体形式可以是个人计算机、膝上型计算机、蜂窝电话、相机电话、智能电话、个人数字助理、媒体播放器、导航设备、电子邮件收发设备、游戏控制台、平板计算机、可穿戴设备或者这些设备中的任意几种设备的组合。
上述装置中各个单元的功能和作用的实现过程具体详见上述方法中对应步骤的实现过程,在此不再赘述。
对于装置实施例而言,由于其基本对应于方法实施例,所以相关之处参见方法实施例的部分说明即可。以上所描述的装置实施例仅仅是示意性的,其中所述作为分离部件说明的单元可以是或者也可以不是物理上分开的,作为单元显示的部件可以是或者也可以不是物理单元,即可以位于一个地方,或者也可以分布到多个网络单元上。可以根据实际的需要选择其中的部分或者全部模块来实现本申请方案的目的。本领域普通技术人员在不付出创造性劳动的情况下,即可以理解并实施。
以上图6描述了检测装置的内部功能模块和结构示意,其实质上的执行主体可以为一种电子设备,包括:
处理器;
用于存储处理器可执行指令的存储器;
其中,所述处理器被配置为:
提供多个物流对象信息,所述物流对象信息关联有第一场景信息;
获取第一终端发送的目标物流对象接收请求;
确定所述目标物流对象关联的目标第一场景信息;
获取第一终端发送的基于当前位置的第二场景信息;
根据所述目标第一场景信息和第二场景信息,确定所述目标物流对象的接收状态;所述第一场景信息为第二终端预先上传的基于接收位置的场景信息。
在一个可选的实施例中:
所述根据所述目标第一场景信息和第二场景信息,确定所述目标物流对象的接收状态,具体包括:
将所述基于接收位置的目标第一场景信息与所述基于当前位置的第二场景信息进行匹配;
在所述匹配成功的情况下,确定所述目标物流对象接收成功;
或者,
在所述匹配失败的情况下,确定所述目标物流对象接收失败。
在一个可选的实施例中:
所述将所述基于接收位置的目标第一场景信息与所述基于当前位置的第二场景信息进行匹配,具体包括:
将所述目标第一场景信息对应的接收位置和所述第二场景对应的当前位置进行位置匹配;
将所述目标第一场景信息和第二场景信息进行场景匹配;
所述在所述匹配成功的情况下,确定所述目标物流对象接收成功,具体包括:
在所述位置匹配和场景匹配都成功的情况下,确定所述目标物流对象接收成功。
在一个可选的实施例中:
所述将所述目标第一场景信息对应的接收位置和所述第二场景对应的当前位置进行位置匹配,具体包括:
根据所述接收位置和当前位置,计算距离值;
判断所述距离值是否小于预设阈值;
在所述距离值小于预设阈值的情况下,确定位置匹配成功。
在一个可选的实施例中:
所述将所述目标第一场景信息和第二场景信息进行场景匹配,具体包括;
计算所述目标第一场景信息和第二场景信息的相似度;
判断所述相似度是否大于预设阈值;
在所述相似度大于预设阈值的情况下,确定场景匹配成功。
在一个可选的实施例中:
所述场景信息包括照片、音频、视频、温度、湿度的任意组合。
在一个可选的实施例中:
所述处理器还被配置为:
在确定所述目标物流对象接收成功之后,对所述基于接收位置的目标第一场景信息设置有效时长;
在所述有效时长内,若获取到其它物流对象的接收请求,并且所述其它物流对象同样关联了所述目标第一场景信息时,确定为接收成功。
在一个可选的实施例中:
所述处理器还被配置为:
在确定所述目标物流对象接收成功之后,将所述目标物流对象关联的虚拟资源发送给所述第一终端对应的虚拟资源存储空间。
在一个可选的实施例中:
所述虚拟资源为所述第二终端基于增强现实技术在所述目标第一场景信息中设置的虚拟资源。
在一个可选的实施例中:
所述虚拟资源包括虚拟红包,所述虚拟红包存储有用户提供的资金;
所述第一终端对应的虚拟资源存储空间包括第一终端对应的资金账号。
在一个可选的实施例中:
所述第一、第二场景信息是基于增强现实技术在对应位置处生成的。
以上图7描述了检测装置的内部功能模块和结构示意,其实质上的执行主体可以为一种电子设备,包括:
处理器;
用于存储处理器可执行指令的存储器;
其中,所述处理器被配置为:
向服务端发送目标物流对象的接收请求;
获取所述服务端提供的所述目标物流对象信息,以及所述目标物流对象信息关联的第一场景信息;所述第一场景信息为第二终端预先上传到服务端用于接收的基于接收位 置的场景信息;
获取基于当前位置的第二场景信息;
将所述基于当前位置的第二场景信息发送至所述服务端。
在一个可选的实施例中:
所述场景信息包括照片、音频、视频、温度、湿度的任意组合。
在一个可选的实施例中:
所述处理器还被配置为:
接收所述服务端在确定所述目标物流对象接收成功后发送的所述目标物流对象关联的虚拟资源。
在一个可选的实施例中:
所述接收所述服务端在确定所述目标物流对象接收成功后发送的所述目标物流对象关联的虚拟资源,具体包括:
基于增强现实技术在所述第二场景信息中显示所述第一终端设置的虚拟资源。
在一个可选的实施例中:
所述虚拟资源包括虚拟红包,所述虚拟红包存储有用户提供的资金。
在一个可选的实施例中:
所述第一、第二场景信息是基于增强现实技术在对应位置处生成的。
以上图8描述了检测装置的内部功能模块和结构示意,其实质上的执行主体可以为一种电子设备,包括:
处理器;
用于存储处理器可执行指令的存储器;
其中,所述处理器被配置为:
在针对物流对象的接收方式为场景接收的情况下,获取用于签收的基于接收位置的场景信息;所述场景信息是基于增强现实技术在所述接收位置处生成的;
将所述基于接收位置的场景信息上传至服务端。
在上述电子设备的实施例中,应理解,该处理器可以是中央处理单元(英文:Central Processing Unit,简称:CPU),还可以是其他通用处理器、数字信号处理器(英文:Digital Signal Processor,简称:DSP)、专用集成电路(英文:Application Specific Integrated Circuit,简称:ASIC)等。通用处理器可以是微处理器或者该处理器也可以是任何常规的处理器等,而前述的存储器可以是只读存储器(英文:read-only memory,缩写:ROM)、随 机存取存储器(英文:random access memory,简称:RAM)、快闪存储器、硬盘或者固态硬盘。结合本发明实施例所公开的方法的步骤可以直接体现为硬件处理器执行完成,或者用处理器中的硬件及软件模块组合执行完成。
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。尤其,对于电子设备实施例而言,由于其基本相似于方法实施例,所以描述的比较简单,相关之处参见方法实施例的部分说明即可。
本领域技术人员在考虑说明书及实践这里公开的发明后,将容易想到本申请的其它实施方案。本申请旨在涵盖本申请的任何变型、用途或者适应性变化,这些变型、用途或者适应性变化遵循本申请的一般性原理并包括本申请未公开的本技术领域中的公知常识或惯用技术手段。说明书和实施例仅被视为示例性的,本申请的真正范围和精神由下面的权利要求指出。
应当理解的是,本申请并不局限于上面已经描述并在附图中示出的精确结构,并且可以在不脱离其范围进行各种修改和改变。本申请的范围仅由所附的权利要求来限制。

Claims (25)

  1. 一种物流对象的接收方法,其特征在于,应用于服务端,所述方法包括:
    提供多个物流对象信息,所述物流对象信息关联有第一场景信息;
    获取第一终端发送的目标物流对象接收请求;
    确定所述目标物流对象关联的目标第一场景信息;
    获取第一终端发送的基于当前位置的第二场景信息;
    根据所述目标第一场景信息和第二场景信息,确定所述目标物流对象的接收状态;所述第一场景信息为第二终端预先上传的基于接收位置的场景信息。
  2. 根据权利要求1所述的方法,其特征在于,所述根据所述目标第一场景信息和第二场景信息,确定所述目标物流对象的接收状态,具体包括:
    将所述基于接收位置的目标第一场景信息与所述基于当前位置的第二场景信息进行匹配;
    在所述匹配成功的情况下,确定所述目标物流对象接收成功;
    或者,
    在所述匹配失败的情况下,确定所述目标物流对象接收失败。
  3. 根据权利要求2所述的方法,其特征在于,所述将所述基于接收位置的目标第一场景信息与所述基于当前位置的第二场景信息进行匹配,具体包括:
    将所述目标第一场景信息对应的接收位置和所述第二场景对应的当前位置进行位置匹配;
    将所述目标第一场景信息和第二场景信息进行场景匹配;
    所述在所述匹配成功的情况下,确定所述目标物流对象接收成功,具体包括:
    在所述位置匹配和场景匹配都成功的情况下,确定所述目标物流对象接收成功。
  4. 根据权利要求3所述的方法,其特征在于,所述将所述目标第一场景信息对应的接收位置和所述第二场景对应的当前位置进行位置匹配,具体包括:
    根据所述接收位置和当前位置,计算距离值;
    判断所述距离值是否小于预设阈值;
    在所述距离值小于预设阈值的情况下,确定位置匹配成功。
  5. 根据权利要求3所述的方法,其特征在于,所述将所述目标第一场景信息和第二场景信息进行场景匹配,具体包括;
    计算所述目标第一场景信息和第二场景信息的相似度;
    判断所述相似度是否大于预设阈值;
    在所述相似度大于预设阈值的情况下,确定场景匹配成功。
  6. 根据权利要求1-5中任一项所述的方法,其特征在于,所述场景信息包括照片、音频、视频、温度、湿度的任意组合。
  7. 根据权利要求2所述的方法,其特征在于,所述方法还包括:
    在确定所述目标物流对象接收成功之后,对所述基于接收位置的目标第一场景信息设置有效时长;
    在所述有效时长内,若获取到其它物流对象的接收请求,并且所述其它物流对象同样关联了所述目标第一场景信息时,确定为接收成功。
  8. 根据权利要求1所述的方法,其特征在于,所述方法还包括:
    在确定所述目标物流对象接收成功之后,将所述目标物流对象关联的虚拟资源发送给所述第一终端对应的虚拟资源存储空间。
  9. 根据权利要求8所述的方法,其特征在于,所述虚拟资源为所述第二终端基于增强现实技术在所述目标第一场景信息中设置的虚拟资源。
  10. 根据权利要求8或9所述的方法,其特征在于,所述虚拟资源包括虚拟红包,所述虚拟红包存储有用户提供的资金;
    所述第一终端对应的虚拟资源存储空间包括第一终端对应的资金账号。
  11. 根据权利要求1所述的方法,其特征在于,所述第一场景信息、所述第二场景信息是基于增强现实技术在对应位置处生成的。
  12. 一种物流对象的接收方法,其特征在于,应用于第一终端,所述方法包括:
    向服务端发送目标物流对象的接收请求;
    获取所述服务端提供的所述目标物流对象信息,以及所述目标物流对象信息关联的第一场景信息;所述第一场景信息为第二终端预先上传到服务端用于接收的基于接收位置的场景信息;
    获取基于当前位置的第二场景信息;
    将所述基于当前位置的第二场景信息发送至所述服务端。
  13. 根据权利要求12所述的方法,其特征在于,所述场景信息包括照片、音频、视频、温度、湿度的任意组合。
  14. 根据权利要求12所述的方法,其特征在于,所述方法还包括:
    接收所述服务端在确定所述目标物流对象接收成功后发送的所述目标物流对象关 联的虚拟资源。
  15. 根据权利要求14所述的方法,其特征在于,所述接收所述服务端在确定所述目标物流对象接收成功后发送的所述目标物流对象关联的虚拟资源,具体包括:
    基于增强现实技术在所述第二场景信息中显示所述第一终端设置的虚拟资源。
  16. 根据权利要求14或15所述的方法,其特征在于,所述虚拟资源包括虚拟红包,所述虚拟红包存储有用户提供的资金。
  17. 根据权利要求12所述的方法,其特征在于,所述第一场景信息、所述第二场景信息是基于增强现实技术在对应位置处生成的。
  18. 一种物流对象的接收方法,其特征在于,应用于第二终端,所述方法包括:
    在针对物流对象的接收方式为场景接收的情况下,获取用于签收的基于接收位置的场景信息;所述场景信息是基于增强现实技术在所述接收位置处生成的;
    将所述基于接收位置的场景信息上传至服务端。
  19. 一种物流对象的接收装置,其特征在于,应用于服务端,所述装置包括:
    提供单元,提供多个物流对象信息,所述物流对象信息关联有第一场景信息;
    请求获取单元,获取第一终端发送的目标物流对象接收请求;
    信息确定单元,确定所述目标物流对象关联的目标第一场景信息;
    信息获取单元,获取第一终端发送的基于当前位置的第二场景信息;
    状态确定单元,根据所述目标第一场景信息和第二场景信息,确定所述目标物流对象的接收状态;所述第一场景信息为第二终端预先上传的基于接收位置的场景信息。
  20. 一种物流对象的接收装置,其特征在于,应用于第一终端,所述装置包括:
    第一发送单元,向服务端发送目标物流对象的接收请求;
    第一获取单元,获取所述服务端提供的所述目标物流对象信息,以及所述目标物流对象信息关联的第一场景信息;所述第一场景信息为第二终端预先上传到服务端用于接收的基于接收位置的场景信息;
    第二获取单元,获取基于当前位置的第二场景信息;
    第二发送单元,将所述基于当前位置的第二场景信息发送至所述服务端。
  21. 一种电子设备,其特征在于,包括:
    处理器;
    用于存储处理器可执行指令的存储器;
    其中,所述处理器被配置为:
    提供多个物流对象信息,所述物流对象信息关联有第一场景信息;
    获取第一终端发送的目标物流对象接收请求;
    确定所述目标物流对象关联的目标第一场景信息;
    获取第一终端发送的基于当前位置的第二场景信息;
    根据所述目标第一场景信息和第二场景信息,确定所述目标物流对象的接收状态;所述第一场景信息为第二终端预先上传的基于接收位置的场景信息。
  22. 一种电子设备,其特征在于,包括:
    处理器;
    用于存储处理器可执行指令的存储器;
    其中,所述处理器被配置为:
    向服务端发送目标物流对象的接收请求;
    获取所述服务端提供的所述目标物流对象信息,以及所述目标物流对象信息关联的第一场景信息;所述第一场景信息为第二终端预先上传到服务端用于接收的基于接收位置的场景信息;
    获取基于当前位置的第二场景信息;
    将所述基于当前位置的第二场景信息发送至所述服务端。
  23. 一种电子设备,其特征在于,包括:
    处理器;
    用于存储处理器可执行指令的存储器;
    其中,所述处理器被配置为:
    在针对物流对象的接收方式为场景接收的情况下,获取用于签收的基于接收位置的场景信息;所述场景信息是基于增强现实技术在所述接收位置处生成的;
    将所述基于接收位置的场景信息上传至服务端。
  24. 一种物流对象的接收方法,其特征在于,所述方法包括:
    服务端提供多个物流对象信息,所述物流对象信息关联有第一场景信息;
    第一终端向所述服务端发送目标物流对象的接收请求;
    所述服务端确定所述目标物流对象关联的目标第一场景信息;
    所述第一终端获取并向所述服务端发送基于当前位置的第二场景信息;
    所述服务端根据所述目标第一场景信息和第二场景信息,确定所述目标物流对象的接收状态;所述第一场景信息为第二终端预先上传的基于接收位置的场景信息。
  25. 一种物流对象的接收系统,其特征在于,所述系统包括第一终端、第二终端和服务端;
    所述第二终端用于向服务端上传基于接收位置的第一场景信息;
    所述服务端用于提供多个物流对象信息,所述物流对象信息关联有第一场景信息;获取第一终端发送的目标物流对象接收请求;确定所述目标物流对象关联的目标第一场景信息;获取第一终端发送的基于当前位置的第二场景信息;根据所述目标第一场景信息和第二场景信息,确定所述目标物流对象的接收状态;
    所述第一终端用于向服务端发送目标物流对象的接收请求;获取所述服务端提供的所述目标物流对象信息,以及所述目标物流对象信息关联的第一场景信息;获取基于当前位置的第二场景信息;将所述基于当前位置的第二场景信息发送至所述服务端。
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