CN113421567A - Terminal equipment control method and system based on intelligent glasses and intelligent glasses - Google Patents

Terminal equipment control method and system based on intelligent glasses and intelligent glasses Download PDF

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CN113421567A
CN113421567A CN202110979817.8A CN202110979817A CN113421567A CN 113421567 A CN113421567 A CN 113421567A CN 202110979817 A CN202110979817 A CN 202110979817A CN 113421567 A CN113421567 A CN 113421567A
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voice
user
learning
control
control instruction
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孙立
胡金鑫
刘晖
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Jiangxi Yingchuang Information Industry Co ltd
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Jiangxi Yingchuang Information Industry Co ltd
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    • GPHYSICS
    • G10MUSICAL INSTRUMENTS; ACOUSTICS
    • G10LSPEECH ANALYSIS OR SYNTHESIS; SPEECH RECOGNITION; SPEECH OR VOICE PROCESSING; SPEECH OR AUDIO CODING OR DECODING
    • G10L15/00Speech recognition
    • G10L15/22Procedures used during a speech recognition process, e.g. man-machine dialogue
    • GPHYSICS
    • G10MUSICAL INSTRUMENTS; ACOUSTICS
    • G10LSPEECH ANALYSIS OR SYNTHESIS; SPEECH RECOGNITION; SPEECH OR VOICE PROCESSING; SPEECH OR AUDIO CODING OR DECODING
    • G10L17/00Speaker identification or verification
    • G10L17/02Preprocessing operations, e.g. segment selection; Pattern representation or modelling, e.g. based on linear discriminant analysis [LDA] or principal components; Feature selection or extraction
    • GPHYSICS
    • G10MUSICAL INSTRUMENTS; ACOUSTICS
    • G10LSPEECH ANALYSIS OR SYNTHESIS; SPEECH RECOGNITION; SPEECH OR VOICE PROCESSING; SPEECH OR AUDIO CODING OR DECODING
    • G10L15/00Speech recognition
    • G10L15/22Procedures used during a speech recognition process, e.g. man-machine dialogue
    • G10L2015/223Execution procedure of a spoken command

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  • Engineering & Computer Science (AREA)
  • Health & Medical Sciences (AREA)
  • Audiology, Speech & Language Pathology (AREA)
  • Human Computer Interaction (AREA)
  • Physics & Mathematics (AREA)
  • Acoustics & Sound (AREA)
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  • Computational Linguistics (AREA)
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Abstract

The invention discloses a terminal device control method and system based on intelligent glasses and the intelligent glasses, wherein the method comprises the following steps: acquiring a first voice instruction sent by a user through a voice acquisition device; recognizing the first voice command by adopting a voiceprint recognition mode so as to recognize a user ID corresponding to the first voice command; comparing and analyzing the first voice command in an offline voice recognition database to obtain a first recognition word code corresponding to the voice command; judging whether a first control instruction corresponding to the first recognition word code exists or not through the wireless communication module; if the first control instruction exists, the first control instruction is called, the first control instruction and the user ID are sent to the terminal equipment, the user ID is verified through the terminal equipment, and the first control instruction is executed on the terminal equipment after the verification is passed. The invention can solve the problem that the intelligent glasses in the prior art cannot control the terminal equipment when not connected to the Internet.

Description

Terminal equipment control method and system based on intelligent glasses and intelligent glasses
Technical Field
The invention relates to the technical field of intelligent glasses, in particular to a terminal device control method and system based on intelligent glasses and the intelligent glasses.
Background
Smart glasses refer to glasses having an independent operating system like a smart phone. The smart glasses may be installed by a user with a program provided by a software service provider, such as software, games, etc. The intelligent glasses can be controlled by voice or motion to complete various intelligent functions, and can realize wireless network access through a mobile communication network, thereby bringing convenience to life and learning of people.
In the prior art, voice control can be performed on intelligent terminal devices (such as an intelligent lamp, an intelligent sound box, an intelligent television and an intelligent switch) through intelligent glasses, but when the intelligent terminal devices are controlled through the intelligent glasses, the intelligent glasses are required to be connected to the internet, and various functions of the voice control are realized through a network. If the network goes wrong, the intelligent glasses cannot be connected to the Internet, voice control cannot be achieved, and the use experience of a user is influenced.
Disclosure of Invention
Therefore, an embodiment of the present invention provides a terminal device control method based on smart glasses, so as to control a terminal device even when the smart glasses cannot be connected to the internet.
According to the terminal equipment control method based on the intelligent glasses, a voice acquisition device, a wireless communication module and a controller are arranged on the intelligent glasses, the voice acquisition device and the wireless communication module are respectively and electrically connected with the controller, the wireless communication module is used for wirelessly communicating with terminal equipment to be controlled, and the method comprises the following steps:
acquiring a first voice instruction sent by a user through the voice acquisition device;
recognizing the first voice command by adopting a voiceprint recognition mode so as to recognize a user ID corresponding to the first voice command;
comparing and analyzing the first voice command in an offline voice recognition database to obtain a first recognition word code corresponding to the first voice command, wherein the offline voice recognition database is stored in the controller;
judging whether a first control instruction corresponding to the first identification word code exists or not through the wireless communication module;
if a first control instruction corresponding to the first identification word code exists, calling the first control instruction, sending the first control instruction and the user ID to the terminal equipment, verifying the user ID through the terminal equipment, and executing the first control instruction on the terminal equipment after the verification is passed.
According to the terminal equipment control method based on the intelligent glasses, the first voice command sent by the user is compared and analyzed in the offline voice recognition database to obtain the corresponding first recognition word code, then whether the first control command corresponding to the first recognition word code is stored in advance is judged through the wireless communication module, if the first control command corresponding to the first recognition word code is stored in advance is judged through the wireless communication module, the first control command is directly called, meanwhile, the user ID corresponding to the first voice command recognized in the voiceprint recognition mode is sent to the terminal equipment, and corresponding control can be executed after the terminal equipment passes verification.
In addition, the terminal device control method based on smart glasses according to the above embodiment of the present invention may further have the following additional technical features:
further, the method further comprises:
acquiring a voice learning awakening signal obtained by a user operating on a control panel of the terminal equipment;
acquiring a learning voice instruction sent by a user, distributing a learning recognition word code for the learning voice instruction, and storing the corresponding relation between the learning voice instruction and the learning recognition word code in the offline voice recognition database;
acquiring a learning control instruction which is obtained by the operation of a user on the control panel and is used for controlling the terminal equipment;
and storing the mapping relation between the learning identification word codes and the learning control instructions in the wireless communication module.
Further, after the steps of obtaining a learning speech command sent by a user, assigning a learning recognized word code to the learning speech command, and storing the correspondence between the learning speech command and the learning recognized word code in the offline speech recognition database, the method further comprises:
judging whether a learning control instruction obtained by the operation of a user on the control panel is acquired within a preset time;
and if a learning control instruction obtained by the operation of a user on a control panel is acquired within a preset time, storing the mapping relation between the learning identification word code and the learning control instruction in the wireless communication module.
Further, still be equipped with the suggestion device on the intelligent glasses, suggestion device with controller electric connection judges whether after the step of the learning control instruction that obtains the user operation on control panel in the preset time, the method still includes:
if the learning control instruction obtained by the operation of the user on the control panel is not obtained within the preset time, controlling the prompting device to send out prompting information, wherein the prompting information is used for prompting the user to execute the control operation on the control panel;
wherein, the prompting device is a voice broadcaster.
Further, after the step of determining whether the first control instruction corresponding to the first recognized word code exists through the wireless communication module, the method further includes:
if a first control instruction corresponding to the first identification word code exists, acquiring grade information corresponding to the user ID;
judging whether the first control instruction is matched with the grade information;
if the first control instruction is matched with the grade information, calling the first control instruction, sending the first control instruction and the user ID to the terminal equipment, verifying the user ID through the terminal equipment, and executing the first control instruction on the terminal equipment after the verification is passed.
Further, when the first voice instruction is a multitask instruction, the first voice instruction includes a plurality of subtask voice instructions, and the method further includes:
comparing and analyzing the first voice command in the offline voice recognition database to obtain a plurality of subtask voice commands contained in the first voice command, and determining a logic sequence among the subtask voice commands;
comparing and analyzing the subtask voice instructions in the offline voice recognition database to obtain subtask recognition word codes corresponding to the subtask voice instructions;
and generating corresponding multi-task recognition word codes according to the logic sequence between the plurality of subtask recognition word codes and the plurality of subtask voice instructions.
Further, the multitask identification word code comprises a plurality of subtask identification word codes, and the method further comprises the following steps:
judging whether a sub-control instruction corresponding to a plurality of sub-task recognition word codes contained in the multi-task recognition word codes exists through the wireless communication module;
if the sub-control instructions exist, all the sub-control instructions are called, and the sub-control instructions are sequentially executed according to the logic sequence among the plurality of sub-task voice instructions.
Another embodiment of the present invention provides a terminal device control system based on smart glasses, so as to control a terminal device even when the smart glasses cannot be connected to the internet.
According to the terminal equipment control system based on the intelligent glasses, the intelligent glasses are provided with the voice acquisition device, the wireless communication module and the controller, the voice acquisition device and the wireless communication module are respectively and electrically connected with the controller, the wireless communication module is used for wirelessly communicating with the terminal equipment to be controlled, and the system comprises:
the first acquisition module is used for acquiring a first voice instruction sent by a user through the voice acquisition device;
the recognition module is used for recognizing the first voice command in a voiceprint recognition mode so as to recognize a user ID corresponding to the first voice command;
a comparison acquisition module, configured to perform comparison analysis on the first voice instruction in an offline voice recognition database to acquire a first recognition word code corresponding to the first voice instruction, where the offline voice recognition database is stored in the controller;
the first judging module is used for judging whether a first control instruction corresponding to the first identification word code exists through the wireless communication module;
and the calling and sending module is used for calling the first control instruction if the first control instruction corresponding to the first identification word code exists, sending the first control instruction and the user ID to the terminal equipment, verifying the user ID through the terminal equipment, and executing the first control instruction to the terminal equipment after the verification is passed.
According to the terminal equipment control system based on the intelligent glasses, the first voice command sent by the user is compared and analyzed in the offline voice recognition database to obtain the corresponding first recognition word code, then whether the first control command corresponding to the first recognition word code is stored in advance is judged through the wireless communication module, if the first control command corresponding to the first recognition word code is stored in advance is judged through the wireless communication module, the first control command is directly called, meanwhile, the user ID corresponding to the first voice command recognized in the voiceprint recognition mode is sent to the terminal equipment, and corresponding control can be executed after the terminal equipment passes verification.
In addition, the terminal device control system based on smart glasses according to the above embodiment of the present invention may further have the following additional technical features:
further, the system further comprises:
the second acquisition module is used for acquiring a voice learning awakening signal obtained by the operation of a user on a control panel of the terminal equipment;
a third obtaining module, configured to obtain a learning voice instruction sent by a user, allocate a learning recognition word code to the learning voice instruction, and store a correspondence between the learning voice instruction and the learning recognition word code in the offline voice recognition database;
the fourth acquisition module is used for acquiring a learning control instruction which is obtained by the operation of a user on the control panel and is used for controlling the terminal equipment;
and the storage module is used for storing the mapping relation between the learning identification word codes and the learning control instructions in the wireless communication module.
Further, the system further comprises:
the second judgment module is used for judging whether a learning control instruction obtained by the operation of a user on the control panel is acquired within a preset time;
the storage module is specifically configured to store a mapping relationship between the learning identification word code and the learning control instruction in the wireless communication module if the learning control instruction obtained by the user operating on the control panel is obtained within a preset time.
Further, still be equipped with suggestion device on the intelligent glasses, the suggestion device with controller electric connection, the system still includes:
and the prompting module is used for controlling the prompting device to send out prompting information if the learning control instruction obtained by the operation of the user on the control panel is not obtained within the preset time, wherein the prompting information is used for prompting the user to execute the control operation on the control panel.
Furthermore, the prompting device is a voice broadcast device.
Further, the system further comprises:
a fifth obtaining module, configured to obtain, if a first control instruction corresponding to the first identification word code exists, level information corresponding to the user ID;
the third judging module is used for judging whether the first control instruction is matched with the grade information;
the calling and sending module is specifically configured to call the first control instruction if the first control instruction is matched with the level information, send the first control instruction and the user ID to the terminal device, verify the user ID through the terminal device, and execute the first control instruction on the terminal device after the verification is passed.
Another embodiment of the present invention also provides smart glasses, including a memory, a processor, and a computer program stored on the memory and executable on the processor, the processor implementing the above method when executing the program.
Additional aspects and advantages of the invention will be set forth in part in the description which follows and, in part, will be obvious from the description, or may be learned by practice of the invention.
Drawings
The above and/or additional aspects and advantages of embodiments of the present invention will become apparent and readily appreciated from the following description of the embodiments, taken in conjunction with the accompanying drawings of which:
fig. 1 is a flowchart of a smart-glasses-based terminal device control method according to a first embodiment of the present invention;
FIG. 2 is a flowchart of instruction learning proposed by the first embodiment of the present invention;
fig. 3 is a flowchart of a smart-glasses-based terminal device control method according to a second embodiment of the present invention;
fig. 4 is a flowchart of a smart-glasses-based terminal device control method according to a third embodiment of the present invention;
fig. 5 is a schematic structural diagram of a smart glasses-based terminal device control system according to a fourth embodiment of the present invention;
fig. 6 is a schematic structural diagram of a smart glasses-based terminal device control system according to a fifth embodiment of the present invention.
Detailed Description
In order to make the objects, technical solutions and advantages of the embodiments of the present invention clearer, the technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are some, but not all, embodiments of the present invention. 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.
Referring to fig. 1, a method for controlling a terminal device based on smart glasses according to a first embodiment of the present invention includes steps of providing a voice collecting device, a wireless communication module and a controller on the smart glasses, where the voice collecting device and the wireless communication module are respectively electrically connected to the controller, and the wireless communication module is used for wirelessly communicating with a terminal device to be controlled, where the method includes steps S101 to S105:
s101, a first voice instruction sent by a user is obtained through the voice acquisition device.
Wherein, voice acquisition device, wireless communication module and controller all set up on the mirror holder of intelligent glasses. The wireless communication module is used for wirelessly communicating with the terminal device to be controlled, for example, the wireless communication module can wirelessly communicate with the intelligent desk lamp to be controlled in a Zigbee or Bluetooth mode.
During specific implementation, the voice acquisition device can adopt a microphone for receiving a first voice instruction sent by a user to realize voice recognition. The first voice instruction issued by the user is, for example, "turn on the desk lamp".
And S102, recognizing the first voice command by adopting a voiceprint recognition mode so as to recognize the user ID corresponding to the first voice command.
The method comprises the steps that each user voice has a unique voiceprint ID, before voiceprint identification, modeling, namely training or learning can be carried out on the voiceprint of the user in advance, so that the unique voiceprint ID of the user voice is determined, then the unique user ID is created, the mapping relation between the voiceprint ID and the user ID is established, and the mapping relation is stored. Therefore, after the voice command of the user A is identified in a voiceprint identification mode, the unique voiceprint ID of the user A can be obtained, and the user ID of the user A can be found.
As a specific example, when there is a user ID of a voice command that cannot be recognized, the voice command is recognized by a voiceprint recognition method, the voiceprint ID of the user that cannot be recognized is stored, and then the user ID is established and registered.
S103, comparing and analyzing the first voice command in an offline voice recognition database to obtain a first recognition word code corresponding to the first voice command, wherein the offline voice recognition database is stored in the controller.
The off-line voice recognition database is pre-established, and off-line voice commands and corresponding recognition word codes are pre-stored in the off-line voice recognition database. The recognition word code may be a number, or a letter, or a combination of a number and a letter. For example, the first voice instruction issued by the user is "turn on the desk lamp", and the corresponding first recognition word code is "xx 01A". Specifically, the corresponding first recognition word code can be obtained only in the case where the corresponding first recognition word code is stored in the offline speech recognition database. Different identification word codes correspond to different control commands, for example, the identification word code is "xx 01B", and the corresponding control command is "turn off the desk lamp". In addition, if the corresponding first recognition word code is not stored in the offline speech recognition database, the corresponding first recognition word code cannot be obtained, and in this case, instruction learning needs to be performed first.
And S104, judging whether a first control instruction corresponding to the first identification word code exists through the wireless communication module.
The wireless communication module judges whether a first control instruction corresponding to the first identification word code exists or not through corresponding logic judgment. For example, it is determined whether or not a control command corresponding to the recognition word code "xx 01A" exists.
And S105, if a first control instruction corresponding to the first identification word code exists, calling the first control instruction, sending the first control instruction and the user ID to the terminal equipment, verifying the user ID through the terminal equipment, and executing the first control instruction on the terminal equipment after the verification is passed.
If the wireless communication module judges that a first control instruction corresponding to the identification word code "xx 01A" exists and the corresponding first control instruction is a control instruction of turning on the table lamp, the first control instruction is called, and the first control instruction and the user ID are sent to the corresponding intelligent table lamp.
After receiving the user ID, the intelligent desk lamp verifies the user ID and judges whether the user ID is a legal ID (namely whether the intelligent desk lamp is controlled by using the authority); if the user ID is a legal ID, the verification is passed, a control instruction of turning on the table lamp is executed, and the intelligent table lamp is turned on.
In summary, according to the terminal device control method based on smart glasses provided in this embodiment, a first voice instruction sent by a user is compared and analyzed in an offline voice recognition database to obtain a corresponding first recognition word code, and then a wireless communication module is used to determine whether a first control instruction corresponding to the first recognition word code is pre-stored; if the wireless communication module judges that a first control instruction corresponding to the first recognition word code is prestored, the first control instruction is directly called, and meanwhile, a user ID corresponding to the first voice instruction recognized in a voiceprint recognition mode is sent to the terminal equipment; after the terminal equipment passes the verification, corresponding control can be executed. Therefore, when the intelligent glasses cannot access the Internet, the voice control of the terminal equipment can be realized, and the use experience of a user is improved.
In addition, as a specific example, referring to fig. 2, the method further includes:
s201, acquiring a voice learning awakening signal obtained by the operation of a user on a control panel of the terminal equipment.
Specifically, a "learning" function key may be set on the terminal device, and when the user presses the function key for 5 seconds, the voice learning wake-up signal may be generated.
S202, acquiring a learning voice command sent by a user, distributing a learning recognition word code to the learning voice command, and storing the corresponding relation between the learning voice command and the learning recognition word code in the offline voice recognition database.
After the voice learning wake-up signal is generated, a user is required to send a learning voice instruction for learning. If the learning speech command issued by the user is "turn on the air conditioner", for example, a learning recognized word code is assigned to the learning speech command "turn on the air conditioner", and the assigned learning recognized word code is "ah 05Q", for example, and then the mapping relationship between the learning speech command "turn on the air conditioner" and the learning recognized word code "ah 05Q" is stored in the offline speech recognition database.
S203, acquiring a learning control instruction which is obtained by the operation of the user on the control panel and is used for controlling the terminal equipment.
After the learning voice instruction sent by the user is obtained, a learning control instruction for controlling the terminal device, which is obtained by the user operating on the control panel, needs to be obtained. For example, after saying "turn on the air conditioner", the user presses a switch on the control panel that is dedicated to turn on the air conditioner, and the acquired learning control instruction is the control instruction to turn on the air conditioner.
And S204, storing the mapping relation between the learning identification word codes and the learning control instructions in the wireless communication module.
Specifically, the mapping relationship between the learning identification word code "ah 05Q" and the control command of turning on the air conditioner is stored in the wireless communication module, so that the effect of command learning is realized.
In addition, specifically, after the step of acquiring a learning speech instruction sent by a user, allocating a learning recognized word code to the learning speech instruction, and storing the correspondence between the learning speech instruction and the learning recognized word code in the offline speech recognition database, the method further includes:
and judging whether a learning control instruction obtained by the operation of the user on the control panel is acquired within a preset time. For example, it is determined whether or not a learning control instruction obtained by a user operating on the control panel is acquired within 5 seconds.
And if a learning control instruction obtained by the operation of a user on a control panel is acquired within a preset time, storing the mapping relation between the learning identification word code and the learning control instruction in the wireless communication module. Specifically, if the learning control instruction obtained by the user operating on the control panel is obtained within 5 seconds, the mapping relationship between the learning recognized word code and the learning control instruction is stored in the wireless communication module.
Still be equipped with the suggestion device on the intelligent glasses, the suggestion device with controller electric connection. And if the learning control instruction obtained by the operation of the user on the control panel is not obtained within the preset time, controlling the prompting device to send out prompting information, wherein the prompting information is used for prompting the user to execute the control operation on the control panel. The prompting device is a voice announcer, for example. For example, if the learning control instruction obtained by the user operating on the control panel is not acquired within 5 seconds, a prompt message is sent to prompt the user to execute the control operation on the control panel.
Referring to fig. 3, in a method for controlling a terminal device based on smart glasses according to a second embodiment of the present invention, the smart glasses are provided with a voice collecting device, a wireless communication module and a controller, the voice collecting device and the wireless communication module are respectively electrically connected to the controller, the wireless communication module is configured to wirelessly communicate with a terminal device to be controlled, and the method includes steps S301 to S307:
s301, acquiring a first voice instruction sent by a user through the voice acquisition device;
s302, recognizing the first voice command by adopting a voiceprint recognition mode so as to recognize a user ID corresponding to the first voice command;
s303, comparing and analyzing the first voice command in an offline voice recognition database to obtain a first recognition word code corresponding to the first voice command, wherein the offline voice recognition database is stored in the controller;
s304, judging whether a first control instruction corresponding to the first identification word code exists through the wireless communication module;
s305, if a first control instruction corresponding to the first identification word code exists, acquiring grade information corresponding to the user ID;
in the present embodiment, a piece of ranking information is assigned to the user ID of each user in advance, the ranking information is, for example, L1-level ranking information, L2-level ranking information, L3-level ranking information, and the like, and the different ranking information represents different degrees of ranking. For example, the level degree (or degree of importance) of the level information of the L1 level is higher than that of the level information of the L2 level, the level degree (or degree of importance) of the level information of the L2 level is higher than that of the level information of the L3 level, and so on. The control authority corresponding to the different levels of information is different, for example, the user ID of level L1 has the authority to control the tv set, and the user ID of level L2 and below does not have the authority to control the tv set.
S306, judging whether the first control instruction is matched with the grade information;
s307, if the first control instruction is matched with the grade information, calling the first control instruction, sending the first control instruction and the user ID to the terminal equipment, verifying the user ID through the terminal equipment, and executing the first control instruction on the terminal equipment after the verification is passed.
It is necessary to first determine whether the first control instruction is matched with the level information, that is, determine whether the user ID has the right to issue the first control instruction to the terminal device. For example, if the first control instruction is to turn on a television, and if the level information corresponding to the user ID is level L1, it indicates that the first control instruction matches the level information, and therefore, the first control instruction is called, and the first control instruction and the user ID are sent to the terminal device, the user ID is verified by the terminal device, and after the verification is passed, the first control instruction is executed on the terminal device. On the contrary, if the level information corresponding to the user ID is level L2, it indicates that the first control command does not match the level information, and the user cannot turn on the television.
On the basis of the first embodiment, the embodiment adds the level information of the user ID, and further improves the intelligence.
It should be noted that the present embodiment focuses on differences from the previous embodiment, similar parts between the embodiments are not repeatedly described, and may refer to each other, and technical features between the embodiments may be selectively combined according to a conventional technical means of a person skilled in the art.
Referring to fig. 4, in a method for controlling a terminal device based on smart glasses according to a third embodiment of the present invention, when the first voice command is a multitask command and an execution terminal corresponding to the first voice command is a single terminal, the method provided in this embodiment specifically includes the following steps:
s401, comparing and analyzing the first voice command in the offline voice recognition database to obtain a plurality of subtask voice commands contained in the first voice command, and determining a logic sequence among the subtask voice commands.
The first voice instruction comprises a plurality of subtask voice instructions. In this step, for example, the first voice command of multitasking is "turn on the air conditioner and adjust the temperature to 25 ℃. For the voice instruction, the subtask voice instructions included therein are "turn on the air conditioner" and "adjust the temperature to 25 ℃". It is understood that the logical sequence between "turn on air conditioner" and "adjust temperature to 25 ℃" is to perform the action of "turn on air conditioner" first, and then perform the action of "adjust temperature to 25 ℃".
S402, comparing and analyzing the subtask voice commands in the off-line voice recognition database to obtain subtask recognition word codes corresponding to the subtask voice commands.
In this step, subtask recognized word codes corresponding to the subtask voice commands are obtained, respectively. For example, a subtask recognition word corresponding to a subtask voice command to "turn on air conditioner" is encoded as "kq 90H", and a subtask recognition word corresponding to a subtask voice command to "adjust the temperature to 25 ℃ is encoded as" tj25T ".
And S403, generating corresponding multitask recognition word codes according to the logic sequence between the plurality of subtask recognition word codes and the plurality of subtask voice instructions.
After the subtask recognized word encoding and the logical order between the plurality of subtask speech instructions are obtained, as described above, in this step, the corresponding multitask recognized word encoding "kq 90H & tj 25T" may be generated.
S404, judging whether a sub-control instruction corresponding to a plurality of sub-task recognition word codes contained in the multi-task recognition word codes exists through the wireless communication module.
Since the multitask recognition word code described above includes a plurality of subtask recognition word codes. In this step, whether a sub-control command corresponding to the plurality of sub-task recognition word codes exists is judged through the wireless communication module.
And S405, if all the subtask voice instructions exist, calling all the subtask voice instructions, and executing the subtask voice instructions in sequence according to the logic sequence among the subtask voice instructions. The terminal equipment control method based on the intelligent glasses provided by the third embodiment of the invention can effectively solve the problem of single-terminal multi-task intelligent off-line voice control and meet the actual application requirements.
Referring to fig. 5, based on the same inventive concept, a terminal device control system based on smart glasses according to a fourth embodiment of the present invention is provided with a voice acquisition device, a wireless communication module and a controller, where the voice acquisition device and the wireless communication module are respectively electrically connected to the controller, and the wireless communication module is used for wirelessly communicating with a terminal device to be controlled, and the system includes:
the first acquisition module is used for acquiring a first voice instruction sent by a user through the voice acquisition device;
the recognition module is used for recognizing the first voice command in a voiceprint recognition mode so as to recognize a user ID corresponding to the first voice command;
a comparison acquisition module, configured to perform comparison analysis on the first voice instruction in an offline voice recognition database to acquire a first recognition word code corresponding to the first voice instruction, where the offline voice recognition database is stored in the controller;
the first judging module is used for judging whether a first control instruction corresponding to the first identification word code exists through the wireless communication module;
and the calling and sending module is used for calling the first control instruction if the first control instruction corresponding to the first identification word code exists, sending the first control instruction and the user ID to the terminal equipment, verifying the user ID through the terminal equipment, and executing the first control instruction to the terminal equipment after the verification is passed.
In this embodiment, the system further includes:
the second acquisition module is used for acquiring a voice learning awakening signal obtained by the operation of a user on a control panel of the terminal equipment;
a third obtaining module, configured to obtain a learning voice instruction sent by a user, allocate a learning recognition word code to the learning voice instruction, and store a correspondence between the learning voice instruction and the learning recognition word code in the offline voice recognition database;
the fourth acquisition module is used for acquiring a learning control instruction which is obtained by the operation of a user on the control panel and is used for controlling the terminal equipment;
and the storage module is used for storing the mapping relation between the learning identification word codes and the learning control instructions in the wireless communication module.
In this embodiment, the system further includes:
the second judgment module is used for judging whether a learning control instruction obtained by the operation of a user on the control panel is acquired within a preset time;
the storage module is specifically configured to store a mapping relationship between the learning identification word code and the learning control instruction in the wireless communication module if the learning control instruction obtained by the user operating on the control panel is obtained within a preset time.
In this embodiment, still be equipped with suggestion device on the intelligent glasses, the suggestion device with controller electric connection, the system still includes:
and the prompting module is used for controlling the prompting device to send out prompting information if the learning control instruction obtained by the operation of the user on the control panel is not obtained within the preset time, wherein the prompting information is used for prompting the user to execute the control operation on the control panel.
In this embodiment, the prompting device is a voice broadcaster.
According to the terminal device control system based on the intelligent glasses provided by the embodiment, a first voice instruction sent by a user is compared and analyzed in an offline voice recognition database to obtain a corresponding first recognition word code, then whether the first control instruction corresponding to the first recognition word code is prestored is judged through the wireless communication module, if the first control instruction corresponding to the first recognition word code is prestored is judged through the wireless communication module, the first control instruction is directly called, meanwhile, a user ID corresponding to the first voice instruction recognized in a voiceprint recognition mode is sent to the terminal device, and after the terminal device passes verification, corresponding control can be executed.
Referring to fig. 6, based on the same inventive concept, a terminal device control system according to a fifth embodiment of the present invention is provided with a voice acquisition device, a wireless communication module and a controller on the smart glasses, where the voice acquisition device and the wireless communication module are respectively electrically connected to the controller, and the wireless communication module is used for wirelessly communicating with a terminal device to be controlled, and the system includes:
the first acquisition module is used for acquiring a first voice instruction sent by a user through the voice acquisition device;
the recognition module is used for recognizing the first voice command in a voiceprint recognition mode so as to recognize a user ID corresponding to the first voice command;
a comparison acquisition module, configured to perform comparison analysis on the first voice instruction in an offline voice recognition database to acquire a first recognition word code corresponding to the first voice instruction, where the offline voice recognition database is stored in the controller;
the first judging module is used for judging whether a first control instruction corresponding to the first identification word code exists through the wireless communication module;
a fifth obtaining module, configured to obtain, if a first control instruction corresponding to the first identification word code exists, level information corresponding to the user ID;
the third judging module is used for judging whether the first control instruction is matched with the grade information;
and the calling and sending module is used for calling the first control instruction if the first control instruction is matched with the grade information, sending the first control instruction and the user ID to the terminal equipment, verifying the user ID through the terminal equipment, and executing the first control instruction on the terminal equipment after the verification is passed.
It should be noted that the present embodiment focuses on differences from the previous embodiment, similar parts between the embodiments are not repeatedly described, and may refer to each other, and technical features between the embodiments may be selectively combined according to a conventional technical means of a person skilled in the art.
In addition, the embodiments of the present invention also provide a pair of smart glasses, which includes a memory, a processor, and a computer program stored on the memory and executable on the processor, and the processor implements the methods of the above embodiments when executing the program.
The logic and/or steps represented in the flowcharts or otherwise described herein, e.g., an ordered listing of executable instructions that can be considered to implement logical functions, can be embodied in any computer-readable medium for use by or in connection with an instruction execution system, apparatus, or device, such as a computer-based system, processor-containing system, or other system that can fetch the instructions from the instruction execution system, apparatus, or device and execute the instructions. For the purposes of this description, a "computer-readable medium" can be any means that can contain, store, communicate, propagate, or transport the program for use by or in connection with the instruction execution system, apparatus, or device.
More specific examples (a non-exhaustive list) of the computer-readable medium would include the following: an electrical connection (electronic device) having one or more wires, a portable computer diskette (magnetic device), a Random Access Memory (RAM), a read-only memory (ROM), an erasable programmable read-only memory (EPROM or flash memory), an optical fiber device, and a portable compact disc read-only memory (CDROM). Additionally, the computer-readable medium could even be paper or another suitable medium upon which the program is printed, as the program can be electronically captured, via for instance optical scanning of the paper or other medium, then compiled, interpreted or otherwise processed in a suitable manner if necessary, and then stored in a computer memory.
It should be understood that portions of the present invention may be implemented in hardware, software, firmware, or a combination thereof. In the above embodiments, the various steps or methods may be implemented in software or firmware stored in memory and executed by a suitable instruction execution system. For example, if implemented in hardware, as in another embodiment, any one or combination of the following techniques, which are known in the art, may be used: a discrete logic circuit having a logic gate circuit for implementing a logic function on a data signal, an application specific integrated circuit having an appropriate combinational logic gate circuit, a Programmable Gate Array (PGA), a Field Programmable Gate Array (FPGA), or the like.
In the description herein, references to the description of the term "one embodiment," "some embodiments," "an example," "a specific example," or "some examples," etc., mean that a particular feature, structure, material, or characteristic described in connection with the embodiment or example is included in at least one embodiment or example of the invention. In this specification, the schematic representations of the terms used above do not necessarily refer to the same embodiment or example. Furthermore, the particular features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples.
While embodiments of the invention have been shown and described, it will be understood by those of ordinary skill in the art that: various changes, modifications, substitutions and alterations can be made to the embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the claims and their equivalents.

Claims (10)

1. A terminal device control method based on intelligent glasses is characterized in that a voice acquisition device, a wireless communication module and a controller are arranged on the intelligent glasses, the voice acquisition device and the wireless communication module are respectively and electrically connected with the controller, the wireless communication module is used for wirelessly communicating with a terminal device to be controlled, and the method comprises the following steps:
acquiring a first voice instruction sent by a user through the voice acquisition device;
recognizing the first voice command by adopting a voiceprint recognition mode so as to recognize a user ID corresponding to the first voice command;
comparing and analyzing the first voice command in an offline voice recognition database to obtain a first recognition word code corresponding to the first voice command, wherein the offline voice recognition database is stored in the controller;
judging whether a first control instruction corresponding to the first identification word code exists or not through the wireless communication module;
if a first control instruction corresponding to the first identification word code exists, calling the first control instruction, sending the first control instruction and the user ID to the terminal equipment, verifying the user ID through the terminal equipment, and executing the first control instruction on the terminal equipment after the verification is passed.
2. The smart-glasses-based terminal device control method according to claim 1, further comprising:
acquiring a voice learning awakening signal obtained by a user operating on a control panel of the terminal equipment;
acquiring a learning voice instruction sent by a user, distributing a learning recognition word code for the learning voice instruction, and storing the corresponding relation between the learning voice instruction and the learning recognition word code in the offline voice recognition database;
acquiring a learning control instruction which is obtained by the operation of a user on the control panel and is used for controlling the terminal equipment;
and storing the mapping relation between the learning identification word codes and the learning control instructions in the wireless communication module.
3. The smart-glasses-based terminal device control method according to claim 2, wherein after the step of obtaining a learning voice command issued by a user, assigning a learning recognized word code to the learning voice command, and storing a correspondence between the learning voice command and the learning recognized word code in the offline voice recognition database, the method further comprises:
judging whether a learning control instruction obtained by the operation of a user on the control panel is acquired within a preset time;
and if a learning control instruction obtained by the operation of a user on a control panel is acquired within a preset time, storing the mapping relation between the learning identification word code and the learning control instruction in the wireless communication module.
4. The intelligent glasses-based terminal device control method according to claim 3, wherein a prompting device is further disposed on the intelligent glasses, the prompting device is electrically connected to the controller, and after the step of determining whether a learning control instruction obtained by a user operating on the control panel is obtained within a preset time, the method further comprises:
if the learning control instruction obtained by the operation of the user on the control panel is not obtained within the preset time, controlling the prompting device to send out prompting information, wherein the prompting information is used for prompting the user to execute the control operation on the control panel;
wherein, the prompting device is a voice broadcaster.
5. The smart-glasses-based terminal device control method according to claim 1, wherein after the step of determining whether the first control command corresponding to the first recognized word code exists through the wireless communication module, the method further comprises:
if a first control instruction corresponding to the first identification word code exists, acquiring grade information corresponding to the user ID;
judging whether the first control instruction is matched with the grade information;
if the first control instruction is matched with the grade information, calling the first control instruction, sending the first control instruction and the user ID to the terminal equipment, verifying the user ID through the terminal equipment, and executing the first control instruction on the terminal equipment after the verification is passed.
6. The smart-glasses-based terminal device control method according to claim 3, wherein when the first voice instruction is a multitasking instruction, the first voice instruction includes a plurality of subtask voice instructions, and the method further includes:
comparing and analyzing the first voice command in the offline voice recognition database to obtain a plurality of subtask voice commands contained in the first voice command, and determining a logic sequence among the subtask voice commands;
comparing and analyzing the subtask voice instructions in the offline voice recognition database to obtain subtask recognition word codes corresponding to the subtask voice instructions;
and generating corresponding multi-task recognition word codes according to the logic sequence between the plurality of subtask recognition word codes and the plurality of subtask voice instructions.
7. The smart-glasses-based terminal device control method according to claim 6, wherein the multitask recognition word code includes a plurality of subtask recognition word codes, the method further comprising:
judging whether a sub-control instruction corresponding to a plurality of sub-task recognition word codes contained in the multi-task recognition word codes exists through the wireless communication module;
if the sub-control instructions exist, all the sub-control instructions are called, and the sub-control instructions are sequentially executed according to the logic sequence among the plurality of sub-task voice instructions.
8. The utility model provides a terminal equipment control system based on intelligence glasses, a serial communication port, be equipped with pronunciation collection system, wireless communication module and controller on the intelligence glasses, pronunciation collection system, wireless communication module respectively with controller electric connection, wireless communication module be used for with the terminal equipment wireless communication who treats control, the system includes:
the first acquisition module is used for acquiring a first voice instruction sent by a user through the voice acquisition device;
the recognition module is used for recognizing the first voice command in a voiceprint recognition mode so as to recognize a user ID corresponding to the first voice command;
a comparison acquisition module, configured to perform comparison analysis on the first voice instruction in an offline voice recognition database to acquire a first recognition word code corresponding to the first voice instruction, where the offline voice recognition database is stored in the controller;
the first judging module is used for judging whether a first control instruction corresponding to the first identification word code exists through the wireless communication module;
and the calling and sending module is used for calling the first control instruction if the first control instruction corresponding to the first identification word code exists, sending the first control instruction and the user ID to the terminal equipment, verifying the user ID through the terminal equipment, and executing the first control instruction to the terminal equipment after the verification is passed.
9. The smart-glasses-based terminal device control system of claim 8, further comprising:
the second acquisition module is used for acquiring a voice learning awakening signal obtained by the operation of a user on a control panel of the terminal equipment;
a third obtaining module, configured to obtain a learning voice instruction sent by a user, allocate a learning recognition word code to the learning voice instruction, and store a correspondence between the learning voice instruction and the learning recognition word code in the offline voice recognition database;
the fourth acquisition module is used for acquiring a learning control instruction which is obtained by the operation of a user on the control panel and is used for controlling the terminal equipment;
the storage module is used for storing the mapping relation between the learning identification word codes and the learning control instructions in the wireless communication module;
a fifth obtaining module, configured to obtain, if a first control instruction corresponding to the first identification word code exists, level information corresponding to the user ID;
the third judging module is used for judging whether the first control instruction is matched with the grade information;
the calling and sending module is specifically configured to call the first control instruction if the first control instruction is matched with the level information, send the first control instruction and the user ID to the terminal device, verify the user ID through the terminal device, and execute the first control instruction on the terminal device after the verification is passed.
10. Smart eyewear comprising a memory, a processor and a computer program stored on the memory and executable on the processor, wherein the processor when executing the program implements the method of any one of claims 1 to 7.
CN202110979817.8A 2021-08-25 2021-08-25 Terminal equipment control method and system based on intelligent glasses and intelligent glasses Pending CN113421567A (en)

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Application publication date: 20210921