CN111540457A - Binding method and device, electronic equipment and computer storage medium - Google Patents

Binding method and device, electronic equipment and computer storage medium Download PDF

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Publication number
CN111540457A
CN111540457A CN202010255589.5A CN202010255589A CN111540457A CN 111540457 A CN111540457 A CN 111540457A CN 202010255589 A CN202010255589 A CN 202010255589A CN 111540457 A CN111540457 A CN 111540457A
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binding
ecg
intelligent terminal
ecg device
information
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CN202010255589.5A
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CN111540457B (en
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涂勇策
彭赛煌
张博
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Mobvoi Information Technology Co Ltd
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Mobvoi Information Technology Co Ltd
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Priority to CN202010255589.5A priority Critical patent/CN111540457B/en
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Priority to PCT/CN2020/138374 priority patent/WO2021196763A1/en
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    • GPHYSICS
    • G16INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR SPECIFIC APPLICATION FIELDS
    • G16HHEALTHCARE INFORMATICS, i.e. INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR THE HANDLING OR PROCESSING OF MEDICAL OR HEALTHCARE DATA
    • G16H40/00ICT specially adapted for the management or administration of healthcare resources or facilities; ICT specially adapted for the management or operation of medical equipment or devices
    • G16H40/60ICT specially adapted for the management or administration of healthcare resources or facilities; ICT specially adapted for the management or operation of medical equipment or devices for the operation of medical equipment or devices
    • G16H40/67ICT specially adapted for the management or administration of healthcare resources or facilities; ICT specially adapted for the management or operation of medical equipment or devices for the operation of medical equipment or devices for remote operation
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/24Detecting, measuring or recording bioelectric or biomagnetic signals of the body or parts thereof
    • A61B5/316Modalities, i.e. specific diagnostic methods
    • A61B5/318Heart-related electrical modalities, e.g. electrocardiography [ECG]

Abstract

The invention discloses a binding method, which is applied to ECG equipment and comprises the following steps: after the ECG device establishes communication connection with the intelligent terminal, sending an ECG state notification message to the intelligent terminal, wherein the ECG state notification message comprises state data of the ECG device, and the state data comprises address information of the ECG device; receiving a binding request message sent by the intelligent terminal after receiving the ECG state notification message, wherein the binding request message at least comprises identification information and address information of the intelligent terminal; returning a binding response message to the intelligent terminal, and locally storing first binding information, wherein the information at least comprises a binding relation between the ECG equipment and the identification information of the corresponding intelligent terminal; at least the address information of the ECG device is included in the binding response message. The invention also discloses a binding device, electronic equipment and a computer storage medium, and by implementing the method, the problem of how to establish binding between the intelligent terminal and the ECG equipment is solved, and a foundation is provided for the function development of the intelligent terminal and the ECG equipment.

Description

Binding method and device, electronic equipment and computer storage medium
Technical Field
The invention relates to the technical field of intelligent terminals, in particular to a binding method and device, electronic equipment and a computer readable storage medium.
Background
With the development of intelligent terminals and the use of intelligent terminals in various fields and application scenarios, the types and functions of intelligent terminals have become rich and diverse. The measurement of the electrocardiogram of the user is conveniently realized through an intelligent terminal and an Electrocardiogram (ECG) device, which is a function expansion of the intelligent terminal in another technical field and application scenario. Under the innovative concept, how to realize the binding of the intelligent terminal and the ECG device and how to design a binding scheme mechanism are technical problems to be solved urgently.
Disclosure of Invention
The present invention provides a binding method and apparatus, an electronic device, and a computer-readable storage medium, to at least solve the above technical problems in the prior art.
The invention provides a binding method applied to Electrocardiogram (ECG) equipment, which comprises the following steps:
after the ECG device establishes communication connection with an intelligent terminal, sending an ECG state notification message to the intelligent terminal, wherein the ECG state notification message comprises state data of the ECG device, and the state data comprises address information of the ECG device;
receiving a binding request message sent by the intelligent terminal after the ECG state notification message is received, wherein the binding request message at least comprises identification information and address information of the intelligent terminal;
returning a binding response message to the intelligent terminal, and locally storing first binding information, wherein the first binding information at least comprises a binding relation between the ECG equipment and the identification information of the corresponding intelligent terminal; at least address information of the ECG device is included in the binding response message.
In an embodiment, the method further comprises:
after the ECG equipment establishes communication connection with an intelligent terminal, the ECG equipment sends an ECG state notification message to the intelligent terminal when acquiring a first trigger instruction; the first trigger instruction is used for indicating the beginning of a binding process;
correspondingly, after the ECG device obtains the first trigger instruction, the binding process is executed, and if a second trigger instruction is obtained, the binding process is stopped; the second trigger instruction is used for indicating to abort the binding process.
In an embodiment, the ECG device has a trigger electrode, the method further comprising:
the ECG device obtains the first triggering instruction when the trigger electrode is triggered, and obtains the second triggering instruction when the trigger electrode is deactivated;
alternatively, the ECG device obtains the first triggering instruction when the trigger electrode is triggered for the first time and obtains the second triggering instruction when the trigger electrode is triggered for the second time.
The invention also provides a binding method applied to the intelligent terminal, which comprises the following steps:
receiving an ECG state notification message from an Electrocardiogram (ECG) device, wherein the ECG state notification message comprises state data of the ECG device, and the state data comprises address information of the ECG device;
sending a binding request message to the ECG device, wherein the binding request message at least comprises identification information and address information of the intelligent terminal;
receiving a binding response message of the ECG device, and locally storing second binding information, wherein the second binding information at least comprises a binding relationship between the address information of the intelligent terminal and the ECG device; at least address information of the ECG device is included in the binding response message.
In an embodiment, before obtaining the ECG status notification message from the electrocardiogram ECG device, the method further comprises:
obtaining a third trigger instruction, wherein the third trigger instruction is used for indicating the start of a binding process;
and responding to the third trigger instruction, and calling a binding interface, wherein the binding interface is used for updating the state change in the binding process in real time and comprises the state of successful binding displayed on the binding interface after the binding is finished.
In an embodiment, the method further comprises:
after sending a binding request message to the ECG device, starting a timer, and if the timer is overtime and still does not receive a binding response message returned by the ECG device, retransmitting the binding request message to the ECG device when determining that the sending times of the binding request message does not exceed a preset time; and when the sending times of the binding request message are determined to exceed the preset times, stopping sending the binding request message to the ECG equipment, and stopping the binding process with the corresponding ECG equipment.
Another aspect of the present invention provides a binding apparatus for an Electrocardiographic (ECG) device, the apparatus comprising:
the first sending unit is used for sending an ECG state notification message to the intelligent terminal after the ECG device establishes communication connection with the intelligent terminal, wherein the ECG state notification message comprises state data of the ECG device, and the state data comprises address information of the ECG device;
a first receiving unit, configured to receive a binding request message sent by the intelligent terminal after receiving the ECG state notification message, where the binding request message at least includes identification information and address information of the intelligent terminal;
a second sending unit, configured to return a binding response message to the intelligent terminal, where the binding response message at least includes address information of the ECG device;
the first processing unit is used for locally storing first binding information, and the first binding information at least comprises a binding relation between the ECG device and identification information of a corresponding intelligent terminal.
In another aspect, the present invention provides a binding apparatus applied to an intelligent terminal, including:
a second receiving unit, configured to receive an ECG state notification message from an electrocardiogram ECG device, where the ECG state notification message includes state data of the ECG device, and the state data includes address information of the ECG device;
a third sending unit, configured to send a binding request message to the ECG device, where the binding request message at least includes identification information and address information of the smart terminal;
a third receiving unit, configured to receive a binding response message of the ECG device, where the binding response message at least includes address information of the ECG device;
and the second processing unit is used for locally storing second binding information, wherein the second binding information at least comprises a binding relationship between the intelligent terminal and the address information of the ECG device.
Yet another aspect of the present invention provides a computer-readable storage medium storing a computer program for executing the binding method according to the present invention.
Yet another aspect of the invention provides an electronic device, a processor;
a memory for storing the processor-executable instructions;
the processor is used for reading the executable instruction from the memory and executing the instruction to realize the binding method of the invention.
By implementing the binding method and device, the electronic device and the computer readable storage medium, the problem of how to establish binding between the intelligent terminal and the ECG device is solved, a foundation is provided for function development of the intelligent terminal and the ECG device, the binding scheme mechanism is simple and efficient in design, processor resources of the device are not excessively occupied, the processor resources and energy consumption of the intelligent terminal and the ECG device are saved, and the binding establishment process with high efficiency and short time is realized.
Drawings
Fig. 1 shows a flow diagram of a binding method implemented on the ECG device side according to an embodiment of the present invention;
FIG. 2 is a flow chart illustrating a binding method implemented at an intelligent terminal according to an embodiment of the present invention;
fig. 3 is a flowchart illustrating a connection establishment method according to an embodiment of the present invention;
FIG. 4 is a schematic diagram illustrating a structure of a binding apparatus according to an embodiment of the present invention;
FIG. 5 is a schematic diagram illustrating a structure of another binding apparatus according to an embodiment of the present invention;
fig. 6 shows a schematic diagram of an electronic device according to an embodiment of the invention.
Detailed Description
In order to make the objects, features and advantages of the present invention more obvious and understandable, the technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention, and it is apparent that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Example one
Referring to fig. 1, in an embodiment of the present invention, a binding method implemented on an ECG device side is provided, where the method mainly includes:
step 101, after the ECG device establishes communication connection with the intelligent terminal, sending an ECG state notification message to the intelligent terminal, where the ECG state notification message includes state data of the ECG device, and the state data includes address information of the ECG device.
The ECG device of the embodiment of the present invention refers to a device for measuring ECG data of a user, and it should be noted that the embodiment of the present invention does not limit the type and kind of the ECG device, and may be an ECG device used in a hospital, an ECG device used in a home, or a wearable ECG device with a certain innovative design, such as a wrist strap ECG device or other wearable ECG devices, etc. The ECG device may also be applied in smart devices, such as smart phones, smart tablets, etc. The method of the embodiment of the invention is used for providing a binding scheme between the intelligent terminal and the ECG device, and is not used for limiting the types and the categories of the intelligent terminal and the ECG device.
The binding method of the embodiment of the invention is completed on the basis of establishing the communication connection between the ECG device and the intelligent terminal, and the process of establishing the communication connection between the ECG device and the intelligent terminal is explained in detail in the following.
For convenience of description, the ECG status notification message is hereinafter abbreviated as EcgStatus message, and the format of the EcgStatus message may include the following fields: type _ BT _ ADDRESS represents ADDRESS information of the ECG device, and a connection mode of Bluetooth Low Energy (BLE) may be adopted between the ECG device and the intelligent terminal, so that the Bluetooth ADDRESS (BT _ ADDRESS) of the ECG device may be used as the ADDRESS information of the ECG device in the embodiment of the present invention. Of course, the embodiments of the present invention are not limited to using BT _ ADDRESS as the ADDRESS information of the ECG device, and may be other applicable ADDRESS information.
The EcgStatus message may also include one or more of the following fields:
type _ ECG _ VENDOR, which represents VENDOR information of ECG devices;
type _ ECG _ mode, which represents the MODEL of the ECG device;
type _ COLOR, representing the COLOR of the ECG device;
type _ BATTERY, representing BATTERY information of an ECG device;
type DEVICE ID, which represents the DEVICE identification of the ECG DEVICE.
The ECG device informs the information to the intelligent terminal, so that the intelligent terminal can call the adaptive strategy schemes of communication, interaction, display, maintenance and the like according to different information states of the ECG device. The ECG DEVICE may not carry the ECG data content type DEVICE ID in the message sent to the intelligent terminal before the binding operation is completed.
Step 102, receiving a binding request message sent by the intelligent terminal after receiving the ECG state notification message, where the binding request message at least includes identification information and address information of the intelligent terminal.
After receiving the ecgtatus message sent by the ECG device, the intelligent terminal sends a binding request message to the ECG device corresponding to the address based on the address information of the ECG device carried in the ecgtatus message, wherein the binding request message carries the identification information and the address information of the intelligent terminal. For convenience of description, the binding request message is hereinafter referred to as a BindRequest message. The BindRequest message format may include the following fields:
type _ DEVICE _ ID, representing identification information of the ECG DEVICE;
type _ IS _ block _ ADDRESS, representing ADDRESS information of the ECG device, which may be PUBLIC ADDRESS information of the ECG device.
103, returning a binding response message to the intelligent terminal, and locally storing first binding information, wherein the first binding information at least comprises a binding relation between the ECG equipment and the identification information of the corresponding intelligent terminal; at least the address information of the ECG device is included in the binding response message.
And after receiving the BindRequest message from the intelligent terminal, the ECG device executes corresponding binding operation, locally stores the binding relationship between the ECG device and the identification information of the corresponding intelligent terminal, and returns a binding response message to the intelligent terminal after the binding is finished. For convenience of description, the bind response message is referred to as a BindResponse message, and the format of the BindResponse message may include the following fields: type _ BT _ ADDRESS.
The BindResponse message may also include the following fields: type _ ERROR _ CODE, indicating an ERROR CODE field for identifying an ERROR CODE corresponding to an ERROR cause when an ERROR occurs in the binding process, and of course, when the binding process is normal, a value of the ecgdatacontainer type _ ERROR _ CODE field may be a default value.
In an implementation mode, after the ECG device establishes communication connection with the intelligent terminal, the ECG device sends an ECG state notification message to the intelligent terminal when the ECG device obtains a first trigger instruction; the first trigger instruction is used for indicating the beginning of the binding process;
correspondingly, after the ECG equipment obtains the first trigger instruction, the binding process is executed, and if the second trigger instruction is obtained, the binding process is stopped; the second trigger instruction is used to indicate that the binding process is aborted.
That is, the ECG device needs to obtain a triggering instruction to trigger the relevant operation of starting the binding process; in addition, in the binding process, if a trigger instruction for stopping binding is obtained, the binding process can be stopped immediately. The triggering mode can be various, such as: the embodiment of the invention does not limit the triggering mode by triggering of a physical key, triggering of a virtual key, triggering of voice control, touch, gesture and the like.
In one embodiment, the ECG device has a trigger electrode, when the trigger electrode is triggered, the ECG device obtains a first trigger instruction, when the trigger electrode is deactivated, the ECG device obtains a second trigger instruction;
alternatively, the ECG device obtains a first triggering instruction when the trigger electrode is triggered for the first time and a second triggering instruction when the trigger electrode is triggered for the second time.
That is, the command triggering process completed by the trigger electrode may have various control logics, that is, the user continuously presses the trigger electrode for a long time until the binding process is finished, and if the user releases the trigger electrode before the binding process is finished, the binding process is immediately stopped; or the user touches and presses the trigger electrode to start the binding process, and the binding process is stopped when the user touches and presses the trigger electrode again.
Referring to fig. 2, in an embodiment of the present invention, a binding method implemented at an intelligent terminal is provided, where the method includes:
step 201, receiving an ECG state notification message from an ECG device, where the ECG state notification message includes state data of the ECG device, and the state data includes address information of the ECG device.
Prior to obtaining the ECG status notification message from the ECG device, the method may further comprise:
obtaining a third trigger instruction, wherein the third trigger instruction is used for indicating the start of the binding process;
and responding to the third trigger instruction, calling a binding interface, wherein the binding interface is used for updating the state change in the binding process in real time, and the state of successful binding is displayed on the binding interface after the binding is finished.
That is to say, the intelligent terminal needs to start the binding program first and call the corresponding binding interface, so that each state in the binding process can be displayed in real time through the interface.
Step 202, sending a binding request message to the ECG device, where the binding request message at least includes identification information and address information of the smart terminal.
And after receiving the EcgStatus message from the ECG equipment, the intelligent terminal sends a BindRequest message to the ECG equipment. Wherein the operation of sending the BindRequest message to the ECG device may be triggered by a specific instruction or operation.
Step 203, receiving a binding response message of the ECG device, and locally storing second binding information, wherein the second binding information at least comprises a binding relationship between the address information of the intelligent terminal and the ECG device; at least the address information of the ECG device is included in the binding response message.
After receiving the BindResponse message from the ECG device, the intelligent terminal executes the binding operation at the intelligent terminal side, locally stores the binding relationship between the intelligent terminal and the address information of the ECG device, and displays the successful binding state through the binding interface after the binding is successful so as to remind the user.
In an implementation mode, after a BindRequest message is sent to ECG equipment, a timer is started, and if the timer is overtime and a BindResponse message returned by the ECG equipment is still not received, the binding request message is retransmitted to the ECG equipment when the sending times of the BindRequest message are determined not to exceed the preset times; and when the sending times of the binding request message exceed the preset times, stopping sending the binding request message to the ECG equipment, and stopping the binding process with the corresponding ECG equipment. The preset times can be set to be two times, three times and the like, and are not limited and set according to actual needs.
As mentioned above, the binding method according to the embodiment of the present invention is completed based on the ECG device establishing a communication connection with the intelligent terminal, and as shown in fig. 3, the process of establishing a communication connection between the ECG device and the intelligent terminal according to the embodiment of the present invention includes:
step 301, obtaining a control instruction, where the control instruction is used to instruct to start creating a communication connection with the intelligent terminal.
The ECG device of the embodiment of the present invention refers to a device for measuring ECG data of a user, and it should be noted that the embodiment of the present invention does not limit the type and kind of the ECG device, and may be an ECG device used in a hospital, an ECG device used in a home, or a wearable ECG device with a certain innovative design, such as a wrist strap ECG device or other wearable ECG devices, etc. The ECG device may also be applied in smart devices, such as smart phones, smart tablets, etc. The information processing method of the embodiment of the invention is used for providing a connection establishment scheme between the intelligent terminal and the ECG device, and is not used for limiting the types and the kinds of the intelligent terminal and the ECG device.
The method of this embodiment is applied to the ECG device, and there are various ways for the ECG device to obtain the control instruction, for example, the user triggers the ECG device to obtain the control instruction by a physical key or electrode triggering operation, or the user triggers the ECG device to obtain the control instruction by a virtual key operation, or even triggers the ECG device to obtain the control instruction by voice gesture or other operation, which is not limited in the embodiment of the present invention. After the ECG device obtains the control command, it starts to perform a process of establishing a communication connection with the intelligent terminal, and the connection is preferably a wireless connection.
Step 302, in response to the control instruction, determining a preset condition currently shown to be satisfied. Wherein the preset conditions at least include: a first preset condition shown at 302a, a second preset condition shown at 302b, and a third preset condition shown at 302 c.
And 303, executing a connection strategy corresponding to the satisfied preset condition, thereby establishing communication connection with the intelligent terminal. Wherein, the connection strategy at least comprises: 303a corresponding to a first preset condition, 303b corresponding to a second preset condition, and 303c corresponding to a third preset condition.
In the embodiment of the present invention, the communication connection between the ECG device and the intelligent terminal may adopt a BLE connection mode, but the embodiment of the present invention is not limited to the BLE connection mode, and in practical applications, any other connection mode that can use the connection establishment mechanism of the embodiment of the present invention should also belong to the protection scope of the embodiment of the present invention.
In one embodiment, the first preset condition is: the ECG device is bound with a corresponding intelligent terminal, and the address of the bound intelligent terminal is a public address (public address) of the intelligent terminal;
when judging that the current first preset condition is met, executing a communication connection process between the intelligent terminal and the intelligent terminal according to a first connection strategy, wherein the process comprises the following steps:
initiating a connection request to the bound intelligent terminal;
and receiving a connection response returned by the bound intelligent terminal, and accordingly creating a connection path with the bound intelligent terminal. After the connection is established, a data interaction protocol between the ECG equipment and the bound intelligent terminal can be executed; if the connection establishment fails, the above communication connection procedure is aborted.
That is to say, when the ECG device starts to attempt to establish a connection with the intelligent terminal, if the ECG device determines that the ECG device has a corresponding intelligent terminal bound thereto and the address of the bound intelligent terminal is public address, the ECG device directly attempts to initiate a connection request to the bound intelligent terminal.
The second preset condition is as follows: the ECG device is bound with a corresponding intelligent terminal, and the address of the bound intelligent terminal is not the public address of the intelligent terminal;
when judging that the second preset condition is met currently, executing a communication connection process between the intelligent terminal and the intelligent terminal according to a second connection strategy, wherein the process comprises the following steps:
initiating scanning of the bound intelligent terminal;
if the bound intelligent terminal is successfully scanned, initiating a connection request to the bound intelligent terminal, receiving a connection response returned by the bound intelligent terminal, and creating a connection path between the bound intelligent terminal and the bound intelligent terminal; after the connection is established, a data interaction protocol between the ECG equipment and the bound intelligent terminal can be executed;
and if the bound intelligent terminal is not scanned, stopping the communication connection process.
That is to say, when the ECG device starts to attempt to establish a connection with the intelligent terminal, if the ECG device determines that the ECG device has a corresponding intelligent terminal bound thereto, but the address of the bound intelligent terminal is not public address, the ECG device first initiates scanning of the bound intelligent terminal, and if the ECG device can scan the bound intelligent terminal, a connection request is initiated to the bound intelligent terminal.
The third preset condition is as follows: the ECG device has no intelligent terminal bound;
when judging that the current third preset condition is met, executing a communication connection process between the intelligent terminal and the intelligent terminal according to a third connection strategy, wherein the process comprises the following steps:
initiating scanning of the intelligent terminal;
initiating a connection request to the scanned intelligent terminal;
receiving a connection response returned by the scanned intelligent terminal, and creating a connection path between the scanned intelligent terminal and the scanned intelligent terminal according to the connection response; after the connection is established, a data interaction protocol between the ECG equipment and the corresponding intelligent terminal can be executed;
and if the intelligent terminal is not scanned, stopping the communication connection process.
That is, when the ECG device starts to attempt to establish a connection with the intelligent terminal, if the ECG device determines that it does not have a bound intelligent terminal, a scanning process for the intelligent terminal needs to be initiated, and a connection request is initiated to the scanned intelligent terminal.
It should be noted that if there are multiple scanned intelligent terminals, the ECG device may sequentially initiate connection requests to the scanned intelligent terminals, and when an intelligent terminal successfully establishes a connection and completes a binding process between the intelligent terminal and the ECG device, the ECG device does not initiate connection requests to subsequent intelligent terminals any more.
In addition, the solution of this embodiment may be preferred if the ECG device itself has or can implement the function of forced reset, or if the scanning and connection of the ECG device is long. Because the scheme of the embodiment has the advantages of concise design, no occupation of excessive processor resources, high efficiency and short time, the timeliness of the whole connection establishing process can be ensured under the condition that the scanning and connection of the ECG equipment are long in time, and the user experience is improved. Furthermore, in the case that the ECG device itself can implement the forced reset function, the design of the connection process does not require an excessive operation flow, and some abnormal situations can be solved by means of forced reset of the ECG device.
In another possible embodiment, the first preset condition is: the ECG device is bound with a corresponding intelligent terminal, and the address of the bound intelligent terminal is a public address;
when judging that the current first preset condition is met, executing a communication connection process between the intelligent terminal and the intelligent terminal according to a first connection strategy, wherein the process comprises the following steps:
initiating a connection request to the bound intelligent terminal, receiving a connection response returned by the bound intelligent terminal, and creating a connection path between the intelligent terminal and the bound intelligent terminal according to the connection request; after the connection is established, a data interaction protocol between the ECG equipment and the bound intelligent terminal can be executed;
if the connection with the bound intelligent terminal device is failed to be established, initiating the scanning of the bound intelligent terminal;
if the bound intelligent terminal is successfully scanned, initiating a connection request to the bound intelligent terminal, receiving a connection response returned by the bound intelligent terminal, and creating a connection path between the bound intelligent terminal and the bound intelligent terminal; after the connection is established, a data interaction protocol between the ECG equipment and the bound intelligent terminal can be executed;
if the bound intelligent terminal is not scanned and only the unbound intelligent terminal is scanned when the scanning is overtime, initiating a connection request to the unbound intelligent terminal, receiving a connection response returned by the unbound intelligent terminal, and accordingly creating a connection path between the unbound intelligent terminal and the unbound intelligent terminal;
and if the intelligent terminal is not scanned after the scanning overtime, the communication connection process is stopped.
The second preset condition is as follows: the ECG device is bound with a corresponding intelligent terminal, and the address of the bound intelligent terminal is not a public address;
when judging that the second preset condition is met currently, executing a communication connection process between the intelligent terminal and the intelligent terminal according to a second connection strategy, wherein the process comprises the following steps:
initiating scanning of the bound intelligent terminal;
if the bound intelligent terminal is successfully scanned, initiating a connection request to the bound intelligent terminal, receiving a connection response returned by the bound intelligent terminal, and creating a connection path between the bound intelligent terminal and the bound intelligent terminal; after the connection is established, a data interaction protocol between the ECG equipment and the bound intelligent terminal can be executed;
if the bound intelligent terminal is not scanned and only the unbound intelligent terminal is scanned when the scanning is overtime, initiating a connection request to the unbound intelligent terminal, receiving a connection response returned by the unbound intelligent terminal, and accordingly creating a connection path between the unbound intelligent terminal and the unbound intelligent terminal;
and if the intelligent terminal is not scanned after the scanning overtime, the communication connection process is stopped.
The third preset condition is as follows: the ECG device has no intelligent terminal bound;
when judging that the current third preset condition is met, executing a communication connection process between the intelligent terminal and the intelligent terminal according to a third connection strategy, wherein the process comprises the following steps:
initiating scanning of the intelligent terminal;
initiating a connection request to the scanned intelligent terminal;
receiving a connection response returned by the scanned intelligent terminal, and creating a connection path between the scanned intelligent terminal and the scanned intelligent terminal according to the connection response; after the connection is established, a data interaction protocol between the ECG equipment and the corresponding intelligent terminal can be executed;
and if the intelligent terminal is not scanned, stopping the communication connection process.
It should be noted that if there are multiple scanned intelligent terminals, the ECG device may sequentially initiate connection requests to the scanned intelligent terminals, and when an intelligent terminal successfully establishes a connection and completes a binding process between the intelligent terminal and the ECG device, the ECG device does not initiate connection requests to subsequent intelligent terminals any more.
In addition, the solution of this embodiment may be preferred if the ECG device itself does not have or cannot implement the forced reset functionality and the scanning and connection of the ECG device is short in time. Because, the above-described embodiment, although being somewhat more complicated in operation flow than the previous embodiment, implements the present solution on an ECG device without forced resetting, can cover solutions for a variety of abnormal situations, and can ensure high efficiency and short time for the entire connection establishment process.
Referring to fig. 4, an embodiment of the present invention further provides a binding apparatus applied to an ECG device side, including:
a first sending unit 401, configured to send an ECG state notification message to the intelligent terminal after the ECG device establishes a communication connection with the intelligent terminal, where the ECG state notification message includes state data of the ECG device, and the state data includes address information of the ECG device;
a first receiving unit 402, configured to receive a binding request message sent by an intelligent terminal after receiving an ECG status notification message, where the binding request message at least includes identification information and address information of the intelligent terminal;
a second sending unit 403, configured to return a binding response message to the intelligent terminal, where the binding response message at least includes address information of the ECG device;
the first processing unit 404 is configured to locally store first binding information, where the first binding information at least includes a binding relationship between the ECG device and identification information of a corresponding intelligent terminal.
In an implementation manner, the first sending unit 401 is further configured to send an ECG state notification message to the intelligent terminal when the ECG device obtains the first trigger instruction after the ECG device establishes a communication connection with the intelligent terminal; the first trigger instruction is used for indicating the beginning of the binding process;
correspondingly, the first processing unit 404 is further configured to, after the ECG device obtains the first trigger instruction, execute the binding process, and if the second trigger instruction is obtained, terminate the binding process; the second trigger instruction is used to indicate that the binding process is aborted.
In one possible embodiment, the ECG device has a trigger electrode,
the ECG device obtains a first trigger instruction when the trigger electrode is triggered and a second trigger instruction when the trigger electrode is deactivated;
alternatively, the ECG device obtains a first triggering instruction when the trigger electrode is triggered for the first time and a second triggering instruction when the trigger electrode is triggered for the second time.
Referring to fig. 5, an embodiment of the present invention further provides a binding apparatus applied to an intelligent terminal side, including:
a second receiving unit 501, configured to receive an ECG state notification message from an ECG device, where the ECG state notification message includes state data of the ECG device, and the state data includes address information of the ECG device;
a third sending unit 502, configured to send a binding request message to the ECG device, where the binding request message at least includes identification information and address information of the smart terminal;
a third receiving unit 503, configured to receive a binding response message of the ECG device, where the binding response message at least includes address information of the ECG device;
and the second processing unit 504 is configured to locally store second binding information, where the second binding information at least includes a binding relationship between the address information of the intelligent terminal and the address information of the ECG device.
In an embodiment, the second processing unit 504 is further configured to, before obtaining the ECG status notification message from the ECG device, obtain a third triggering instruction, where the third triggering instruction is used to instruct to start the binding process; and responding to the third trigger instruction, calling a binding interface, wherein the binding interface is used for updating the state change in the binding process in real time, and the state of successful binding is displayed on the binding interface after the binding is finished.
In an implementation manner, the third sending unit 502 is further configured to start a timer after sending the binding request message to the ECG device, and if the timer expires and a binding response message returned by the ECG device is not received yet, resend the binding request message to the ECG device when it is determined that the sending frequency of the binding request message does not reach the preset frequency; and when the sending times of the binding request message reach the preset times, stopping sending the binding request message to the ECG equipment, and stopping the binding process with the corresponding ECG equipment.
Exemplary electronic device
Next, an electronic apparatus 11 according to an embodiment of the present application is described with reference to fig. 6.
As shown in fig. 6, the electronic device 11 includes one or more processors 111 and memory 112.
The processor 111 may be a Central Processing Unit (CPU) or other form of processing unit having data processing capabilities and/or instruction execution capabilities, and may control other components in the electronic device 11 to perform desired functions.
Memory 112 may include one or more computer program products that may include various forms of computer-readable storage media, such as volatile memory and/or non-volatile memory. The volatile memory may include, for example, Random Access Memory (RAM), cache memory (cache), and/or the like. The non-volatile memory may include, for example, Read Only Memory (ROM), hard disk, flash memory, etc. One or more computer program instructions may be stored on the computer-readable storage medium and executed by processor 111 to implement the methods of the various embodiments of the present application described above and/or other desired functions. Various contents such as an input signal, a signal component, a noise component, etc. may also be stored in the computer-readable storage medium.
In one example, the electronic device 11 may further include: an input device 113 and an output device 114, which are interconnected by a bus system and/or other form of connection mechanism (not shown).
The input device 113 may include, for example, a keyboard, a mouse, and the like.
The output device 114 may output various information including the determined distance information, direction information, and the like to the outside. The output devices 114 may include, for example, a display, speakers, a printer, and a communication network and remote output devices connected thereto, among others.
Of course, for the sake of simplicity, only some of the components of the electronic device 11 relevant to the present application are shown in fig. 6, and components such as buses, input/output interfaces, and the like are omitted. In addition, the electronic device 11 may include any other suitable components, depending on the particular application.
An ECG device in an embodiment of the present invention may be disposed on a wristband of a smart watch, the ECG device having at least two electrodes, a first electrode disposed on a first surface of the wristband, the first surface being a side of the wristband that is intended to be in contact with a user's skin when the wristband is worn; the second electrode is arranged on the second surface of the wrist strap, and the second surface is the back of the first surface. When the user wears the smart watch, the first electrode of the ECG device on the wrist strap is in contact with the skin of the user, and when the user contacts the second electrode of the ECG device with the other hand, the electrocardiogram measurement operation of the ECG device on the wearer can be realized. The binding method of embodiments of the present invention is then used to provide an implementation of establishing a binding between a smart watch and an ECG device on a wrist band. The manner of triggering the ECG device to obtain the control instruction may be that the user presses the second electrode for a long time, presses the second electrode for a short time, or presses the second electrode for multiple times, or may be other triggering manners, and may further be other electrodes, such as a third electrode of the ECG device, and the like, which is not limited in the embodiment of the present invention.
Another form of the ECG device in the embodiment of the present invention may be configured as a smart bracelet, where the ECG device has at least two electrodes, the first electrode is disposed on a first surface of the smart bracelet, and the first surface is a surface of the smart bracelet, which is used for contacting with skin of a user when the smart bracelet is worn; the second electrode sets up on the second surface of intelligent bracelet, and the second surface is the back of first surface. When the user wears the smart band, the first electrode of the ECG device on the smart band is in contact with the skin of the user, and when the user contacts the second electrode of the ECG device with the other hand, the electrocardiogram measuring operation of the ECG device on the wearer can be realized. Then, the binding method of the embodiment of the invention can be used for providing an implementation scheme for establishing binding between an intelligent terminal such as a smart phone and a smart tablet and ECG equipment on a smart band. Similarly, the manner of triggering the ECG device to obtain the control instruction may be that the user presses the second electrode for a long time, presses the second electrode for a short time, or presses the second electrode for multiple times, but may also be other triggering manners, and may further be other electrodes, such as a third electrode of the ECG device, and the like, which is not limited in the embodiment of the present invention.
Exemplary computer program product and computer-readable storage Medium
In addition to the above-described methods and apparatus, embodiments of the present application may also be a computer program product comprising computer program instructions that, when executed by a processor, cause the processor to perform the steps in the methods according to the various embodiments of the present application described in the "exemplary methods" section of this specification, above.
The computer program product may be written with program code for performing the operations of embodiments of the present application in any combination of one or more programming languages, including an object oriented programming language such as Java, C + + or the like and conventional procedural programming languages, such as the "C" programming language or similar programming languages. The program code may execute entirely on the user's computing device, partly on the user's device, as a stand-alone software package, partly on the user's computing device and partly on a remote computing device, or entirely on the remote computing device or server.
Furthermore, embodiments of the present application may also be a computer-readable storage medium having stored thereon computer program instructions that, when executed by a processor, cause the processor to perform steps in a method according to various embodiments of the present application described in the "exemplary methods" section above of this specification.
The computer-readable storage medium may take any combination of one or more readable media. The readable medium may be a readable signal medium or a readable storage medium. A readable storage medium may include, for example, but not limited to, an electronic, magnetic, optical, electromagnetic, infrared, or semiconductor system, apparatus, or device, or a combination of any of the foregoing. More specific examples (a non-exhaustive list) of the readable storage medium include: an electrical connection having one or more wires, a portable disk, a hard disk, a Random Access Memory (RAM), a read-only memory (ROM), an erasable programmable read-only memory (EPROM or flash memory), an optical fiber, a portable compact disc read-only memory (CD-ROM), an optical storage device, a magnetic storage device, or any suitable combination of the foregoing.
The foregoing describes the general principles of the present application in conjunction with specific embodiments, however, it is noted that the advantages, effects, etc. mentioned in the present application are merely examples and are not limiting, and they should not be considered essential to the various embodiments of the present application. Furthermore, the foregoing disclosure of specific details is for the purpose of illustration and description and is not intended to be limiting, since the foregoing disclosure is not intended to be exhaustive or to limit the disclosure to the precise details disclosed.
The block diagrams of devices, apparatuses, systems referred to in this application are only given as illustrative examples and are not intended to require or imply that the connections, arrangements, configurations, etc. must be made in the manner shown in the block diagrams. These devices, apparatuses, devices, systems may be connected, arranged, configured in any manner, as will be appreciated by those skilled in the art. Words such as "including," "comprising," "having," and the like are open-ended words that mean "including, but not limited to," and are used interchangeably therewith. The words "or" and "as used herein mean, and are used interchangeably with, the word" and/or, "unless the context clearly dictates otherwise. The word "such as" is used herein to mean, and is used interchangeably with, the phrase "such as but not limited to".
It should also be noted that in the devices, apparatuses, and methods of the present application, the components or steps may be decomposed and/or recombined. These decompositions and/or recombinations are to be considered as equivalents of the present application.
The previous description of the disclosed aspects is provided to enable any person skilled in the art to make or use the present application. Various modifications to these aspects will be readily apparent to those skilled in the art, and the generic principles defined herein may be applied to other aspects without departing from the scope of the application. Thus, the present application is not intended to be limited to the aspects shown herein but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.
The foregoing description has been presented for purposes of illustration and description. Furthermore, the description is not intended to limit embodiments of the application to the form disclosed herein. While a number of example aspects and embodiments have been discussed above, those of skill in the art will recognize certain variations, modifications, alterations, additions and sub-combinations thereof.

Claims (10)

1. A binding method applied to an electrocardiogram, ECG, device, the method comprising:
after the ECG device establishes communication connection with an intelligent terminal, sending an ECG state notification message to the intelligent terminal, wherein the ECG state notification message comprises state data of the ECG device, and the state data comprises address information of the ECG device;
receiving a binding request message sent by the intelligent terminal after the ECG state notification message is received, wherein the binding request message at least comprises identification information and address information of the intelligent terminal;
returning a binding response message to the intelligent terminal, and locally storing first binding information, wherein the first binding information at least comprises a binding relation between the ECG equipment and the identification information of the corresponding intelligent terminal; at least address information of the ECG device is included in the binding response message.
2. The binding method according to claim 1, wherein the method further comprises:
after the ECG equipment establishes communication connection with an intelligent terminal, the ECG equipment sends an ECG state notification message to the intelligent terminal when acquiring a first trigger instruction; the first trigger instruction is used for indicating the beginning of a binding process;
correspondingly, after the ECG device obtains the first trigger instruction, the binding process is executed, and if a second trigger instruction is obtained, the binding process is stopped; the second trigger instruction is used for indicating to abort the binding process.
3. The binding method according to claim 2, wherein the ECG device has a trigger electrode, the method further comprising:
the ECG device obtains the first triggering instruction when the trigger electrode is triggered, and obtains the second triggering instruction when the trigger electrode is deactivated;
alternatively, the ECG device obtains the first triggering instruction when the trigger electrode is triggered for the first time and obtains the second triggering instruction when the trigger electrode is triggered for the second time.
4. A binding method is applied to an intelligent terminal, and comprises the following steps:
receiving an ECG state notification message from an Electrocardiogram (ECG) device, wherein the ECG state notification message comprises state data of the ECG device, and the state data comprises address information of the ECG device;
sending a binding request message to the ECG device, wherein the binding request message at least comprises identification information and address information of the intelligent terminal;
receiving a binding response message of the ECG device, and locally storing second binding information, wherein the second binding information at least comprises a binding relationship between the address information of the intelligent terminal and the ECG device; at least address information of the ECG device is included in the binding response message.
5. The binding method according to claim 4, wherein prior to obtaining an ECG status notification message from an ECG device, the method further comprises:
obtaining a third trigger instruction, wherein the third trigger instruction is used for indicating the start of a binding process;
and responding to the third trigger instruction, and calling a binding interface, wherein the binding interface is used for updating the state change in the binding process in real time and comprises the state of successful binding displayed on the binding interface after the binding is finished.
6. The binding method according to claim 4 or 5, characterized in that the method further comprises:
after sending a binding request message to the ECG device, starting a timer, and if the timer is overtime and still does not receive a binding response message returned by the ECG device, retransmitting the binding request message to the ECG device when the sending times of the binding request message are determined not to reach a preset time; and when the sending times of the binding request message reach the preset times, stopping sending the binding request message to the ECG equipment, and stopping the binding process with the corresponding ECG equipment.
7. A binding apparatus, for application to an Electrocardiographic (ECG) device, the apparatus comprising:
the first sending unit is used for sending an ECG state notification message to the intelligent terminal after the ECG device establishes communication connection with the intelligent terminal, wherein the ECG state notification message comprises state data of the ECG device, and the state data comprises address information of the ECG device;
a first receiving unit, configured to receive a binding request message sent by the intelligent terminal after receiving the ECG state notification message, where the binding request message at least includes identification information and address information of the intelligent terminal;
a second sending unit, configured to return a binding response message to the intelligent terminal, where the binding response message at least includes address information of the ECG device;
the first processing unit is used for locally storing first binding information, and the first binding information at least comprises a binding relation between the ECG device and identification information of a corresponding intelligent terminal.
8. The utility model provides a bind device which characterized in that is applied to intelligent terminal, the device includes:
a second receiving unit, configured to receive an ECG state notification message from an electrocardiogram ECG device, where the ECG state notification message includes state data of the ECG device, and the state data includes address information of the ECG device;
a third sending unit, configured to send a binding request message to the ECG device, where the binding request message at least includes identification information and address information of the smart terminal;
a third receiving unit, configured to receive a binding response message of the ECG device, where the binding response message at least includes address information of the ECG device;
and the second processing unit is used for locally storing second binding information, wherein the second binding information at least comprises a binding relationship between the intelligent terminal and the address information of the ECG device.
9. A computer-readable storage medium, in which a computer program is stored, the computer program being for performing the binding method of any one of the preceding claims 1-3, or for performing the binding method of any one of the preceding claims 4-6.
10. An electronic device, comprising:
a processor;
a memory for storing the processor-executable instructions;
the processor is configured to read the executable instructions from the memory and execute the instructions to implement the binding method of any one of claims 1 to 3 or the binding method of any one of claims 4 to 6.
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