Bidirectional real-time information interaction method and computer storage medium

By using the information exchange method of a dual-band switching terminal, bidirectional real-time transmission of monitoring headphones was achieved, solving the problem that monitoring headphones could not transmit bidirectionally in real time, and improving the recognizability and quality of information exchange.

CN115884265BActive Publication Date: 2026-01-30SHENZHEN MEIJIA PHOTOELECTRIC TECH CO LTD
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Patent Information

Application Number
CN202211556735.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-05-13
Publication Date
2026-01-30
Estimated Expiration
2042-05-13

AI Technical Summary

Technical Problem

Existing monitoring headphones can only achieve one-way real-time transmission and cannot achieve two-way real-time information exchange.

Method used

Information interaction is achieved using a dual-band switching terminal. Common interactive information is sent to the switching terminal via the first frequency band and broadcast within a set range via the second frequency band. The interactive terminal receives the encapsulated common interactive information via the second frequency band and adjusts the information parameters to achieve bidirectional real-time transmission.

Benefits of technology

This technology enables bidirectional real-time transmission through monitoring headphones, improving the recognizability and quality of information exchange and solving the problem that existing technologies cannot achieve bidirectional real-time transmission.

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Abstract

This invention provides a two-way real-time information interaction method for multiple interactive terminals to conduct two-way real-time information interaction through a relay terminal. The multiple interactive terminals and the relay terminal are all located in a public network. The method includes: interactive terminals sending public interactive information to the relay terminal via a first frequency band; the relay terminal receiving public interactive information sent by different interactive terminals via the first frequency band; the relay terminal broadcasting the public interactive information via a second frequency band within a set range; interactive terminals receiving public interactive information via the second frequency band; when an interactive terminal needs to conduct private, personal, two-way real-time interaction with other interactive terminals, the interactive terminal switches the frequency band for sending and receiving interactive information; the interactive terminal sending personal interactive information to other interactive terminals via the second frequency band; and the interactive terminal receiving personal interactive information fed back by other interactive terminals via the first frequency band.
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Description

[0001] This application is a divisional application of the invention patent application No. 202210522090.5, with the application date of May 13, 2022, and the name of "Information interaction method, system and computer storage medium based on terminal identification". TECHNICAL FIELD

[0002] The present application relates to the technical field of information interaction, in particular to a bidirectional real-time information interaction method and a computer storage medium. BACKGROUND

[0003] With the rise of the entertainment industry such as live broadcast, the monitoring earphone for outputting audio in this industry is used more and more widely. The traditional monitoring earphone can only communicate through a single frequency band, so it only has one-way real-time transmission. That is, when the monitoring earphone outputs audio, it cannot receive external audio signals. For example, the monitoring earphone user cannot hear his own voice through the monitoring earphone.

[0004] Therefore, it is necessary to provide an information interaction method and an information interaction system to realize the bidirectional real-time transmission function of the existing monitoring earphone. SUMMARY

[0005] The present application provides an information interaction method and an information interaction system that can realize bidirectional real-time transmission of monitoring earphones to solve the technical problem that the existing information interaction method and information interaction system cannot realize bidirectional real-time transmission of earphone terminals.

[0006] The present application provides an information interaction method for real-time bidirectional information interaction of terminals in an interaction system with multiple terminals. The interaction system includes at least two interaction terminals and at least one switching terminal. The information interaction method includes:

[0007] The interaction terminal sends public interaction information to the switching terminal through a first frequency band;

[0008] The switching terminal receives public interaction information sent by different interaction terminals through the first frequency band; wherein the public interaction information includes a time identifier for identifying different public interaction information receiving time periods

[0009] A corresponding terminal tag is set for the public interaction information of each interaction terminal, and the public interaction information with the terminal tag is encapsulated to generate encapsulated public interaction information;

[0010] The switching terminal broadcasts the encapsulated public interaction information through a second frequency band within a set range; and

[0011] The interaction terminal in the set range receives the encapsulated public interaction information through a second frequency band.

[0012] In the information interaction method, after the step of the interaction terminal in the set range receiving the encapsulated public interaction information through a second frequency band, the method further includes:

[0013] The interaction terminal receives the encapsulated public interaction information, and adjusts information parameters of corresponding public interaction information according to the terminal label and preset conditions.

[0014] The public interaction information after the information parameter adjustment is fused, and the fused public interaction information is displayed.

[0015] In the information interaction method, the step of adjusting information parameters of corresponding public interaction information according to the terminal label and preset conditions includes:

[0016] Based on the preset conditions, the public interaction information of the preset terminal label is shielded, weakened or strengthened; or

[0017] Obtaining information parameters of all public interaction information.

[0018] Based on the difference between the information parameters of different public interaction information, the information parameters of the public interaction information of different interaction terminals are adjusted, so as to improve the recognizability of the fused public interaction information.

[0019] In the information interaction method, the information interaction method further includes:

[0020] In each public interaction information receiving time period, a plurality of receiving time regions are set, and each interaction terminal corresponds to a receiving time region.

[0021] The step of the switching terminal receiving the public interaction information sent by different interaction terminals through the first frequency band includes:

[0022] The switching terminal receives the public interaction information sent by the corresponding interaction terminal through the first frequency band in different receiving time regions.

[0023] In the information interaction method, the step of setting a plurality of receiving time regions in each public interaction information receiving time period, and each interaction terminal corresponding to a receiving time region includes:

[0024] The switching terminal sets a plurality of receiving time regions of the current public interaction information receiving time period based on the public interaction information receiving amount of each receiving time region in the last public interaction information receiving time period.

[0025] In the information interaction method, the step of setting, by the switching terminal, the plurality of receiving time zones of the current public interaction information receiving time period based on the public interaction information receiving amount of each receiving time zone in the last public interaction information receiving time period comprises:

[0026] When the public interaction information receiving amount of a receiving time zone is greater than a first public interaction information receiving amount threshold of the current receiving time zone, the proportion of the current receiving time zone in the current public interaction information receiving time period is increased, wherein the first public interaction information receiving amount threshold is 85%-95% of the maximum public interaction information receiving amount of the current receiving time zone.

[0027] When the public interaction information receiving amount of a receiving time zone is less than a second public interaction information receiving amount threshold of the current receiving time zone, the proportion of the current receiving time zone in the current public interaction information receiving time period is decreased, wherein the second public interaction information receiving amount threshold is 45%-55% of the maximum public interaction information receiving amount of the current receiving time zone.

[0028] In the information interaction method, the information interaction method further comprises:

[0029] setting a priority of each of the interaction terminals;

[0030] setting a minimum proportion of the proportion of the receiving time zone of the interaction terminal based on the priority of the interaction terminal.

[0031] In the information interaction method, the information interaction method further comprises:

[0032] the interaction terminal switches the sending and receiving frequency band of the interaction information;

[0033] the interaction terminal sends the personal interaction information to other interaction terminals through the second frequency band;

[0034] the interaction terminal receives the personal interaction information fed back by other interaction terminals through the first frequency band.

[0035] The embodiment of the application further provides an information interaction system comprising at least two interaction terminals and at least one switching terminal,

[0036] the interaction terminal sends the public interaction information to the switching terminal through the first frequency band;

[0037] the switching terminal receives the public interaction information sent by different interaction terminals through the first frequency band; wherein the public interaction information comprises a time identifier for identifying different public interaction information receiving time periods

[0038] The terminal tag corresponding to the public interaction information of each interaction terminal is set, and the public interaction information with the terminal tag is encapsulated to generate encapsulated public interaction information;

[0039] The switching terminal broadcasts the encapsulated public interaction information through the second frequency band within a set range; and

[0040] The interaction terminal within the set range receives the encapsulated public interaction information through the second frequency band.

[0041] The embodiment of the present application further provides a computer readable storage medium, which stores processor executable instructions, the instructions are loaded by one or more processors to execute the above information interaction method.

[0042] Compared with the prior art information interaction method and information interaction system, the information interaction method and information interaction system of the present application realize real-time bidirectional interaction of the interaction terminal through the switching terminal with double frequency bands, and can further ensure the information quality of the real-time interaction information, effectively solving the technical problem that the prior art information interaction method and information interaction system cannot realize bidirectional real-time transmission of the earphone terminal.

[0043] In addition, the interaction terminal can adjust the parameters of the public interaction information based on the terminal tag, improving the recognizability of the fused public interaction information. BRIEF DESCRIPTION OF DRAWINGS

[0044] Figure 1 The flow chart of the first embodiment of the information interaction method of the present application;

[0045] Figure 2 The flow chart of step S102 of the first embodiment of the information interaction method of the present application;

[0046] Figure 3 The flow chart of the second embodiment of the information interaction method of the present application;

[0047] Figure 4 The structural schematic diagram of the embodiment of the information interaction system of the present application;

[0048] Figure 5 The working environment structural schematic diagram of the electronic device in which the interaction terminal and the switching terminal of the information interaction system of the present application are located. DETAILED DESCRIPTION

[0049] With reference to the drawings of the embodiments of the present application, the technical solutions in the embodiments of the present application will be clearly and completely described. Obviously, the described embodiments are only a part of the embodiments of the present application, but not all the embodiments of the present application. Based on the embodiments of the present application, all the other embodiments obtained by those skilled in the art without creative work fall within the scope of the present application.

[0050] The information interaction method of the present application can be used for the real-time bidirectional information interaction of terminals in an interaction system having a plurality of terminals. The interaction system includes at least two interaction terminals and at least one switching terminal. The plurality of interaction terminals and the switching terminal form an interaction network, and the plurality of interaction terminals can realize bidirectional information interaction in the interaction network. The interaction terminal can be a wearable device, a head-mounted device, a medical health platform, a personal computer, a server computer, a handheld or laptop device, a mobile device (such as a mobile phone, a personal digital assistant (PDA), a media player, etc.), etc. The switching terminal can be a switch terminal in wireless communication with the interaction terminal to realize the information interaction of the plurality of interaction terminals.

[0051] The interaction system of the present application realizes the real-time bidirectional interaction of the interaction terminals through the switching terminal having dual frequency bands, and further ensures the information quality of the real-time interaction information. The technical problem that the existing information interaction method and information interaction system cannot realize the bidirectional real-time transmission of the earphone terminal is effectively solved.

[0052] Please refer to Figure 1 , Figure 1 The flowchart of the first embodiment of the information interaction method of the present application. The information interaction method of the present embodiment can be used in the information interaction system described above, which includes at least two interaction terminals and at least one switching terminal. The plurality of interaction terminals and the switching terminal in the information interaction system are all arranged in a public network. The steps of the transmission of the public interaction information by the interaction terminals include:

[0053] Step S101, the interaction terminal sends the public interaction information to the switching terminal through a first frequency band;

[0054] Step S102, the switching terminal broadcasts the public interaction information through a second frequency band within a set range;

[0055] Step S103, the interaction terminals within the set range receive the public interaction information through the second frequency band.

[0056] The specific flow of each step of the information interaction method of the present embodiment will be described in detail below.

[0057] In step S101, the interactive terminal sends the public interactive information to the relay terminal through a first frequency band. The first frequency band can be a 5.8G frequency band or a 900M frequency band. The public interactive information refers to the interactive information that the interactive terminal needs to send to other interactive terminals.

[0058] In order to avoid the public interactive information of different interactive terminals interfering with each other, all the interactive terminals send the public interactive information to the relay terminal, and the relay terminal performs the forwarding operation.

[0059] In step S102, the relay terminal broadcasts the public interactive information through a second frequency band within a set range. The second frequency band can be different from the first frequency band, so as to avoid interference between the sent information signals and the received information signals.

[0060] The public interactive information is sent in the form of broadcasting, which can improve the autonomy of the interactive terminal in receiving the public interactive information.

[0061] For details, please refer to Figure 2 , Figure 2 the flowchart of step S102 of the first embodiment of the information interaction method of the present application. The step S102 specifically includes:

[0062] In step S201, the relay terminal receives the public interactive information sent by different interactive terminals through a first frequency band. The public interactive information includes a time identifier for identifying different public interactive information receiving time periods.

[0063] The time identifier can be a time stamp of the public interactive information sent by the interactive terminal to the relay terminal, so that the relay terminal can distinguish the order of the public interactive information sent by the interactive terminal.

[0064] Further, since the relay terminal can need to receive the public interactive information of multiple interactive terminals, the relay terminal also needs to distinguish the public interactive information of different interactive terminals. Therefore, in each public interactive information receiving time period, multiple receiving time areas are set, and each interactive terminal corresponds to a receiving time area.

[0065] In this way, the relay terminal can receive the public interactive information sent by the corresponding interactive terminal in different receiving time areas through the first frequency band.

[0066] For example, the switching terminal divides 0-0.1s, 0.1-0.2s, and 0.2-0.3s into three public interaction information receiving time periods, and the length of each public interaction information receiving time period is 0.1s. The switching terminal needs to receive the public interaction information of the interaction terminal A, the interaction terminal B, and the interaction terminal C, so that the switching terminal can set three receiving time regions in each public interaction receiving time period. For example, the receiving time region of 0-0.03s in each public interaction information receiving time period is used to receive the public interaction information of the interaction terminal A, the receiving time region of 0.03-0.06s in each public interaction information receiving time period is used to receive the public interaction information of the interaction terminal B, the receiving time region of 0.06-0.09s in each public interaction information receiving time period is used to receive the public interaction information of the interaction terminal C, and the remaining 0.09-0.1s is used as an interval activity adjustment region to distinguish the public interaction information of different public interaction information receiving time periods.

[0067] In step S202, the switching terminal encapsulates the public interaction information based on the time identifier to generate encapsulated public interaction information. In this way, the switching terminal can forward the public interaction information of all the interaction terminals to any interaction terminal in the form of encapsulated public interaction information.

[0068] Subsequently, the switching terminal broadcasts the encapsulated public interaction information in a set range through the second frequency band.

[0069] In step S103, the interaction terminal in the set range receives the encapsulated public interaction information broadcasted and sent by the switching terminal through the second frequency band.

[0070] In this way, real-time bidirectional interaction between the interaction terminals is realized, and the interaction terminal can receive the fusion information of the public interaction information sent by itself and the public interaction information sent by other interaction terminals through the switching terminal.

[0071] Further, in order to ensure the information quality of the real-time interaction information, the switching terminal can also adjust the receiving time region corresponding to each interaction terminal in step S102. Specifically, the switching terminal can set multiple receiving time regions of the current public interaction information receiving time period based on the public interaction information receiving amount of the receiving time region corresponding to each interaction terminal in the last public interaction information receiving time period, that is, adjust the size of the receiving time region for receiving the public interaction information of the current public interaction information receiving time period based on the public interaction information sending amount of the last interaction terminal.

[0072] The specific principle is that the switching terminal can first set a corresponding receiving time area for each interactive terminal, for example, setting the same size of receiving time area for each interactive terminal, but in actual interaction, the size of the corresponding receiving time area needs to be adjusted according to the public interaction information receiving amount of the interactive terminal.

[0073] Specifically, when the public interaction information receiving amount of a receiving time area of an interactive terminal is greater than a first public interaction information receiving amount threshold of the current receiving time area, the proportion of the current receiving time area in the current public interaction information receiving time period is increased; the first public interaction information receiving amount threshold can be set to 85%-95% of the maximum public interaction information receiving amount of the current receiving time area.

[0074] When the public interaction information receiving amount of a receiving time area of an interactive terminal is less than a second public interaction information receiving amount threshold of the current receiving time area, the proportion of the current receiving time area in the current public interaction information receiving time period is reduced; the second public interaction information receiving amount threshold is 45%-55% of the maximum public interaction information receiving amount of the current receiving time area.

[0075] For example, the receiving time areas of the interactive terminal A, the interactive terminal B and the interactive terminal C are 0-0.03s, 0.03-0.06s and 0.06-0.09s respectively, and the maximum public interaction information receiving amount of the interactive terminal A in the current receiving time area is M, when the public interaction information receiving amount of the current receiving time area increases to 0.9M, the proportion of the receiving time area of the interactive terminal A can be increased, for example, to 40% of the entire current public interaction information receiving time period, for example, 0-0.04s, the receiving time area of the interactive terminal B becomes 0.04-0.065s, and the receiving time area of the interactive terminal C becomes 0.065-0.09s. Here, the specific increase proportion value of the current receiving time area can be set by the user according to the needs.

[0076] For example, when the public interaction information receiving amount of the current receiving time area decreases to 0.5M, the proportion of the receiving time area of the interactive terminal A can be reduced, for example, to 2 / 3 of the entire current public interaction information receiving time period, for example, 0-0.02s, the receiving time area of the interactive terminal B becomes 0.02-0.055s, and the receiving time area of the interactive terminal C becomes 0.055-0.09s. Here, the specific decrease proportion value of the current receiving time area can be set by the user according to the needs.

[0077] Since the receiving time region cannot be increased or decreased unlimitedly, a maximum value and a minimum value can be set for the receiving time region of each interactive terminal, such as a maximum value of 80% of the entire current public interactive information receiving time period and a minimum value of 20% of the entire current public interactive information receiving time period, so as to avoid the adjustment result of the receiving time region affecting the normal information interaction.

[0078] Further, a corresponding priority can also be set for each interactive terminal, and then the maximum value and the minimum value of the proportion of the receiving time region of the interactive terminal can be set based on the priority of the interactive terminal. It is particularly emphasized here that the corresponding minimum value needs to be set for the interactive terminal with a higher priority, so as to ensure that the interactive terminal with a high priority can send a sufficient amount of public interactive information through the switching terminal at any time.

[0079] Of course, a larger receiving time region proportion increasing speed can also be set for the interactive terminal with a higher priority, such as when it is monitored that the public interactive information receiving amount of the interactive terminal A with a higher priority in the current receiving time region increases to 0.9M, the proportion of the receiving time region of the interactive terminal A can be directly increased to 50%, so as to ensure that the public interactive information sent by the interactive terminal A can be stably and completely transmitted to other interactive terminals.

[0080] In order to further improve the interaction quality of the public interactive information of multiple interactive terminals, the interactive terminal of the embodiment can also adjust the information parameters of the public interactive information, so as to improve the recognizability of the fused public interactive information.

[0081] Specifically, the switching terminal encapsulates the public interactive information based on the time identifier, and the steps of generating the encapsulated public interactive information are specifically

[0082] The switching terminal sets a corresponding terminal tag for the public interactive information of each interactive terminal, and encapsulates the public interactive information with the terminal tag to generate the encapsulated public interactive information.

[0083] In this way, the interactive terminal receives the encapsulated public interactive information, adjusts the information parameters of the corresponding public interactive information according to the terminal tag and the preset condition, then performs a fusion operation on the public interactive information after the information parameter adjustment, and displays the fused public interactive information.

[0084] Since each public interaction information is set by the corresponding terminal tag, each interaction terminal can identify the public interaction information of each interaction terminal, so that each interaction terminal can perform information parameter adjustment operation on all public interaction information based on the preset condition set by the user in the local interaction terminal, such as shielding operation on the public interaction information of a certain interaction terminal, volume reduction operation on the public interaction information (voice information) of a certain interaction terminal, or voice enhancement operation on the public interaction information of a certain interaction terminal, to realize the personalized display of the public interaction information by the interaction terminal.

[0085] In addition, since the information parameters of the public interaction information of different interaction terminals may be quite different, such as volume difference, tone difference or noise difference, which may affect the recognition of the fused public interaction information by the interaction terminal, the interaction terminal can locally obtain the difference amount of the information parameters of different public interaction information based on the information parameters of all public interaction information, such as the volume of a certain public interaction information is larger, or the background sound of a certain public interaction information is relatively noisy, etc. Since the switching terminal does not fuse all the public interaction information, the interaction terminal can locally edit some public interaction information, that is, adjust the information parameters, such as the volume information of a certain public interaction information is much larger than the volume information of other public interaction information, then the volume of the public interaction information is adjusted to the average volume of other public interaction information, to improve the recognizability of each public interaction information in the fused public interaction information.

[0086] For example, if the noise of a certain public interaction information is large, and the noise may affect the display of other public interaction information, the public interaction information can be subjected to sound effect sharpening processing to reduce the influence of the noise of the public interaction information on the fused public interaction information.

[0087] The information interaction method of the embodiment realizes real-time bidirectional interaction of the interaction terminal through the switching terminal with double frequency bands, and can further ensure the information quality of the real-time interaction information. In addition, the interaction terminal can adjust the parameters of the public interaction information based on the terminal tag to improve the recognizability of the fused public interaction information.

[0088] Please refer to Figure 3 , Figure 3 is a flowchart of a second embodiment of the information interaction method of the present application. The information interaction method of the embodiment can be used in the above-mentioned information interaction system, which includes at least two interaction terminals and at least one switching terminal. The plurality of interaction terminals and the switching terminal in the information interaction system are arranged in a public network, and the step of transmitting the public interaction information by the interaction terminal includes:

[0089] Step S301, the interaction terminal sends the public interaction information to the switching terminal through the first frequency band;

[0090] In step S302, the relay terminal broadcasts the public interaction information in a set range through the second frequency band.

[0091] In step S303, the interaction terminal in the set range receives the public interaction information through the second frequency band.

[0092] In step S304, the interaction terminal switches the transmission and reception frequency band of the interaction information.

[0093] In step S305, the interaction terminal transmits the personal interaction information to other interaction terminals through the second frequency band.

[0094] In step S306, the interaction terminal receives the personal interaction information fed back by other interaction terminals through the first frequency band.

[0095] The specific process of each step of the information interaction method of the embodiment will be described in detail below.

[0096] The specific content of steps S301-S303 of the embodiment is the same as or similar to the description in steps S101-S103 of the first embodiment of the information interaction method, and specific reference can be made to the related description in steps S101-S103 of the first embodiment of the information interaction method.

[0097] In step S304, if the interaction terminal needs to have a private personal two-way real-time interaction with a certain interaction terminal in the communication process with other interaction terminals, the interaction terminal needs to switch the transmission and reception frequency band of the interaction information, for example, switch the transmission frequency band of the personal interaction information to the second frequency band and switch the reception frequency band of the personal interaction information to the first frequency band.

[0098] Since the transmission frequency band of the switched interaction terminal is consistent with the reception frequency band of other interaction terminals, and the reception frequency band of the switched interaction terminal is consistent with the transmission frequency band of other interaction terminals, two-way real-time communication between the interaction terminal and other interaction terminals can be realized.

[0099] In step S305, the interaction terminal transmits the personal interaction information to other interaction terminals through the second frequency band.

[0100] In step S306, the interaction terminal receives the personal interaction information fed back by other interaction terminals through the first frequency band.

[0101] Since the interaction terminal does not pass through the relay terminal in the interaction process with other interaction terminals, the security of the personal interaction information can be ensured to a certain extent, and the personal interaction information can be prevented from being obtained by other interaction terminals.

[0102] On the basis of the first embodiment, the interactive terminal of the present embodiment can also realize personal information interaction with other interactive terminals through switching of the sending and receiving frequency band, thereby improving the diversity and security of the information interaction method.

[0103] Please refer to Figure 4 , Figure 4 is a structural schematic diagram of an embodiment of the information interaction system of the present application. The information interaction system of the present embodiment can use the information interaction method described above to perform information interaction. The information interaction system 40 comprises at least two interactive terminals 41 and at least one relay terminal 42.

[0104] The interactive terminal 41 is configured to send public interaction information to the relay terminal 42 through a first frequency band; the relay terminal 42 is configured to broadcast the public interaction information through a second frequency band within a set range; and the interactive terminal 41 within the set range is further configured to receive the public interaction information through the second frequency band.

[0105] When the information interaction system 40 of the present embodiment is used, the interactive terminal 41 first sends public interaction information to the relay terminal 42 through a first frequency band. The first frequency band can be a 5.8G frequency band or a 900M frequency band. Here, the public interaction information refers to the interaction information that the interactive terminal needs to send to other interactive terminals.

[0106] In order to avoid mutual interference of the public interaction information of different interactive terminals, all the interactive terminals send the public interaction information to the relay terminal, which performs the forwarding operation.

[0107] Subsequently, the relay terminal 42 broadcasts the public interaction information through a second frequency band within a set range. The second frequency band can be different from the first frequency band, so as to avoid interference between the sending information signal and the receiving information signal.

[0108] Sending through broadcasting can improve the autonomy of the interactive terminal in receiving the public interaction information.

[0109] Finally, the interactive terminal 41 within the set range receives the encapsulated public interaction information broadcasted by the relay terminal through the second frequency band.

[0110] In this way, real-time bidirectional interaction between the interactive terminals is realized, and the interactive terminal can receive the fusion information of the public interaction information sent by itself and the public interaction information sent by other interactive terminals through the relay terminal.

[0111] The specific working principle of the information interaction system of the present embodiment is the same as or similar to the description in the above-described embodiments of the information interaction method, and specific details are described in the above-described embodiments of the information interaction method.

[0112] The information interaction method and the information interaction system of the present application realize real-time bidirectional interaction of the interaction terminal through the switching terminal with double frequency bands, and can further ensure the information quality of the real-time interaction information; effectively solve the technical problem that the existing information interaction method and information interaction system cannot realize bidirectional real-time transmission of the earphone terminal.

[0113] As used in this application, the terms "component," "module," "system," "interface," "process," and / or the like are generally intended to refer to a computer-related entity, either hardware, a combination of hardware and software, software, or software in execution. For example, a component can be, but is not limited to being, a process running on a processor, a processor, an object, an executable, a thread of execution, a program, and / or a computer. By way of illustration, both an application running on a controller and the controller can be a component. One or more components can reside within a process and / or thread of execution and a component can be localized, co-resident, and / or distributed amongst one or more computers.

[0114] Figure 5 The environment of use of the electronic device in which the interaction terminal and the switching terminal of the information interaction system described in the present application are located is provided with a brief, general description that is not intended to be limiting in scope. Figure 5 The environment of use of the electronic device is merely one example of a suitable environment and is not intended to suggest any limitation as to the scope of use or functionality of the environment of use. The example electronic device 512 includes, but is not limited to, a wearable device, a head-mounted device, a medical health platform, a personal computer, a server computer, a handheld or laptop device, a mobile device (such as a mobile phone, a personal digital assistant (PDA), a media player, and so on), a multiprocessor system, a consumer electronic device, a minicomputer, a mainframe computer, a distributed computing environment that includes any of the above systems or devices, and so on.

[0115] Although not required, embodiments are described in the general context of "computer readable instructions" being executed by one or more electronic devices. Computer readable instructions can be distributed via a computer readable medium (discussed below). Computer readable instructions can be implemented as program modules, such as functions, objects, Application Programming Interfaces (APIs), data structures, and the like, that perform particular tasks or implement particular abstract data types. Typically, the functionality of the computer readable instructions can be combined or distributed as desired in various environments.

[0116] Figure 5 An example of an electronic device 512 including one or more embodiments of the information interaction apparatus of the present application is illustrated. In one configuration, the electronic device 512 includes at least one processing unit 516 and memory 518. Depending on the exact configuration and type of the electronic device, the memory 518 can be volatile (such as RAM), non-volatile (such as ROM, flash memory, etc.) or some combination of the two. The configuration inFigure 5 In some embodiments, the electronic device 512 can include one or more input devices 524 and one or more output devices 522. Some or all of the output device(s) 522 and input device(s) 524 can be combined in a single device, such as a touchscreen that can both input from and output to a user.

[0117] In other embodiments, the electronic device 512 can include additional features and / or functionality. For example, the device 512 can also include additional storage such as removable and / or non-removable storage including, but not limited to, magnetic storage, optical storage such as optical disks and so forth. Such additional storage can be Figure 5 In some embodiments, computer-readable instructions to implement one or more embodiments provided herein can be in the mass storage device 520. The mass storage device 520 can also store other computer-readable instructions to implement an operating system, an application program, and the like. Computer-readable instructions can be loaded in memory 518 to be executed by, for example, processing unit(s) 516.

[0118] The term "computer readable media" as used herein includes computer storage media. Computer storage media includes volatile and nonvolatile, removable and non-removable media implemented in any method or technology for storage of information such as computer readable instructions or other data. Memory 518 and mass storage 520 are examples of computer storage media. Computer storage media includes, but is not limited to, RAM, ROM, EEPROM, flash memory or other memory technology, CD-ROM, digital versatile disks (DVD) or other optical storage, magnetic cassettes, magnetic tape, magnetic disk storage or other magnetic storage devices, or any other medium which can be used to store the desired information and which can be accessed by the electronic device 512. Any such computer storage media can be part of the electronic device 512.

[0119] The electronic device 512 can also include communication connection(s) 526 that allows the electronic device 512 to communicate with other devices. Communication connection(s) 526 can include, but is not limited to, a modem, a network interface card (NIC), an integrated network interface, a radio frequency transmitter / receiver, an infrared port, a USB connection, or other interfaces for connecting electronic device 512 to other electronic devices. A communication connection(s) 526 can include a wired connection or a wireless connection. Communication connection(s) 526 can transmit and / or receive

[0120] The term "computer readable media" can include communication media. Communication media typically embodies computer readable instructions or other data in a "modulated data signal" such as a carrier wave or other transport mechanism and includes any information delivery media. The term "modulated data signal" can include a signal that has one or more of its characteristics set or changed in such a manner as to encode information in the signal.

[0121] The electronic device 512 can include input devices 524 such as a keyboard, mouse, pen, voice input device, touch input device, infrared camera, video input device, and / or any other input device. Output devices 522 such as one or more displays, speakers, printers, and / or any other output device can also be included with the device 512. Input devices 524 and output devices 522 can be connected to the electronic device 512 via a wired connection, wireless connection, or any combination thereof. In one embodiment, an input device or output device from another electronic device can be used as an input device 524 or output device 522 for the electronic device 512.

[0122] Components of the electronic device 512 can be connected by various interconnects, such as a bus. Such interconnects can include a Peripheral Component Interconnect (PCI), such as PCI Express, a Universal Serial Bus (USB), firewire (IEEE 1394), an optical bus structure, and the like. In another embodiment, components of the electronic device 512 can be interconnected by a network. For example, memory 518 can be comprised of multiple physical memory units located in different physical locations interconnected by a network.

[0123] Those skilled in the art will realize that storage devices utilized by the electronic device 512 can be distributed across a network. For example, a storage device 530 accessible via the network 528 can store computer readable instructions to implement one or more embodiments provided by the present disclosure. The electronic device 512 can access the storage device 530 and download a part or all of the computer readable instructions for execution. Alternatively, the electronic device 512 can download pieces of the computer readable instructions as needed, or some instructions can be executed at the electronic device 512 and some at the storage device 530.

[0124] Various operations of embodiments are provided herein. In one embodiment, one or more of the operations can constitute computer-readable instructions stored on one or more computer-readable media, which, when executed by an electronic device, will cause a computing device to perform the operations. The order in which some or all of the operations are described is not intended to be construed as a limitation, and any number of the described operations can be combined in any order and / or omitted. One of skill in the art will understand that alternate ordering of the described operations is possible and that some or all of the described operations can be performed in parallel. Moreover, not all of the described operations can be necessary in every embodiment.

[0125] Moreover, although the present disclosure has been illustrated and described with respect to one or more implementations, equivalent alterations and modifications will occur to others skilled in the art based upon the foregoing description and illustrations, and such equivalents alterations and modifications are within the spirit and scope of the disclosure. The disclosure is to be limited only by the scope of the following claims. In particular regard to the various functions performed by the above described components (e.g., elements, resources, etc.), the terms used to describe such components are intended to correspond, unless otherwise indicated, to any component which performs the specified function of the described component (e.g., that is functionally equivalent), whether or not the component is structurally identical to the disclosed structure of the exemplary implementations of the present disclosure. In addition, while a particular feature of the disclosure can have been disclosed with respect to only one of several implementations, such feature can be combined with one or more other features of the other implementations as can be desired and advantageous for any given or particular application. Furthermore, to the extent that the terms "including", "includes", "having", "has", "contain", "contains", or variants thereof to be afforded similar force or effect to the term "comprising", the terms are intended to encompass the possibilities of an exclusive or non- limiting inclusion.

[0126] The various functional units in the embodiments of the present application can be integrated in one processing module, or each unit can exist physically, or two or more units can be integrated in one module. The integrated module can be realized in the form of hardware, or in the form of a software functional module. When the integrated module is realized in the form of a software functional module and sold or used as an independent product, it can also be stored in a computer readable storage medium. The storage medium mentioned above can be a read-only memory, a magnetic disk or an optical disk, etc. The above-mentioned devices or systems can execute the methods in the corresponding method embodiments.

[0127] In summary, although the present application has been disclosed as above with embodiments, the sequence number before the embodiments is only used for convenience of description, and does not limit the sequence of the embodiments of the present application. Moreover, the above embodiments are not used to limit the present application, and those skilled in the art can make various changes and modifications without departing from the spirit and scope of the present application, therefore the protection scope of the present application is subject to the scope defined by the claims.

Claims

1. A method for two-way real-time information interaction, which is used for a plurality of interactive terminals to carry out two-way real-time information interaction through a switching terminal, wherein the plurality of interactive terminals and the switching terminal are arranged in a public network, and the method is characterized in that, The bidirectional real-time information interaction method comprises: The interaction terminal sends public interaction information to the switching terminal through a first frequency band; The switching terminal receives the public interaction information sent by different interaction terminals through the first frequency band; The switching terminal broadcasts the public interaction information through a second frequency band within a set range; The interaction terminal receives the public interaction information through the second frequency band; When the interaction terminal needs to privately and personally interact with other interaction terminals, the interaction terminal switches the sending and receiving frequency band of the interaction information; The interaction terminal sends personal interaction information to other interaction terminals through the second frequency band; The interaction terminal receives the personal interaction information fed back by other interaction terminals through the first frequency band.

2. The bidirectional real-time information exchange method of claim 1, wherein, The interaction terminal switches the sending and receiving frequency band of the interaction information comprises: The interaction terminal switches the sending frequency band of the personal interaction information to the second frequency band and switches the receiving frequency band of the personal interaction information to the first frequency band.

3. The method of claim 1, wherein, The information interaction method further comprises: In each public interaction information receiving time period, a plurality of receiving time areas are set, and each interaction terminal corresponds to a receiving time area; The step that the switching terminal receives the public interaction information sent by different interaction terminals through the first frequency band comprises: The switching terminal receives the public interaction information sent by the corresponding interaction terminal through the first frequency band in different receiving time areas.

4. The method of claim 3, wherein, The step that in each public interaction information receiving time period, a plurality of receiving time areas are set, and each interaction terminal corresponds to a receiving time area comprises: The switching terminal sets a plurality of receiving time areas of the current public interaction information receiving time period based on the public interaction information receiving amount of each receiving time area in the last public interaction information receiving time period.

5. The method of claim 4, wherein, The step that the switching terminal sets a plurality of receiving time areas of the current public interaction information receiving time period based on the public interaction information receiving amount of each receiving time area in the last public interaction information receiving time period comprises: When the public interaction information receiving amount of a receiving time area is greater than a first public interaction information receiving amount threshold of the current receiving time area, the proportion of the current receiving time area in the current public interaction information receiving time period is increased; wherein the first public interaction information receiving amount threshold is 85%-95% of the maximum public interaction information receiving amount of the current receiving time area; When the public interaction information receiving amount of a receiving time area is less than a second public interaction information receiving amount threshold of the current receiving time area, the proportion of the current receiving time area in the current public interaction information receiving time period is decreased; wherein the second public interaction information receiving amount threshold is 45%-55% of the maximum public interaction information receiving amount of the current receiving time area.

6. The method of claim 5, wherein, The information interaction method further comprises: The priority of each interaction terminal is set; The minimum proportion of the proportion of the receiving time area of the interaction terminal is set based on the priority of the interaction terminal.

7. A computer-readable storage medium having stored therein processor-executable instructions that, when loaded into one or more processors, cause performance of the bidirectional real-time information exchange method of any of claims 1-6.

Citation Information

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