WO2018113598A1 - 一种虚拟资源投递方法及系统、客户端及服务器 - Google Patents

一种虚拟资源投递方法及系统、客户端及服务器 Download PDF

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Publication number
WO2018113598A1
WO2018113598A1 PCT/CN2017/116462 CN2017116462W WO2018113598A1 WO 2018113598 A1 WO2018113598 A1 WO 2018113598A1 CN 2017116462 W CN2017116462 W CN 2017116462W WO 2018113598 A1 WO2018113598 A1 WO 2018113598A1
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Prior art keywords
delivery
preset
resource
target
delivery object
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PCT/CN2017/116462
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English (en)
French (fr)
Inventor
柳林东
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阿里巴巴集团控股有限公司
柳林东
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Publication of WO2018113598A1 publication Critical patent/WO2018113598A1/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
    • G06Q20/00Payment architectures, schemes or protocols
    • G06Q20/04Payment circuits
    • G06Q20/06Private payment circuits, e.g. involving electronic currency used among participants of a common payment scheme
    • G06Q20/065Private payment circuits, e.g. involving electronic currency used among participants of a common payment scheme using e-cash
    • 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
    • G06Q20/00Payment architectures, schemes or protocols
    • G06Q20/30Payment architectures, schemes or protocols characterised by the use of specific devices or networks
    • G06Q20/32Payment architectures, schemes or protocols characterised by the use of specific devices or networks using wireless devices
    • G06Q20/322Aspects of commerce using mobile devices [M-devices]
    • G06Q20/3224Transactions dependent on location of M-devices
    • 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
    • G06Q20/00Payment architectures, schemes or protocols
    • G06Q20/38Payment protocols; Details thereof
    • G06Q20/382Payment protocols; Details thereof insuring higher security of transaction
    • G06Q20/3821Electronic credentials

Definitions

  • the present application relates to the field of data processing technologies, and in particular, to a virtual resource delivery method and system, a client, and a server.
  • Red envelope delivery is a virtual currency payment activity with a strong user experience.
  • one of the group members delivers an arbitrary amount of red packets in the user group, and can set the amount of the money. The number of red packets. All members of the group can randomly obtain red packets in the user group. When the number of red packets is less than the number of group members, the group members need to "grab" the red packets.
  • red envelope delivery the delivery direction of the red envelope is completely non-directional, and whether the group members "grab" to the red envelope is closely related to the strength of the network signal and the performance of the terminal device. Therefore, there is no red envelope delivery method in the prior art that can deliver based on a specified geographic orientation.
  • the purpose of the embodiment of the present application is to provide a virtual resource delivery method and system, a client, and a server, which can make resource delivery have directionality, provide users with more resource delivery options, and enhance the user experience.
  • a virtual resource delivery method and system, client and server provided by the embodiments of the present application are specifically implemented as follows:
  • a virtual resource delivery method comprising:
  • a virtual resource delivery method comprising:
  • a server comprising:
  • a delivery direction obtaining unit configured to acquire a resource delivery direction of the client in response to a resource delivery request of the client
  • the target delivery object determining unit is configured to determine, from the at least one preset delivery object, the target delivery object located in the resource delivery direction according to the geographical location information of the at least one preset delivery object.
  • a client comprising:
  • a geographic location obtaining unit configured to acquire geographic location information of at least one preset delivery object
  • a resource delivery direction determining unit for determining a resource delivery direction
  • a target object determining unit configured to determine, from the at least one preset delivery object, a target delivery object located in the resource delivery direction according to the geographic location information.
  • a virtual resource delivery method comprising:
  • the client sends a resource delivery request
  • the server receives the resource delivery request
  • the server acquires a resource delivery direction of the client in response to the resource delivery request;
  • a virtual resource delivery method comprising:
  • the client sends a location acquisition request, where the location acquisition request includes at least one identifier information of the preset delivery object;
  • the server receives and responds to the geographic location acquisition request, and sends geographic location information of the at least one preset delivery object according to the identification information;
  • the client receives the geographical location information and determines a resource delivery direction
  • a virtual resource delivery system comprising:
  • a server configured to receive the resource delivery request; and configured to acquire a resource delivery direction of the client in response to the resource delivery request; and, configured to, according to geographical location information of the at least one preset delivery object, Determining, in the at least one preset delivery object, a target delivery object located in the resource delivery direction.
  • a virtual resource delivery system comprising:
  • a client configured to send a geographic location acquisition request, where the geographic location acquisition request includes at least one identifier information of a preset delivery object; and, configured to receive the geographic location information, and determine a resource delivery direction; and, Determining, according to the geographical location information, a target delivery object located in the resource delivery direction from the at least one preset delivery object;
  • a server configured to receive and respond to the geographic location acquisition request, and send, according to the identification information, geographic location information of the at least one preset delivery object.
  • the virtual resource delivery method and system, the client and the server provided by the present application may determine, according to the geographical location information of the at least one preset delivery object, the target delivery object located in the resource delivery direction from the at least one preset delivery object.
  • a technical method for resource delivery to a client in a specified direction is implemented.
  • the resource delivery method of the present application can make the resource delivery have directionality and provide users with more resource delivery options. Select the right to enhance the user experience.
  • FIG. 1 is a flowchart of a method of an embodiment of a virtual resource delivery method provided by the present application
  • FIG. 2 is a flowchart of a method for determining an embodiment of a target object method provided by the present application
  • FIG. 3 is a flowchart of a method of an embodiment of a method for delivering resources provided by the present application
  • FIG. 4 is a schematic structural diagram of a module of an embodiment of a server provided by the present application.
  • FIG. 5 is a flowchart of a method for another embodiment of a virtual resource delivery method provided by the present application.
  • FIG. 6 is a flowchart of a method for another embodiment of a virtual resource delivery method provided by the present application.
  • FIG. 7 is a flowchart of a method for obtaining an embodiment of a method for acquiring geographic location information provided by the present application
  • FIG. 8 is a flowchart of a method of an embodiment of a method for delivering resources provided by the present application
  • FIG. 9 is a schematic structural diagram of a module of an embodiment of a client provided by the present application.
  • FIG. 10 is a flowchart of a method of another embodiment of a method for delivering a virtual resource provided by the present application.
  • FIG. 11-13 are schematic diagrams of the scenario 1 provided by the present application.
  • FIG. 14 is a schematic diagram of scenario 2 provided by the present application.
  • FIG. 1 is a schematic flow chart of a method of an embodiment of a virtual resource delivery method provided by the present application.
  • the present application provides method operational steps as illustrated in the following embodiments or figures, more or fewer operational steps may be included in the method based on routine or no inventive effort.
  • the order of execution of the steps is not limited to the execution order provided by the embodiment of the present application.
  • the method may be executed sequentially or in parallel (for example, a parallel processor or a multi-threaded environment) in the actual virtual resource delivery process or when the device is executed.
  • FIG. 1 An implementation of a virtual resource delivery method provided by the present application is as shown in FIG. 1.
  • the method may include:
  • S1 Acquire a resource delivery direction of the client in response to a resource delivery request of the client.
  • the resource delivery request sent by the client may be received by the server, and the resource delivery direction of the client is obtained in response to the resource delivery request.
  • the server may include a hardware device having a data information processing function and necessary software for driving the hardware device to operate, and the server may determine a target delivery object according to a resource delivery direction of the client.
  • the server may provide a predetermined port through which a resource delivery request provided by the client may be received.
  • the server may perform network data interaction with a client based on a network protocol such as HTTP, TCP/IP or FTP, and a network communication module.
  • the client may be a terminal device capable of accessing a communication network based on a network protocol and having a virtual resource delivery function.
  • the client may be a mobile smart phone, a computer (including a laptop computer, a desktop computer), a tablet electronic device, a personal digital assistant (PDA), or a smart wearable device.
  • the client may also be an APP with virtual resource delivery function running on any of the above listed devices, such as Alipay APP, WeChat APP, Stud APP, and the like.
  • the virtual resource may include a red envelope, a credit, a coupon, a game point card, a bitcoin, and the like that can perform network payment.
  • the virtual resource may also include any virtual resource that can generate usage value, which is not limited herein.
  • the resource delivery direction may include one or more determined spatial directions starting from a geographic location of the client, for example, the resource delivery direction may include east, south, west, north, and upper.
  • the direction of the resource delivery may include any direction in the space, which is not limited herein.
  • the resource delivery direction may include one of the following: a spatial orientation of the client, a user-defined direction, and a preset direction.
  • the spatial orientation of the client may include a spatial pointing of the client device, for example, a spatial pointing of the mobile phone, and a spatial pointing of the smart watch.
  • the user can hold the client device and rotate the client device in any direction.
  • the location where the client device finally stays is the resource delivery direction.
  • the client may acquire the spatial orientation by a sensor capable of sensing a spatial orientation coupled to the interior of the device, for example, the sensor may include a digital electronic compass, a Hall sensor, or the like. After the client obtains the spatial direction, the client may send the spatial direction to the server.
  • the resource delivery direction of the client may further include a user-defined direction.
  • the user can also determine the direction in which the resource is delivered without having to turn the phone.
  • a user-defined direction option can be set in the client, and the user can select any one of the custom directions according to the individual's wishes and preferences.
  • the user can also input a custom direction in the client, and the manner in which the user determines the custom direction is not limited herein.
  • the resource delivery direction of the client may further include a preset direction.
  • the preset direction may be a spatial direction set by the client by default, or may be a randomly generated spatial direction.
  • the preset direction may also be a spatial direction set by the server by default or a spatial direction randomly generated.
  • the server may obtain the resource delivery direction of the client before the virtual resource delivery, so that the virtual resource delivery behavior is changed from the non-directionality in the prior art to the directionality, and the user is enhanced in the process of resource delivery.
  • the right to choose independently to enhance the sense of experience.
  • S2 Determine, according to geographical location information of the at least one preset delivery object, a target delivery object located in the resource delivery direction from the at least one preset delivery object.
  • the server may determine, according to the geographical location information of the at least one preset delivery object, the location in the resource delivery direction from the at least one preset delivery object.
  • the target delivery object may be determined, according to the geographical location information of the at least one preset delivery object, the location in the resource delivery direction from the at least one preset delivery object.
  • the preset delivery object may include an object that can be selected as a target delivery object, and the object may include a client device, a user account, and the like.
  • the preset delivery object may be from an address book on the same device, one or more user groups, and an address book of the same user account, and the preset delivery object may also be from a user associated with the same user account, User groups, collections of address books, etc.
  • the preset delivery object is from the same WeChat group, the nail group, the Alipay group, etc., and may also be from the address book on the same mobile phone, and may also be from the user group and user associated with the same user account.
  • address book, etc. such as Alipay, Tmall, Ali Mama, Flying Pig and other user accounts, users, contacts, etc. associated with the same Taobao account.
  • FIG. 2 is a flowchart of a method for determining a target object provided by the present application, as shown in FIG. 2 .
  • the method can include:
  • S21 Acquire geographical location information of at least one preset delivery object
  • geographical location information of at least one preset delivery object may be acquired.
  • the client device of the preset delivery object is arranged to allow the server to obtain positioning information, such as GPS location information.
  • the server may obtain the geographical location information of the preset delivery object according to the positioning information.
  • the geographic location information may include the longitude, latitude, altitude, and the like of the preset delivery object.
  • the server may obtain geographic location information of the preset delivery object according to the network identification information of the preset delivery object.
  • the user login account information may include network identification information of the preset delivery object, such as login IP address information, according to the login.
  • the IP address information may determine geographic location information of the preset delivery object.
  • the server may obtain the geographical location information of the preset delivery object by any other means, which is not limited herein.
  • a target receiving area capable of receiving virtual resources may be disposed along the resource delivery direction.
  • the target area is set to include at least one of the following preset parameters: an expansion angle interval, a delivery distance, and a delivery route.
  • the extended angle interval may include any offset angle interval starting from the geographic location of the client and using the resource delivery direction as an axis.
  • the extended angle interval is 0; in a two-dimensional space, the extended angle interval may include any plane with the client's geographic location as the origin and the resource delivery direction as the coordinate axis.
  • the upper angle range In a typical example, the target area may be a sector area, for example, on a horizontal plane with an altitude of 1 meter, the expansion angle may be [-15°, 15°], [-41°, 37°].
  • the target receiving area may include a rule with the geographic location of the client as an origin, a rule with the resource delivery direction as an axis or an irregularity Vertebral body.
  • the target receiving area may be a cone, and the expansion angle interval may be a conical apex angle, such as 45°, 87°, 18°, or the like.
  • the target receiving area may be a regular pyramid, and the expanded angle section may include a vertebral body apex angle, a side triangle apex angle.
  • the target receiving area may be an irregular pyramid, and the expansion angle section may include a vertebral vertices section, a side triangle apex section, and the like.
  • the target area may further include an area of any shape with the location of the client as the origin and the resource delivery direction as the coordinate axis. The application is not limited herein.
  • the delivery distance may include a farthest delivery distance starting from the geographic location of the client.
  • the distance can be set, for example, to 3.7 meters, 100 meters, 2000 meters, infinity, and the like.
  • the delivery route can include a delivery flight route.
  • the delivery route may be set as a straight line, a parabola, an S-shaped curve, a Z-shaped curve, a spiral curve, or the like.
  • the delivery route may include a curve of any form, which is not limited herein.
  • the preset parameter of the target area may be a user-defined parameter.
  • the user can select or input the value of the preset parameter at the client.
  • the user can textually represent the value of the preset parameter in the client.
  • the user may also graphically represent the value of the preset parameter, for example, the user draws a parabolic curve through the touch screen as the delivery route.
  • the parameter value of the preset parameter may be customized by the user in any manner, which is not limited herein.
  • At least one delivery object whose geographical location is located in the target receiving area is used as a target delivery object.
  • the server may use, as the target delivery object, at least one delivery object whose geographical location is located in the target receiving area according to the geographic location information of the preset delivery object. For example, without considering the altitude, the target receiving area is set with the geographic location of the client as the origin, the resource delivery direction as the coordinate axis, and the expansion angle interval is [-15°, 15°. And determining, according to the longitude and latitude of the preset delivery object, whether the preset delivery object falls within the target receiving area, and if the determination result is yes, determining the preset delivery object Deliver objects for the target.
  • the method may further include:
  • the server may perform delivery of the virtual resource.
  • a preset number of virtual resources may be directly delivered to the target, for example, a plurality of target delivery objects are evenly distributed or randomly assigned a red envelope of a preset amount.
  • the number of the virtual resources is a preset number, and may be greater than, equal to, and smaller than the target vote. The number of objects that are handed.
  • the target delivery object only has the qualification to receive the virtual resource, and finally can receive the ratio depending on the number of virtual resources and the number of target delivery objects.
  • the user may choose to receive or not receive the virtual resource. Therefore, a feedback mechanism may be established between the server and the user, and the server may determine whether to send the virtual resource to the target according to the feedback of the user. Delivery object. Specifically, the server may send a resource delivery notification message to the target delivery object, and if the user of the target delivery object is willing to receive the virtual resource, the reply message may be returned by the target delivery object. The server may receive a reply message of the target delivery object and deliver a virtual resource to the target delivery object in response to the reply message.
  • the application further provides a server.
  • the server 40 may include:
  • a delivery direction obtaining unit 41 configured to acquire a resource delivery direction of the client in response to a resource delivery request of the client;
  • the target delivery object determining unit 42 is configured to determine, from the at least one preset delivery object, a target delivery object located in the resource delivery direction according to geographical location information of the at least one preset delivery object.
  • FIG. 5 is another embodiment of a method for delivering a virtual resource provided by the present application.
  • Method flow diagram as shown in FIG. 5, the method may include:
  • S51 The client sends a resource delivery request.
  • S52 The server receives the resource delivery request.
  • S53 The server acquires a resource delivery direction of the client in response to the resource delivery request.
  • the server determines, according to geographical location information of the at least one preset delivery object, a target delivery object located in the resource delivery direction from the at least one preset delivery object.
  • the application further provides a virtual resource delivery system, where the system includes:
  • a server configured to receive the resource delivery request; and configured to acquire a resource delivery direction of the client in response to the resource delivery request; and, configured to, according to geographical location information of the at least one preset delivery object, Determining, in the at least one preset delivery object, a target delivery object located in the resource delivery direction.
  • the virtual resource delivery method and system and server provided by the present application may determine a target delivery object located in a resource delivery direction from the at least one preset delivery object according to geographical location information of at least one preset delivery object.
  • a technical method for assigning directions to clients in the direction of resource delivery Compared with the non-directionality of the resource delivery method and the non-selectivity of the user in the prior art, the resource delivery method of the present application can make the resource delivery have directionality, provide users with more resource delivery options, and enhance the user experience. .
  • Another aspect of the present application also proposes a virtual resource delivery method from the perspective of the client.
  • the difference from the virtual resource delivery method S1-S2 proposed from the server perspective is that: according to S1-S2, the process of determining the target object can be found. Both are done on the server side.
  • the determination of the target object can also be completed by the client itself.
  • the method may include:
  • S61 Acquire geographical location information of at least one preset delivery object
  • S63 Determine, according to the geographical location information, a target delivery object located in the resource delivery direction from the at least one preset delivery object.
  • the client may first acquire the geographic location of at least one preset delivery object. information.
  • the acquiring geographic location information of the at least one preset delivery object may include:
  • S71 Send a geographic location acquisition request, where the geographic location acquisition request includes at least one identifier information of a preset delivery object.
  • S72 Receive geographic location information of the at least one preset delivery object.
  • the client may determine at least one preset delivery object, and the preset delivery object may be freely selected by the user, or may be a member of the preset user group and the preset address book. After determining the preset delivery object, the client may send a location acquisition request to the server, where the location acquisition request includes the identifier information of the preset delivery object, where the identifier information is, for example, The user account information of the preset delivery object, and the like.
  • the server may acquire and send the geographical location information of the at least one preset delivery object according to the identifier information of the preset delivery object in response to the geographic location acquisition request.
  • steps S62-S63 may refer to step S2, and the details are not described herein again.
  • the method may further include:
  • S81 Send identification information of the target delivery object.
  • the client may transfer the subsequent virtual resource delivery work to the server. Specifically, the client may send the identifier information of the target delivery object to the server, where the identifier information is, for example, user account information of the target delivery object. After receiving the identifier information, the server may perform virtual resource delivery according to steps S31-S33. If the virtual resource delivery is successful, the server may return a notification message that the target delivery object receives the virtual resource, and after receiving the notification message, the client may determine that the target delivery object has successfully received the virtual resource.
  • the application further provides a client.
  • the client 90 may include:
  • a geographic location obtaining unit 91 configured to acquire geographic location information of at least one preset delivery object
  • a resource delivery direction determining unit 92 configured to determine a resource delivery direction
  • the target object determining unit 93 is configured to determine, from the at least one preset delivery object, a target delivery object located in the resource delivery direction according to the geographic location information.
  • FIG. 10 is another embodiment of a method for delivering a virtual resource provided by the present application.
  • Method flow diagram as shown in FIG. 10, the method may include:
  • the client sends a location acquisition request, where the location acquisition request includes at least one identifier information of the preset delivery object.
  • the server receives and responds to the geographic location acquisition request, and sends geographic location information of the at least one preset delivery object according to the identifier information.
  • the client receives the geographical location information, and determines a resource delivery direction.
  • the client determines, according to the geographical location information, a target delivery object located in the resource delivery direction from the at least one preset delivery object.
  • the application further provides a virtual resource delivery system, where the system includes:
  • a client configured to send a geographic location acquisition request, where the geographic location acquisition request includes at least one identifier information of a preset delivery object; and, configured to receive the geographic location information, and determine a resource delivery direction; and, Determining, according to the geographical location information, a target delivery object located in the resource delivery direction from the at least one preset delivery object;
  • a server configured to receive and respond to the geographic location acquisition request, and send, according to the identification information, geographic location information of the at least one preset delivery object.
  • the virtual resource delivery method and system and client provided by the present application may determine, according to geographical location information of at least one preset delivery object, a target delivery object located in a resource delivery direction from the at least one preset delivery object.
  • a technical method for resource delivery to a client in a specified direction is implemented.
  • the resource delivery method of the present application can make the resource delivery have directionality, provide users with more resource delivery options, and enhance the user experience. .
  • 11-13 are schematic diagrams of the scenario 1 provided by the present application.
  • the user Xiao Wang is playing the “Red Envelope Solitaire” activity in User Group B through Client A and college classmates.
  • the geographic location of client A is 26.336164° north latitude and 52.030018° east longitude.
  • the other 12 members of User Group B are located in various parts of the country, and now it is the turn of Xiao Wang to send a red envelope.
  • Xiao Wang sets the total amount of distribution to 10 yuan, and divides the 10 yuan amount into 5 red packets for distribution.
  • the three parameter expansion angle intervals, the delivery distance, and the delivery route of the target receiving area can all be selected by the user.
  • the target receiving area in the client A can only be a fan-shaped or fan-shaped combination by default, and the altitude is not limited.
  • the position of the client A is taken as the origin
  • the resource delivery direction is the coordinate axis
  • the expansion angle interval is [-9°, 30°]
  • the delivery distance is set to infinity
  • the delivery route is set. It is a straight line.
  • the delivery route may also be set as an S-curve, a Z-curve, a parabola, etc., and the delivery route may also be generated by the user.
  • Xiao Wang points the client A to the space direction of 9° north and clicks the Send Red Packet button in User Interface 1.
  • the server uses the spatial direction pointed by the client A as the implementation manner according to the implementation method of S1-S2.
  • the resource delivery direction can also be planned according to the target value of the target receiving area set by Xiao Wang, and the target receiving area as shown in FIG. 11 is planned. As shown as shown in FIG.
  • the server selects, according to the geographical coordinate distribution of the clients of the group members 1-12, the clients of the group members 1, 2, 3, 6, 7, 8 are located in the target receiving area, and therefore, the group is The clients of members 1, 2, 3, 6, 7, and 8 serve as target delivery objects.
  • FIG. 14 is a schematic diagram of scenario 2 provided by the present application.
  • Figure 14 is a four-story office building structure of a company.
  • the “Red Envelope Solitaire” activity is underway. Now it is the turn of the 14th employee to send the red envelope.
  • the 14th employee sets the expansion angle range to [-30°, 30°] and the delivery distance is 10 meters.
  • employee No. 14 aligns client B with an angle of 80° above the horizontal plane and sends a red envelope.
  • the server plans a target receiving area as shown in FIG.
  • the terminal selects customers with only employees of the 4th, 8th, 9th, and 10th according to the geographical coordinate distribution of the clients of the group members 1-14.
  • the terminal is located in the target receiving area, and therefore, the clients of the employees 4, 8, 9, and 10 are targeted for delivery.
  • PLD Programmable Logic Device
  • FPGA Field Programmable Gate Array
  • HDL Hardware Description Language
  • the controller can be implemented in any suitable manner, for example, the controller can take the form of, for example, a microprocessor or processor and a computer readable medium storing computer readable program code (eg, software or firmware) executable by the (micro)processor.
  • computer readable program code eg, software or firmware
  • examples of controllers include, but are not limited to, the following microcontrollers: ARC 625D, Atmel AT91SAM, The Microchip PIC18F26K20 and the Silicone Labs C8051F320, the memory controller can also be implemented as part of the memory's control logic.
  • the controller can be logically programmed by means of logic gates, switches, ASICs, programmable logic controllers, and embedding.
  • Such a controller can therefore be considered a hardware component, and the means for implementing various functions included therein can also be considered as a structure within the hardware component.
  • a device for implementing various functions can be considered as a software module that can be both a method of implementation and a structure within a hardware component.
  • the system and 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.
  • the computer can be, for example, a personal computer, a laptop computer, a cellular phone, a camera phone, a smart phone, a personal digital assistant, a media player, a navigation device, an email device, a game console, a tablet computer, a wearable device, or A combination of any of these devices.
  • embodiments of the present invention can be provided as a method, system, or computer program product. Accordingly, the present invention may take the form of an entirely hardware embodiment, an entirely software embodiment, or a combination of software and hardware. Moreover, the invention can take the form of a computer program product embodied on one or more computer-usable storage media (including but not limited to disk storage, CD-ROM, optical storage, etc.) including computer usable program code.
  • computer-usable storage media including but not limited to disk storage, CD-ROM, optical storage, etc.
  • the computer program instructions can also be stored in a computer readable memory that can direct a computer or other programmable data processing device to operate in a particular manner, such that the instructions stored in the computer readable memory produce an article of manufacture comprising the instruction device.
  • the apparatus implements the functions specified in one or more blocks of a flow or a flow and/or block diagram of the flowchart.
  • These computer program instructions can also be loaded onto a computer or other programmable data processing device such that a series of operational steps are performed on a computer or other programmable device to produce computer-implemented processing for execution on a computer or other programmable device.
  • the instructions provide steps for implementing the functions specified in one or more of the flow or in a block or blocks of a flow diagram.
  • a computing device includes one or more processors (CPUs), input/output interfaces, network interfaces, and memory.
  • processors CPUs
  • input/output interfaces network interfaces
  • memory volatile and non-volatile memory
  • the memory may include non-persistent memory, random access memory (RAM), and/or non-volatile memory in a computer readable medium, such as read only memory (ROM) or flash memory.
  • RAM random access memory
  • ROM read only memory
  • Memory is an example of a computer readable medium.
  • Computer readable media includes both permanent and non-persistent, removable and non-removable media.
  • Information storage can be implemented by any method or technology.
  • the information can be computer readable instructions, data structures, modules of programs, or other data.
  • Examples of computer storage media include, but are not limited to, phase change memory (PRAM), static random access memory (SRAM), dynamic random access memory (DRAM), other types of random access memory (RAM), read only memory. (ROM), electrically erasable programmable read only memory (EEPROM), flash memory or other memory technology, compact disk read only memory (CD-ROM), digital versatile disk (DVD) or other optical storage, Magnetic tape cartridges, magnetic tape storage or other magnetic storage devices or any other non-transportable media can be used to store information that can be accessed by a computing device.
  • computer readable media does not include temporary storage of computer readable media, such as modulated data signals and carrier waves.
  • embodiments of the present application can be provided as a method, system, or computer program product.
  • the present application can take the form of an entirely hardware embodiment, an entirely software embodiment or an embodiment in combination of software and hardware.
  • the application can take the form of a computer program product embodied on one or more computer-usable storage media (including but not limited to disk storage, CD-ROM, optical storage, etc.) including computer usable program code.
  • the application can be described in the general context of computer-executable instructions executed by a computer, such as a program module.
  • program modules include routines, programs, objects, components, data structures, and the like that perform particular tasks or implement particular abstract data types.
  • the present application can also be practiced in distributed computing environments where tasks are performed by remote processing devices that are connected through a communication network.
  • program modules can be located locally, including storage devices. And remote computer storage media.

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Abstract

一种虚拟资源投递方法及系统、客户端及服务器。所述方法包括:响应于客户端的资源投递请求,获取所述客户端的资源投递方向(S1);根据至少一个预设投递对象的地理位置信息,从所述至少一个预设投递对象中确定位于所述资源投递方向上的目标投递对象(S2)。利用该方法,可以使得资源投递具有方向性,给用户提供更多的资源投递选择权,增强用户的使用体验感。

Description

一种虚拟资源投递方法及系统、客户端及服务器 技术领域
本申请涉及数据处理技术领域,特别涉及一种虚拟资源投递方法及系统、客户端及服务器。
背景技术
目前,虚拟资源已经广泛应用于日常的网络支付中,虚拟资源诸如虚拟货币、积分、游戏点数等。虚拟货币已经逐步代替传统纸币,广泛应用于人们的日常生活中。使用安装于客户端中的具有虚拟货币支付功能的应用(Application,英文缩写为APP),用户可以完成信用卡还款、发送红包、购物结账等多种支付活动。红包投递是用户体验感比较强的虚拟货币支付活动,通常是在几位用户组建的用户群里,由其中的一位群成员在用户群里投递任意金额的红包,并可以设置分配该金额的红包个数。群里所有的成员均可以随机获取用户群里的红包,当红包个数小于群成员数时,群成员需要“抢”红包。
那么,在上述红包投递的方式中,红包的投递方向完全是无方向的,群成员是否“抢”到红包与网络信号的强弱、终端设备性能等因素密切相关。因此,现有技术中还没有一种红包投递方式可以基于指定的地理方位进行投递。
发明内容
本申请实施例的目的在于提供一种虚拟资源投递方法及系统、客户端及服务器,可以使得资源投递具有方向性,给用户提供更多的资源投递选择权,增强用户的使用体验感。
本申请实施例提供的一种虚拟资源投递方法及系统、客户端及服务器具体是这样实现的:
一种虚拟资源投递方法,所述方法包括:
响应于客户端的资源投递请求,获取所述客户端的资源投递方向;
根据至少一个预设投递对象的地理位置信息,从所述至少一个预设投递对象中确定位于所述资源投递方向上的目标投递对象。
一种虚拟资源投递方法,所述方法包括:
获取至少一个预设投递对象的地理位置信息;
确定资源投递方向;
根据所述地理位置信息,从所述至少一个预设投递对象中确定位于所述资源投递方向上的目标投递对象。
一种服务器,所述服务器包括:
投递方向获取单元,用于响应于客户端的资源投递请求,获取所述客户端的资源投递方向;
目标投递对象确定单元,用于根据至少一个预设投递对象的地理位置信息,从所述至少一个预设投递对象中确定位于所述资源投递方向上的目标投递对象。
一种客户端,所述客户端包括:
地理位置获取单元,用于获取至少一个预设投递对象的地理位置信息;
资源投递方向确定单元,用于确定资源投递方向;
目标对象确定单元,用于根据所述地理位置信息,从所述至少一个预设投递对象中确定位于所述资源投递方向上的目标投递对象。
一种虚拟资源投递方法,所述方法包括:
客户端发送资源投递请求;
服务器接收所述资源投递请求;
所述服务器响应于所述资源投递请求,获取所述客户端的资源投递方向;
所述服务器根据至少一个预设投递对象的地理位置信息,从所述至少一个预设投递对象中确定位于所述资源投递方向上的目标投递对象。
一种虚拟资源投递方法,所述方法包括:
客户端发送地理位置获取请求,所述地理位置获取请求中包括至少一个预设投递对象的标识信息;
所述服务器接收并响应于所述地理位置获取请求,根据所述标识信息,发送所述至少一个预设投递对象的地理位置信息;
所述客户端接收所述地理位置信息,并确定资源投递方向;
所述客户端根据所述地理位置信息,从所述至少一个预设投递对象中确定位于所述资源投递方向上的目标投递对象。
一种虚拟资源投递系统,所述系统包括:
客户端,用于发送资源投递请求;
服务器,用于接收所述资源投递请求;以及,用于响应于所述资源投递请求,获取所述客户端的资源投递方向;以及,用于根据至少一个预设投递对象的地理位置信息,从所述至少一个预设投递对象中确定位于所述资源投递方向上的目标投递对象。
一种虚拟资源投递系统,所述系统包括:
客户端,用于发送地理位置获取请求,所述地理位置获取请求中包括至少一个预设投递对象的标识信息;以及,用于接收所述地理位置信息,并确定资源投递方向;以及,用于根据所述地理位置信息,从所述至少一个预设投递对象中确定位于所述资源投递方向上的目标投递对象;
服务器,用于接收并响应于所述地理位置获取请求,根据所述标识信息,发送所述至少一个预设投递对象的地理位置信息。
本申请提供的虚拟资源投递方法及系统、客户端及服务器,可以根据至少一个预设投递对象的地理位置信息,从所述至少一个预设投递对象中确定位于资源投递方向上的目标投递对象,实现了向客户端指定方向进行资源投递的技术方法。相对于现有技术中资源投递方法的无方向性、用户无选择性,本申请的资源投递方法可以使得资源投递具有方向性,给用户提供更多的资源投递选 择权,增强用户的使用体验感。
附图说明
为了更清楚地说明本申请实施例或现有技术中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本申请中记载的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动性的前提下,还可以根据这些附图获得其他的附图。
图1是本申请提供的虚拟资源投递方法的一种实施例的方法流程图;
图2是本申请提供的确定目标对象方法的一种实施例的方法流程图;
图3是本申请提供的投递资源方法的一种实施例的方法流程图;
图4是本申请提供的服务器的一种实施例的模块结构示意图;
图5是本申请提供的虚拟资源投递方法的另一种实施例的方法流程图;
图6是本申请提供的虚拟资源投递方法的另一种实施例的方法流程图;
图7是本申请提供的获取地理位置信息方法的一种实施例的方法流程图;
图8是本申请提供的投递资源方法的一种实施例的方法流程图;
图9是本申请提供的客户端的一种实施例的模块结构示意图;
图10是本申请提供的虚拟资源的投递方法的另一种实施例的方法流程图;
图11-13是本申请提供的场景1的示意图;
图14是本申请提供的场景2的示意图。
具体实施方式
为了使本技术领域的人员更好地理解本申请中的技术方案,下面将结合本申请实施例中的附图,对本申请实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本申请一部分实施例,而不是全部的实施例。基于本申请中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都应当属于本申请保护的范围。
下面结合附图对本申请所述的虚拟资源投递方法进行详细的说明。图1是本申请提供的虚拟资源投递方法的一种实施例的方法流程示意图。虽然本申请提供了如下述实施例或附图所示的方法操作步骤,但基于常规或者无需创造性的劳动在所述方法中可以包括更多或者更少的操作步骤。在逻辑性上不存在必要因果关系的步骤中,这些步骤的执行顺序不限于本申请实施例提供的执行顺序。所述方法在实际中的虚拟资源投递过程中或者装置执行时,可以按照实施例或者附图所示的方法顺序执行或者并行执行(例如并行处理器或者多线程处理的环境)。
具体的本申请提供的一种虚拟资源投递方法的一种实施例如图1所示,所述方法可以包括:
S1:响应于客户端的资源投递请求,获取所述客户端的资源投递方向。
在本实施中,可以由服务器接收客户端发送的资源投递请求,并响应于所述资源投递请求,获取所述客户端的资源投递方向。所述服务器可以包括具有数据信息处理功能的硬件设备和驱动该硬件设备工作所需的必要的软件,所述服务器可以根据所述客户端的资源投递方向确定目标投递对象。所述服务器可以提供预定端口,通过所述预定端口可以接收客户端提供的资源投递请求。例如,所述服务器可以基于HTTP、TCP/IP或FTP等网络协议以及网络通信模块与客户端进行网络数据交互。
在本实施例中,所述客户端可以为能够基于网络协议接入通信网络并具有虚拟资源投递功能的终端设备。具体的,例如,所述客户端可以为移动智能电话、计算机(包括笔记本电脑,台式电脑)、平板电子设备、个人数字助理(PDA)或者智能可穿戴设备等。此外,所述客户端还可以为运行于任一上述所列设备上的具有虚拟资源投递功能的APP,例如支付宝APP、微信APP、钉钉APP等。
在本实施例中,所述虚拟资源可以包括红包、积分、优惠券、游戏点卡、比特币等能够进行网络支付的资源。在其他实施例中,所述虚拟资源还可以包括任何可以产生使用价值的虚拟资源,本申请在此不做限制。
本实施例中,所述资源投递方向可以包括从以所述客户端的地理位置为起点的一个或者多个确定的空间方向,例如,所述资源投递方向可以包括东、南、西、北、上、下等与水平面平行或者垂直的方向,所述资源投递方向可以包括空间中的任意方向,本申请在此不做限制。
在本申请的一个实施例中,所述资源投递方向可以包括下述中的一种:客户端的空间指向、用户自定义方向、预先设置方向。
其中,所述客户端的空间指向可以包括客户端设备的空间指向,例如,移动电话的空间指向、智能手表的空间指向。在具体的场景中,用户可以手持客户端设备,并将所述客户端设备向任意的方向转动,客户端设备最终停留的位置即为所述资源投递方向。在一个实施例中,客户端可以通过耦合于设备内部的能够感应空间方向的传感器获取所述空间指向,例如,所述传感器可以包括数字电子罗盘、霍尔传感器等。所述客户端在获取所述空间指向后,可以将所述空间指向发送至所述服务器。
在另一个实施例中,所述客户端的资源投递方向还可以包括用户自定义方向。用户还可以在不需要转动手机的情况下,确定资源投递方向。例如,可以在所述客户端中设置用户自定义方向选项,用户可以根据个人的意愿、偏好,选取其中任意一个自定义方向。当然,用户还可以在所述客户端中输入自定义方向,用户确定自定义方向的方式在此不做限制。
在另一个实施例中,所述客户端的资源投递方向还可以包括预先设置方向。所述预先设置方向可以是所述客户端默认设置的空间方向,也可以是随机产生的空间方向。当然,所述预先设置方向还可以是所述服务器默认设置的空间方向或者随机产生的空间方向。
本实施例中,服务器可以在进行虚拟资源投递之前,获取所述客户端的资源投递方向,使得虚拟资源投递行为从现有技术中的无方向性转变成有方向性,增强用户在资源投递过程中的自主选择权利,提升体验感。
S2:根据至少一个预设投递对象的地理位置信息,从所述至少一个预设投递对象中确定位于所述资源投递方向上的目标投递对象。
本实施例中,所述服务器在获取所述客户端的资源投递方向之后,可以根据至少一个预设投递对象的地理位置信息,从所述至少一个预设投递对象中确定位于所述资源投递方向上的目标投递对象。
所述预设投递对象可以包括能够被选取作为目标投递对象的对象,所述对象可以包括客户端设备、用户账户等。所述预设投递对象可以来自于同一设备上的通讯录、一个或者多个用户群、同一用户账户的通讯录,所述预设投递对象还可以来自于与同一个用户账户相关联的用户、用户群、通讯录的集合等。例如,所述预设投递对象为来自同一个微信群、钉钉群、支付宝群等,也可以来自同一部移动电话上的通信录,还可以来自与同一个用户账户相关联的用户群、用户、通讯录等,例如与同一淘宝账户相关联的支付宝、天猫、阿里妈妈、飞猪等APP账户中的用户群、用户、通讯录等。
在本申请的一个实施例中,提出一种根据地理位置信息确定目标投递对象的具体实施方式,图2是本申请提供的确定目标对象的一种实施例的方法流程图,如图2所示,所述方法可以包括:
S21:获取至少一个预设投递对象的地理位置信息;
为了能够确定至少一个所述预设投递对象是否位于所述资源投递方向上,可以获取至少一个预设投递对象的地理位置信息。
在一个实施例中,所述预设投递对象的客户端设备被设置为允许所述服务器获取定位信息,例如GPS定位信息。此时,所述服务器可以根据定位信息获取所述预设投递对象的地理位置信息,例如,所述地理位置信息可以包括所述预设投递对象的经度、纬度、海拔高度等。
在另一个实施例中,所述服务器可以根据所述预设投递对象的网络标识信息,获取所述地预设投递对象的地理位置信息。例如,用户登录账户信息中可以包含所述预设投递对象的网络标识信息,如登录IP地址信息,根据所述登录 IP地址信息可以确定所述预设投递对象的地理位置信息。
在其他实施例中,所述服务器还可以通过任何其他方式获取所述预设投递对象的地理位置信息,本申请在此不做限制。
S22:设置以所述客户端地理位置为起点的沿着所述资源投递方向上的目标接收区域;
本实施例中,可以沿着所述资源投递方向设置能够接收虚拟资源的目标接收区域。在本申请的一个实施例中,所述目标区域被设置为可以包括下述中的至少一种预设参数:扩张角度区间、投递距离、投递路线。
在一个实施例中,所述扩展角度区间可以包括以所述客户端所在地理位置为起点、以所述资源投递方向作为轴线的任意偏移角区间。例如,在直线上,所述扩展角度区间为0;在二维空间中,所述扩张角度区间可以包括以所述客户端所在地理位置为原点、以所述资源投递方向为坐标轴的任意平面上的角度区间。在一个典型的示例中,所述目标区域可以为扇形区域,例如在海拔高度为1米的水平面上,扩张角度的区间可以为[-15°,15°]、[-41°,37°]、[-180°,4°]等等;在三维空间中,所述目标接收区域可以包括以所述客户端所在地理位置为原点、以所述资源投递方向为坐标轴的规则或者不规则的椎体。三维空间的一个示例中,所述目标接收区域可以为圆锥体,所述扩张角度区间可以为圆锥顶角,如45°、87°、18°等等。在三维空间的另一个示例中,所述目标接收区域可以为规则棱锥体,所述扩张角度区间可以包括椎体顶角、侧边三角形顶角。在三维空间的另一些示例中,所述目标接收区域可以为不规则棱锥体,所述扩张角度区间可以包括椎体顶角区间、侧边三角形顶角区间等。在其他实施例中,所述目标区域还可以包括以所述客户端所在地理位置为原点、以所述资源投递方向为坐标轴的任意形状的区域,本申请在此不做限制。
在一个实施例中,所述投递距离可以包括以所述客户端所在地理位置为起点的最远投递距离。所述距离例如可以设置为3.7米、100米、2000米、无穷大等。
在一个实施例中,所述投递路线可以包括投递飞行路线。所述投递路线可以设置为直线、抛物线、S形曲线、Z形曲线、螺旋曲线等。当然,所述投递路线可以包括任意形态的曲线,本申请在此不做限制。
在本申请的另一个实施例中,所述目标区域的所述预设参数可以为用户自定义参数。具体地,用户可以在客户端选择或者输入预设参数的值。在一个实施例中,用户可以在客户端中用文字表示所述预设参数的值。在另一个实施例中,用户还可以用图形表示所述预设参数的值,例如,用户通过触摸屏画出抛物曲线作为所述投递路线。在其他任意实施例中,用户还可以通过任意方式自定义所述预设参数的参数值,本申请在此不做限制。
S23:根据所述地理位置信息,将地理位置位于所述目标接收区域中的至少一个投递对象作为目标投递对象。
本实施例中,所述服务器可以根据所述预设投递对象的地理位置信息,将地理位置位于所述目标接收区域中的至少一个投递对象作为目标投递对象。例如,在不考虑海拔高度的情况下,设置所述目标接收区域是以所述客户端所在地理位置为原点、以所述资源投递方向为坐标轴、扩张角度区间为[-15°,15°]的区域,那么,根据所述预设投递对象的经度、纬度,可以判断所述预设投递对象是否落入所述目标接收区域内,若判断结果为是,则确定所述预设投递对象为目标投递对象。
在本申请的另一个实施例中,进一步地,如图3所示,所述方法还可以包括:
S31:向所述目标投递对象发送资源投递通知消息;
S32:接收所述目标投递对象的答复消息;
S33:响应于所述答复消息,向所述目标投递对象投递虚拟资源。
本实施例中,所述服务器在确定所述目标投递对象之后,可以进行虚拟资源的投递。在一个实施例中,可以直接向所述目标投递对象预设数量的虚拟资源,例如,多个目标投递对象平均分配或者随机分配预设金额的红包。在另一个实施例中,所述虚拟资源的数量为预设数量,可以大于、等于、小于目标投 递对象的数量。在投递所述虚拟资源的过程中,所述目标投递对象只是具有领取所述虚拟资源的资格,而最终能不能领取得到取决于虚拟资源的数量与目标投递对象数量的比例。
在本实施例中,用户可以选择领取或者不领取所述虚拟资源,因此,可以在所述服务器与用户之间建立反馈机制,所述服务器可以根据用户的反馈确定是否发送虚拟资源至所述目标投递对象。具体地,所述服务器可以向所述目标投递对象发送资源投递通知消息,若所述目标投递对象的用户愿意接收所述虚拟资源,则可以通过所述目标投递对象返回答复消息。所述服务器可以接收所述目标投递对象的答复消息,并响应于所述答复消息,向所述目标投递对象投递虚拟资源。
对应于上述虚拟资源投递方法,本申请另一方面还提供一种服务器,如图4所示,所述服务器40可以包括:
投递方向获取单元41,用于响应于客户端的资源投递请求,获取所述客户端的资源投递方向;
目标投递对象确定单元42,用于根据至少一个预设投递对象的地理位置信息,从所述至少一个预设投递对象中确定位于所述资源投递方向上的目标投递对象。
为了能够清楚地示出本实施例中服务器与客户端之间的交互过程,本申请还提供一种虚拟资源的投递方法,图5是本申请提供的虚拟资源的投递方法的另一种实施例的方法流程图,如图5所示,所述方法可以包括:
S51:客户端发送资源投递请求;
S52:服务器接收所述资源投递请求;
S53:所述服务器响应于所述资源投递请求,获取所述客户端的资源投递方向;
S54:所述服务器根据至少一个预设投递对象的地理位置信息,从所述至少一个预设投递对象中确定位于所述资源投递方向上的目标投递对象。
对应于上述虚拟资源的投递方法,本申请另一方面还提供一种虚拟资源投递系统,所述系统包括:
客户端,用于发送资源投递请求;
服务器,用于接收所述资源投递请求;以及,用于响应于所述资源投递请求,获取所述客户端的资源投递方向;以及,用于根据至少一个预设投递对象的地理位置信息,从所述至少一个预设投递对象中确定位于所述资源投递方向上的目标投递对象。
本申请提供的一种虚拟资源投递方法及系统、服务器,可以根据至少一个预设投递对象的地理位置信息,从所述至少一个预设投递对象中确定位于资源投递方向上的目标投递对象,实现了向客户端指定方向进行资源投递的技术方法。相对于现有技术中资源投递方法的无方向性、用户无选择性,本申请的资源投递方法可以使得资源投递具有方向性,给用户提供更多的资源投递选择权,增强用户的使用体验感。
本申请另一方面还从客户端角度提出一种虚拟资源投递方法,与上述从服务器角度提出的虚拟资源投递方法S1-S2不同的地方在于:根据S1-S2,可以发现,确定目标对象的过程均是在服务器端完成的。而本实施例中,还可以由客户端自身完成目标对象的确定。具体地,可以参考图6,所述方法可以包括:
S61:获取至少一个预设投递对象的地理位置信息;
S62:确定资源投递方向;
S63:根据所述地理位置信息,从所述至少一个预设投递对象中确定位于所述资源投递方向上的目标投递对象。
本实施例中,所述客户端可以首先获取至少一个预设投递对象的地理位置 信息。如图7所示,在一个具体的实施例中,所述获取至少一个预设投递对象的地理位置信息可以包括:
S71:发送地理位置获取请求,所述地理位置获取请求中包括至少一个预设投递对象的标识信息;
S72:接收所述至少一个预设投递对象的地理位置信息。
本实施例中,所述客户端可以确定至少一个预设投递对象,所述预设投递对象可以由用户自由选择,也可以是预设用户群、预设通讯录中的成员。所述客户端在确定出所述预设投递对象之后,可以向所述服务器发送地理位置获取请求,所述地理位置获取请求中包括所述预设投递对象的标识信息,所述标识信息例如所述预设投递对象的用户账号信息等。
所述服务器可以响应于所述地理位置获取请求,根据所述预设投递对象的标识信息,获取并发送所述至少一个预设投递对象的地理位置信息。
在本实施例中,步骤S62-S63的实施方式可以参考步骤S2,本申请在此不再赘述。
在一个实施例中,如图8所示,所述客户端在确定所述目标投递对象之后,所述方法还可以包括:
S81:发送所述目标投递对象的标识信息;
S82:接收所述目标投递对象接收虚拟资源的通知消息。
本实施例中,所述客户端在确定所述目标投递对象之后,可以将后续的虚拟资源投递工作转移至所述服务器。具体的,所述客户端可以将所述目标投递对象的标识信息发送至所述服务器,所述标识信息例如所述目标投递对象的用户账号信息。所述服务器在接收到所述标识信息后,可以按照步骤S31-S33进行虚拟资源投递。若虚拟资源投递成功,所述服务器可以返回所述目标投递对象接收虚拟资源的通知消息,所述客户端在接收到所述通知消息之后,可以确定所述目标投递对象已成功接收虚拟资源。
对应于上述虚拟资源投递方法,本申请另一方面还提供一种客户端,如图9所示,所述客户端90可以包括:
地理位置获取单元91,用于获取至少一个预设投递对象的地理位置信息;
资源投递方向确定单元92,用于确定资源投递方向;
目标对象确定单元93,用于根据所述地理位置信息,从所述至少一个预设投递对象中确定位于所述资源投递方向上的目标投递对象。
为了能够清楚地示出本实施例中服务器与客户端之间的交互过程,本申请还提供一种虚拟资源的投递方法,图10是本申请提供的虚拟资源的投递方法的另一种实施例的方法流程图,如图10所示,所述方法可以包括:
S101:客户端发送地理位置获取请求,所述地理位置获取请求中包括至少一个预设投递对象的标识信息;
S102:所述服务器接收并响应于所述地理位置获取请求,根据所述标识信息,发送所述至少一个预设投递对象的地理位置信息;
S103:所述客户端接收所述地理位置信息,并确定资源投递方向;
S104:所述客户端根据所述地理位置信息,从所述至少一个预设投递对象中确定位于所述资源投递方向上的目标投递对象。
对应于上述虚拟资源的投递方法,本申请另一方面还提供一种虚拟资源投递系统,所述系统包括:
客户端,用于发送地理位置获取请求,所述地理位置获取请求中包括至少一个预设投递对象的标识信息;以及,用于接收所述地理位置信息,并确定资源投递方向;以及,用于根据所述地理位置信息,从所述至少一个预设投递对象中确定位于所述资源投递方向上的目标投递对象;
服务器,用于接收并响应于所述地理位置获取请求,根据所述标识信息,发送所述至少一个预设投递对象的地理位置信息。
本申请提供的一种虚拟资源投递方法及系统、客户端,可以根据至少一个预设投递对象的地理位置信息,从所述至少一个预设投递对象中确定位于资源投递方向上的目标投递对象,实现了向客户端指定方向进行资源投递的技术方法。相对于现有技术中资源投递方法的无方向性、用户无选择性,本申请的资源投递方法可以使得资源投递具有方向性,给用户提供更多的资源投递选择权,增强用户的使用体验感。
下面通过具体的应用场景说明本申请的实施例方法。
图11-13是本申请提供的场景1的示意图。闲暇时间,用户小王正在通过客户端A与大学同学在用户群B里玩“红包接龙”活动。在图11所示的中国地图中,客户端A的地理位置为北纬26.336164°,东经52.030018°。用户群B中的其他12个成员位于全国各个地方,现在轮到小王发红包。如图12所示的“发红包”用户界面1,小王设置分发总金额为10元,并将该10元金额分成5个红包分发。小王点击用户界面1中的接收区域设置按钮,所述用户界面1跳转至图3所示的“接收区域设置”用户界面2。如图13所示,所述目标接收区域的三个参数扩张角度区间、投递距离、投递路线均可以由用户自己选择。假设客户端A中默认所述目标接收区域只能是扇形或者扇形的组合,海拔高度不限。那么根据用户界面2所示的小王的选取,以客户端A的位置为原点,资源投递方向为坐标轴,扩张角度区间为[-9°,30°],投递距离设置为无穷大,投递路线为直线。当然,在其他的应用场景中,所述投递路线还可以设置为S型曲线、Z型曲线、抛物线等,所述投递路线还可以由用户自己绘制生成。
设置完成目标接收区域的参数之后,小王将客户端A指向西偏北9°的空间方向,并点击用户界面1中的发送红包按钮。此时,用户点击发送红包按钮可以触发所述客户端A向服务器发送资源投递请求,如图11所示,所述服务器根据S1-S2的实施方法,将客户端A指向的空间方向作为所述资源投递方向,还可以根据小王设置的目标接收区域的参数值,规划出如图11所示的目标接收区域。如图 11所示,服务器根据群成员1-12的客户端的地理坐标分布,筛选出群成员1、2、3、6、7、8的客户端位于所述目标接收区域内,因此,将所述群成员1、2、3、6、7、8的客户端作为目标投递对象。
图14是本申请提供的场景2的示意图。图14是某公司的4层写字楼结构图,在一个由14个员工组成的用户群里,正在进行“红包接龙”活动。现在轮到14号员工发送红包,14号员工设置扩张角度区间为[-30°,30°],投递距离为10米。设置完成后,14号员工将客户端B对准上方与水平面成80°角的方向,并发送红包。服务器响应于客户端B的资源投递请求,规划出如图14所示的目标接收区域,根据群成员1-14的客户端的地理坐标分布,筛选出只有4、8、9、10号员工的客户端位于所述目标接收区域内,因此,将4、8、9、10号员工的客户端作为目标投递对象。
在20世纪90年代,对于一个技术的改进可以很明显地区分是硬件上的改进(例如,对二极管、晶体管、开关等电路结构的改进)还是软件上的改进(对于方法流程的改进)。然而,随着技术的发展,当今的很多方法流程的改进已经可以视为硬件电路结构的直接改进。设计人员几乎都通过将改进的方法流程编程到硬件电路中来得到相应的硬件电路结构。因此,不能说一个方法流程的改进就不能用硬件实体模块来实现。例如,可编程逻辑器件(Programmable Logic Device,PLD)(例如现场可编程门阵列(Field Programmable Gate Array,FPGA))就是这样一种集成电路,其逻辑功能由用户对器件编程来确定。由设计人员自行编程来把一个数字系统“集成”在一片PLD上,而不需要请芯片制造厂商来设计和制作专用的集成电路芯片。而且,如今,取代手工地制作集成电路芯片,这种编程也多半改用“逻辑编译器(logic compiler)”软件来实现,它与程序开发撰写时所用的软件编译器相类似,而要编译之前的原始代码也得用特定的编程语言来撰写,此称之为硬件描述语言(Hardware Description Language,HDL),而HDL也并非仅有一种,而是有许多种,如ABEL(Advanced Boolean Expression  Language)、AHDL(Altera Hardware Description Language)、Confluence、CUPL(Cornell University Programming Language)、HDCal、JHDL(Java Hardware Description Language)、Lava、Lola、MyHDL、PALASM、RHDL(Ruby Hardware Description Language)等,目前最普遍使用的是VHDL(Very-High-Speed Integrated Circuit Hardware Description Language)与Verilog。本领域技术人员也应该清楚,只需要将方法流程用上述几种硬件描述语言稍作逻辑编程并编程到集成电路中,就可以很容易得到实现该逻辑方法流程的硬件电路。
控制器可以按任何适当的方式实现,例如,控制器可以采取例如微处理器或处理器以及存储可由该(微)处理器执行的计算机可读程序代码(例如软件或固件)的计算机可读介质、逻辑门、开关、专用集成电路(Application Specific Integrated Circuit,ASIC)、可编程逻辑控制器和嵌入微控制器的形式,控制器的例子包括但不限于以下微控制器:ARC 625D、Atmel AT91SAM、Microchip PIC18F26K20以及Silicone Labs C8051F320,存储器控制器还可以被实现为存储器的控制逻辑的一部分。本领域技术人员也知道,除了以纯计算机可读程序代码方式实现控制器以外,完全可以通过将方法步骤进行逻辑编程来使得控制器以逻辑门、开关、专用集成电路、可编程逻辑控制器和嵌入微控制器等的形式来实现相同功能。因此这种控制器可以被认为是一种硬件部件,而对其内包括的用于实现各种功能的装置也可以视为硬件部件内的结构。或者甚至,可以将用于实现各种功能的装置视为既可以是实现方法的软件模块又可以是硬件部件内的结构。
上述实施例阐明的系统、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。具体的,计算机例如可以为个人计算机、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何设备的组合。
为了描述的方便,描述以上装置时以功能分为各种单元分别描述。当然, 在实施本申请时可以把各单元的功能在同一个或多个软件和/或硬件中实现。
本领域内的技术人员应明白,本发明的实施例可提供为方法、系统、或计算机程序产品。因此,本发明可采用完全硬件实施例、完全软件实施例、或结合软件和硬件方面的实施例的形式。而且,本发明可采用在一个或多个其中包含有计算机可用程序代码的计算机可用存储介质(包括但不限于磁盘存储器、CD-ROM、光学存储器等)上实施的计算机程序产品的形式。
本发明是参照根据本发明实施例的方法、设备(系统)、和计算机程序产品的流程图和/或方框图来描述的。应理解可由计算机程序指令实现流程图和/或方框图中的每一流程和/或方框、以及流程图和/或方框图中的流程和/或方框的结合。可提供这些计算机程序指令到通用计算机、专用计算机、嵌入式处理机或其他可编程数据处理设备的处理器以产生一个机器,使得通过计算机或其他可编程数据处理设备的处理器执行的指令产生用于实现在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的功能的装置。
这些计算机程序指令也可存储在能引导计算机或其他可编程数据处理设备以特定方式工作的计算机可读存储器中,使得存储在该计算机可读存储器中的指令产生包括指令装置的制造品,该指令装置实现在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的功能。
这些计算机程序指令也可装载到计算机或其他可编程数据处理设备上,使得在计算机或其他可编程设备上执行一系列操作步骤以产生计算机实现的处理,从而在计算机或其他可编程设备上执行的指令提供用于实现在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的功能的步骤。
在一个典型的配置中,计算设备包括一个或多个处理器(CPU)、输入/输出接口、网络接口和内存。
内存可能包括计算机可读介质中的非永久性存储器,随机存取存储器(RAM)和/或非易失性内存等形式,如只读存储器(ROM)或闪存(flash RAM)。内存是计算机可读介质的示例。
计算机可读介质包括永久性和非永久性、可移动和非可移动媒体可以由任何方法或技术来实现信息存储。信息可以是计算机可读指令、数据结构、程序的模块或其他数据。计算机的存储介质的例子包括,但不限于相变内存(PRAM)、静态随机存取存储器(SRAM)、动态随机存取存储器(DRAM)、其他类型的随机存取存储器(RAM)、只读存储器(ROM)、电可擦除可编程只读存储器(EEPROM)、快闪记忆体或其他内存技术、只读光盘只读存储器(CD-ROM)、数字多功能光盘(DVD)或其他光学存储、磁盒式磁带,磁带磁磁盘存储或其他磁性存储设备或任何其他非传输介质,可用于存储可以被计算设备访问的信息。按照本文中的界定,计算机可读介质不包括暂存电脑可读媒体(transitory media),如调制的数据信号和载波。
还需要说明的是,术语“包括”、“包含”或者其任何其他变体意在涵盖非排他性的包含,从而使得包括一系列要素的过程、方法、商品或者设备不仅包括那些要素,而且还包括没有明确列出的其他要素,或者是还包括为这种过程、方法、商品或者设备所固有的要素。在没有更多限制的情况下,由语句“包括一个……”限定的要素,并不排除在包括所述要素的过程、方法、商品或者设备中还存在另外的相同要素。
本领域技术人员应明白,本申请的实施例可提供为方法、系统或计算机程序产品。因此,本申请可采用完全硬件实施例、完全软件实施例或结合软件和硬件方面的实施例的形式。而且,本申请可采用在一个或多个其中包含有计算机可用程序代码的计算机可用存储介质(包括但不限于磁盘存储器、CD-ROM、光学存储器等)上实施的计算机程序产品的形式。
本申请可以在由计算机执行的计算机可执行指令的一般上下文中描述,例如程序模块。一般地,程序模块包括执行特定任务或实现特定抽象数据类型的例程、程序、对象、组件、数据结构等等。也可以在分布式计算环境中实践本申请,在这些分布式计算环境中,由通过通信网络而被连接的远程处理设备来执行任务。在分布式计算环境中,程序模块可以位于包括存储设备在内的本地 和远程计算机存储介质中。
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,对于系统实施例而言,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。
以上所述仅为本申请的实施例而已,并不用于限制本申请。对于本领域技术人员来说,本申请可以有各种更改和变化。凡在本申请的精神和原理之内所作的任何修改、等同替换、改进等,均应包含在本申请的权利要求范围之内。

Claims (17)

  1. 一种虚拟资源投递方法,其特征在于,所述方法包括:
    响应于客户端的资源投递请求,获取所述客户端的资源投递方向;
    根据至少一个预设投递对象的地理位置信息,从所述至少一个预设投递对象中确定位于所述资源投递方向上的目标投递对象。
  2. 根据权利要求1所述的方法,其特征在于,所述资源投递方向包括下述中的一种:客户端的空间指向、用户自定义方向、预先设置方向。
  3. 根据权利要求1所述的方法,其特征在于,所述根据至少一个预设投递对象的地理位置信息,从所述至少一个预设投递对象中确定位于所述资源投递方向上的目标投递对象包括:
    获取至少一个预设投递对象的地理位置信息;
    设置以所述客户端地理位置为起点的沿着所述资源投递方向上的目标接收区域;
    根据所述地理位置信息,将地理位置位于所述目标接收区域中的至少一个投递对象作为目标投递对象。
  4. 根据权利要求3所述的方法,其特征在于,所述目标区域被设置为包括下述中的至少一种预设参数:扩张角度区间、投递距离、投递路线。
  5. 根据权利要求4所述的方法,其特征在于,所述目标区域的所述预设参数为用户自定义参数。
  6. 根据权利要求3所述的方法,其特征在于,所述获取至少一个预设投递对象的地理位置信息包括:
    获取至少一个预设投递对象的网络标识信息;
    根据所述网络标识信息确定所述预设投递对象的地理位置信息。
  7. 根据权利要求1所述的方法,其特征在于,在从所述至少一个预设投递对象中确定位于所述资源投递方向上的目标投递对象之后,所述方法还包括:
    向所述目标投递对象发送资源投递通知消息;
    接收所述目标投递对象的答复消息;
    响应于所述答复消息,向所述目标投递对象投递虚拟资源。
  8. 一种虚拟资源投递方法,其特征在于,所述方法包括:
    获取至少一个预设投递对象的地理位置信息;
    确定资源投递方向;
    根据所述地理位置信息,从所述至少一个预设投递对象中确定位于所述资源投递方向上的目标投递对象。
  9. 根据权利要求8所述的方法,其特征在于,所述获取至少一个预设投递对象的地理位置信息包括:
    发送地理位置获取请求,所述地理位置获取请求中包括至少一个预设投递对象的标识信息;
    接收所述至少一个预设投递对象的地理位置信息。
  10. 根据权利要求8所述的方法,其特征在于,所述从所述至少一个预设投递对象中确定位于所述资源投递方向上的目标投递对象包括:
    设置沿着所述资源投递方向上的目标接收区域;
    根据所述地理位置信息,将地理位置位于所述目标接收区域中的至少一个投递对象作为目标投递对象。
  11. 根据权利要求8所述的方法,其特征在于,在从所述至少一个预设投递对象中确定位于所述资源投递方向上的目标投递对象之后,所述方法还包括:
    发送所述目标投递对象的标识信息;
    接收所述目标投递对象接收虚拟资源的通知消息。
  12. 一种服务器,其特征在于,所述服务器包括:
    投递方向获取单元,用于响应于客户端的资源投递请求,获取所述客户端的资源投递方向;
    目标投递对象确定单元,用于根据至少一个预设投递对象的地理位置信息,从所述至少一个预设投递对象中确定位于所述资源投递方向上的目标投递对 象。
  13. 一种客户端,其特征在于,所述客户端包括:
    地理位置获取单元,用于获取至少一个预设投递对象的地理位置信息;
    资源投递方向确定单元,用于确定资源投递方向;
    目标对象确定单元,用于根据所述地理位置信息,从所述至少一个预设投递对象中确定位于所述资源投递方向上的目标投递对象。
  14. 一种虚拟资源投递方法,其特征在于,所述方法包括:
    客户端发送资源投递请求;
    服务器接收所述资源投递请求;
    所述服务器响应于所述资源投递请求,获取所述客户端的资源投递方向;
    所述服务器根据至少一个预设投递对象的地理位置信息,从所述至少一个预设投递对象中确定位于所述资源投递方向上的目标投递对象。
  15. 一种虚拟资源投递方法,其特征在于,所述方法包括:
    客户端发送地理位置获取请求,所述地理位置获取请求中包括至少一个预设投递对象的标识信息;
    所述服务器接收并响应于所述地理位置获取请求,根据所述标识信息,发送所述至少一个预设投递对象的地理位置信息;
    所述客户端接收所述地理位置信息,并确定资源投递方向;
    所述客户端根据所述地理位置信息,从所述至少一个预设投递对象中确定位于所述资源投递方向上的目标投递对象。
  16. 一种虚拟资源投递系统,其特征在于,所述系统包括:
    客户端,用于发送资源投递请求;
    服务器,用于接收所述资源投递请求;以及,用于响应于所述资源投递请求,获取所述客户端的资源投递方向;以及,用于根据至少一个预设投递对象的地理位置信息,从所述至少一个预设投递对象中确定位于所述资源投递方向上的目标投递对象。
  17. 一种虚拟资源投递系统,其特征在于,所述系统包括:
    客户端,用于发送地理位置获取请求,所述地理位置获取请求中包括至少一个预设投递对象的标识信息;以及,用于接收所述地理位置信息,并确定资源投递方向;以及,用于根据所述地理位置信息,从所述至少一个预设投递对象中确定位于所述资源投递方向上的目标投递对象;
    服务器,用于接收并响应于所述地理位置获取请求,根据所述标识信息,发送所述至少一个预设投递对象的地理位置信息。
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