Intelligent seat control method and device and electronic equipment
By detecting meeting start conditions and obtaining confidential information within the smart chair, differentiated control commands are generated, solving the problem of low efficiency in voice control of smart chairs under multi-device deployment. This achieves precise voice function management and improves control efficiency and security.
Patent Information
- Application Number
- CN202511249970.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-03
- Publication Date
- 2026-01-16
AI Technical Summary
In existing technologies, the voice control function of smart seats is inefficient, especially when multiple devices are deployed, making efficient management difficult.
By detecting the meeting start conditions of the target scheduled meeting, obtaining the meeting location and confidential information, generating differentiated seat control commands, and accurately sending them to the associated smart seats, the voice function can be turned on and off as needed.
This improves the control efficiency of smart seats, reduces manual intervention, lowers the risk of human error, and ensures the accuracy and safety of control.
Smart Images

Figure CN121348804A_ABST
Abstract
Description
Technical Field
[0001] This application belongs to the field of intelligent seat control technology, and in particular relates to a control method, device and electronic equipment for an intelligent seat. Background Technology
[0002] With the popularization of the smart office concept, smart chairs have been widely used in open-plan office areas, meeting rooms, and other scenarios. These smart chairs typically integrate voice input devices (such as microphones) and network communication modules, allowing users to adjust chair parameters or perform other interactions via voice commands, thus enhancing the office experience and convenience.
[0003] In related technologies, the control of voice functions for smart seats is limited to the independent start and stop management of the voice function of a single seat. This single-point control method has the problem of low control efficiency when multiple devices are deployed. Summary of the Invention
[0004] This application provides a control method, device, and electronic device for a smart seat, which can control multiple smart seats simultaneously, thereby improving the control efficiency of the smart seat.
[0005] In a first aspect, embodiments of this application provide a control method for a smart seat, applied to an electronic device, comprising:
[0006] In response to detecting that the target scheduled meeting meets the meeting start conditions, the meeting location and confidentiality information of the target scheduled meeting are obtained, and the confidentiality information is used to indicate whether the meeting content of the target scheduled meeting needs to be kept confidential;
[0007] A first seat control command is generated based on the confidential information;
[0008] Send the first seat control command to the smart seat associated with the meeting location;
[0009] The first seat control command is used to instruct the smart seat to turn off the voice function when the confidentiality information indicates that the content of the target scheduled meeting needs to be kept confidential; or, to instruct the smart seat to turn on the voice function when the confidentiality information indicates that the content of the target scheduled meeting does not need to be kept confidential.
[0010] In one embodiment of this application, before sending the first seat control command to the smart seat associated with the meeting location, the method further includes:
[0011] Obtain spatial information associated with the meeting location;
[0012] The target signal strength of the wireless transmitter is controlled based on the spatial information.
[0013] Sending the first seat control command to the smart seat associated with the meeting location includes:
[0014] The first seat control command is sent via the wireless transmitter to the smart seat associated with the meeting location at the target signal strength.
[0015] In one embodiment of this application, the meeting location includes multiple smart seats, and the first seat control command is used to instruct the smart seats to turn off the voice function;
[0016] After sending the first seat control command to the smart seat associated with the meeting location, the method further includes:
[0017] In response to obtaining target demand information associated with the meeting location, a target request instruction is sent to multiple smart seats associated with the meeting location. The target demand information is used to indicate that there is a demand for smart seats to be turned on at the meeting location. The target request instruction is used to request the smart seats to send load information. The load information is used to indicate whether the smart seats are under load.
[0018] Receive the carrying information sent by the multiple smart seats associated with the meeting location in response to the target request instruction;
[0019] Based on the carrying information sent by multiple smart seats associated with the meeting location, at least one first smart seat is identified as being carried.
[0020] Send a second seat control command to the at least one first smart seat, the second seat control command being used to control the first smart seat to activate the voice function.
[0021] In one embodiment of this application, the smart seat is equipped with a status indicator light;
[0022] The first seat control command is further configured to instruct the smart seat to control the status indicator light to a first indication state when the confidentiality information indicates that the meeting content of the target scheduled meeting needs to be kept confidential; and to instruct the smart seat to control the status indicator light to a second indication state when the confidentiality information indicates that the meeting content of the target scheduled meeting does not need to be kept confidential.
[0023] In one embodiment of this application, the first seat control command is used to instruct the smart seat to turn off the voice function;
[0024] After sending the first seat control command to the smart seat associated with the meeting location, the method further includes:
[0025] Receive target images captured by image acquisition devices at the meeting location;
[0026] Based on the target image, at least one second smart seat is identified, which is associated with the meeting location and whose status indicator light is in a second indication state.
[0027] Output a first prompt message associated with the at least one second smart seat, the first prompt message being used to indicate that the at least one second smart seat has a risk of voice leakage.
[0028] In one embodiment of this application, the smart seat is used to generate a heartbeat signal including indication information for indicating the target state when a preset period is reached and / or the target state of the voice function changes, and sends the heartbeat signal to the electronic device. The target state includes turning on the voice function and turning off the voice function.
[0029] The method further includes:
[0030] If the target waiting time is reached but the heartbeat signal is not received, a second prompt message is output. The second prompt message is used to indicate that a network anomaly has occurred between the electronic device and the smart seat.
[0031] In one embodiment of this application, after outputting a second prompt message when the target waiting time has elapsed but the heartbeat signal has not been received, the method further includes:
[0032] If the network between the electronic device and the smart seat is restored based on the second prompt information, a heartbeat signal packet sent by the smart seat is received, the heartbeat signal packet including multiple heartbeat signals generated and cached by the smart seat during the network anomaly.
[0033] In one embodiment of this application, the first seat control command is used to instruct the smart seat to activate the voice function when the confidentiality information indicates that the meeting content of the target scheduled meeting does not need to be kept confidential.
[0034] After sending the first seat control command to the smart seat associated with the meeting location, the method further includes:
[0035] Receive audio data collected by the smart seat when the voice function is enabled;
[0036] Identify the target sound signal in the audio data, wherein the target sound signal is the sound signal of the initiator of the target scheduled meeting;
[0037] In response to the detection that the voice content of the target sound signal is preset content, a third seat control command is generated;
[0038] The third seat control command is sent to the smart seat, which instructs the smart seat to turn off the voice function.
[0039] Secondly, embodiments of this application provide a control device for a smart seat, applied to an electronic device, comprising:
[0040] The information acquisition module is used to acquire the meeting location and confidentiality information of the target scheduled meeting in response to detecting that the target scheduled meeting meets the meeting start conditions. The confidentiality information is used to indicate whether the meeting content of the target scheduled meeting needs to be kept confidential.
[0041] The instruction generation module is used to generate a first seat control instruction based on the confidential information;
[0042] The instruction sending module is used to send the first seat control instruction to the smart seat associated with the meeting location;
[0043] The first seat control command is used to instruct the smart seat to turn off the voice function when the confidentiality information indicates that the content of the target scheduled meeting needs to be kept confidential; or, to instruct the smart seat to turn on the voice function when the confidentiality information indicates that the content of the target scheduled meeting does not need to be kept confidential.
[0044] Thirdly, embodiments of this application provide an electronic device, including: a processor and a memory storing computer program instructions;
[0045] When the processor executes the computer program instructions, it implements the control method for the intelligent seat as described in the first aspect.
[0046] Fourthly, embodiments of this application provide a computer-readable storage medium storing computer program instructions, which, when executed by a processor, implement the control method for the intelligent seat as described in the first aspect.
[0047] Fifthly, embodiments of this application provide a computer program product, wherein instructions in the computer program product, when executed by a processor of an electronic device, cause the electronic device to perform the control method for the intelligent seat as described in the first aspect.
[0048] The intelligent chair control method, device, and electronic device proposed in this application first acquire the meeting location and confidentiality information of the target scheduled meeting when the meeting start conditions are met. Then, a first chair control command is generated based on the confidentiality information, so that the chair control command is directly associated with the confidentiality requirements of the meeting, rather than using a uniform control logic. This achieves the effect of on-demand control and eliminates the need for manual judgment of meeting confidentiality and manual adjustment of chair functions, reducing manual intervention and lowering the risk of human error. Finally, the first chair control command is sent to the intelligent chair associated with the meeting location to accurately locate the target control object. Functional adjustments are only made to the intelligent chair at the meeting location, avoiding accidental control of chairs in other areas and ensuring control accuracy. Thus, by acquiring the meeting location and confidentiality information before the meeting starts, generating differentiated control commands based on confidentiality requirements, and accurately sending them to the corresponding intelligent chairs to achieve on-demand switching of voice functions, the control efficiency of intelligent chairs is improved. Attached Figure Description
[0049] To more clearly illustrate the technical solutions of the embodiments of this application, the accompanying drawings used in the embodiments of this application will be briefly introduced below. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0050] Figure 1 This is a flowchart illustrating the control method for an intelligent seat provided in an embodiment of this application;
[0051] Figure 2 This is a structural schematic diagram of a smart seat provided in an embodiment of this application;
[0052] Figure 3 This is a schematic diagram of an implementation flow of the intelligent seat control method provided in this application embodiment;
[0053] Figure 4 This is another schematic diagram of the implementation process of the intelligent seat control method provided in the embodiments of this application;
[0054] Figure 5 This is another schematic diagram of the implementation process of the intelligent seat control method provided in this application embodiment;
[0055] Figure 6 This is a schematic diagram of the structure of the control device for the smart seat provided in the embodiments of this application;
[0056] Figure 7 This is a schematic diagram of the structure of the electronic device provided in the embodiments of this application. Detailed Implementation
[0057] The features and exemplary embodiments of various aspects of this application will be described in detail below. To make the objectives, technical solutions, and advantages of this application clearer, the application will be further described in detail below with reference to the accompanying drawings and specific embodiments. It should be understood that the specific embodiments described herein are only intended to explain this application and not to limit it. For those skilled in the art, this application can be implemented without some of these specific details. The following description of the embodiments is merely to provide a better understanding of this application by illustrating examples.
[0058] It should be noted that, in this document, relational terms such as "first" and "second" are used merely to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitations, an element defined by the phrase "comprising..." does not exclude the presence of additional identical elements in the process, method, article, or apparatus that includes said element.
[0059] In all specific embodiments of this application, when processing data related to user identity or characteristics, such as user information, user behavior data, user historical data, and user location information, user permission or consent is obtained first. Furthermore, the collection, use, and processing of this data comply with relevant laws, regulations, and standards. Additionally, when embodiments of this application require access to sensitive personal information, separate permission or consent from the user is obtained through pop-ups or redirects to confirmation pages. Only after obtaining the user's separate permission or consent is the necessary user-related data required for the proper functioning of these embodiments obtained.
[0060] To address the problems of the prior art, this application provides a control method, device, and electronic device for a smart seat. The control method for the smart seat provided in this application is described below.
[0061] Figure 1 A flowchart illustrating a control method for an intelligent seat according to an embodiment of this application is shown. Figure 1 As shown, the intelligent seat control method provided in this application embodiment is applied to an electronic device and includes the following steps 101-103, wherein:
[0062] Step 101: In response to detecting that the target scheduled meeting meets the meeting start conditions, obtain the meeting location and confidentiality information of the target scheduled meeting. The confidentiality information is used to indicate whether the meeting content of the target scheduled meeting needs to be kept confidential.
[0063] Electronic devices can establish data connections with one or more meeting booking systems (such as an enterprise's internal schedule management system, meeting reservation platform, etc.) to monitor or periodically query the booked meeting information stored in the system. These electronic devices can reside on a cloud server, serving as a seating management center.
[0064] The conditions for starting a meeting can be set according to the actual application scenario, and there are no specific limitations here. For example, it can be that the time elapsed since the scheduled start time of the target meeting has reached a preset time (such as 10 minutes or 5 minutes), or it can be that the meeting organizer or participants have triggered the meeting start instruction (such as clicking the "Meeting Start" button in the meeting reservation system), or it can be that a preset number of participants have arrived near the meeting location of the target meeting through positioning technology.
[0065] The meeting location information can be a specific meeting room number (such as "Meeting Room 301"), meeting room name (such as "R&D Center Meeting Room 1"), or the physical location coordinates of the meeting room, so as to determine the smart chairs that need to be controlled later.
[0066] Confidentiality information is used to indicate whether the content of a target scheduled meeting needs to be kept confidential. It can take the form of an identifier field (such as "confidential" or "non-confidential"), a Boolean value (such as "true" indicating that confidentiality is required and "false" indicating that confidentiality is not required), or a level information (such as "Level 1 confidential", "Level 2 confidential", or "normal", where "Level 1 confidential" and "Level 2 confidential" both indicate that confidentiality is required).
[0067] Step 102: Generate a first seat control command based on the confidential information.
[0068] If the confidentiality information indicates that the content of the target scheduled meeting needs to be kept confidential (e.g., the confidentiality information is "confidential", "true", or "Level 1 confidential" or "Level 2 confidential"), then the first seat control command generated by the electronic device is a "turn off voice function" command, which may include a control code or command identifier to indicate that the voice function needs to be turned off; if the confidentiality information indicates that the content of the target scheduled meeting does not need to be kept confidential (e.g., the confidentiality information is "non-confidential", "false", or "normal"), then the first seat control command generated by the electronic device is a "turn on voice function" command, which may include a control code or command identifier to indicate that the voice function needs to be turned on.
[0069] Furthermore, to ensure that the first seat control command can accurately act on the target smart seat, the first seat control command may also include smart seat identification information associated with the meeting location (such as the smart seat's device number, MAC address, IP address, etc.). This identification information can be retrieved by the electronic device from a pre-stored meeting location-smart seat association table based on the obtained meeting location information. The meeting location-smart seat association table records the correspondence between different meeting locations and the smart seats deployed within those locations. For example, "Meeting Room 301" corresponds to smart seats with device numbers "SEAT-30101", "SEAT-30102", ..., "SEAT-30120".
[0070] Step 103: Send the first seat control command to the smart seat associated with the meeting location.
[0071] After generating the first seat control command, the electronic device will send the first seat control command to all smart seats associated with the meeting location of the target scheduled meeting via a preset communication method (such as Wi-Fi, Bluetooth, or Ethernet).
[0072] When the smart seat receives the first control command, it will parse the content of the command: if the command is "turn off voice function", the smart seat will immediately stop its voice-related functions such as voice acquisition, voice transmission, and voice storage, such as cutting off the microphone power, turning off the voice processing module, and stopping the transmission of voice data to external devices, to prevent confidential meeting content from being leaked through the voice function; if the command is "turn on voice function", the smart seat will activate its voice acquisition, voice transmission, and voice storage functions, such as powering the microphone, activating the voice processing module, and establishing a voice data connection with the meeting recording device or voice interaction system, in order to provide voice assistance services for meeting participants.
[0073] In some implementations, the smart seat may be equipped with a microphone control module, a wireless communication module, and a local control interface. The microphone control module may include a hardware-level microphone switch, such as a semiconductor switch, to ensure that the microphone circuit is physically disconnected when the microphone is turned off. It may also include a digital signal processor to perform real-time noise reduction on the sound recorded or emitted by the microphone and have multi-level access control, such as supporting manual control by the user, remote control by the administrator, and forced control by the system.
[0074] The wireless communication module supports multiple communication protocols such as 433MHz, 2.4GHz, and Bluetooth 5.0. It integrates the AES-256 encryption algorithm to ensure communication security and has a signal strength detection function, which can adaptively adjust the receiving and transmitting power according to the signal strength.
[0075] The local control interface enhances the physical buttons and touch control panel, and also supports control via Bluetooth from applications installed on mobile devices (such as mobile apps), and has voice wake-up and control functions when voice functionality is enabled.
[0076] In this embodiment, the intelligent seat control method, device, and electronic device proposed in this application firstly acquire the meeting location and confidentiality information of the target scheduled meeting when the meeting start conditions are met. Then, a first seat control command is generated based on the confidentiality information, so that the seat control command is directly associated with the confidentiality requirements of the meeting, rather than using a unified control logic, thereby achieving the effect of on-demand control. Furthermore, it eliminates the need for manual judgment of whether the meeting is confidential and manual adjustment of seat functions, reducing manual intervention and lowering the risk of human error. Finally, the first seat control command is sent to the intelligent seats associated with the meeting location to accurately locate the target control object. Functional adjustments are only made to the intelligent seats at the meeting location, avoiding accidental control of seats in other areas and ensuring control accuracy. Thus, by acquiring the meeting location and confidentiality information before the meeting starts, generating differentiated control commands based on confidentiality requirements, and accurately sending them to the corresponding intelligent seats to achieve on-demand switching of voice functions, the management efficiency of intelligent seats is improved.
[0077] In one embodiment of this application, before sending control commands to the smart seat, the signal strength of the wireless transmitter sending the commands to the smart seat can be determined first. Specifically, before step 103, the control method for the smart seat provided in this embodiment may further include:
[0078] Obtain spatial information associated with the meeting location;
[0079] The target signal strength of the wireless transmitter is controlled based on the spatial information.
[0080] Step 103 may include:
[0081] The first seat control command is sent via the wireless transmitter to the smart seat associated with the meeting location at the target signal strength.
[0082] Spatial information is used to describe the physical spatial characteristics of the meeting location. It may include the area of the meeting location, the actual physical dimensions of the meeting location, such as length, width, and height, and the distribution of smart seats within the meeting location. For example, SEAT-30101 is located in the northeast corner of the meeting room, 5m away from the wireless transmitter, and SEAT-30102 is located in the central area of the meeting room, 3m away from the wireless transmitter, etc.
[0083] After acquiring spatial information, the reasonable transmission range of the wireless signal will be analyzed in conjunction with the size of the space, thereby determining the target signal strength of the wireless transmitter.
[0084] For example, the target signal strength is determined based on the indoor area of the meeting location:
[0085] Small room (<15m) 2 ), Target signal strength: -20 to -8 dBm;
[0086] Medium (15-40m) 2 ), Target signal strength: -12~0dBm;
[0087] Large room (40-100m) 2 ), target signal strength: 0 to +4 dBm, etc.
[0088] The wireless transmitter can be integrated into the electronic device or placed as a standalone device in the meeting place to establish a wired or wireless connection with the electronic device (such as a connection via USB interface or a Bluetooth pairing connection). The wireless communication methods it supports include, but are not limited to, Wi-Fi, Bluetooth, or Ethernet. The specific communication method can be determined according to the network environment of the meeting place and the communication protocol of the smart chair.
[0089] In one embodiment of this application, when the meeting location is too large, multiple wireless receivers can be set up within the meeting location to achieve full coverage.
[0090] In this embodiment, the wireless signal strength is optimized based on the spatial information of the meeting location. In small meeting rooms or confidential scenarios, the signal strength is reduced to prevent the leakage of instructions, while in large meeting rooms or complex structural scenarios, the signal strength is increased to ensure full coverage of instructions, thereby improving the security and reliability of instruction transmission.
[0091] In one embodiment of this application, the meeting location includes multiple smart seats, and a first seat control command is used to instruct the smart seats to turn off the voice function.
[0092] When multiple smart seats are present at the meeting location, and the first seat control command is to disable the voice function, in order to meet the temporary use needs of some seats during the meeting or the voice function usage needs of the next meeting, and to avoid energy waste caused by uniformly turning them on, specifically, after step 103, the smart seat control method provided in this application embodiment may further include:
[0093] In response to obtaining target demand information associated with the meeting location, a target request instruction is sent to multiple smart seats associated with the meeting location. The target demand information is used to indicate that there is a demand for smart seats to be turned on at the meeting location. The target request instruction is used to request the smart seats to send load information. The load information is used to indicate whether the smart seats are under load.
[0094] Receive the carrying information sent by the multiple smart seats associated with the meeting location in response to the target request instruction;
[0095] Based on the carrying information sent by multiple smart seats associated with the meeting location, at least one first smart seat is identified as being carried.
[0096] Send a second seat control command to the at least one first smart seat, the second seat control command being used to control the first smart seat to activate the voice function.
[0097] The target demand information is used to indicate that there is a need to enable the voice function of the smart chairs at the meeting location. The triggering scenarios include, but are not limited to: the meeting organizer manually initiating an activation request through the meeting control terminal (such as the meeting room control panel or mobile APP), for example, by clicking the button to enable the voice function of the chair in use; receiving reservation information for a new meeting, and the confidentiality level of the new meeting instructing the voice function to be enabled.
[0098] Once the aforementioned target requirement information is obtained, a target request command will be generated. This command requests all smart seats within the meeting venue to send their own carrying information. The target request command may include a command validity period (e.g., feedback within 5 seconds) and a seat identification verification field to ensure that only smart seats associated with the meeting venue respond.
[0099] The load information is used to indicate whether the smart seat is in a load state (i.e., whether there are people sitting on it). Its data format can be Boolean values (e.g., "1" indicates that it is in a load state, and "0" indicates that it is not in a load state); pressure sensor detection data (e.g., 500N indicates that pressure is detected and it is determined to be in a load state; 0N indicates that no pressure is detected and it is determined to be in a non-load state), etc., without specific limitations here.
[0100] Upon receiving a target request command, each smart seat will collect current status data through its equipped detection modules (such as pressure sensors, infrared sensors, and cameras), generate load information, and feed it back to the electronic device via a wireless communication link within the command's validity period. The electronic device will receive the load information from each smart seat in real time and record the corresponding seat identifier (such as the device number).
[0101] After receiving the load information of all smart seats, the load information will be analyzed and processed to filter out the smart seats that are in a load state, that is, to determine at least one first smart seat.
[0102] In one embodiment of this application, if no carrying information is received for some smart seats (e.g., no feedback is received after the instruction validity period expires), the smart seats can be marked as having an unknown status and temporarily excluded from the determination scope of the first smart seats. A prompt message can be sent to the management terminal (e.g., "301 meeting room SEAT-30102 has not received carrying information, please check the device").
[0103] After the first smart seat is identified, a second seat control command is generated. This second seat control command is used to control the first smart seat to turn on the voice function (since the first seat control command has turned off the voice function of all seats, this command is used to specifically restore the voice function of the seats in use).
[0104] In this embodiment, the voice function of the smart chair in use is precisely controlled by carrying information, and the function is only turned on for chairs with attendees, reducing energy waste from empty chairs and achieving refined control.
[0105] In one embodiment of this application, the smart seat is equipped with a status indicator light. The first seat control command is further configured to instruct the smart seat to control the status indicator light to be in a first indication state when the confidentiality information indicates that the meeting content of the target scheduled meeting needs to be kept confidential; and to instruct the smart seat to control the status indicator light to be in a second indication state when the confidentiality information indicates that the meeting content of the target scheduled meeting does not need to be kept confidential.
[0106] Specifically, the smart seat can also be equipped with a status display module, which includes a high-brightness LED status indicator. The LED status indicator can adopt a red-green dual-color design, that is, red indicates that the microphone is off (first indication state), green indicates that the microphone is on (second indication state), and flashing indicates that the status is switching.
[0107] In another embodiment of this application, the status display module may also integrate an LCD display screen to display detailed microphone status information and control source.
[0108] Furthermore, the status display module can also integrate a voice broadcast function, that is, to emit corresponding prompt sounds when the microphone status changes.
[0109] In another embodiment of this application, to ensure successful instruction transmission, in some embodiments, after successfully receiving and executing the first seat control instruction, the smart seat can provide feedback on the execution result to the electronic device (e.g., "voice function is turned off, indicator light flashes red slowly"). If the electronic device does not receive feedback from the smart seat within a preset time (e.g., 3 seconds), it can control the wireless transmitter to retransmit the instruction with the original target signal strength, or appropriately increase the signal strength by 3-5 dBm and retransmit, until feedback is received or the preset number of retransmissions (e.g., 3 times) is reached.
[0110] In this embodiment, a status indicator light is used to provide visual prompts, allowing participants to intuitively identify the confidentiality of the meeting and the status of the voice function, thereby reducing the risk of leakage.
[0111] To avoid the risk of voice leakage caused by abnormal reception of smart seat commands or device malfunction, resulting in the seat not turning off the voice function as required (manifested as the status indicator light still being in the second indication state), this embodiment uses an image acquisition device to monitor the status of the seat indicator light in order to provide early warning of abnormal situations.
[0112] Specifically, the first seat control command is used to instruct the smart seat to turn off the voice function. After step 103, the smart seat control method provided in this application embodiment may further include:
[0113] Receive target images captured by image acquisition devices at the meeting location;
[0114] Based on the target image, at least one second smart seat is identified, which is associated with the meeting location and whose status indicator light is in a second indication state.
[0115] Output a first prompt message associated with the at least one second smart seat, the first prompt message being used to indicate that the at least one second smart seat has a risk of voice leakage.
[0116] Image acquisition devices can be cameras deployed in the meeting venue or cameras deployed on each smart chair.
[0117] The received target image is processed by image recognition to extract features such as the color and flashing pattern of each smart seat status indicator light. These features are then compared with the first indication status to filter out smart seats with abnormal status (i.e., the first smart seat). Once the first smart seat is identified, a first prompt message is generated. This prompt message can be used to indicate that the first smart seat has a risk of voice leakage, or it can be used to indicate that the first smart seat is abnormal (i.e., the microphone status does not match the indicator light status).
[0118] In this embodiment, abnormal seat status is monitored in real time by means of image acquisition. Seats that have not turned off the voice function as required or that are malfunctioning can be proactively detected without manual inspection, thereby quickly identifying leakage risks and abnormal issues and reducing the risk of leakage of confidential information.
[0119] In one embodiment of this application, the smart seat generates a heartbeat signal including indication information for indicating the target state when a preset period is reached and / or the target state of the voice function changes, and sends the heartbeat signal to the electronic device. The target state includes turning on the voice function and turning off the voice function. The control method of the smart seat provided in this embodiment of the application may further include:
[0120] If the target waiting time is reached but the heartbeat signal is not received, a second prompt message is output. The second prompt message is used to indicate that a network anomaly has occurred between the electronic device and the smart seat.
[0121] The preset cycle refers to the timer module pre-set in the smart seat, which automatically triggers the generation of a heartbeat signal every preset cycle (such as 30 seconds).
[0122] A change in the target state of the voice function means that if the smart seat receives a control command (such as a first seat control command or a second seat control command) that causes the voice function to switch from on to off, or vice versa, a heartbeat signal will be generated immediately without waiting for a preset period.
[0123] The heartbeat signal may include smart seat identification information (such as device number, network address, etc.), voice function target status indication information (such as voice status: off), signal generation timestamp (such as 2025-08-29 14:05:30), and device health status fields (such as hardware normal).
[0124] The target waiting time can be set using an exponential backoff method. For example, if the preset period is set to 30 seconds, and the network does not respond (i.e., no heartbeat signal is received), the waiting time is doubled. For example, if the first time is 30 seconds but there is no response, then wait for 60 seconds, and if there is still no response, wait for 120 seconds, and so on. If there is still no response after the waiting time is 240 seconds, it is determined that there is a network abnormality between the electronic device and the smart seat, and the network needs to be reinitialized, thereby generating a second prompt message.
[0125] In this embodiment, the network connection is monitored based on heartbeat signals to detect disconnection problems in real time, thereby avoiding subsequent control failures.
[0126] In one embodiment of this application, after outputting a second prompt message when the target waiting time has elapsed but the heartbeat signal has not been received, the control method for the smart seat provided in this application embodiment may further include:
[0127] If the network between the electronic device and the smart seat is restored based on the second prompt information, a heartbeat signal packet sent by the smart seat is received, the heartbeat signal packet including multiple heartbeat signals generated and cached by the smart seat during the network anomaly.
[0128] The smart seat can immediately activate a caching mode when it detects a failure to send a heartbeat signal (such as failure after three consecutive retries) or when it senses a network link interruption (such as a network disconnection) through the communication module, and automatically cache the generated heartbeat signal during the network interruption.
[0129] Furthermore, each cached heartbeat signal, while retaining all original fields (identification information, voice status, timestamp, health status), can be additionally marked with a cache flag (cache: yes / no) to distinguish between non-cached and cached signals.
[0130] In this embodiment, a cached heartbeat signal packet is received after the network is restored to complete the status record during the abnormal period and achieve full traceability.
[0131] After sending a first seat control command (instructing to turn off the voice function) to the smart seat associated with the meeting location, in order to deal with special scenarios (such as temporarily adding a seat that is not under control) or the meeting initiator needing to record content temporarily, this embodiment of the application triggers the voice function to turn off by recognizing the meeting initiator's voice signal.
[0132] Specifically, the first seat control command is used to instruct the smart seat to activate its voice function when the confidentiality information indicates that the content of the target scheduled meeting does not need to be kept confidential. After step 103, the control method for the smart seat provided in this application embodiment may further include:
[0133] Receive audio data collected by the smart seat when the voice function is enabled;
[0134] Identify the target sound signal in the audio data, wherein the target sound signal is the sound signal of the initiator of the target scheduled meeting;
[0135] In response to the detection that the voice content of the target sound signal is preset content, a third seat control command is generated;
[0136] The third seat control command is sent to the smart seat, which instructs the smart seat to turn off the voice function.
[0137] It can collect and store the voiceprint features of the meeting initiator in advance, and perform voiceprint comparison in real time after receiving audio data to filter out the target sound signal that matches the initiator's voiceprint.
[0138] The target audio signal can be identified using keyword technology, such as keywords related to voice functions, like turning off the microphone or entering confidential mode. It should be noted that the keywords can be set according to the actual situation and are not specifically limited here.
[0139] The preset content can be related to confidentiality, such as pausing recording or entering confidential mode. It should be noted that the preset content can be set according to the actual situation, and no specific limitation is made here.
[0140] After the target sound signal is identified, the voice content of the target sound signal can be matched with preset content. When the voice content of the target sound signal is detected to be the preset content, a third seat control command is generated. The third seat control command is used to instruct the smart seat to turn off the voice function.
[0141] In one embodiment of this application, in a non-confidential scenario, the third seat control command still has a higher priority than the first seat control command, but a delayed execution option can be added. For example, if the shutdown delay time in the command body is set to 5 seconds, the smart seat will complete the storage of the current audio segment within 5 seconds before shutting down, thus avoiding the loss of meeting records.
[0142] In this embodiment, for scenarios where sensitive content suddenly emerges during a non-confidential meeting, the voice function is quickly disabled by recognizing the initiator's voice to avoid information leakage.
[0143] The following provides an example of the control method for the smart seat provided in the embodiments of this application.
[0144] like Figure 2 As shown, Figure 2 This is a schematic diagram of the structure of a smart seat provided in an embodiment of this application. The smart seat includes a wireless communication module and a control unit. The wireless communication module is used to connect the smart seat to electronic devices, and the control unit is used to control the hardware switch, status indicator LED, and LCD display on the smart seat. Further, the hardware switch is used to control the microphone module of the smart seat.
[0145] like Figure 3 As shown, the smart seat control method provided in this application embodiment can, in practical applications, set the electronic device in the cloud management platform of the cloud management layer.
[0146] Specifically, the cloud management platform can be set up in the enterprise's cloud server. The cloud management platform is connected to the enterprise's OA office system, equipment database and permission management module. The cloud management platform can send control commands to the wireless transmitter in the regional control layer and send control commands and corresponding control prompts to the user's web management interface.
[0147] The OA office system connects to the enterprise OA system through a standard API interface, which can monitor meeting reservation information, identify confidential meeting identifiers, and send control commands before the meeting starts.
[0148] The device database can maintain the registration and status information of all smart seats, and can group smart seats according to multiple dimensions such as conference room, floor, department, etc., and perform real-time health monitoring and fault diagnosis of smart seats.
[0149] The access control module can control access based on user identity, set up multiple levels of administrator identities and assign different permissions to each level of administrator, and can also be integrated with an enterprise identity system to unify user identity authentication.
[0150] In addition, the cloud management platform may also include a data analytics module, which collects and analyzes usage data of electronic devices, generates privacy compliance reports, and detects and alerts on abnormal usage behavior of smart seats.
[0151] The regional control layer includes multiple meeting locations, each equipped with one or more wireless transmitters. The wireless transmitters in each meeting location are connected to the smart chairs in that meeting location via the smart chairs' wireless communication modules (i.e., the wireless transmitters can send control commands to the smart chairs to control them).
[0152] In the user control layer, users can see and control the status of each smart seat on a mobile app, including microphone status, whether the recording function is on, status LED lights, and other functions, as well as send or receive control commands to the cloud control platform through the web management interface.
[0153] Therefore, a multi-layered protection architecture for intelligent seat control can be constructed, namely... Figure 2 The system consists of a user control layer, a cloud management layer, and a regional control layer.
[0154] It should be noted that, in Figure 2 Each device has a unique device key and certificate. When transmitting data, the AES-256 encryption algorithm can be used to protect the security of data transmission; and the HMAC-SHA256 algorithm can be used to verify the integrity of command messages.
[0155] Furthermore, such as Figure 4 As shown, the intelligent seat control method provided in this application embodiment can be implemented according to... Figure 4 The process shown is implemented in detail as follows:
[0156] Step 1: Start the company's meeting system.
[0157] Step 2: Detect an upcoming meeting (e.g., five minutes before the meeting starts).
[0158] Step 3: Determine the type of meeting, i.e., whether the meeting is confidential and whether privacy protection is required.
[0159] Step 4: If the meeting is not confidential and therefore does not require privacy protection, then continue to monitor the meeting status.
[0160] If the meeting is confidential and requires privacy protection, preparations are made in advance on the cloud management platform (i.e., determining the meeting location, the smart chair to be controlled, and the signal strength of the wireless transmitter). Then, a command to disable the voice function is sent to the wireless transmitter. After receiving the control command, the chair verifies whether the control command is valid (whether the user issuing the control is valid, etc.). If the command is valid, the microphone circuit on the chair is turned off through the hardware switch on the chair, the status indicator light on the chair is turned red, and a voice prompt is issued: Microphone off.
[0161] The above operations are recorded through a cloud platform to obtain operation logs, which are then used to generate compliance reports. The meeting status is also continuously monitored.
[0162] Furthermore, during the continuous monitoring of the meeting, emergencies may arise. The procedures for handling emergencies are as follows: Figure 5 As shown, specifically: continuously monitor the meeting status. If an emergency is detected (such as a temporary confidentiality requirement), the user can manually force all microphones to be turned off, and the status lights on the seats will flash to indicate that this is an emergency mode, and an alarm notification will be sent to the administrator.
[0163] If no emergency is detected, the voice function of all microphones can be restored after the meeting ends, and the smart chair can be put into standby mode.
[0164] Figure 6 A structural diagram of the control device for the smart seat provided in an embodiment of this application is shown. Figure 6 As shown, the control device 300 for the smart seat is applied to electronic devices and includes:
[0165] The information acquisition module 301 is used to acquire the meeting location and confidentiality information of the target scheduled meeting in response to detecting that the target scheduled meeting meets the meeting start conditions. The confidentiality information is used to indicate whether the meeting content of the target scheduled meeting needs to be kept confidential.
[0166] Instruction generation module 302 is used to generate a first seat control instruction based on the confidential information;
[0167] The instruction sending module 303 is used to send the first seat control instruction to the smart seat associated with the meeting location;
[0168] The first seat control command is used to instruct the smart seat to turn off the voice function when the confidentiality information indicates that the content of the target scheduled meeting needs to be kept confidential; or, to instruct the smart seat to turn on the voice function when the confidentiality information indicates that the content of the target scheduled meeting does not need to be kept confidential.
[0169] In one embodiment of this application, the control device 300 for the smart seat includes:
[0170] The space acquisition module is used to acquire spatial information associated with the meeting location;
[0171] A signal determination module is used to control the target signal strength of the wireless transmitter based on the spatial information;
[0172] The instruction sending module includes:
[0173] A transmitting submodule is configured to transmit the first seat control command to the smart seat associated with the meeting location via the wireless transmitter at the target signal strength.
[0174] In one embodiment of this application, the meeting location includes multiple smart seats, and the first seat control command is used to instruct the smart seats to turn off the voice function;
[0175] The control device 300 for the smart seat includes:
[0176] The first acquisition module is used to send a target request instruction to multiple smart seats associated with the meeting location in response to acquiring target demand information associated with the meeting location. The target demand information is used to indicate that there is a demand for smart seats to be turned on at the meeting location. The target request instruction is used to request the smart seats to send carrying information. The carrying information is used to indicate whether the smart seats are carrying.
[0177] The first receiving module is used to receive the carrying information sent by the multiple smart seats associated with the meeting location in response to the target request instruction;
[0178] The first determining module is used to determine at least one first smart seat that is being carried based on carrying information sent by multiple smart seats associated with the meeting location;
[0179] The instruction sending module is used to send a second seat control instruction to the at least one first smart seat, the second seat control instruction being used to control the first smart seat to activate the voice function.
[0180] In one embodiment of this application, the smart seat is equipped with a status indicator light;
[0181] The first seat control command is further configured to instruct the smart seat to control the status indicator light to a first indication state when the confidentiality information indicates that the meeting content of the target scheduled meeting needs to be kept confidential; and to instruct the smart seat to control the status indicator light to a second indication state when the confidentiality information indicates that the meeting content of the target scheduled meeting does not need to be kept confidential.
[0182] In one embodiment of this application, the first seat control command is used to instruct the smart seat to turn off the voice function;
[0183] The control device 300 for the smart seat also includes:
[0184] The second receiving module is used to receive target images captured by image acquisition devices at the meeting location;
[0185] The second determining module is used to determine, based on the target image, at least one second smart seat, wherein the second smart seat is associated with the meeting location and the status indicator light is in a second indicating state;
[0186] The first prompt module is used to output a first prompt message associated with the at least one second smart seat, the first prompt message being used to prompt that the at least one second smart seat has a risk of voice leakage.
[0187] In one embodiment of this application, the smart seat is used to generate a heartbeat signal including indication information for indicating the target state when a preset period is reached and / or the target state of the voice function changes, and sends the heartbeat signal to the electronic device. The target state includes turning on the voice function and turning off the voice function.
[0188] The control device 300 for the smart seat also includes:
[0189] The second prompt module is used to output a second prompt message when the target waiting time has elapsed but the heartbeat signal has not been received. The second prompt message is used to indicate that a network anomaly has occurred between the electronic device and the smart seat.
[0190] In one embodiment of this application, the control device 300 for the smart seat further includes:
[0191] The third receiving module is configured to receive a heartbeat signal packet sent by the smart seat when the network between the electronic device and the smart seat is restored based on the second prompt information. The heartbeat signal packet includes multiple heartbeat signals generated and cached by the smart seat during the network anomaly.
[0192] In one embodiment of this application, the first seat control command is used to instruct the smart seat to activate the voice function when the confidentiality information indicates that the meeting content of the target scheduled meeting does not need to be kept confidential.
[0193] The control device 300 for the smart seat also includes:
[0194] The fourth receiving module is used to receive audio data collected by the smart seat when the voice function is enabled;
[0195] A voice recognition module is used to identify a target voice signal in the audio data, wherein the target voice signal is the voice signal of the initiator of the target scheduled meeting;
[0196] The first generation module is used to generate a third seat control command in response to the detection that the voice content of the target sound signal is preset content;
[0197] The first sending module is used to send the third seat control command to the smart seat, the third seat control command being used to instruct the smart seat to turn off the voice function.
[0198] The control device 300 for the smart seat provided in this application embodiment can realize the various processes implemented in the aforementioned control method embodiment for the smart seat and achieve the same technical effect. To avoid repetition, it will not be described again here.
[0199] Figure 7 A schematic diagram of the hardware structure of the electronic device provided in an embodiment of this application is shown.
[0200] The electronic device may include a processor 401 and a memory 402 storing computer program instructions.
[0201] Specifically, the processor 401 may include a central processing unit (CPU), an application-specific integrated circuit (ASIC), or one or more integrated circuits that can be configured to implement the embodiments of this application.
[0202] Memory 402 may include mass storage for data or instructions. For example, and not limitingly, memory 402 may include a hard disk drive (HDD), floppy disk drive, flash memory, optical disk, magneto-optical disk, magnetic tape, or Universal Serial Bus (USB) drive, or a combination of two or more of these. Where appropriate, memory 402 may include removable or non-removable (or fixed) media. Where appropriate, memory 402 may be internal or external to the integrated gateway disaster recovery device. In a particular embodiment, memory 402 is non-volatile solid-state memory.
[0203] Memory may include read-only memory (ROM), random access memory (RAM), disk storage media devices, optical storage media devices, flash memory devices, and electrical, optical, or other physical / tangible memory storage devices. Therefore, typically, memory includes one or more tangible (non-transitory) computer-readable storage media (e.g., memory devices) encoded with software including computer-executable instructions, and when the software is executed (e.g., by one or more processors), it is operable to perform the operations described with reference to the methods according to the first or second aspect of this disclosure.
[0204] The processor 401 implements any of the information auditing methods described in the above embodiments by reading and executing computer program instructions stored in the memory 402.
[0205] In one example, the electronic device may also include a communication interface 403 and a bus 410. For example, Figure 7 As shown, the processor 401, memory 402, and communication interface 403 are connected through bus 410 and complete communication with each other.
[0206] The communication interface 403 is mainly used to realize communication between various modules, devices, units and / or equipment in the embodiments of this application.
[0207] Bus 410 includes hardware, software, or both, that couples components of an information auditing method or verification device together. For example, and not as a limitation, the bus may include an Accelerated Graphics Port (AGP) or other graphics bus, an Enhanced Industry Standard Architecture (EISA) bus, a Front Side Bus (FSB), HyperTransport (HT) interconnect, an Industry Standard Architecture (ISA) bus, an Infinite Bandwidth Interconnect, a Low Pin Count (LPC) bus, a memory bus, a Microchannel Architecture (MCA) bus, a Peripheral Component Interconnect (PCI) bus, a PCI-Express (PCI-X) bus, a Serial Advanced Technology Attachment (SATA) bus, a Video Electronics Standards Association Local (VLB) bus, or other suitable buses, or combinations of two or more of these. Where appropriate, bus 410 may include one or more buses. Although specific buses are described and illustrated in embodiments of this application, any suitable bus or interconnect is contemplated herein.
[0208] Furthermore, in conjunction with the control methods for the smart seats described in the above embodiments, this application embodiment can provide a computer storage medium for implementation. This computer storage medium stores computer program instructions; when these computer program instructions are executed by a processor, they implement any of the smart seat control methods described in the above embodiments.
[0209] Alternatively, this application embodiment can provide a computer program product for implementation, wherein when the instructions in the computer program product are executed by the processor of an electronic device, the electronic device implements any of the intelligent seat control methods in the above embodiments.
[0210] Alternatively, this application embodiment can provide a computer program product for implementation, wherein when the instructions in the computer program product are executed by the processor of an electronic device, the electronic device implements any of the intelligent seat control methods in the above embodiments.
[0211] It should be clarified that this application is not limited to the specific configurations and processes described above and shown in the figures. For the sake of brevity, detailed descriptions of known methods are omitted here. In the above embodiments, several specific steps are described as examples. However, the method process of this application is not limited to the specific steps described. Those skilled in the art can make various changes, modifications, and additions, or change the order of steps, after understanding the spirit of this application.
[0212] The functional blocks shown in the above-described structural diagram can be implemented as hardware, software, firmware, or a combination thereof. When implemented in hardware, they can be, for example, electronic circuits, application-specific integrated circuits (ASICs), appropriate firmware, plug-ins, function cards, etc. When implemented in software, the elements of this application are programs or code segments used to perform the required tasks. Programs or code segments can be stored on a machine-readable medium or transmitted over a transmission medium or communication link via data signals carried on a carrier wave. "Machine-readable medium" can include any medium capable of storing or transmitting information. Examples of machine-readable media include electronic circuits, semiconductor memory devices, ROM, flash memory, erasable ROM (EROM), floppy disks, CD-ROMs, optical disks, hard disks, fiber optic media, radio frequency (RF) links, etc. Code segments can be downloaded via computer networks such as the Internet, intranets, etc.
[0213] It should also be noted that the exemplary embodiments mentioned in this application describe methods or systems based on a series of steps or apparatus. However, this application is not limited to the order of the above steps; that is, the steps can be performed in the order mentioned in the embodiments, or in a different order, or several steps can be performed simultaneously.
[0214] The aspects of this disclosure have been described above with reference to flowchart illustrations and / or block diagrams of methods, apparatus (systems), and computer program products according to embodiments of this disclosure. It should be understood that each block in the flowchart illustrations and / or block diagrams, and combinations of blocks in the flowchart illustrations and / or block diagrams, can be implemented by computer program instructions. These computer program instructions can be provided to a processor of a general-purpose computer, a special-purpose computer, or other programmable data processing apparatus to produce a machine such that these instructions, executable via the processor of the computer or other programmable data processing apparatus, enable the implementation of the functions / actions specified in one or more blocks of the flowchart illustrations and / or block diagrams. Such a processor can be, but is not limited to, a general-purpose processor, a special-purpose processor, a special application processor, or a field-programmable logic circuit. It is also understood that each block in the block diagrams and / or flowcharts, and combinations of blocks in the block diagrams and / or flowcharts, can also be implemented by special-purpose hardware performing the specified functions or actions, or can be implemented by a combination of special-purpose hardware and computer instructions.
[0215] The above description is merely a specific implementation of this application. Those skilled in the art will clearly understand that, for the sake of convenience and brevity, the specific working processes of the systems, modules, and units described above can be referred to the corresponding processes in the foregoing method embodiments, and will not be repeated here. It should be understood that the protection scope of this application is not limited thereto. Any person skilled in the art can easily conceive of various equivalent modifications or substitutions within the technical scope disclosed in this application, and these modifications or substitutions should all be covered within the protection scope of this application.
Claims
1. A control method of an intelligent seat, characterized by, The application is applied to an electronic device, comprising: In response to detecting that a target scheduled meeting meets a meeting start condition, obtaining a meeting location and secret information of the target scheduled meeting, the secret information being used to indicate whether the meeting content of the target scheduled meeting needs to be kept secret; Generating a first seat control instruction based on the secret information; Sending the first seat control instruction to a smart seat associated with the meeting location; Wherein, the first seat control instruction is used to instruct the smart seat to close the voice function in the case that the secret information indicates that the meeting content of the target scheduled meeting needs to be kept secret; or, instruct the smart seat to open the voice function in the case that the secret information indicates that the meeting content of the target scheduled meeting does not need to be kept secret.
2. The method of claim 1, wherein, Before the step of sending the first seat control instruction to the smart seat associated with the meeting location, the method further comprises: Obtaining space information associated with the meeting location; Controlling the target signal strength of a wireless transmitter based on the space information; The step of sending the first seat control instruction to the smart seat associated with the meeting location comprises: Sending the first seat control instruction to the smart seat associated with the meeting location through the wireless transmitter at the target signal strength.
3. The method of claim 2, wherein, The meeting location comprises a plurality of smart seats, and the first seat control instruction is used to instruct the smart seats to close the voice function; After the step of sending the first seat control instruction to the smart seat associated with the meeting location, the method further comprises: In response to obtaining target demand information associated with the meeting location, sending a target request instruction to a plurality of smart seats associated with the meeting location, the target demand information being used to indicate that there is information of opening smart seat demand in the meeting location, and the target request instruction being used to request the smart seats to send carrying information, the carrying information being used to indicate whether the smart seats are in carrying; Receiving the carrying information sent by the plurality of smart seats associated with the meeting location in response to the target request instruction; Based on the carrying information sent by the plurality of smart seats associated with the meeting location, determining at least one first smart seat in carrying; Sending a second seat control instruction to the at least one first smart seat, the second seat control instruction being used to control the first smart seat to open the voice function.
4. The method of claim 1, wherein, The smart seat is loaded with a state indicating lamp; The first seat control instruction is further used to instruct the smart seat to control the state indicating lamp to be in a first indicating state in the case that the secret information indicates that the meeting content of the target scheduled meeting needs to be kept secret; and, instruct the smart seat to control the state indicating lamp to be in a second indicating state in the case that the secret information indicates that the meeting content of the target scheduled meeting does not need to be kept secret.
5. The method of claim 4, wherein, The first seat control instruction is used to instruct the smart seat to close the voice function; After the step of sending the first seat control instruction to the smart seat associated with the meeting location, the method further comprises: receive a target image collected by an image collection device in the conference site; determine at least one second intelligent seat based on the target image, the second intelligent seat being associated with the conference site and the status indicator light being in a second indication state; output first prompt information associated with the at least one second intelligent seat, the first prompt information being used to prompt that the at least one second intelligent seat has a voice leakage risk.
6. The method of claim 1, wherein, The intelligent seat is configured to generate a heartbeat signal including indication information indicating a target state of the voice function in a case where a preset period arrives and / or the target state of the voice function changes, and send the heartbeat signal to the electronic device, the target state including turning on the voice function and turning off the voice function. The method further includes: In a case where the target waiting duration arrives and the heartbeat signal is not received, output second prompt information, the second prompt information being used to prompt that a network anomaly occurs between the electronic device and the intelligent seat.
7. The method of claim 6, wherein, After the case where the target waiting duration arrives and the heartbeat signal is not received, the method further includes: In a case where the network between the electronic device and the intelligent seat is recovered based on the second prompt information, receive a heartbeat signal package sent by the intelligent seat, the heartbeat signal package including a plurality of heartbeat signals generated and cached by the intelligent seat during the network anomaly.
8. The method of claim 1, wherein, The first seat control instruction is used to instruct the intelligent seat to turn on the voice function in a case where the security information indicates that the conference content of the target scheduled conference does not need to be kept secret. After the first seat control instruction is sent to the intelligent seat associated with the conference site, the method further includes: receive audio data collected by the intelligent seat under the turned-on voice function; identify a target sound signal in the audio data, the target sound signal being a sound signal of an initiator of the target scheduled conference; generate a third seat control instruction in response to detecting that voice content of the target sound signal is preset content; send the third seat control instruction to the intelligent seat, the third seat control instruction being used to instruct the intelligent seat to turn off the voice function.
9. A control device of an intelligent seat, characterized by, Applied to an electronic device, including: An information acquisition module is configured to acquire a conference site and security information of a target scheduled conference in response to detecting that the target scheduled conference meets a conference start condition, the security information being used to indicate whether the conference content of the target scheduled conference needs to be kept secret; An instruction generation module is configured to generate a first seat control instruction based on the security information; An instruction sending module is configured to send the first seat control instruction to an intelligent seat associated with the conference site; The first seat control instruction is used to instruct the intelligent seat to turn off the voice function in a case where the security information indicates that the conference content of the target scheduled conference needs to be kept secret, or instruct the intelligent seat to turn on the voice function in a case where the security information indicates that the conference content of the target scheduled conference does not need to be kept secret.
10. An electronic device, comprising: including: A processor and a memory having computer program instructions stored therein; The processor implements the control method of the intelligent seat according to any one of claims 1-8 when executing the computer program instructions.
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