WO2014063320A1 - Procédé, terminal, serveur et système pour envoyer et recevoir des informations sémantiques - Google Patents

Procédé, terminal, serveur et système pour envoyer et recevoir des informations sémantiques Download PDF

Info

Publication number
WO2014063320A1
WO2014063320A1 PCT/CN2012/083451 CN2012083451W WO2014063320A1 WO 2014063320 A1 WO2014063320 A1 WO 2014063320A1 CN 2012083451 W CN2012083451 W CN 2012083451W WO 2014063320 A1 WO2014063320 A1 WO 2014063320A1
Authority
WO
WIPO (PCT)
Prior art keywords
information
scenario
identifier
user
message
Prior art date
Application number
PCT/CN2012/083451
Other languages
English (en)
Chinese (zh)
Inventor
李自军
秦伟华
Original Assignee
华为终端有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 华为终端有限公司 filed Critical 华为终端有限公司
Priority to CN201280003613.XA priority Critical patent/CN103430514B/zh
Priority to PCT/CN2012/083451 priority patent/WO2014063320A1/fr
Publication of WO2014063320A1 publication Critical patent/WO2014063320A1/fr

Links

Classifications

    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F16/00Information retrieval; Database structures therefor; File system structures therefor
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02DCLIMATE CHANGE MITIGATION TECHNOLOGIES IN INFORMATION AND COMMUNICATION TECHNOLOGIES [ICT], I.E. INFORMATION AND COMMUNICATION TECHNOLOGIES AIMING AT THE REDUCTION OF THEIR OWN ENERGY USE
    • Y02D10/00Energy efficient computing, e.g. low power processors, power management or thermal management

Definitions

  • the present invention relates to the field of information technology, and in particular, to a semantic information sending method, a receiving method, a terminal device, a scenario server, and a system. Background technique
  • the application of the terminal device often uses sensors to acquire and process the information, for example: automatically switching the theme of the terminal device according to whether the terminal device is at home or at the workplace; and determining whether the terminal device should be hands-free or handheld according to whether the current terminal device is in motion. Answer the phone and more.
  • more terminal devices will use environmental information to enhance the intelligent interaction capabilities of terminal devices with users. For example, when the user makes a call, the camera detects that the user's face is not very good, and can remind the user to pay attention to the exercise, and then recommend an application for calculating the daily calorie consumption.
  • the technical solution provides a semantic information sending method, a receiving method, a terminal device, a scenario server and a system, which are used to reduce the repeated analysis of the semantic information and reduce the terminal device without improving the terminal device and the scenario server hardware. Burden, while reducing the power consumption of the terminal equipment.
  • a method for transmitting a semantic information comprising: acquiring environment information, where the environment information is information about a self-environment and/or a surrounding environment of the terminal device; analyzing the environment information, generating semantic information,
  • the semantic information is information with application value that can be understood by the user generated by analyzing the environmental information; and the first message carrying the semantic information is sent to the scenario server.
  • the first message further includes: an information source identifier, where the information source identifier is used to identify the source of the semantic information.
  • a method for receiving a scenario information comprising: receiving, according to a subscription confirmation information acquired in advance, a second message that is sent by a scenario server and carrying a scenario identifier, where the scenario identifier is obtained by the scenario server according to the semantic information. Used to identify a scenario; the second message is sent to the application as a broadcast message.
  • the method for obtaining the subscription confirmation information includes: sending the query request information, where the query request information specifically includes: the identifier of the queried party, the querier user identifier, The querier user identifier is used to identify the user who sends the query request information; and the query result information includes: the scenario identifier corresponding to the scenario that the user corresponding to the querier user identifier has the right to subscribe to; And sending the subscription request information according to the query result information; receiving and storing the subscription confirmation information, where the subscription determination information specifically includes: the scenario identifier that is subscribed, the subscriber device identifier, and the subscriber device identifier is used to identify A device that receives the second message.
  • the second message specifically includes: a context label, where the context label is a group of descriptions The words of the scene.
  • a method for receiving a semantic information comprising: receiving a first message carrying semantic information, wherein the semantic information is information of an application value that can be understood by a user generated by analyzing the environmental information;
  • the stored scenario template obtains the scenario identifier; and sends the second message carrying the scenario identifier according to the pre-acquired subscription confirmation information; wherein the scenario template is formatted text.
  • the scenario template specifically includes: a scenario identifier, a scenario expression, an information source identifier, and a context label.
  • the method for acquiring a scenario identifier according to the pre-stored scenario template specifically includes: according to the scenario in the scenario template a scenario expression, analyzing the obtained third-party service information and/or the semantic information, and acquiring the scenario identifier; the analyzing method specifically includes: assembling the group according to the information source identifier in the scenario template according to different granularities analysis.
  • the method for obtaining the subscription confirmation information includes: receiving a query request
  • the query request information specifically includes: an queried party identifier, a querier user identifier, the querier user identifier is used to identify a user who sends the query request information, and sends query result information, where the query result information specifically includes And the subscription confirmation information is sent and stored, where the subscription confirmation information specifically includes: the scenario identifier that is subscribed to: the scenario identifier corresponding to the scenario that the user corresponding to the user ID is subscribed to; And a subscriber device identifier, where the subscriber device identifier is used to identify a device that receives the second message.
  • the method before the sending the query result information further includes: according to the query request The information is sent, and the authorization request information is sent; the authorization confirmation information is received; and the scenario identifier corresponding to the scenario that the user corresponding to the user identifier of the querying party has the right to subscribe to is obtained by querying the pre-stored scenario table according to the authorization confirmation information.
  • the method for obtaining the scenario table includes: manually updating an acquisition, where the method for obtaining the manual update includes: storing the scenario identifier And the information source identifier, the information source identifier includes: a device identifier, a user identifier, a group identifier, and an automatic update acquisition, where the method for obtaining the automatic update includes: acquiring the scenario identifier according to the pre-stored scenario template Thereafter, if the context table does not store the relationship between the context identifier and the information source identifier, the relationship is stored.
  • a terminal device comprising: an acquiring unit, configured to acquire environment information, information of a terminal device's own environment and/or surrounding environment, the environment information is a self-environment and/or surrounding of the terminal device The information of the environment; the analyzing unit, configured to receive the information that is generated by the user that is generated by analyzing the environment information, and the first sending unit is configured to receive the information generated by the analyzing unit Descriptive information, and sending a first message carrying the semantic information to the context server.
  • a terminal device includes: a first receiving unit, configured to receive, according to a subscription confirmation information acquired in advance, a second message that is sent by a scenario server and carries a scenario identifier, where the scenario identifier is used to identify a broadcast unit, configured to receive the first receiving unit
  • the second information is described, and the second message is sent to the application in the form of a broadcast message.
  • the terminal device further includes: a first sending unit, configured to send query request information, where the query request information specifically includes: the queried party identifier, the querier user identifier The querier user identifier is used to identify the user who sends the query request information; the second receiving unit is configured to receive the query result information, where the query result information specifically includes: the user corresponding to the querier user identifier has the right The scenario identifier corresponding to the subscribed scenario; the second sending unit is configured to receive the query result of the second receiving unit, and send subscription request information according to the query result information; Receiving the subscription confirmation information, where the subscription determination information specifically includes: the scenario identifier of the subscription, the subscriber device identifier, the subscriber device identifier is used to identify the device that receives the second message, and the storage unit is configured to: Receiving the subscription confirmation information of the third receiving unit, and storing the subscription confirmation information.
  • a first sending unit configured to send query request information, where the query request information specifically includes: the queried party identifier, the querier
  • a terminal device comprising a touch screen, a CPU, a memory, an RF circuit, a sensor, an audio circuit, a speaker, an I/O subsystem, wherein the sensor is configured to acquire environmental information, the environment of the terminal device, and/or The information about the surrounding environment is information about the environment of the terminal device and/or the surrounding environment; the CPU is configured to receive the environment information acquired by the sensor, and process the environment information to generate semantic information; The RF circuit is configured to receive the semantic information generated by the analysis unit, and send a first message carrying the semantic information to a scenario server.
  • the seventh aspect is a first aspect.
  • a scenario server includes: a first receiving unit, configured to receive the semantic information carrying the semantic information is information with application value that can be understood by a user generated by analyzing the environment information; Receiving the first cancellation of the first receiving unit And acquiring the scenario identifier according to the pre-stored scenario template, where the scenario template is formatted text; the first sending unit is configured to receive the scenario identifier acquired by the analysis unit, and confirm according to the pre-acquired subscription Information, sending a second message carrying the scenario identifier.
  • the analyzing unit is configured to: analyze the semantic information and/or obtain according to the scenario expression in the scenario template Third-party service information, get the situation ID.
  • the scenario server further includes: a second receiving unit, configured to receive query request information, the query request The information includes: the identifier of the queried party, the querier user identifier, the user identifier of the querier is used to identify the user who sends the query request information, and the second sending unit is configured to send query result information, where the query result information is specific.
  • the third receiving unit is configured to receive the subscription request information, and the third sending unit is configured to send the subscription confirmation information, where the querying user identifier corresponds to the context identifier corresponding to the scenario that the user has the right to subscribe to;
  • the subscription confirmation information specifically includes: the scenario identifier of the subscription, the subscriber device identifier, the subscriber device identifier is used to identify the device that receives the second message, and the storage unit is configured to receive the third sending unit.
  • the subscription confirms the information and stores the subscription confirmation information.
  • a server comprising a CPU, a memory, an RF circuit, an I/O subsystem, and a power management chip, wherein the RF circuit is configured to receive the semantic information carrying the semantic information by using the environment information
  • the CPU is configured to receive the first message of the RF circuit, and obtain a scenario identifier according to a pre-stored scenario template, where the scenario template is a formatted text;
  • the RF circuit is further configured to receive the The scenario identifier sends a second message carrying the scenario identifier according to the subscription confirmation information acquired in advance.
  • a system includes: a terminal device, configured to send, according to the acquired environmental information, a first message carrying semantic information to a scenario server, and/or receive a scenario identifier sent by the scenario server a second message, the second message is sent to the application in the form of a broadcast message; the scenario server is configured to receive the first message, obtain the scenario identifier according to the scenario template, and send the second message to the terminal device.
  • the technical solution provided by the application provides a semantic information sending method, a receiving method, a terminal device, a scenario server and a system, so that the analysis result of the semantic information can be used across applications, across terminal devices, or even across users, by reducing Repeated analysis of semantic information reduces the burden on the terminal device processor, reduces the power consumption of the terminal device, and enhances the intelligent interaction capability between the terminal device and the user.
  • the drawings used in the embodiments will be briefly described below. Obviously, the drawings in the following description are Some embodiments of the invention may also be used to obtain other drawings based on these drawings without departing from the prior art.
  • FIG. 1 is a flowchart of a method for sending semantic information according to Embodiment 1 of the present invention
  • FIG. 2 is a flowchart of a method for receiving context information according to Embodiment 2 of the present invention
  • FIG. 3 is a flowchart of a method for acquiring a subscription confirmation message, a packet, and a method according to Embodiment 2 of the present invention
  • FIG. 5 is a flow chart of an implementation manner of obtaining subscription confirmation information according to Embodiment 3 of the present invention. Cheng Tumine
  • FIG. 6 is a flowchart of another implementation manner of a method for acquiring subscription confirmation information according to Embodiment 3 of the present invention.
  • FIG. 7 is a schematic structural diagram of a terminal device according to Embodiment 4 of the present invention.
  • FIG. 8 is a schematic structural diagram of a terminal device according to Embodiment 5 of the present invention.
  • FIG. 9 is a schematic structural diagram of a scenario server according to Embodiment 6 of the present invention.
  • Figure 10 is a schematic structural view of a system according to Embodiment 7 of the present invention.
  • FIG. 11 is a schematic structural diagram of a mobile phone according to Embodiment 8 of the present invention.
  • Figure 12 is a block diagram showing the structure of a scenario server according to Embodiment 10 of the present invention.
  • the term "comprising”, used herein, is intended to mean the presence of the features, the whole, the steps, the operation, the components and / The presence or addition of components, components, and/or groups thereof.
  • the terminal device includes but is not limited to a terminal device and a personal digital assistant.
  • Example 1 Personal Digital Assistant, PDA, a tablet, a portable device (for example, a portable computer), a desktop computer, an ATM (Automatic Teller Machine), and the like are not limited in the embodiment of the present invention.
  • PDA Personal Digital Assistant
  • a tablet for example, a portable computer
  • a desktop computer for example, a portable computer
  • an ATM Automatic Teller Machine
  • FIG. 1 is a flowchart of a method for sending semantic information according to Embodiment 1 of the present invention.
  • a method for sending a semantic information may specifically include: S101: Acquiring environment information, where the environment information is information about a terminal device's own environment and/or surrounding environment.
  • terminal devices have a wealth of sensors, such as: cameras, accelerometers, gravity sensors, electronic compasses, object proximity sensors, position sensors, ambient light sensors, and more.
  • the terminal device uses the sensor to obtain information about the terminal device's own environment and/or the surrounding environment. This information is environmental information.
  • Environmental information is abstract digitized and/or characterized information acquired by the terminal device sensor.
  • the acquisition of the environmental information is not performed all the time, but when it is triggered, the environmental information is acquired. For example, if the mobile phone is in a stationary state, and then the user picks up the mobile phone and walks or runs with the mobile phone, the acceleration sensor detects a change in the state of the mobile phone, that is, is triggered, and then acquires environmental information.
  • the semantic information is information that is applicable to the user that can be understood by analyzing the environment information.
  • the semantic information is understood by a user generated by analyzing the environment information.
  • the terminal device can generate semantic information according to the environmental information acquired by the sensor, and the semantic information is information with application value that can be understood by the user generated by analyzing the environmental information.
  • the generated semantic information is user-understandable information, and information that can be used by the application, for example, information about the intensity of light around the terminal device, temperature information, flow density information, geographic location.
  • the information or the terminal device is in the horizontal state information, the tilt state information, and the like.
  • the method for generating the semantic information by the sensor of the terminal device according to the environment information is as follows: First, the position sensor
  • the location sensor of the terminal device acquires the location of the terminal device according to environmental information such as latitude and longitude, for example, the terminal device is in Shanghai between 13:00 and 21:00 on April 1, 2012.
  • the acceleration sensor of the terminal device uses the environmental information such as speed and acceleration to obtain the rapid movement of the terminal device on April 1, 2012 from 21:00 to 22:00.
  • the above is the face information detected and analyzed by the camera.
  • the test results are normal, smile, good health
  • the first message carrying the semantic information may be through TCP (Transmission Control Protocol), HTTP (Hypertext Transfer Protocol), HTTPS (Hypertext Transfer Protocol, Hypertext Transfer Protocol Secure) Formatted message implementations such as XML (Extensible Markup Language), SOAP (Simple Object Access Protocol), etc., can be formatted messages in XML, SOAP, REST, etc.
  • TCP Transmission Control Protocol
  • HTTP Hypertext Transfer Protocol
  • HTTPS Hypertext Transfer Protocol Secure
  • XML Extensible Markup Language
  • SOAP Simple Object Access Protocol
  • the semantic information is carried in and sent to the context server.
  • first, second, etc. may be used to describe various messages in the embodiments of the present invention, such information should not be limited to these terms. These terms are only used to distinguish messages from each other.
  • the first message may also be used without departing from the scope of the embodiments of the present invention.
  • the second message may also be referred to as the first message.
  • the embodiment of the present invention reduces the burden of the terminal device processor, reduces the power consumption of the terminal device, and improves the intelligent interaction capability of the terminal device and the user by reducing the repeated analysis of the semantic information.
  • the first message further includes: an information source identifier.
  • the information source identifier is used to identify the source of the semantic information. It should be understood that the source of the semantic information may be from a terminal device, a plurality of terminals of a user, or multiple users. Make restrictions. For different information sources, the information source identifier can correspond to the terminal device, corresponding to the user, and can also correspond to the group.
  • the embodiment of the invention uses a semantic information sending method, so that the analysis result of the semantic information can be used across applications, across terminal devices, or even across users, reducing the burden on the terminal device processor by reducing the repeated analysis of semantic information. , reducing the power consumption of the terminal device, and improving the intelligent interaction capability between the terminal device and the user.
  • Example 2
  • FIG. 2 is a flowchart of a method for receiving context information according to Embodiment 2 of the present invention.
  • a method for receiving a scenario information may include:
  • S201 Receive, according to the subscription confirmation information acquired in advance, a second message that is sent by the scenario server and carries the scenario identifier, where the scenario identifier is obtained by the scenario server according to the semantic information, and is used to identify the scenario.
  • the subscription confirmation message is pre-acquired, that is, the user subscribes to the scenario server according to the needs of the user, and the scenario server confirms which scenarios the device of the user can subscribe according to the permission of the user, and the scenario is identified by the scenario identifier.
  • the scenario server After the subscription process is completed, after the scenario server acquires the subscribed scenario, the user device receives the second message sent by the scenario server that carries the scenario identifier.
  • the second message carrying the scenario identifier may be implemented by using a formatted message such as XML, SOAP, or the like over a protocol such as TCP, HTTP, or HTTPS, and carrying the scenario in a formatted message such as XML, SOAP, or REST. Logo to achieve.
  • a formatted message such as XML, SOAP, or the like over a protocol such as TCP, HTTP, or HTTPS
  • a formatted message such as XML, SOAP, or REST.
  • first, second, etc. may be used to describe various messages in the embodiments of the present invention, such information should not be limited to these terms. These terms are only used to distinguish messages from each other.
  • first message may also be referred to as a second message without departing from the scope of the embodiments of the present invention.
  • second message may also be referred to as a first message.
  • Sending the second message to the application in the form of a broadcast message where the broadcast is a manner of sending a message, sending a message to all applications of the terminal device, and the application selectively receives according to its own needs.
  • the message The manner in which the terminal device broadcasts the second message, and the manner in which the broadcast message is provided by the operating system of the terminal is specifically described in the operating system development guide.
  • the notification function of the Android system and the local notification function of the Apple iOS system can all send the second message to the application in the form of a broadcast message.
  • the embodiment of the invention adopts a scenario information receiving method method, reduces the burden of the terminal device processor by reducing the repeated analysis of the semantic information, reduces the power consumption of the terminal device, and improves the intelligent interaction capability between the terminal device and the user.
  • the notification function of the Android system and the local notification function of the Apple iOS system can all send the second message to the application in the form of a broadcast message.
  • FIG. 3 is a flowchart of a method for acquiring a subscription confirmation message, a packet, and a method according to Embodiment 2 of the present invention.
  • the method for obtaining the subscription confirmation information in step S201 specifically includes:
  • sending query request information where the query request information specifically includes: an queried party identifier, a querier user identifier, and the querier user identifier is used to identify a user who sends the query request information.
  • the terminal device sends the query request information to the scenario server, where the query request information specifically includes: the identifier of the queried party, and the querier user identifier.
  • the queried party user identifier is used to identify the queried party, and the queried party can generate semantic information and send the semantic information to the context server.
  • the queried party may be one device or multiple devices of the terminal device user, one device or multiple devices of the third party user, or may be a certain group.
  • the querying party user identifier is used to identify a user of the terminal device that sends the query request information.
  • the query result information is received, where the query result information specifically includes: the scenario identifier corresponding to the scenario that the user corresponding to the user identifier of the querying party has the right to subscribe to.
  • the terminal device receives the query result information sent by the scenario server, where the query result information includes: the scenario identifier corresponding to the scenario that the user corresponding to the queryer user identifier has the right to subscribe to.
  • 52013 Send subscription request information according to the query result information.
  • the user can know which scenarios the terminal device can subscribe to.
  • the user subscribes to the scenario according to his or her own needs, preferences, etc., that is, sends subscription request information.
  • the subscription request information may include a context identifier that the user needs to subscribe to the scenario and a device identity of the subscriber.
  • the device identifier of the subscriber is used to identify a device that subscribes to the scenario corresponding to the scenario identifier.
  • S2014 receiving and storing the subscription confirmation information, where the subscription determination information specifically includes: the scenario identifier of the subscription, the subscriber device identifier, and the subscriber device identifier is used to identify the device that receives the second message.
  • the subscription determination information specifically includes: the scenario identifier that is subscribed by the scenario server and the device identifier of the terminal device.
  • the terminal device After receiving the subscription confirmation information, the terminal device stores the subscription confirmation information.
  • the second message in step S201 further includes: a context tag, the context tag being a set of words describing the scenario.
  • the second message includes a contextual tag, which is a set of words that describe the context.
  • the scenario label may be sent to the terminal device by using the second message, or may be sent to the terminal device without using the second message, but stored in the terminal device, and the terminal device identifies the scenario identifier according to the scenario. Get the corresponding context label.
  • the embodiment of the present invention uses a scenario information receiving method, so that the analysis result of the semantic information can be used across applications, across terminal devices, or even across users, reducing the burden on the terminal device processor by reducing the repeated analysis of semantic information. , reducing the power consumption of the terminal device, and improving the intelligent interaction capability between the terminal device and the user.
  • Example 3
  • Embodiment 4 is a flow chart of a method for receiving semantic information according to Embodiment 3 of the present invention.
  • a semantic information receiving method includes:
  • S301 Receive a first message carrying semantic information, where the semantic information is analyzed by using the environment.
  • the information generated by the user can understand the application value information.
  • the scenario server receives a first message carrying semantic information, and the semantic information is semantic information generated by the terminal by analyzing the environment information.
  • the semantic information is generated by the terminal and sent to the context server over the network.
  • the scenario template is formatted text.
  • the scenario template is pre-stored in the scenario server, and the scenario template is formatted text, which is a definition of a scenario, and the semantic information received by the scenario server satisfies the condition of one or more scenarios in the scenario template, Obtain one or more scenarios, the scenarios being identified by a contextual identifier. Based on pre-stored context templates, contextual identifiers can be obtained.
  • S303 Send a second message carrying the scenario identifier according to the subscription confirmation information acquired in advance.
  • the scenario server Based on the pre-acquired subscription confirmation information, the scenario server sends a second message carrying the context indicator.
  • the subscription confirmation message is pre-acquired, and the scenario server informs the user of the scenario that the user can subscribe according to the user's permission, and then determines the scenario of the user's device subscription according to the user's needs, and the scenario is identified by the scenario identifier.
  • the second message carrying the scenario identifier is sent to inform the acquisition of the scenario.
  • the second message carrying the scenario identifier may be implemented by using a formatted message such as XML, SOAP or the like on a protocol such as TCP, HTTP, or HTTPS, and carrying the scenario identifier in a formatted message such as XML or SOAP.
  • a formatted message such as XML, SOAP or the like on a protocol such as TCP, HTTP, or HTTPS
  • the scenario server does not send the second message carrying the scenario identifier to the user equipment, so the user equipment has a problem of repeated analysis of semantic information.
  • first, second, etc. may be used to describe various messages in the embodiments of the present invention, such information should not be limited to these terms. These terms are only used to distinguish messages from each other. example
  • the first message may also be referred to as a second message without departing from the scope of the embodiments of the present invention.
  • the second message may also be referred to as a first message.
  • the embodiment of the present invention reduces the burden of the terminal device processor, reduces the power consumption of the terminal device, and improves the intelligent interaction capability of the terminal device and the user by reducing the repeated analysis of the semantic information.
  • the scenario template in step S302 specifically includes: a scenario identifier, a scenario expression, an information source identifier, and a context label.
  • the context template is pre-stored in the context server, and the context template is formatted text, which is a definition of the scene.
  • the scenario template specifically includes: a scenario identifier, a scenario expression, an information source identifier, and a context label.
  • the scenario identifier is used to identify the scenario, and the scenario identifier is used to uniquely identify a scenario; the information source identifier is used to identify the source of the semantic information constituting the scenario, whether it is from a terminal device or from a certain user.
  • the context label is a set of words used to describe the situation, is a brief introduction to the situation, generally can be composed of some keywords;
  • scenario expression is used to define the combination of semantic information
  • the calculated expression if the calculated result is true, the semantic information received by the scenario server satisfies the condition of one or more scenarios in the scenario template, and acquires one or more scenarios, and the scenario expression generally can It consists of multiple atomic expressions. These atomic expressions are connected by logical operators. For example, you can connect with Boolean operators such as and, or. Multiple atomic expressions can also use parentheses to limit the priority of the operation.
  • the following concrete examples illustrate the atomic expressions, situational expressions, and scenario templates.
  • the definition of an atomic expression is as follows: 1, sensor. Attribute comparison operator value,
  • the scenario templates described in Table 1 specifically include: scenario identifier, scenario expression, information source identifier, and context label.
  • the scenario identifier is used to identify the scenario, and the scenario identifier is used to uniquely identify a scenario, such as S001 is a scenario identifier;
  • the information source identifier is used to identify the source of the semantic information constituting the scenario, which is from a terminal device. Whether it is from a certain user or from a group, such as D001 is an information source identifier;
  • the context label is a set of words used to describe this scenario, which is a brief introduction to the situation, such as health care, sub-health.
  • the method for obtaining the scenario identifier according to the pre-stored scenario template in the step S302 includes: analyzing the acquired third-party service information and/or the semantic information according to the scenario expression in the scenario template. And obtaining the scenario identifier; the analyzing method specifically includes: according to the information source identifier in the scenario template, pressing Different particle sizes for poly-analysis.
  • the scenario server receives semantic information. The semantic information does not have the ability to describe the situation.
  • the method for obtaining the scenario identifier according to the pre-stored scenario template specifically includes: acquiring the third-party service information, and/or the semantic information according to the scenario expression in the scenario template Then, compare this information with the expression of the scenario template to determine which expression evaluates to true.
  • the acquired third-party service information, and/or the semantic information satisfies the scenario expression, thereby satisfying one or more The scenario, then extract the contextual identity of the scenario from the scenario template.
  • the aggregation calculation is performed according to different granularities. For example, when the user unlocks the screen of the mobile phone for the first time in the morning, the camera function of the terminal device is triggered, that is, the sensor acquires the environment information, and then analyzes the environment information to generate semantic information. If the analysis result can be: facial expression. pale Facial expressions. Unhappy, eyes.
  • the eyes are sluggish, and the terminal device sends a message carrying the above semantic information to the scenario server.
  • the scenario server brings the semantic information into a scenario expression of the scenario template, and then performs aggregation calculation according to different granularities according to the information source identifier.
  • the result of the scenario of the poor health condition "S001" is true, and the semantic information is considered to satisfy the condition of the scenario, that is, the terminal device produces the scenario.
  • the context identifier corresponding to the scenario is then extracted from the context template.
  • information such as scene tags can be extracted from the scenario template for use by the terminal device.
  • the embodiment of the present invention reduces the burden of the terminal device processor, reduces the power consumption of the terminal device, and improves the intelligent interaction capability of the terminal device and the user by reducing the repeated analysis of the semantic information.
  • FIG. 5 is a flow chart of an implementation manner of a method for obtaining subscription confirmation information according to Embodiment 3 of the present invention.
  • the method for obtaining the subscription confirmation information in step S303 specifically includes: S3031: Receive query request information, where the query request information specifically includes: an queried party identifier, a querier user identifier, and the querier user identifier is used to identify a user that sends the query request information.
  • the scenario server receives the query request information sent by the terminal device, and the query request information specifically includes: the queried party identifier, and the querier user identifier.
  • the queried party user identifier is used to identify the queried party, and the queried party can generate semantic information and send the semantic information to the context server.
  • the queried party may be one device or multiple devices of the terminal device user, one device or multiple devices of the third party user, or may be a certain group.
  • the querying party user identifier is used to identify a user of the terminal device that sends the query request information.
  • S3035 Send the query result information, where the query result information specifically includes: the scenario identifier corresponding to the scenario that the user corresponding to the user identifier of the queryer has the right to subscribe to.
  • the scenario server sends the query result to the terminal device, where the query result information includes: the scenario identifier corresponding to the scenario that the user corresponding to the queryer user identifier has the right to subscribe to.
  • the scenario server confirms the scenario that the user identified by the querying party user identifier has the right to subscribe, and sends the scenario identifier corresponding to the scenario to the terminal device.
  • the scenario server receives the subscription request information sent by the terminal, and the information includes the scenario that the user's terminal device subscribes to.
  • the subscription confirmation information specifically includes: the scenario identifier that is subscribed, the subscriber device identifier, and the subscriber device identifier is used to identify the device that receives the second message.
  • the scenario server sends the subscription confirmation information, where the subscription confirmation information specifically includes: The scenario identifier, the subscriber device identifier, the subscriber device identifier is used to identify the device that receives the second message.
  • the scenario server sends a subscription confirmation message for notifying the user that a certain terminal device of the user subscribes to a scenario, and the scenario is identified by a scenario identifier.
  • the scenario server stores the subscription confirmation information, and when the scenario is generated, sends the subscribed scenario identifier to the terminal device of the user according to the stored subscription confirmation information.
  • FIG. 6 is a flowchart of another implementation manner of a method for acquiring subscription confirmation information according to Embodiment 3 of the present invention.
  • the method for obtaining the subscription confirmation information in step S303 specifically includes: S3031: Receive query request information, where the query request information specifically includes: an identifier of the queried party, an identifier of the querier user, and the query The party user identifier is used to identify the user who sent the query request information.
  • the scenario server receives the query request information sent by the terminal device, and the query request information specifically includes: the queried party identifier, and the querier user identifier.
  • the queried party user identifier is used to identify the queried party, and the queried party can generate semantic information and send the semantic information to the context server.
  • the queried party may be one device or multiple devices of the terminal device user, one device or multiple devices of the third party user, or may be a certain group.
  • the querying party user identifier is used to identify a user of the terminal device that sends the query request information.
  • S3032 Send authorization request information according to the query request information.
  • the scenario server After receiving the query request information, the scenario server obtains the queried party identifier and the querier party user identifier. The scenario server first determines, according to the queried party identifier and the querier user identifier, whether the user identified by the querier user identifier subscribes to the user's own terminal device or subscribes to the third-party user terminal. Device, or still subscribe to a group.
  • the user identified by the queried user ID is subscribed to the user's own terminal device, the user identified by the querier user identifier is authorized to subscribe to the terminal device identified by the queried party identifier, and directly proceeds to S3034.
  • the authorization request information is sent to the queried party identified by the queried user identifier according to the queried user identifier.
  • the authorization request information may include an queried party user identifier, and the queried party sends the authorization confirmation information according to the pre-stored rule or the selected user of the queried party after receiving the authorization request information.
  • the authorization confirmation information includes the inquiring party user identifier and the inquired party identifier that allows the inquiring party user to obtain information.
  • the context server receives the authorization confirmation information, where the information includes the inquiring party user identifier and the inquired party identifier that allows the inquiring party user to obtain information.
  • scenario identifier corresponding to the scenario that the user corresponding to the queryer user identifier has the right to subscribe to is obtained by querying the pre-stored scenario table according to the authorization confirmation information.
  • the scenario server obtains the scenario identifier corresponding to the scenario that the user corresponding to the queryer user identifier has the right to subscribe to by querying the pre-stored scenario table according to the authorization confirmation information.
  • the information table includes a device identifier, a user identifier, and a group identifier.
  • the device identifier, the user identifier, and the group identifier may all be the queried party identifier.
  • scenario table can be as shown in Table 2 below:
  • Table 2 only schematically describes the relationship between the scenario identifier and the information source identifier, which is not necessarily used in the specific implementation.
  • the scenario server can obtain the scenario identifier that the user has the right to subscribe to.
  • S3035 Send the query result information, where the query result information specifically includes: the scenario identifier corresponding to the scenario that the user corresponding to the user identifier of the queryer has the right to subscribe to.
  • the scenario server sends the query result to the terminal device, where the query result information includes: the scenario identifier corresponding to the scenario that the user corresponding to the queryer user identifier has the right to subscribe to.
  • the scenario server confirms the scenario that the user identified by the querying party user identifier has the right to subscribe, and sends the scenario identifier corresponding to the scenario to the terminal device.
  • the scenario server receives the subscription request information sent by the terminal, and the information includes the scenario that the user's terminal device subscribes to.
  • the subscription confirmation information specifically includes: the scenario identifier that is subscribed, the subscriber device identifier, and the subscriber device identifier is used to identify the device that receives the second message.
  • the scenario server sends the subscription confirmation information, and the subscription confirmation information specifically includes: the scenario identifier of the subscription, the subscriber device identifier, and the subscriber device identifier is used to identify the device that receives the second message.
  • the scenario server sends a subscription confirmation message for notifying the user that a certain terminal device of the user subscribes to a scenario, and the scenario is identified by a scenario identifier.
  • the scenario server stores the subscription confirmation information, when used to generate the scenario, according to the stored subscription
  • the confirmation information is sent to the user's terminal device for the profile identifier that it has subscribed to.
  • step S3034 the method for obtaining the scenario table includes:
  • the first type, the manual update acquisition, the manual update acquisition method includes: storing the relationship between the scenario identifier and the information source identifier, where the information source identifier comprises: a device identifier, a user identifier, and a group identifier.
  • the scenario server stores the scenario table, and the scenario table is configured to store and store the relationship between the scenario identifier and the information source identifier, and the relationship may be configured artificially.
  • the management of the scenario server can configure the relationship between the terminal device and the group connected to the scenario server and the scenario identifier, and the user of the terminal device can also configure the relationship between the terminal device and the scenario identifier.
  • the above two methods are only two possible implementation methods for manually updating the scenario table. For other possible implementation methods, the embodiments of the present invention do not limit this.
  • the second method, the automatic update acquisition, the method for automatically updating the acquisition includes: after the obtaining the scenario identifier according to the pre-stored scenario template, if the scenario table does not store the scenario identifier and the information source identifier Relationship, storing the relationship.
  • the method for obtaining the automatic update is implemented based on the method for obtaining the scenario identifier according to the pre-stored scenario template in the embodiment 3, and the method of the step S302 is specifically described in the embodiment 3, and the method of the present invention is implemented. This example will not be repeated.
  • step S302 if the context table does not store the relationship between the context identifier and the information source identifier, the relationship is stored.
  • step S302 the scenario identifier is acquired according to the scenario template, and the scenario table is further queried according to the scenario identifier. If the scenario table does not store the relationship between the scenario identifier and the information source identifier, a record is added, that is, the storage location. Relationship. In this case, the fact sheet is automatically updated.
  • the embodiment of the invention adopts a semantic information receiving method, so that the analysis result of the semantic information can be used across applications, across terminal devices, or even across users, reducing the burden of the terminal device processor by reducing the repeated analysis of semantic information. , reducing the power consumption of the terminal device, and improving the intelligent interaction capability between the terminal device and the user.
  • FIG. 7 is a schematic structural diagram of a terminal device according to Embodiment 4 of the present invention.
  • the terminal device includes:
  • the obtaining unit 401 is configured to obtain environment information, where the environment information is information about a terminal device's own environment and/or a surrounding environment.
  • the analyzing unit 402 is configured to receive the environment information acquired by the acquiring unit 401, and analyze the environment information to generate semantic information, where the semantic information is an application value that can be understood by a user generated by analyzing the environment information. Information.
  • the first sending unit 403 is configured to receive the semantic information generated by the analyzing unit 402, and send a first message carrying the semantic information to the scenario server.
  • the obtaining unit 401 is configured to obtain the environment information
  • the analyzing unit 402 is configured to receive the environment information acquired by the acquiring unit 401, and analyze the environment information to generate semantic information.
  • the first sending unit 403 receives the generated by the analyzing unit 402. The semantic information, and sending a first message carrying the semantic information to the scenario server.
  • the obtaining unit 401, the analyzing unit 402, and the first sending unit 403 may be used to perform the methods of the steps S101, S102, and S103 in the first embodiment.
  • the embodiment of the present invention reduces the burden of the terminal device processor by reducing the repeated analysis of the semantic information, reduces the power consumption of the terminal device, and improves the intelligent interaction capability between the terminal device and the user.
  • FIG. 8 is a schematic structural diagram of a terminal device according to Embodiment 5 of the present invention.
  • the terminal device includes:
  • the first receiving unit 5011 is configured to receive, according to the subscription confirmation information acquired in advance, a second message that is sent by the scenario server and that carries the scenario identifier, where the scenario identifier is used to identify the scenario;
  • the broadcast unit 502 is configured to receive the second information of the first receiving unit 5011, and send the second message to the application in the form of a broadcast message.
  • the first receiving unit 5011 receives the second message carrying the scenario identifier sent by the scenario server according to the subscription confirmation information acquired in advance; the broadcast unit 502 receives the second information of the first receiving unit 5011, and the The second message is sent to the application in the form of a broadcast message.
  • the first receiving unit 5011 and the broadcasting unit 502 can be used to perform the methods of the steps S201 and S202 in the second embodiment. For details, refer to the description of the method in the second embodiment, and details are not described herein again.
  • the embodiment of the present invention reduces the burden on the terminal device processor, reduces the power consumption of the terminal device, and improves the intelligent interaction capability between the terminal device and the user by reducing the repeated analysis of the semantic information.
  • the terminal device further includes:
  • the first sending unit 5031 is configured to send the query request information, where the query request information specifically includes: The queried party identifier, the querier user identifier, and the querier user identifier is used to identify the user who sends the query request information;
  • the second receiving unit 5012 is configured to receive the query result information, where the query result information specifically includes: the scenario identifier corresponding to the scenario that the user corresponding to the querying party user identifier has the right to subscribe to;
  • the second sending unit 5032 is configured to receive the query result of the second receiving unit 5012, and send subscription request information according to the query result information;
  • the third receiving unit 5013 is configured to receive the subscription confirmation information, where the subscription determining information specifically includes: the scenario identifier that is subscribed, the subscriber device identifier, and the subscriber device identifier is used to identify that the second message is received. device of;
  • the storage unit 504 is configured to receive the subscription confirmation information of the third receiving unit 5013, and store the subscription confirmation information.
  • the first sending unit 5031 sends the query request information; the second receiving unit 5012 receives the query result information; the second sending unit 5032 receives the query result of the second receiving unit 5012, and according to the query result information, Sending the subscription request information; the third receiving unit 5013, receiving the subscription confirmation information; the storage unit 504, receiving the subscription confirmation information of the third receiving unit 5013, and storing the subscription confirmation information.
  • the first sending unit 5031, the second receiving unit 5012, the second sending unit 5032, the third receiving unit 5013, and the storage unit 504 can be used to execute the methods in steps S2011, S2012, S2013, and S2014 in Embodiment 2.
  • the description of the method in Embodiment 2 is omitted here.
  • the embodiment of the present invention enables the analysis result of the semantic information to be used across applications, across terminal devices, and even across users. By reducing the repeated analysis of semantic information, the burden on the terminal device processor is reduced and the device is reduced. Power consumption of terminal equipment, improving terminal equipment and users Intelligent interaction capabilities.
  • Example 6
  • FIG. 9 is a schematic structural diagram of a scenario server according to Embodiment 6 of the present invention.
  • the scenario server includes:
  • the semantic information is information of application value that can be understood by a user generated by analyzing the environmental information
  • the analyzing unit 602 is configured to receive the first message of the first receiving unit 6011, and obtain a scenario identifier according to a pre-stored scenario template, where the scenario template is a formatted text;
  • the first sending unit 6031 is configured to receive the scenario identifier acquired by the analyzing unit 602, and send a second message carrying the scenario identifier according to the subscription confirmation information acquired in advance.
  • the first receiving unit 6011 receives the first message carrying the semantic information
  • the analyzing unit 602 receives the first message of the first receiving unit 6011, and acquires the scenario identifier according to the pre-stored scenario template.
  • the method is configured to receive the scenario identifier that is obtained by the analysis unit 602, and send a second message that carries the scenario identifier according to the subscription confirmation information that is acquired in advance.
  • the first receiving unit 6011, the analyzing unit 602, and the first sending unit 6031 can be used to perform the methods in steps S301, S302, and S303 in Embodiment 3. For details, refer to the description of the method in Embodiment 3. Narration.
  • the embodiment of the present invention reduces the burden on the terminal device processor, reduces the power consumption of the terminal device, and improves the intelligent interaction capability between the terminal device and the user by reducing the repeated analysis of the semantic information by reducing the semantic information.
  • the analyzing unit 602 is specifically configured to analyze the semantic information and/or the acquired third-party service information according to the scenario expression in the scenario template, and obtain the scenario identifier.
  • the analyzing unit 602 can be used to perform the method for obtaining the scenario identifier according to the pre-stored scenario template in the step S302 of the embodiment. For details, refer to the description of the method in Embodiment 3, and details are not described herein.
  • the scenario server further includes:
  • the second receiving unit 6012 is configured to receive the query request information, where the query request information specifically includes: the queried party identifier, the querier user identifier, and the querier user identifier is used to identify the user who sends the query request information.
  • the second sending unit 6032 is configured to send the query result information, where the query result information specifically includes: the scenario identifier corresponding to the scenario that the user corresponding to the querying party user identifier has the right to subscribe to;
  • the third receiving unit 6013 is configured to receive subscription request information.
  • the third sending unit 6033 is configured to send the subscription confirmation information, where the subscription confirmation information specifically includes: the scenario identifier that is subscribed to, the subscriber device identifier, and the subscriber device identifier is used to identify that the second message is received. device of;
  • the storage unit 604 is configured to receive the subscription confirmation information of the third sending unit, and store the subscription confirmation information.
  • the second receiving unit 6012 receives the query request information; the second sending unit 6032 sends the query result information; the third receiving unit 6013 receives the subscription request information; the third sending unit 6033 sends the subscription confirmation information; the storage unit 604 receives the third The subscription confirmation information of the sending unit 6033, and storing the subscription confirmation information.
  • the second receiving unit 6012, the second sending unit 6032, the third receiving unit 601, the third sending unit 6033, and the storage unit 604 can be used to execute the methods in steps S3031, S3035, S3036, and S3037 in Embodiment 3. The description of the method in Embodiment 3 is omitted here.
  • the embodiment of the present invention enables a scenario server that receives semantic information, so that the analysis result of the semantic information can be used across applications, across terminal devices, or even across users, reducing terminal device processor by reducing repeated analysis of semantic information.
  • the burden is reduced, the power consumption of the terminal device is reduced, and the intelligent interaction capability between the terminal device and the user is improved.
  • Figure 10 is a block diagram showing the structure of a system of Embodiment 7 of the present invention.
  • a system includes:
  • the terminal device 701 is configured to send, according to the acquired environment information, a first message carrying the semantic information to the scenario server 702, and/or receive a second message that is sent by the scenario server 702 and carries the scenario identifier, where the second message is sent. Sent to the application as a broadcast message;
  • the scenario server 702 is configured to receive the first message, obtain the scenario identifier according to the scenario template, and send the second message to the terminal device 701.
  • the terminal device 701 sends a first message carrying the semantic information to the scenario server 702 according to the acquired environment information, and/or receives a second message carrying the scenario identifier sent by the scenario server 702, and broadcasts the second message.
  • the message is sent to the application in the form of a message; the scenario server 702 receives the first message, and obtains the scenario identifier according to the scenario template, and sends the second message to the terminal device 701.
  • the terminal device 701 and the scenario server 702 include the terminal device described in Embodiments 4 and 5 and Embodiment 6
  • the scenario server, the specific terminal device and the scenario server are described in detail in the description of Embodiments 4, 5 and 6 of the present invention, and details are not described herein again.
  • the embodiment of the invention adopts a system for receiving semantic information, so that the analysis result of the semantic information can be used across applications, across terminal devices, or even across users, reducing the terminal device processor by reducing the repeated analysis of semantic information.
  • the burden is reduced, the power consumption of the terminal device is reduced, and the intelligent interaction capability between the terminal device and the user is improved.
  • Embodiment 8 It is explained that the illustrated mobile phone is only an example of the terminal device, and the mobile phone may have more or less components than those shown in the figure, two or more components may be combined, or Has a different component configuration.
  • the various components shown in the figures can be implemented in hardware, software, or a combination of hardware and software, including one or more signal processing and/or special purpose integrated circuits.
  • FIG. 11 is a schematic structural diagram of a mobile phone according to Embodiment 8 of the present invention.
  • the mobile phone shown in Fig. 11 includes: a touch screen 81, a CPU 82, a memory 83, an RF circuit 85, a sensor 86, an audio circuit 87, a speaker 88, and an I/O subsystem 89.
  • the touch screen 81 is an input interface and an output interface between the terminal device and the user. In addition to the function of receiving user commands, the touch screen 81 displays the visual output to the user.
  • the visual output may include graphics, text, icons, videos, and the like.
  • the CPU 82 is a control center of the mobile phone, and connects various parts of the entire terminal device by various interfaces and lines, by running or executing software programs and/or modules stored in the memory 83, and calling data stored in the memory 83, Perform various functions and processing data of the mobile phone, thereby setting the terminal Prepare for overall monitoring.
  • the environmental information acquired from the sensor 86 is processed to generate semantic information; and the semantic information is transmitted to the context server via the RF circuit 85.
  • the CPU 82 can be used to perform the method described in Embodiment 1. The specific method is described in detail in Embodiment 1, and details are not described herein again.
  • the CPU 82 may include one or more processing units.
  • the CPU 82 may integrate an application processor and a modem processor.
  • the application processor mainly processes an operating system, a user interface, and an application.
  • the modem processor primarily handles wireless communications. It will be appreciated that the above described modem processor may also not be integrated into the CPU 82.
  • the memory 83 can be used to store the execution result of the CPU 82. It can also be used to store subscription confirmation information acquired in advance.
  • the memory 83 can be accessed by a CPU 82, a sensor 86, etc., which can include a high speed random access memory, and can also include non-volatile memory, such as one or more magnetic disk storage devices, flash memory devices, or other volatile solid state. Storage device.
  • the RF circuit 85 can be used to transmit and receive information.
  • the RF circuit 85 is mainly used for establishing communication between the terminal device and the scenario server, and realizing data reception and transmission of the terminal device and the scenario server. E.g. Sending a first message carrying the semantic information to the scenario server; receiving a second message carrying the scenario identifier sent by the scenario server, and the like.
  • the RF circuit 85 can be used to perform the manners described in Embodiment 1 and Embodiment 2. For details, refer to the descriptions of Embodiment 1 and Embodiment 2, and details are not described herein again.
  • the RF circuit 85 receives and transmits an RF signal, which is also referred to as an electromagnetic signal, and the RF circuit 85 converts the electrical signal into an electromagnetic signal or converts the electromagnetic signal into an electrical signal, and through the electromagnetic signal and communication network and other devices Communicate.
  • RF circuitry 85 may include known circuitry for performing these functions including, but not limited to, an antenna system, an RF transceiver, one or more amplifiers, a tuner, one or more oscillators, a digital signal processor, a user identification Module (Subscriber Identity Module, SIM) and so on.
  • the sensor 86 is connectable to the CPU 82 and the memory 83. The sensor 86 can be used to obtain an environmental message that the environmental information is information of the terminal device's own environment and/or surrounding environment.
  • the audio circuit 87 is mainly operable to receive audio data, convert the audio data into an electrical signal, and transmit the electrical signal to the speaker 88.
  • the speaker 88 can be used to restore the voice signal received by the terminal device from the scene server through the RF circuit 85 to sound and play the sound to the user.
  • the power management chip 84 can be used for power supply and power management of the hardware connected to the CPU 82, the I/O subsystem 89, and the sensor 86.
  • the I/O subsystem 89 can control input and output peripherals on the device, and the I/O subsystem 89 can include a display controller 891 and one for controlling other input/control devices. Or multiple input controllers 892.
  • one or more input controllers 892 receive electrical signals from other input/control devices or transmit electrical signals to other input/control devices, and other input/control devices may include physical buttons (press buttons, rocker buttons, etc.) , dial, slide switch, joystick, click wheel.
  • the input controller 892 can be connected to any of the following: a keyboard, an infrared port, a USB interface, and a pointing device such as a mouse.
  • Display controller 891 in I/O subsystem 89 receives electrical signals from touch screen 81 or transmits electrical signals to touch screen 81.
  • the touch screen 81 detects the contact on the touch screen, and the display controller 891 converts the detected contact into an interaction with the user interface object displayed on the touch screen 81, that is, realizes human-computer interaction, and the user interface object displayed on the touch screen 81 can be operated.
  • the device may also include a light mouse, which is a touch sensitive surface that does not display a visual output, or an extension of a touch sensitive surface formed by the touch screen.
  • the embodiment of the present invention makes the analysis result of the semantic information through a mobile phone using semantic information. It can be used across applications, across terminal devices, and even across users. By reducing the repeated analysis of semantic information, the burden on the terminal device processor is reduced, the power consumption of the terminal device is reduced, and the intelligent interaction capability between the mobile phone and the user is improved.
  • Example 9
  • This embodiment takes a mobile phone automatic update application as an example for specific description.
  • the mobile phone is equipped with an application that automatically updates the app, and the phone subscribes to the user's sub-health situation (S001).
  • the code for calling the front camera is embedded, the environment information is obtained by photographing, and then the photographed photos are analyzed to obtain semantic information such as the user's current facial expressions, eyes and other information.
  • semantic information such as the user's current facial expressions, eyes and other information.
  • various options can be set, for example: morning detection on the first morning of each month, morning detection every weekend, etc., can be set by the user according to requirements.
  • the mobile phone transmits the above semantic information to the scenario server, and the scenario server analyzes the semantic information according to the scenario expression in the pre-stored scenario template. If the result of an expression is true, the semantic information satisfies a certain scenario. , get the corresponding situation ID.
  • the scenario identifier S001 of the user's sub-health scenario is obtained during the analysis. At the same time, you can also get some scene labels, such as sub-health, strengthening sports and so on.
  • the scenario server sends the contextual identifier and contextual tag to the handset. When the mobile phone receives a message carrying the context indicator and the context tag, the message is broadcast to the application, and the application receives the information according to its own needs.
  • the application of the application is automatically updated, and the scenario identifier and the context tag are received as needed to obtain information such as sub-health and exercise.
  • the app searches for new apps with sub-health and enhanced sports as keywords. You will receive multiple available apps during the search, for example you can search for calories Count this application.
  • the application that automatically updates the application prompts the user that there is a calorie calculation.
  • the application can be downloaded, and the user decides whether to download the application according to his or her own needs.
  • the embodiment of the present invention reduces the burden on the mobile phone processor, reduces the power consumption of the terminal device, and improves the intelligent interaction capability between the mobile phone and the user by reducing the semantic information by repeatedly analyzing the mobile phone using the semantic information.
  • Example 10
  • Figure 12 is a block diagram showing the structure of a scenario server according to Embodiment 10 of the present invention.
  • the illustrated context server is merely an example of a terminal device, and that the handset may have more or fewer components than those shown in the figures, two or more components may be combined, or may have Different component configurations.
  • the various components shown in the figures can be implemented in hardware, software, or a combination of hardware and software, including one or more signal processing and/or application specific integrated circuits.
  • the scenario server includes: a CPU 101, a memory 102, an RF circuit 103, an I/O subsystem 104, and a power management chip 105, wherein
  • the RF circuit 103 is configured to receive the semantic information carrying the semantic information, which is an application value information that can be understood by a user generated by analyzing the environment information;
  • the CPU 101 is configured to receive the first message of the RF circuit 103, and obtain a scenario identifier according to a pre-stored scenario template, where the scenario template is formatted text;
  • the RF circuit 103 is further configured to receive the scenario identifier acquired by the CUP 101, and send a second message carrying the scenario identifier according to the subscription confirmation information acquired in advance.
  • the RF circuit 103 receives the semantic information carrying the semantic information, which is an application value information that can be understood by the user generated by analyzing the environment information; the CPU 101 receives the RF circuit 103 The first message, and acquiring a scenario identifier according to a pre-stored scenario template, where the scenario template is formatted text; the RF circuit 103 receives the scenario identifier acquired by the CUP 101, according to a pre-acquired subscription Confirming the information, sending a second message carrying the scenario identifier.
  • the semantic information carrying the semantic information which is an application value information that can be understood by the user generated by analyzing the environment information
  • the CPU 101 receives the RF circuit 103 The first message, and acquiring a scenario identifier according to a pre-stored scenario template, where the scenario template is formatted text; the RF circuit 103 receives the scenario identifier acquired by the CUP 101, according to a pre-acquired subscription Confirming the information, sending a second message carrying the scenario identifier.
  • the RF circuit 103, the CPU 101, and the RF circuit 103 may be used to perform the methods of steps S301, S302, and S303 in Embodiment 3. For details, refer to the description of the method in Embodiment 3. Let me repeat.
  • the embodiment of the present invention reduces the burden of the terminal device processor, reduces the power consumption of the terminal device, and improves the intelligent interaction capability of the terminal device and the user by reducing the repeated analysis of the semantic information.
  • the embodiments of the present invention can be implemented by hardware implementation, firmware implementation, or a combination thereof.
  • the functions described above may be stored in a terminal device readable medium or transmitted as one or more instructions or code on a terminal device readable medium.
  • the terminal device readable medium includes a terminal device storage medium and a communication medium, and the optional communication medium includes any medium that facilitates transfer of the terminal device program from one place to another.
  • the storage medium can be any available medium that the terminal device can access.
  • the terminal device readable medium may include RAM, ROM, EEPROM, CD-ROM or other optical disk storage, disk storage media or other magnetic storage device, or can be used to carry or store instructions or data structures.
  • Any connection may suitably be a terminal device readable medium.
  • the software is using coaxial cable, fiber optic cable, twisted pair, digital subscriber line (DSL), or wireless technologies such as infrared, radio, and microwave from a website, scenario server, or other remote Source transmission, then coaxial cable, fiber optic cable, twisted pair, DSL or wireless technologies such as infrared, wireless and microwave are included in the fixing of the associated medium.
  • a disk and a disc include a compact disc (CD), a laser disc, a compact disc, a digital versatile disc (DVD), a floppy disc, and a Blu-ray disc, and the optional disc is usually magnetically replicated.

Landscapes

  • Engineering & Computer Science (AREA)
  • Theoretical Computer Science (AREA)
  • Data Mining & Analysis (AREA)
  • Databases & Information Systems (AREA)
  • Physics & Mathematics (AREA)
  • General Engineering & Computer Science (AREA)
  • General Physics & Mathematics (AREA)
  • Information Transfer Between Computers (AREA)
  • Telephonic Communication Services (AREA)

Abstract

L'invention concerne un procédé qui permet d'envoyer des informations sémantiques. Le procédé consiste : à acquérir des informations sur l'environnement, ces dernières étant des informations relatives à l'environnement d'un dispositif terminal en lui-même et/ou à un environnement qui l'entoure; à analyser les informations sur l'environnement et à générer des informations sémantiques, les informations sémantiques étant des informations contenant des valeurs d'application pouvant être comprises par les utilisateurs et générées par l'analyse des informations sur l'environnement; à envoyer un premier message transportant les informations sémantiques à un serveur concerné. Grâce au procédé susmentionné, un résultat de l'analyse des informations sémantiques peut être utilisé sur l'ensemble des programmes d'application, des dispositifs terminaux, voire pour l'ensemble des utilisateurs. De plus, en réduisant les analyses répétées des informations sémantiques, la charge du processeur d'un dispositif terminal est réduite, et la capacité d'interaction intelligente entre le dispositif terminal et les utilisateurs est améliorée.
PCT/CN2012/083451 2012-10-24 2012-10-24 Procédé, terminal, serveur et système pour envoyer et recevoir des informations sémantiques WO2014063320A1 (fr)

Priority Applications (2)

Application Number Priority Date Filing Date Title
CN201280003613.XA CN103430514B (zh) 2012-10-24 2012-10-24 一种语义信息发送、接收方法、终端、服务器及系统
PCT/CN2012/083451 WO2014063320A1 (fr) 2012-10-24 2012-10-24 Procédé, terminal, serveur et système pour envoyer et recevoir des informations sémantiques

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PCT/CN2012/083451 WO2014063320A1 (fr) 2012-10-24 2012-10-24 Procédé, terminal, serveur et système pour envoyer et recevoir des informations sémantiques

Publications (1)

Publication Number Publication Date
WO2014063320A1 true WO2014063320A1 (fr) 2014-05-01

Family

ID=49653003

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2012/083451 WO2014063320A1 (fr) 2012-10-24 2012-10-24 Procédé, terminal, serveur et système pour envoyer et recevoir des informations sémantiques

Country Status (2)

Country Link
CN (1) CN103430514B (fr)
WO (1) WO2014063320A1 (fr)

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104361023B (zh) * 2014-10-22 2018-01-30 浙江中烟工业有限责任公司 一种情境感知的移动终端烟草信息推送方法
CN113851096B (zh) * 2020-06-28 2023-05-02 北京小米移动软件有限公司 亮度检测方法、装置及存储介质

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2011136781A1 (fr) * 2010-04-29 2011-11-03 Hewlett-Packard Development Company, L.P. Système et procédé de suivi d'informations
CN202282004U (zh) * 2011-06-02 2012-06-20 上海巨浪信息科技有限公司 基于情景感知与活动分析的移动健康管理系统
CN102737510A (zh) * 2012-07-03 2012-10-17 浙江大学 一种基于移动智能终端的实时交通路况采集方法

Family Cites Families (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101494678B (zh) * 2008-01-21 2012-09-26 中兴通讯股份有限公司 一种动态更新屏幕保护程序的方法及系统
CN101625649A (zh) * 2009-08-17 2010-01-13 中兴通讯股份有限公司 一种软件的加载方法及装置

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2011136781A1 (fr) * 2010-04-29 2011-11-03 Hewlett-Packard Development Company, L.P. Système et procédé de suivi d'informations
CN202282004U (zh) * 2011-06-02 2012-06-20 上海巨浪信息科技有限公司 基于情景感知与活动分析的移动健康管理系统
CN102737510A (zh) * 2012-07-03 2012-10-17 浙江大学 一种基于移动智能终端的实时交通路况采集方法

Also Published As

Publication number Publication date
CN103430514A (zh) 2013-12-04
CN103430514B (zh) 2018-02-02

Similar Documents

Publication Publication Date Title
US20210006616A1 (en) Device and method for adaptively changing task-performing subjects
CN108737242B (zh) 提供对话内容的系统
WO2021000808A1 (fr) Procédé de commande de dispositif et dispositif
EP2706418B1 (fr) Procédé et dispositif de contrôle d'un appareil externe
CN104460365B (zh) 设备控制方法和装置
CN105163366B (zh) 无线网络连接方法和装置
CN104079473B (zh) 信息发布方法及装置
WO2018157721A1 (fr) Procédé d'acquisition et de fourniture d'informations, dispositif, système et support de stockage
CN105512545B (zh) 访问权限管理方法和装置
CN109429102A (zh) 用于显示应用的电子装置及其操作方法
CN105049416A (zh) 一种接入wifi网络的方法及装置
CN104812020B (zh) 控制智能设备接入网络的方法、装置及系统
CN113497909A (zh) 一种设备交互的方法和电子设备
CN111338971B (zh) 应用测试方法、装置、电子设备及存储介质
CN106713418A (zh) 重置结果确认方法、装置、服务器和移动终端
CN104125162A (zh) 网络资源的访问处理方法及装置
CN104010231A (zh) 数据同步方法及装置
CN110020145A (zh) 一种信息推荐方法及装置
CN103905442A (zh) 一种数据同步中的唤醒方法及装置
CN105094966B (zh) 控制pc的方法及装置
CN106254669A (zh) 数据流量提醒方法及装置
CN112423011A (zh) 消息回复方法、装置、设备及存储介质
WO2014063320A1 (fr) Procédé, terminal, serveur et système pour envoyer et recevoir des informations sémantiques
CN104967598B (zh) 一种用户多媒体权限资讯的获取方法和装置
CN108028810A (zh) 建立业务连接的方法及装置

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 12887254

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 12887254

Country of ref document: EP

Kind code of ref document: A1