WO2018018823A1 - 一种数据传输方法及可穿戴设备 - Google Patents

一种数据传输方法及可穿戴设备 Download PDF

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Publication number
WO2018018823A1
WO2018018823A1 PCT/CN2016/108333 CN2016108333W WO2018018823A1 WO 2018018823 A1 WO2018018823 A1 WO 2018018823A1 CN 2016108333 W CN2016108333 W CN 2016108333W WO 2018018823 A1 WO2018018823 A1 WO 2018018823A1
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Prior art keywords
wearable device
target terminal
user
target
prompt message
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PCT/CN2016/108333
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English (en)
French (fr)
Inventor
刘均
刘新
宋朝忠
欧阳张鹏
Original Assignee
深圳市元征科技股份有限公司
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Publication of WO2018018823A1 publication Critical patent/WO2018018823A1/zh

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/72Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
    • H04M1/724User interfaces specially adapted for cordless or mobile telephones
    • H04M1/72448User interfaces specially adapted for cordless or mobile telephones with means for adapting the functionality of the device according to specific conditions
    • H04M1/72454User interfaces specially adapted for cordless or mobile telephones with means for adapting the functionality of the device according to specific conditions according to context-related or environment-related conditions
    • GPHYSICS
    • G08SIGNALLING
    • G08BSIGNALLING OR CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
    • G08B21/00Alarms responsive to a single specified undesired or abnormal condition and not otherwise provided for
    • G08B21/02Alarms for ensuring the safety of persons
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L67/00Network arrangements or protocols for supporting network services or applications
    • H04L67/01Protocols
    • H04L67/12Protocols specially adapted for proprietary or special-purpose networking environments, e.g. medical networks, sensor networks, networks in vehicles or remote metering networks
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/02Services making use of location information
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/12Messaging; Mailboxes; Announcements

Definitions

  • the present invention relates to the field of computer technologies, and in particular, to a data transmission method and a wearable device.
  • NB-IoT Cellular-based Narrow Band Internet of Things
  • 3GPP 3rd Generation Partnership Project
  • NB-IOT is an emerging technology that can be widely used around the world, focusing on the low power wide area (English: Low Power Wide Area, LPWA) Internet of Things (English: Internet Of Things, referred to as: IOT) market It has wide coverage, many connections, low speed, low cost, low power consumption and excellent architecture. It can be widely used in vertical industries such as remote meter reading, asset tracking, intelligent parking, and smart agriculture.
  • NB-IoT defines a lot of resource units for 15 kHz subcarriers, and is no longer limited to the resource unit of ⁇ 12 subcarriers, 1 millisecond ⁇ defined in Long Term Evolution (LTE: LTE), so as to be more flexible. Allocate the frequency resources of various resource units.
  • the resource units defined in NB-IoT include: ⁇ 1 subcarrier, 8 milliseconds ⁇ resource unit 101, ⁇ 3 subcarriers, 4 milliseconds ⁇ resource unit 1 02, ⁇ 6 subcarriers, 2 milliseconds Resource unit 103 of ⁇ and ⁇ 12 subcarriers, 1 millisecond ⁇ resource unit 104
  • Embodiments of the present invention disclose a data transmission method and a wearable device, and the wearable device and the target terminal can communicate based on the NB-IoT, so that communication between the wearable device and the target terminal is further improved. Flexible and efficient.
  • an embodiment of the present invention provides a data transmission method, where the method includes:
  • the wearable device acquires physiological information of the user
  • the wearable device sends a prompt message to the target terminal according to the physiological information, to prompt the target terminal to the physiological condition of the user, and the wearable device and the target terminal are in a narrow band based on a cell.
  • NB-IoT Networked in NB-IoT.
  • the wearable device determines, according to the physiological information, whether the user is in a preset dangerous state; [0015] if the user is in the preset dangerous state, the wearable device is in a specification A dangerous alert message is sent to the target terminal on the frequency resource of the target resource unit, so that the target terminal knows that the user is in the dangerous state.
  • the frequency resource of the target resource unit is not the longest resource unit of the multiple resource units of the NB-IoT.
  • the physiological information includes at least one of blood pressure, blood fat, blood sugar, and heart rate.
  • the wearable device determines whether the user is in a dangerous state according to the physiological information of the user, and if yes, sends a danger prompt message to the target terminal on the frequency resource whose specification is the target resource unit, to The user is in a dangerous state and the notification is given to the target terminal, which helps the user and the user to obtain assistance.
  • the method further includes:
  • the wearable device sends the location information of the wearable device to the target terminal on a frequency resource whose specification is the target resource unit.
  • the wearable device is in a specification Sending a dangerous alert message to the target terminal on the frequency resource of the target resource unit includes:
  • the wearable device sends a danger prompt message to the base station in the NB-IoT, so that the base station forwards the danger prompt message to the target terminal on the frequency resource of the target resource unit.
  • the target resource unit is the shortest one of the plurality of resource units of the NB-IoT Resource unit.
  • the multiple resource units include a size of ⁇ 1 subcarrier, 8 milliseconds ⁇ , ⁇ 3 At least two of the resource units of subcarriers, 4 milliseconds ⁇ , ⁇ 6 subcarriers, 2 milliseconds ⁇ and ⁇ 12 subcarriers, 1 millisecond ⁇ .
  • an embodiment of the present invention provides a wearable device, where the wearable device includes:
  • an obtaining unit configured to acquire physiological information of the user
  • a sending unit configured to send a prompt message to the target terminal according to the physiological information, to prompt the target terminal to the physiological condition of the user, where the wearable device and the target terminal are in a narrow band based on a cell Networked in NB-IoT.
  • the sending unit includes: [0029] a determining subunit, configured to determine, according to the physiological information, whether the user is in a preset a dangerous state of the first sending subunit, configured to send a danger prompt message to the target terminal on the frequency resource of the target resource unit in the determination result of the determining subunit, to enable the The target terminal learns that the user is in the dangerous state; the wearable device and the target terminal are in a cellular-based narrowband Internet of Things NB-IoT.
  • the frequency resource of the target resource unit is not the longest resource unit of the multiple resource units of the NB-IoT.
  • the physiological information includes at least one of blood pressure, blood lipids, blood sugar, and heart rate.
  • the wearable device determines whether the user is in a dangerous state according to the physiological information of the user, and if yes, sends a danger prompt message to the target terminal on the frequency resource whose specification is the target resource unit, to The user is in a dangerous state and the notification is given to the target terminal, which helps the user and the user to obtain assistance.
  • the sending unit further includes a second sending subunit:
  • the first sending subunit Specifically, the method is used to send a danger prompt message to a base station in the N B-IoT, so that the base station forwards the danger prompt message to the target terminal on the frequency resource of the target resource unit.
  • the target resource unit is the shortest resource unit of the plurality of resource units of the NB-IoT.
  • the multiple resource units include a specification of ⁇ 1 subcarrier, 8 milliseconds ⁇ , ⁇ 3 At least two of the resource units of subcarriers, 4 milliseconds ⁇ , ⁇ 6 subcarriers, 2 milliseconds ⁇ and ⁇ 12 subcarriers, 1 millisecond ⁇ .
  • an embodiment of the present invention provides a wearable device, where the wearable device includes:
  • a processor configured to implement connection communication between the processor, the memory, and the transceiver;
  • the memory is used to store a program
  • the processor invokes a program in the memory for performing some or all of the steps in any of the methods of the first aspect of the embodiments of the present invention.
  • the wearable device can communicate with the target terminal based on the NB-IoT, so that communication between the wearable device and the target terminal is more flexible and efficient.
  • the wearable device determines, according to the physiological information of the user, whether the user is in a dangerous state, and if yes, sends a danger prompt message to the target terminal on the frequency resource whose specification is the target resource unit, to place the user in the The situation of the dangerous state and the notification to the target terminal will help the user and the deaf to get help.
  • FIG. 1 is a schematic diagram of a scenario of multiple resource units defined in the NB-IoT in the prior art
  • FIG. 2 is a schematic flowchart of a data transmission method according to an embodiment of the present invention.
  • FIG. 3 is a schematic flowchart of still another data transmission method according to an embodiment of the present invention.
  • FIG. 4 is a schematic structural diagram of a wearable device according to an embodiment of the present invention.
  • FIG. 5 is a schematic structural diagram of still another wearable device according to an embodiment of the present invention.
  • FIG. 6 is a schematic structural diagram of still another wearable device according to an embodiment of the present invention.
  • the wearable device acquires the physiological information of the user; the wearable device sends a prompt message to the target terminal according to the physiological information, for example, the prompt message is specifically a danger prompt message, and the prompt message Used to prompt the target terminal for the physiological condition of the user, the wearable device and the target terminal are in a cellular-based narrowband Internet of Things NB-IoT, that is, the wearable device can be associated with the target
  • the terminal can communicate based on the NB-IoT, making communication between the wearable device and the target terminal more flexible and efficient.
  • FIG. 2 is a schematic flowchart of a data transmission method according to an embodiment of the present invention, where the method includes but is not limited to the following steps.
  • Step S201 The wearable device acquires physiological information of the user.
  • the wearable device may be an electronic device such as a smart bracelet or a smart watch. Since the wearable device is close to the skin of the user or is closer to the skin of the user, the wearable device may acquire physiological information of the user. Specifically, the physiological information is not limited herein. Optionally, the physiological information includes at least one of blood sugar, blood lipids, blood pressure, and heart rate.
  • the device for collecting the physiological information may be pre-configured in the wearable device, for example, the wearable device may include a sensor for sensing pulse pulsation of the user and a timer, at the preset In the inter-segment, each time the sensor senses that the user has a heartbeat, the recorded value is incremented by one, and then the total number of heartbeats recorded in the preset inter-segment is divided by the preset.
  • the heart rate can be obtained from the interval.
  • the heart rate can also be obtained by other means; how to obtain other physiological parameters is not exemplified here.
  • Step S202 The wearable device determines, according to the physiological information, whether the user is in a preset dangerous state.
  • a dangerous threshold may be set in advance for the physiological information, and when the physiological information exceeds the dangerous threshold, the user is in the preset dangerous state. For example, suppose the physiological information is heart rate, and the set danger threshold is 40 times/minute ⁇ . If the user's heart rate is lower than 40 times/minute, the user is considered to be in a preset dangerous state.
  • the physiological information includes heart rate and blood pressure
  • the heart rate corresponds to a risk threshold of 40 times/minute
  • the blood pressure corresponds to a diastolic pressure of 12 kPa
  • the user's heart rate is less than 40 times/min and the diastolic pressure is greater than 12 kPa. It indicates that the user is in the dangerous state of the preset.
  • the preset physiological information when the preset physiological information has multiple defects, and any one of the plurality of physiological information exceeds a corresponding dangerous threshold, the user is considered to be preset. Dangerous state.
  • the physiological information includes heart rate and blood pressure, and the heart rate corresponds to a risk threshold of 40 times/minute, and the blood pressure corresponds to a diastolic pressure of 12 kpa, then the user is considered to be at risk when the user's heart rate is less than 40 times/minute. State, when the diastolic pressure is greater than 12kpa, the user is considered to be in the preset dangerous state. When the user's heart rate is lower than 40 times/minute and the diastolic pressure is greater than 12kpa, the user is considered to be in the preset dangerous state.
  • Step S203 If the user is in the preset dangerous state, the wearable device sends a danger prompt message to the target terminal on the frequency resource of the target resource unit.
  • the wearable device and the target terminal are in a cellular-based narrowband Internet of Things NB-IoT
  • the resource unit of the frequency resource used for data transmission between each terminal device in the NB-IoT has a specification of ⁇ 1 subcarrier, 8 milliseconds ⁇ , ⁇ 3 children. Resource units of carrier, 4 ms ⁇ , ⁇ 6 subcarriers, 2 ms ⁇ and ⁇ 12 subcarriers, 1 ms ⁇ . If a device transmits data, the resource unit of the frequency resource is ⁇ 6 subcarriers, 2 milliseconds ⁇ , then The frequency domain length of the frequency resource is 6 subcarriers, and the length of the ⁇ domain is 2 milliseconds.
  • the resource units of other specifications are analogized by analogy.
  • the wearable device sends a danger prompt message to the target terminal that is associated with the wearable device in advance, and the danger prompt message is specifically carried in the resource unit as the target resource.
  • the unit is transmitted on the frequency resource, and the target resource unit is one of multiple resource units in the NB-IoT.
  • the target resource unit is not the longest resource unit of the plurality of resource units.
  • the target resource unit is the shortest resource unit of the plurality of resource units. It can be understood that the hazard message is transmitted on the resource unit whose domain is shorter, and the shorter the time required for transmission, the shorter the time, and the dangerous message can be sent to the target terminal faster.
  • the wearable device sends a danger prompt message to the target terminal on the frequency resource of the target resource unit, specifically: the wearable device is in the NB-IoT
  • the base station sends a danger prompt message, so that the base station forwards the danger prompt message to the target terminal on the frequency resource whose specification is the target resource unit. That is to say, the embodiment of the present invention does not limit the resource unit of the frequency resource used by the wearable device to send the danger prompt message to the base station in the NB-Io T, but requires the base station to forward the danger prompt message to the The resource unit of the frequency resource used by the target terminal is the target resource unit.
  • the base station may further allocate, for the target terminal, a resource unit whose frequency unit is the target frequency unit, so that the target terminal subsequently follows the frequency unit of the target resource unit.
  • the response message may give some reminder or suggestion to the user who uses the wearable device; the user who may use the wearable device may not be aware of the response message, and then the response message It can be used to alert other people around the wearable device to help users who use the wearable device.
  • the target terminal may be a mobile phone, a tablet, a laptop, a palmtop, a mobile internet device
  • MID MID
  • wearable devices such as smart watches (such as iWatch, etc.), smart bracelets, pedometers, etc.) or other terminal devices that can be installed to deploy the instant messaging application client.
  • the danger warning message when a plurality of physiological information is pre-configured, for example, a pre-configured student The information includes blood pressure, blood sugar, blood lipids, and heart rate. Then, the danger warning message also indicates which one or which physiological parameters are not up to the standard, causing the user to be in a dangerous state.
  • Step S204 The target terminal receives the danger prompt message sent by the wearable device.
  • Step S205 The target terminal learns that the user is in a dangerous state by using the danger prompt message.
  • the target terminal issues a prompt to the user who uses the target terminal, and the user thus knows that the user who uses the wearable device is in a dangerous state.
  • the target terminal is configured with a ringing device and a touch display screen. After receiving the danger prompt message, the target terminal vibrates through the ringing device, and the user using the target terminal senses the target terminal vibration. You can know that users who use the wearable device are at risk.
  • the target terminal is configured with an audio device and a touch display screen, and the target terminal sends a prompt sound through the audio device after receiving the danger prompt message, and the user using the target terminal hears the target terminal sends out
  • the prompt sound can be used to know that the wearable device is in a dangerous state.
  • the target terminal is configured with a light device and a touch display screen, and after receiving the danger prompt message, the target terminal sends a flashing light through the light device, and the user using the target terminal sees the target terminal.
  • a light prompt ⁇ to know that the user using the wearable device is at risk
  • the target terminal is configured with a touch display screen, and after receiving the danger prompt message, the target terminal pops up a pop-up window through the touch display screen, and the user using the target terminal sees the touch display screen displayed.
  • the pop-up window knows that the user using the wearable device is in danger.
  • the manner in which the target terminal sends a prompt to the user after receiving the danger prompt message may also be other manners, for example, by outputting a text, an image, an animation, or the like to issue a prompt, where the prompt mode is not used. Limited.
  • the user who uses the target terminal knows that the user who uses the wearable device is in a dangerous state, and can provide corresponding assistance.
  • the wearable device can communicate with the target terminal based on the NB-IoT, so that communication between the wearable device and the target terminal is more flexible and efficient.
  • the wearable device determines, according to the physiological information of the user, whether the user is in a dangerous state, and if yes, sends a danger prompt message to the target terminal on the frequency resource whose specification is the target resource unit. Notifying the user of the situation in which the user is in a dangerous state and the user is assisted.
  • FIG. 3 is a schematic flowchart of still another data transmission method according to an embodiment of the present invention, where the method includes but is not limited to the following steps.
  • Step S301 The wearable device acquires physiological information of the user.
  • step S301 may refer to step S201 correspondingly, and details are not described herein again.
  • Step S302 The wearable device determines, according to the physiological information, whether the user is in a preset dangerous state.
  • step S302 may refer to step S202 correspondingly, and details are not described herein again.
  • Step S303 If the user is in the preset dangerous state, the wearable device sends a danger prompt message to the target terminal on the frequency resource whose target is the target resource unit, so that the target terminal It is known that the user is in the dangerous state.
  • Step S304 The target terminal receives the danger prompt message sent by the wearable device.
  • Step S305 The target terminal learns that the user is in a dangerous state by using the danger prompt message.
  • steps S303 to S305 may refer to the steps S203 to S205, and details are not described herein again.
  • Step S306 If the user is in the dangerous state, the wearable device sends the location information of the wearable device to the target terminal on a frequency resource whose specification is the target resource unit.
  • the wearable device when the user is in the dangerous state, the wearable device not only sends a danger prompt message to the target terminal, but also sends its current location to the target terminal.
  • the wearable device can be pre-configured with modules for positioning, for example, Global Positioning System (English: Global
  • GPS Positioning System
  • the location information and the danger prompt message are sent first without restriction. The two may be sent in sequence or in the same manner. Further, the location information and the danger prompt message may also be located. Different parts of the same message.
  • Step S307 The target terminal receives the location message sent by the wearable device.
  • Step S308 The target terminal learns the location where the user is located by using the location message.
  • the user who uses the target terminal can obtain the location of the user who uses the wearable device according to the location message, so that the user who uses the wearable device can be used in a relatively urgent situation. Provide more comprehensive help.
  • the wearable device is provided with a call for help module
  • the target terminal can control the call for help module to send a call for help, prompting the user around the wearable device and the user to use the wearable device Rescue.
  • the target terminal and the wearable device can perform voice communication. If the voice sent from the target terminal to the wearable device does not receive a response, the user using the target terminal can remotely start the call for help module.
  • the wearable device can communicate with the target terminal based on the NB-IoT, so that communication between the wearable device and the target terminal is more flexible and efficient.
  • the wearable device determines, according to the physiological information of the user, whether the user is in a dangerous state, and if yes, sends a danger prompt message to the target terminal on the frequency resource whose specification is the target resource unit, to place the user in the The situation of the dangerous state and the notification to the target terminal will help the user and the deaf to get help.
  • FIG. 4 is a schematic structural diagram of a wearable device 40 according to an embodiment of the present invention.
  • the wearable device 40 may include an obtaining unit 401 and a sending unit 402, where detailed descriptions of the respective units are as follows. .
  • the obtaining unit 401 is configured to acquire physiological information of the user
  • the sending unit 402 is configured to send a prompt message to the target terminal according to the physiological information, to prompt the target terminal to the physiological condition of the user, where the wearable device and the target terminal are in a narrow band based on a cell. Networked in NB-IoT.
  • the sending unit 402 includes:
  • a determining subunit configured to determine, according to the physiological information, whether the user is in a preset dangerous state
  • a first sending subunit configured to determine, in the determining subunit, that Sending a danger prompt message to the target terminal on the frequency resource of the target resource unit, so that the target terminal knows that the user is in the dangerous state
  • the wearable device and the target terminal are in a narrow band based on the cell Internet of Things NB-IoT.
  • the frequency resource of the target resource unit is not the multiple resource unit of the NB-IoT The longest resource unit.
  • the physiological information includes at least one of blood pressure, blood fat, blood sugar, and heart rate.
  • the wearable device 40 determines whether the user is in a dangerous state according to the physiological information of the user, and if yes, sends a danger prompt message to the target terminal on the frequency resource whose specification is the target resource unit, so as to The user is in a dangerous state and is notified to the target terminal, which helps the user and the user to obtain assistance.
  • the first sending subunit is specifically configured to send a hazard prompt message to the base station in the NB-IoT, so that the base station is in the frequency resource of the target resource unit.
  • the dangerous alert message is forwarded to the target terminal.
  • the target resource unit is the shortest resource unit of the plurality of resource units of the NB-IoT.
  • the multiple resource units include a specification of ⁇
  • each unit may also correspond to the corresponding description of the method embodiment shown in FIG. 2 .
  • the wearable device 40 and the target terminal may be based on N
  • B-IoT communicates, making communication between the wearable device 40 and the target terminal more flexible and efficient
  • the wearable device 40 determines, according to the physiological information of the user, whether the user is in a dangerous state, and if yes, sends a danger prompt message to the target terminal on the frequency resource whose specification is the target resource unit, to the user.
  • the situation in a dangerous state and the notification to the target terminal will help the user and the deaf to get help.
  • FIG. 5 is a schematic structural diagram of still another wearable device 40 according to an embodiment of the present invention.
  • the wearable device 40 also includes an obtaining unit 401 and a sending unit 402 shown in FIG. 4;
  • the unit 402 may further include a second sending subunit, where the second sending subunit is configured to be YES in the determining subunit, and the specification is the target, in addition to the determining subunit and the first sending unit.
  • the location information of the wearable device is sent to the target terminal on the frequency resource of the resource unit.
  • the specific implementation of each unit may also correspond to the corresponding description of the method embodiment shown in FIG.
  • the wearable device 40 and the target terminal may be based on N.
  • B-IoT communicates, making communication between the wearable device 40 and the target terminal more flexible and efficient
  • the wearable device 40 determines whether the user is in a dangerous state according to the physiological information of the user, and if yes, sends a danger prompt message to the target terminal on the frequency resource whose specification is the target resource unit, to the user.
  • the situation in a dangerous state and the notification to the target terminal will help the user and the deaf to get help.
  • FIG. 6 is a wearable device 60 according to an embodiment of the present invention.
  • the wearable device 60 includes a processor 601. (The number of processors 601 may be one or more, FIG. 6 Taking a processor as an example), a memory 602 and a transceiver 603 (which may include a radio frequency module, an antenna, etc.), in some embodiments of the invention, the processor 601, the memory 602, and the transceiver 603 may be connected by a bus or other means. In Figure 6, the example is through a bus connection.
  • the memory 602 is configured to store a program
  • the processor 601 calls a program in the memory 602 to perform the following operations:
  • the processor 601 sends a prompt message to the target terminal according to the physiological information by using the transceiver 603, specifically:
  • the transceiver 603 sends a danger prompt message to the target terminal on the frequency resource of the target resource unit, so that the target terminal learns the location. The user is in the dangerous state.
  • the frequency resource of the target resource unit is not the longest resource unit of the multiple resource units of the NB-IoT.
  • the physiological information includes at least one of blood pressure, blood lipid, blood sugar, and heart rate.
  • the wearable device 60 determines whether the user is in a dangerous state according to the physiological information of the user, and if yes, sends a danger prompt message to the target terminal on the frequency resource whose specification is the target resource unit, so as to The user is in a dangerous state and is notified to the target terminal, which helps the user and the user to obtain assistance.
  • the processor 601 is further configured to use, by using the transceiver 603, the uplink resource of the target resource unit The target terminal sends the location information of the wearable device 60.
  • the processor sends a danger prompt message to the target terminal by using the transceiver 603 on the frequency resource of the target resource unit, which is specifically:
  • the processor 601 sends a danger prompt message to the base station in the NB-IoT through the transceiver 603, so that the base station forwards the danger prompt to the target terminal on the frequency resource of the target resource unit. Message.
  • the target resource unit is the shortest resource unit of the plurality of resource units of the NB-IoT.
  • the multiple resource units include a specification of ⁇
  • each unit may also correspond to the corresponding description of the method embodiments shown in FIG. 2 and FIG.
  • the wearable device 60 depicted in FIG. 6 the wearable device 60 and the target terminal may be based on N
  • B-IoT communicates, making communication between the wearable device 60 and the target terminal more flexible and efficient
  • the wearable device 60 determines whether the user is in a dangerous state according to the physiological information of the user, and if yes, sends a danger prompt message to the target terminal on the frequency resource whose specification is the target resource unit, to the user.
  • the situation in a dangerous state and the notification to the target terminal will help the user and the deaf to get help.
  • the wearable device can be based on the target terminal NB-IoT communicates, making communication between the wearable device and the target terminal more flexible and efficient
  • the wearable device determines, according to the physiological information of the user, whether the user is in a dangerous state, and if yes, sends a danger prompt message to the target terminal on the frequency resource whose specification is the target resource unit, so that the user is in the The situation of the dangerous state and the notification to the target terminal will help the user and the deaf to get help.
  • the foregoing storage medium includes various media that can store program codes, such as a ROM, a RAM, a magnetic disk, or an optical disk.

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Abstract

本发明实施例公开了一种数据传输方法及可穿戴设备,该方法包括:可穿戴设备获取用户的生理信息;所述可穿戴设备根据所述生理信息向目标终端发送提示消息,以向所述目标终端提示所述用户的生理状况,所述可穿戴设备与所述目标终端处于基于蜂窝的窄带物联网NB-IoT中。采用本发明,该可穿戴设备可以与该目标终端可以基于NB-IoT进行通信,使得该可穿戴设备与该目标终端之间的通信更加灵活和高效。

Description

一种数据传输方法及可穿戴设备
[0001] 本发明要求 2016年 7月 28日递交的发明名称为 "一种数据传输方法及可穿戴设备 "的申请号 201610614816.2的在先申请优先权, 上述在先申请的内容以引入的方 式并入本文本中。
[0002] 技术领域
[0003] 本发明涉及计算机技术领域, 尤其涉及一种数据传输方法及可穿戴设备。
[0004] 背景技术
[0005] 基于蜂窝的窄带物联网 (英文: Narrow Band Internet of Things , 简称: NB-IoT ) 标准在 2015年 9月第三代合作伙伴计划 (英文: 3rd Generation Partnership Project , 简称: 3GPP) 正式宣布立项。 NB-IOT是一种可在全球范围内广泛应用 的新兴技术, 聚焦于低功耗广域 (英文: Low Power Wide Area,简称: LPWA)物 联网 (英文: Internet Of Things, 简称: I0T) 市场, 它具有覆盖广、 连接多、 速率低、 成本低、 功耗少、 架构优等特点, 可以广泛地应用于远程抄表、 资产 跟踪、 智能停车、 智慧农业等垂直行业。
[0006] NB-IoT对 15kHz子载波定义了很多资源单位, 不再限于长期演进 (英文: Long Term Evolution, 简称: LTE)中定义的 { 12个子载波, 1毫秒 }的资源单位, 以便 更加灵活地分配各种资源单位的吋频资源。 如图 1所示, NB-IoT中定义的资源单 位包括: { 1个子载波, 8毫秒 }的资源单位 101、 {3个子载波, 4毫秒 }的资源单位 1 02、 {6个子载波, 2毫秒 }的资源单位 103和 { 12个子载波, 1毫秒 }的资源单位 104
[0007] NB-IoT中各种规格的资源单位的吋频资源如何使用是本领域的技术人员正在研 究的问题。
[0008] 发明内容
[0009] 本发明实施例公幵了一种数据传输方法及可穿戴设备, 该可穿戴设备与该目标 终端可以基于 NB-IoT进行通信, 使得该可穿戴设备与该目标终端之间的通信更 加灵活和高效。 [0010] 第一方面, 本发明实施例提供了一种数据传输方法, 该方法包括:
[0011] 可穿戴设备获取用户的生理信息;
[0012] 所述可穿戴设备根据所述生理信息向目标终端发送提示消息, 以向所述目标终 端提示所述用户的生理状况, 所述可穿戴设备与所述目标终端处于基于蜂窝的 窄带物联网 NB-IoT中。
[0013] 结合第一方面, 在第一方面的第一种可能的实现方式中, 所述可穿戴设备根据 所述生理信息向目标终端发送提示消息, 包括:
[0014] 所述可穿戴设备根据所述生理信息判断所述用户是否处于预设的危险状态; [0015] 若所述用户处于所述预设的危险状态, 则所述可穿戴设备在规格为目标资源单 位的吋频资源上向目标终端发送危险提示消息, 以使所述目标终端获知所述用 户处于所述危险状态。
[0016] 可选的, 所述目标资源单位的吋频资源不为所述 NB-IoT的多种资源单位中吋域 最长的资源单位。
[0017] 可选的, 该生理信息包括血压、 血脂、 血糖、 心率中至少一项。
[0018] 通过执行上述步骤, 该可穿戴设备根据用户的生理信息判断用户是否处于危险 状态, 若处于则在规格为目标资源单位的吋频资源上向该目标终端发送危险提 示消息, 以将该用户处于危险状态的情况及吋通知给该目标终端, 有助于该用 户及吋获得救助。
[0019] 结合第一方面的第一种可能的实现方式, 在第一方面的的二种可能的实现方式 中, 若所述用户处于所述危险状态, 所述方法还包括:
[0020] 所述可穿戴设备在规格为所述目标资源单位的吋频资源上向所述目标终端发送 所述可穿戴设备的位置信息。
[0021] 结合第一方面的第一种可能的实现方式, 或者第一方面的第二种可能的实现方 式, 在第一方面的第三种可能的实现方式中, 所述可穿戴设备在规格为目标资 源单位的吋频资源上向目标终端发送危险提示消息包括:
[0022] 所述可穿戴设备向 NB-IoT中的基站发送危险提示消息, 以使所述基站在规格为 目标资源单位的吋频资源上向目标终端转发所述危险提示消息。
[0023] 结合第一方面的第一种可能的实现方式, 或者第一方面的第二种可能的实现方 式, 或者第一方面的第三种可能的实现方式, 在第一方面的第四种可能的实现 方式中, 所述目标资源单位为所述 NB-IoT的多种资源单位中吋域最短的资源单 位。
[0024] 结合第一方面的第四种可能的实现方式, 在第一方面的第五种可能的实现方式 中, 所述多种资源单位包括规格为 { 1个子载波, 8毫秒 }、 {3个子载波, 4毫秒 } 、 {6个子载波, 2毫秒 }和{ 12个子载波, 1毫秒 }的资源单位中的至少两项。
[0025] 第二方面, 本发明实施例提供一种可穿戴设备, 所述可穿戴设备包括:
[0026] 获取单元, 用于获取用户的生理信息;
[0027] 发送单元, 用于根据所述生理信息向目标终端发送提示消息, 以向所述目标终 端提示所述用户的生理状况, 所述可穿戴设备与所述目标终端处于基于蜂窝的 窄带物联网 NB-IoT中。
[0028] 结合第二方面, 在第二方面的第一种可能的实现方式中, 所述发送单元包括: [0029] 判断子单元, 用于根据所述生理信息判断所述用户是否处于预设的危险状态; [0030] 第一发送子单元, 用于在所述判断子单元的判断结果为是吋, 在规格为目标资 源单位的吋频资源上向目标终端发送危险提示消息, 以使所述目标终端获知所 述用户处于所述危险状态; 所述可穿戴设备与所述目标终端处于基于蜂窝的窄 带物联网 NB-IoT中。
[0031] 可选的, 所述目标资源单位的吋频资源不为所述 NB-IoT的多种资源单位中吋域 最长的资源单位。
[0032] 可选的, 该生理信息包括血压、 血脂、 血糖、 心率中至少一项。
[0033] 通过运行上述单元, 该可穿戴设备根据用户的生理信息判断用户是否处于危险 状态, 若处于则在规格为目标资源单位的吋频资源上向该目标终端发送危险提 示消息, 以将该用户处于危险状态的情况及吋通知给该目标终端, 有助于该用 户及吋获得救助。
[0034] 结合第二方面的第一种可能的实现方式, 在第二方面的第二种可能的实现方式 中, 所述发送单元还包括第二发送子单元:
[0035] 第二发送子单元, 用于在所述判断单元的判断结果为是吋, 在规格为所述目标 资源单位的吋频资源上向所述目标终端发送所述可穿戴设备的位置信息。 [0036] 结合第二方面的第一种可能的实现方式, 或者第二方面的第二种可能的实现方 式, 在第二方面的第三种可能的实现方式中, 所述第一发送子单元具体用于向 N B-IoT中的基站发送危险提示消息, 以使所述基站在规格为目标资源单位的吋频 资源上向目标终端转发所述危险提示消息。
[0037] 结合第二方面的第一种可能的实现方式, 或者第二方面的第二种可能的实现方 式, 或者第二方面的第三种可能的实现方式, 在第二方面的第四种可能的实现 方式中, 所述目标资源单位为所述 NB-IoT的多种资源单位中吋域最短的资源单 位。
[0038] 结合第二方面的第四种可能的实现方式, 在第二方面的第五种可能的实现方式 中, 所述多种资源单位包括规格为 { 1个子载波, 8毫秒 }、 {3个子载波, 4毫秒 } 、 {6个子载波, 2毫秒 }和{ 12个子载波, 1毫秒 }的资源单位中的至少两项。
[0039] 第三方面, 本发明实施例提供一种可穿戴设备, 该可穿戴设备包括:
[0040] 处理器、 存储器、 收发器和总线, 其中, 所述总线用于实现所述处理器、 所述 存储器和所述收发器两两之间的连接通信;
[0041] 所述存储器中存储有程序代码;
[0042] 所述存储器用于存储程序;
[0043] 所述处理器调用所述存储器中的程序, 用于执行如本发明实施例第一方面任一 方法中的部分或全部步骤。
[0044] 通过实施本发明实施例, 该可穿戴设备可以与该目标终端可以基于 NB-IoT进行 通信, 使得该可穿戴设备与该目标终端之间的通信更加灵活和高效。
[0045] 进一步地, 该可穿戴设备根据用户的生理信息判断用户是否处于危险状态, 若 处于则在规格为目标资源单位的吋频资源上向该目标终端发送危险提示消息, 以将该用户处于危险状态的情况及吋通知给该目标终端, 有助于该用户及吋获 得救助。
[0046] 附图说明
[0047] 为了更清楚地说明本发明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 附图是本发明的一些实施例, 对于本领域普通技术人员来讲, 在不付出创造性 劳动的前提下, 还可以根据这些附图获得其他的附图。
[0048] 图 1是现有技术中 NB-IoT中定义的多种资源单位的场景示意图;
[0049] 图 2是本发明实施例提供的一种数据传输方法的流程示意图;
[0050] 图 3是本发明实施例提供的又一种数据传输方法的流程示意图;
[0051] 图 4是本发明实施例提供的一种可穿戴设备的结构示意图;
[0052] 图 5是本发明实施例提供的又一种可穿戴设备的结构示意图;
[0053] 图 6是本发明实施例提供的又一种可穿戴设备的结构示意图。
[0054] 具体实施方式
[0055] 下面将结合本发明实施例中的附图, 对本发明实施例中的技术方案进行清楚、 完整地描述, 显然, 所描述的实施例是本发明的一部分实施例, 而不是全部的 实施例。 基于本发明中的实施例, 本领域普通技术人员在没有做出创造性劳动 前提下所获得的所有其他实施例, 都属于本发明保护的范围。
[0056] 在本发明实施例中, 可穿戴设备获取用户的生理信息; 所述可穿戴设备根据所 述生理信息向目标终端发送提示消息, 例如, 该提示消息具体为危险提示消息 , 该提示消息用于向所述目标终端提示所述用户的生理状况, 所述可穿戴设备 与所述目标终端处于基于蜂窝的窄带物联网 NB-IoT中, 也即是说, 该可穿戴设 备可以与该目标终端可以基于 NB-IoT进行通信, 使得该可穿戴设备与该目标终 端之间的通信更加灵活和高效。 为了更好地理解本发明实施了的方案, 以下结 合具体场景来对本发明实施例的方案举例描述。
[0057] 请参见图 2, 图 2是本发明实施例提供的一种数据传输方法的流程示意图, 该方 法包括但不限于如下步骤。
[0058] 步骤 S201 : 可穿戴设备获取用户的生理信息。
[0059] 具体地, 该可穿戴设备可以为智能手环、 智能手表等电子设备, 由于该可穿戴 设备紧贴用户皮肤或者距离用户皮肤较近, 因此该可穿戴设备可以获取到用户 的生理信息, 该生理信息具体为哪些信息此处不做限定, 可选的, 该生理信息 包括血糖、 血脂、 血压和心率中至少一项。
[0060] 进一步地, 该可穿戴设备中可以预先配置好用于采集该生理信息的器件, 例如 , 该可穿戴设备可以包含用于感应用户脉搏跳动的传感器以及计吋器, 在预设 吋间段内, 每次通过该传感器感应到用户有一次心跳吋就通过该计吋器将记录 的数值加一, 然后该预设吋间段内记录的总的心跳次数除以该预设吋间段可以 得到心率。 当然, 也可以通过其他方式获取心率; 其他生理参数具体如何获取 此处不再一一举例。
[0061] 步骤 S202: 所述可穿戴设备根据所述生理信息判断所述用户是否处于预设的危 险状态。
[0062] 具体地, 可以预先为该生理信息设置危险门限, 当该生理信息超出该危险门限 吋表明该用户处于该预设的危险状态。 举例来说, 假设该生理信息为心率, 并 且设定的危险门限为 40次 /分钟吋, 如果用户的心率低于 40次 /分钟则认为该用户 处于预设的危险状态。
[0063] 在一种可选的方案中, 当预设的生理信息有多项吋, 该多项生理信息均超出对 应的危险门限吋, 才认为该用户处于预设的危险状态。 举例来说, 该生理信息 包括心率和血压, 且心率对应的危险门限为 40次 /分钟, 血压对应的危险门限为 舒张压 12kpa, 那么当用户的心率低于 40次 /分钟且舒张压大于 12kpa则表明该用 户处于该预设的危险状态。
[0064] 在又一种可选的方案中, 当预设的生理信息有多项吋, 该多项生理信息中任一 项生理信息超出对应的危险门限吋, 则认为该用户处于预设的危险状态。 举例 来说, 该生理信息包括心率和血压, 且心率对应的危险门限为 40次 /分钟, 血压 对应的危险门限为舒张压 12kpa, 那么当用户的心率低于 40次 /分钟认为该用户处 于危险状态, 当舒张压大于 12kpa也认为该用户处于该预设的危险状态, 当用户 的心率低于 40次 /分钟且舒张压大于 12kpa也认为该用户处于该预设的危险状态。
[0065] 步骤 S203: 若所述用户处于所述预设的危险状态, 则所述可穿戴设备在规格为 目标资源单位的吋频资源上向目标终端发送危险提示消息。
[0066] 具体地, 所述可穿戴设备与所述目标终端处于基于蜂窝的窄带物联网 NB-IoT中
, NB-IoT中各个终端设备之间进行数据传输所使用的吋频资源的资源单位有多 种选择余地, 例如, 该 NB-IoT中存在规格为 { 1个子载波, 8毫秒 }、 {3个子载波 , 4毫秒 }、 {6个子载波, 2毫秒 }和{ 12个子载波, 1毫秒 }的资源单位。 如果某个 设备传输数据吋采用的吋频资源的资源单位为 {6个子载波, 2毫秒 }规格的, 那么 说明该吋频资源的频域长度为 6个子载波, 吋域长度为 2毫秒, 其余规格的资源 单位依次类推。
[0067] 当判断出用户处于所述预设的危险状态吋, 该可穿戴设备向预先与该可穿戴设 备关联好的目标终端发送危险提示消息, 该危险提示消息具体承载在资源单位 为目标资源单位的吋频资源上发送, 该目标资源单位为该 NB-IoT中的多种资源 单位中的一种。 在一种可选的方案中, 该目标资源单位不为该多种资源单位中 吋域最长的资源单元。 在又一种可选的方案中, 该目标资源单位为该多种资源 单位中吋域最短的资源单位。 可以理解的是, 该危险提示消息承载在吋域越短 的资源单位上发送吋发送所需的吋间越短, 能够保证该危险提示消息更快的发 送到该目标终端。
[0068] 在一种可选的方案中, 所述可穿戴设备在规格为目标资源单位的吋频资源上向 目标终端发送危险提示消息, 具体为: 所述可穿戴设备向 NB-IoT中的基站发送 危险提示消息, 以使所述基站在规格为目标资源单位的吋频资源上向目标终端 转发所述危险提示消息。 也即是说, 本发明实施例不限定该可穿戴设备向 NB-Io T中的基站发送该危险提示消息所采用的吋频资源的资源单位, 但是要求该基站 将该危险提示消息转发给该目标终端吋所采用的吋频资源的资源单位为该目标 资源单位。
[0069] 在又一种可选的方案中, 该基站还可以为该目标终端调度资源单位为该目标资 源单位的吋频资源, 以便该目标终端后续在资源单位为该目标资源单位的吋频 资源上向该可穿戴设备发送响应消息, 该响应消息可以给使用该可穿戴设备的 用户一些提醒, 或者建议; 有可能使用该可穿戴设备的用户已经无法感知该响 应消息, 此吋该响应消息可以用来提醒该可穿戴设备周围的其他人来帮助使用 该可穿戴设备的用户。
[0070] 该目标终端可以是手机、 平板电脑、 笔记本电脑、 掌上电脑、 移动互联网设备
(英文: mobile internet
device, 简称: MID) 、 可穿戴设备 (例如智能手表 (如 iWatch等) 、 智能手环 、 计步器等) 或其他可安装部署即吋通讯应用客户端的终端设备。
[0071] 在又一种可选的方案中, 当预先配置了多种生理信息吋, 例如, 预先配置的生 理信息包括血压、 血糖、 血脂、 心率, 那么, 该危险提示消息中还指示了该用 户是那一项或者哪几项生理参数不达标导致用户处于危险状态的。
[0072] 步骤 S204: 所述目标终端接收所述可穿戴设备发送的危险提示消息。
[0073] 步骤 S205: 所述目标终端通过所述危险提示消息获知用户处于危险状态。
[0074] 具体地, 该目标终端接收到该危险提示消息后向使用该目标终端的用户发出提 示, 该用户因此获知使用该可穿戴设备的用户处于危险状态。
[0075] 举例来说, 该目标终端上配置有振铃器件和触摸显示屏, 该目标终端接收到该 危险提示消息后通过该振铃器件振动, 使用该目标终端的用户感应到该目标终 端振动吋即可获知使用该可穿戴设备的用户处于危险状态。
[0076] 举例来说, 该目标终端上配置有音频器件和触摸显示屏, 该目标终端接收到该 危险提示消息后通过该音频器件发出提示声音, 使用该目标终端的用户听到该 目标终端发出的提示声音吋即可获知使用该可穿戴设备处于危险状态。
[0077] 举例来说, 该目标终端上配置有灯光器件和触摸显示屏, 该目标终端接收到该 危险提示消息后通过该灯光器件发出闪烁的灯光, 使用该目标终端的用户看到 该目标终端发出的灯光提示吋即可获知使用该可穿戴设备的用户处于危险状态
[0078] 举例来说, 该目标终端上配置有触摸显示屏, 该目标终端接收到该危险提示消 息后通过该触摸显示屏弹出弹窗, 使用该目标终端的用户看到该触摸显示屏显 示的弹窗吋即可获知使用该可穿戴设备的用户处于危险状态。
[0079] 可以理解的是, 该目标终端接收到该危险提示消息后向用户发出提示的方式还 可以为其他方式, 例如, 通过输出文字、 图像、 动画等方式来发出提示, 此处 不对提示方式作限定。
[0080] 使用该目标终端的用户获知使用该可穿戴设备的用户处于危险状态吋, 就可以 及吋提供相应的帮助。
[0081] 在图 2所描述的方法中, 该可穿戴设备可以与该目标终端可以基于 NB-IoT进行 通信, 使得该可穿戴设备与该目标终端之间的通信更加灵活和高效。
[0082] 进一步地, 该可穿戴设备根据用户的生理信息判断用户是否处于危险状态, 若 处于则在规格为目标资源单位的吋频资源上向该目标终端发送危险提示消息, 以将该用户处于危险状态的情况及吋通知给该目标终端, 有助于该用户及吋获 得救助。
[0083] 请参见图 3, 图 3是本发明实施例提供的又一种数据传输方法的流程示意图, 该 方法包括但不限于如下步骤。
[0084] 步骤 S301 : 可穿戴设备获取用户的生理信息。
[0085] 具体地, 步骤 S301可以对应参照步骤 S201 , 此处不再赘述。
[0086] 步骤 S302: 所述可穿戴设备根据所述生理信息判断所述用户是否处于预设的危 险状态。
[0087] 具体地, 步骤 S302可以对应参照步骤 S202, 此处不再赘述。
[0088] 步骤 S303: 若所述用户处于所述预设的危险状态, 则所述可穿戴设备在规格为 目标资源单位的吋频资源上向目标终端发送危险提示消息, 以使所述目标终端 获知所述用户处于所述危险状态。
[0089] 步骤 S304: 所述目标终端接收所述可穿戴设备发送的危险提示消息。
[0090] 步骤 S305: 所述目标终端通过所述危险提示消息获知用户处于危险状态。
[0091] 具体地, 步骤 S303~S305可以对应参照步骤 S203~S205, 此处不再赘述。
[0092] 步骤 S306: 若所述用户处于所述危险状态, 所述可穿戴设备在规格为所述目标 资源单位的吋频资源上向所述目标终端发送所述可穿戴设备的位置信息。
[0093] 具体地, 当所述用户处于所述危险状态吋, 该可穿戴设备不仅要向该目标终端 发送危险提示消息, 还要将自身当前的位置发送给该目标终端。 该可穿戴设备 中可以预先配置用于定位的模块, 例如, 全球定位系统 (英文: Global
Positioning System, 简称: GPS) 模块。
[0094] 需要说明的是, 该位置信息和该危险提示消息哪个先发送此处不作限制, 两者 既可以先后发送也可以同吋发送; 进一步地, 该位置信息和该危险提示消息还 可以处于同一消息中的不同部分。
[0095] 步骤 S307: 所述目标终端接收所述可穿戴设备发送的位置消息。
[0096] 步骤 S308: 所述目标终端通过所述位置消息获知用户所在的位置。
[0097] 具体地, 使用该目标终端的用户就可以根据该位置消息获得使用该可穿戴设备 的用户的位置, 从而可以在情况较为紧急的情况下为使用该可穿戴设备的用户 提供更全面的帮助。
[0098] 可选的, 该可穿戴设备上设置有呼救模块, 该目标终端可以控制该呼救模块发 出呼救提示, 用于提示该可穿戴设备周围的用户及吋对使用该可穿戴设备的用 户进行救助。 该目标终端与该可穿戴设备之间可以进行语音通信, 如果从该目 标终端发送给该可穿戴设备的语音没有获得回应, 那么使用该目标终端的用户 可以远程启动该呼救模块。
[0099] 在图 3所描述的方法中, 该可穿戴设备可以与该目标终端可以基于 NB-IoT进行 通信, 使得该可穿戴设备与该目标终端之间的通信更加灵活和高效。
[0100] 进一步地, 该可穿戴设备根据用户的生理信息判断用户是否处于危险状态, 若 处于则在规格为目标资源单位的吋频资源上向该目标终端发送危险提示消息, 以将该用户处于危险状态的情况及吋通知给该目标终端, 有助于该用户及吋获 得救助。
[0101] 上述详细阐述了本发明实施例的方法, 为了便于更好地实施本发明实施例的上 述方案, 相应地, 下面提供了本发明实施例的装置。
[0102] 请参见图 4, 图 4是本发明实施例提供的一种可穿戴设备 40的结构示意图, 该可 穿戴设备 40可以包括获取单元 401和发送单元 402, 其中, 各个单元的详细描述 如下。
[0103] 获取单元 401用于获取用户的生理信息;
[0104] 发送单元 402用于根据所述生理信息向目标终端发送提示消息, 以向所述目标 终端提示所述用户的生理状况, 所述可穿戴设备与所述目标终端处于基于蜂窝 的窄带物联网 NB-IoT中。
[0105] 在一种可选的方案中, 所述发送单元 402包括:
[0106] 判断子单元, 用于根据所述生理信息判断所述用户是否处于预设的危险状态; [0107] 第一发送子单元, 用于在所述判断子单元的判断结果为是吋, 在规格为目标资 源单位的吋频资源上向目标终端发送危险提示消息, 以使所述目标终端获知所 述用户处于所述危险状态; 所述可穿戴设备与所述目标终端处于基于蜂窝的窄 带物联网 NB-IoT中。
[0108] 可选的, 所述目标资源单位的吋频资源不为所述 NB-IoT的多种资源单位中吋域 最长的资源单位。
[0109] 可选的, 该生理信息包括血压、 血脂、 血糖、 心率中至少一项。
[0110] 通过运行上述单元, 该可穿戴设备 40根据用户的生理信息判断用户是否处于危 险状态, 若处于则在规格为目标资源单位的吋频资源上向该目标终端发送危险 提示消息, 以将该用户处于危险状态的情况及吋通知给该目标终端, 有助于该 用户及吋获得救助。
[0111] 在又一种可选的方案中, 所述第一发送子单元具体用于向 NB-IoT中的基站发送 危险提示消息, 以使所述基站在规格为目标资源单位的吋频资源上向目标终端 转发所述危险提示消息。
[0112] 在又一种可选的方案中, 所述目标资源单位为所述 NB-IoT的多种资源单位中吋 域最短的资源单位。
[0113] 在又一种可选的方案中, 所述多种资源单位包括规格为{
1个子载波, 8毫秒 }、 {3个子载波, 4毫秒 }、 {6个子载波, 2毫秒 }和{ 12个子载波
, 1毫秒 }的资源单位中的至少两项。
[0114] 需要说明的是, 在本发明实施例中, 各个单元的具体实现还可以对应参照图 2 所示的方法实施例的相应描述。
[0115] 在图 4所描述的可穿戴设备 40中, 该可穿戴设备 40可以与该目标终端可以基于 N
B-IoT进行通信, 使得该可穿戴设备 40与该目标终端之间的通信更加灵活和高效
[0116] 进一步地, 该可穿戴设备 40根据用户的生理信息判断用户是否处于危险状态, 若处于则在规格为目标资源单位的吋频资源上向该目标终端发送危险提示消息 , 以将该用户处于危险状态的情况及吋通知给该目标终端, 有助于该用户及吋 获得救助。
[0117] 请参见图 5, 图 5是本发明实施例提供的又一种可穿戴设备 40的结构示意图, 该 可穿戴设备 40也包括图 4所示的获取单元 401和发送单元 402; 该发送单元 402除 了包括判断子单元和第一发送单元外, 还可以包括第二发送子单元, 该第二发 送子单元用于在所述判断子单元的判断结果为是吋, 在规格为所述目标资源单 位的吋频资源上向所述目标终端发送所述可穿戴设备的位置信息。 [0118] 需要说明的是, 在本发明实施例中, 各个单元的具体实现还可以对应参照图 3 所示的方法实施例的相应描述。
[0119] 在图 5所描述的可穿戴设备 40中, 该可穿戴设备 40可以与该目标终端可以基于 N
B-IoT进行通信, 使得该可穿戴设备 40与该目标终端之间的通信更加灵活和高效
[0120] 进一步地, 该可穿戴设备 40根据用户的生理信息判断用户是否处于危险状态, 若处于则在规格为目标资源单位的吋频资源上向该目标终端发送危险提示消息 , 以将该用户处于危险状态的情况及吋通知给该目标终端, 有助于该用户及吋 获得救助。
[0121] 请参见图 6, 图 6是本发明实施例提供的一种可穿戴设备 60, 所述可穿戴设备 60 为包括处理器 601 (处理器 601的数量可以一个或多个, 图 6中以一个处理器为例 ) 、 存储器 602和收发器 603 (可以包括射频模块、 天线等) , 在本发明的一些 实施例中, 处理器 601、 存储器 602和收发器 603可通过总线或者其它方式连接, 图 6中以通过总线连接为例。
[0122] 所述存储器 602用于存储程序;
[0123] 所述处理器 601调用所述存储器 602中的程序, 用于执行如下操作:
[0124] 获取用户的生理信息;
[0125] 通过所述收发器 603根据所述生理信息向目标终端发送提示消息, 以向所述目 标终端提示所述用户的生理状况, 所述可穿戴设备与所述目标终端处于基于蜂 窝的窄带物联网 NB-IoT中。
[0126] 在一种可选的方案中, 所述处理器 601通过所述收发器 603根据所述生理信息向 目标终端发送提示消息, 具体为:
[0127] 根据所述生理信息判断所述用户是否处于预设的危险状态;
[0128] 若所述用户处于所述预设的危险状态, 则通过所述收发器 603在规格为目标资 源单位的吋频资源上向目标终端发送危险提示消息, 以使所述目标终端获知所 述用户处于所述危险状态。
[0129] 可选的, 所述目标资源单位的吋频资源不为所述 NB-IoT的多种资源单位中吋域 最长的资源单位。 [0130] 可选的, 该生理信息包括血压、 血脂、 血糖、 心率中至少一项。
[0131] 通过执行上述操作, 该可穿戴设备 60根据用户的生理信息判断用户是否处于危 险状态, 若处于则在规格为目标资源单位的吋频资源上向该目标终端发送危险 提示消息, 以将该用户处于危险状态的情况及吋通知给该目标终端, 有助于该 用户及吋获得救助。
[0132] 在又一种可选的方案中, 若所述用户处于所述危险状态, 所述处理器 601还用 于通过所述收发器 603为所述目标资源单位的吋频资源上向所述目标终端发送所 述可穿戴设备 60的位置信息。
[0133] 在又一种可选的方案中, 所述处理器通 601过所述收发器 603在规格为目标资源 单位的吋频资源上向目标终端发送危险提示消息, 具体为:
[0134] 所述处理器 601通过所述收发器 603向 NB-IoT中的基站发送危险提示消息, 以使 所述基站在规格为目标资源单位的吋频资源上向目标终端转发所述危险提示消 息。
[0135] 在又一种可选的方案中, 所述目标资源单位为所述 NB-IoT的多种资源单位中吋 域最短的资源单位。
[0136] 在又一种可选的方案中, 所述多种资源单位包括规格为{
1个子载波, 8毫秒 }、 {3个子载波, 4毫秒 }、 {6个子载波, 2毫秒 }和{ 12个子载波
, 1毫秒 }的资源单位中的至少两项。
[0137] 需要说明的是, 在本发明实施例中, 各个单元的具体实现还可以对应参照图 2 和图 3所示的方法实施例的相应描述。
[0138] 在图 6所描述的可穿戴设备 60中, 该可穿戴设备 60可以与该目标终端可以基于 N
B-IoT进行通信, 使得该可穿戴设备 60与该目标终端之间的通信更加灵活和高效
[0139] 进一步地, 该可穿戴设备 60根据用户的生理信息判断用户是否处于危险状态, 若处于则在规格为目标资源单位的吋频资源上向该目标终端发送危险提示消息 , 以将该用户处于危险状态的情况及吋通知给该目标终端, 有助于该用户及吋 获得救助。
[0140] 综上所述, 通过实施本发明实施例, 该可穿戴设备可以与该目标终端可以基于 NB-IoT进行通信, 使得该可穿戴设备与该目标终端之间的通信更加灵活和高效
[0141] 进一步地, 该可穿戴设备根据用户的生理信息判断用户是否处于危险状态, 若 处于则在规格为目标资源单位的吋频资源上向该目标终端发送危险提示消息, 以将该用户处于危险状态的情况及吋通知给该目标终端, 有助于该用户及吋获 得救助。
[0142] 本领域普通技术人员可以理解实现上述实施例方法中的全部或部分流程, 是可 以通过计算机程序来指令相关的硬件来完成, 所述的程序可存储于计算机可读 取存储介质中, 该程序在执行吋, 可包括如上述各方法的实施例的流程。 而前 述的存储介质包括: ROM、 RAM. 磁碟或者光盘等各种可以存储程序代码的介 质。
[0143] 以上实施例仅揭露了本发明中较佳实施例, 不能以此来限定本发明之权利范围 , 本领域普通技术人员可以理解实现上述实施例的全部或部分流程, 并依本发 明权利要求所作的等同变化, 仍属于发明所涵盖的范围。
技术问题
问题的解决方案
发明的有益效果

Claims

权利要求书
[权利要求 1] 一种数据传输方法, 其特征在于, 包括:
可穿戴设备获取用户的生理信息;
所述可穿戴设备根据所述生理信息向目标终端发送提示消息, 以向所 述目标终端提示所述用户的生理状况, 所述可穿戴设备与所述目标终 端处于基于蜂窝的窄带物联网 NB-IoT中。
[权利要求 2] 根据权利要求 1所述的方法, 其特征在于, 所述可穿戴设备根据所述 生理信息向目标终端发送提示消息, 包括:
所述可穿戴设备根据所述生理信息判断所述用户是否处于预设的危险 状态;
若所述用户处于所述预设的危险状态, 则所述可穿戴设备在规格为目 标资源单位的吋频资源上向目标终端发送危险提示消息, 以使所述目 标终端获知所述用户处于所述危险状态。
[权利要求 3] 根据权利要求 2所述的方法, 其特征在于, 若所述用户处于所述危险 状态, 所述方法还包括:
所述可穿戴设备在规格为所述目标资源单位的吋频资源上向所述目标 终端发送所述可穿戴设备的位置信息。
[权利要求 4] 根据权利要求 2或 3所述的方法, 其特征在于, 所述可穿戴设备在规格 为目标资源单位的吋频资源上向目标终端发送危险提示消息包括: 所述可穿戴设备向 NB-IoT中的基站发送危险提示消息, 以使所述基 站在规格为目标资源单位的吋频资源上向目标终端转发所述危险提示 消息。
[权利要求 5] 根据权利要求 1~4任一项所述的方法, 其特征在于, 所述目标资源单 位为所述 NB-IoT的多种资源单位中吋域最短的资源单位。
[权利要求 6] —种可穿戴设备, 其特征在于, 所述可穿戴设备包括: 获取单元, 用于获取用户的生理信息;
发送单元, 用于根据所述生理信息向目标终端发送提示消息, 以向所 述目标终端提示所述用户的生理状况, 所述可穿戴设备与所述目标终 端处于基于蜂窝的窄带物联网 NB-IoT中。
[权利要求 7] 根据权利要求 6所述的方法, 其特征在于, 所述发送单元包括:
判断子单元, 用于根据所述生理信息判断所述用户是否处于预设的危 险状态;
第一发送子单元, 用于在所述判断子单元的判断结果为是吋, 在规格 为目标资源单位的吋频资源上向目标终端发送危险提示消息, 以使所 述目标终端获知所述用户处于所述危险状态; 所述可穿戴设备与所述 目标终端处于基于蜂窝的窄带物联网 NB-IoT中。
[权利要求 8] 根据权利要求 7所述的可穿戴设备, 其特征在于, 所述发送单元还包 括第二发送子单元:
第二发送子单元, 用于在所述判断子单元的判断结果为是吋, 在规格 为所述目标资源单位的吋频资源上向所述目标终端发送所述可穿戴设 备的位置信息。
[权利要求 9] 根据权利要求 7或 8所述的可穿戴设备, 其特征在于, 所述第一发送子 单元具体用于向 NB-IoT中的基站发送危险提示消息, 以使所述基站 在规格为目标资源单位的吋频资源上向目标终端转发所述危险提示消 息。
[权利要求 10] 根据权利要求 7~9任一项所述的可穿戴设备, 其特征在于, 所述目标 资源单位为所述 NB-IoT的多种资源单位中吋域最短的资源单位。 [权利要求 11] 一种可穿戴设备, 其特征在于, 包括:
处理器、 存储器、 收发器和总线, 其中, 所述总线用于实现所述处理 器、 所述存储器和所述收发器两两之间的连接通信;
所述存储器中存储有程序代码;
所述存储器用于存储程序;
所述处理器调用所述存储器中的程序, 用于执行如权利要求 1-5任一 项所描述的方法。
PCT/CN2016/108333 2016-07-28 2016-12-02 一种数据传输方法及可穿戴设备 WO2018018823A1 (zh)

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