Apparatus for generating cue word for interactive artificial intelligence or method therefor

By using a device and method to generate prompts and determining the display frame structure based on information from the display device, the problem of interactive AI service responses not adapting to different form factors is solved, thus improving the user experience.

CN121866533APending Publication Date: 2026-04-14LG ELECTRONICS INC
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
LG ELECTRONICS INC
Filing Date
2023-08-29
Publication Date
2026-04-14

AI Technical Summary

Technical Problem

In existing technologies, the responses of interactive AI services fail to adapt appropriately to the different form factors and types of display devices, resulting in a poor user experience.

Method used

The device and method for generating prompts utilize a controller to receive relevant information about a display device, determine the display frame structure, and generate prompts that reflect that structure to suit the needs of different display devices.

Benefits of technology

It enables the generation of structured responses suitable for display devices without requiring direct user input, thus improving the user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides a device for generating a cue word for interactive artificial intelligence service, and the device comprises a controller which is used for generating the cue word; the transceiver is used for transmitting the generated cue word to the interactive artificial intelligence service; the controller may receive display-related information for a display device of a user, and may determine a display frame structure for the interactive artificial intelligence service according to the received display-related information, and may generate a cue word reflecting the determined display frame structure.
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Description

Technical Field

[0001] The present invention relates to a method or apparatus for generating prompt words, and more specifically, to the generation of prompt words that can be used as input to an interactive artificial intelligence service. Background Technology

[0002] In recent years, a new form factor has been discussed in multimedia devices such as mobile phones and TVs. Form factor refers to the structural form of a product.

[0003] The reason why the display industry attaches importance to form factor innovation is that, due to the increasing mobility of consumers, the convergence of devices, and the rapid development of intelligence, there is a growing demand from users for form factors that are free from the traditional form factors customized for specific usage environments and can be used freely and conveniently regardless of the usage environment.

[0004] For example, breaking away from the conventional notion of horizontal TV viewing, vertical TVs are on the rise. Vertical TVs are products designed to change screen orientation to cater to the MZ (Millennials and Gen Z) generation, who are accustomed to watching content on mobile devices. They allow for easy browsing of social media (SNS) or shopping website images, and the ability to read comments while watching videos. In particular, vertical TVs offer even greater advantages when connected to smartphones using near-field communication (NFC) based mirroring functionality. They can be switched to landscape mode when watching regular TV or movies.

[0005] As another example, rollable TVs and foldable smartphones share a common feature: they both use "flexible displays." Flexible displays, as the name suggests, refer to flexible electronic components. To achieve flexibility, thinness is paramount. The substrate that receives information and converts it into light must be thin and flexible to maintain performance for an extended period without damage.

[0006] Flexibility refers to the ability to withstand impacts without significant damage. When a flexible display is bent or folded, its joints continuously receive pressure. To prevent this pressure from causing internal damage, it needs to possess excellent durability and the ability to easily deform under pressure.

[0007] For example, flexible displays are based on OLEDs. OLEDs are displays that use organic light-emitting materials. Compared to inorganic materials such as metals, organic materials are relatively flexible. Furthermore, OLED substrates are thinner, giving them a competitive edge over other displays. In the case of LCD substrates used in the past, additional liquid crystal and glass were required, thus limiting the reduction in thickness.

[0008] As a new form factor for TVs emerges, the demand for TVs that can be easily moved indoors and outdoors is gradually increasing. In particular, the demand for second TVs has increased in recent years due to the impact of the coronavirus pandemic, which has led to more time spent at home. In addition, with the increase in outdoor camping and other activities, the demand for new form factor TVs that are easy to carry and move is showing an increasing trend.

[0009] Figure 2 Examples of TVs with new form factor specifications are shown.

[0010] On the other hand, the public release of interactive AI services, often referred to as generative AI, has generated significant social impact. Despite the controversy, the application of interactive AI services promises to enhance user experience. However, as mentioned above, TVs come in a wide variety of form factors, so the response to interactive AI services needs to be configured differently depending on the form factor. Since manufacturers use the same operating system (OS) for different display devices based on factors such as screen size or type, this factor is not considered in the existing technology, resulting in the same response being given when the same question is asked to an interactive AI service. This phenomenon not only occurs in the response to the question but also in the format or style of the displayed response.

[0011] For example, in display devices with small displays, the proximity between the user and the terminal makes them suitable for reading text, while displaying images requires efficient use of the display space. In display devices with large displays, fine-grained control is more difficult, and reading text-based content is less convenient; therefore, providing image-based results is preferable.

[0012] Furthermore, for example, in the case of rollable displays, depending on different operating modes, a portion of the display may operate while rolled up, thus requiring a response display method suitable for the aforementioned situation. Additionally, in the case of transparent displays, there are display characteristics or operating modes different from ordinary (opaque) flat-panel displays, thus requiring a response display method suitable for them.

[0013] As mentioned above, there is a need for an efficient method to properly deliver responses to interactive artificial intelligence services to display devices. Summary of the Invention

[0014] The problem that the invention aims to solve

[0015] This invention relates to a technique for adapting responses to interactive artificial intelligence services to user devices such as display devices.

[0016] Technical solutions to the problem

[0017] This invention proposes an apparatus for generating prompts for an interactive artificial intelligence service. The apparatus may include: a controller for generating the prompts; and a transceiver for transmitting the generated prompts to the interactive artificial intelligence service. The controller may receive display-related information for a user's display device and determine a display framework structure for the interactive artificial intelligence service based on the received display-related information, and may generate prompts reflecting the determined display framework structure.

[0018] In addition, the present invention proposes a method for generating prompt words for an interactive artificial intelligence service. The method can be performed by means including a controller for generating the prompt words and a transceiver for transmitting the generated prompt words to the interactive artificial intelligence service. The method may include: receiving display-related information for a user's display device; determining a display frame structure for the interactive artificial intelligence service based on the received display-related information; and generating prompt words that reflect the determined display frame structure.

[0019] In addition, the present invention proposes a computer-readable storage medium for storing a computer program for performing the above-described method for generating prompts for interactive artificial intelligence services.

[0020] In addition, the present invention proposes a system including a client device and a server device for generating prompts for interactive artificial intelligence services. The client device may include: a controller for acquiring display-related information of the client device; and a transceiver for transmitting the display-related information to the server device. The server device may include: a transceiver for receiving the display-related information from the client device; and a controller for determining a display frame type for the interactive artificial intelligence service based on the received display-related information, and generating prompts reflecting the determined display frame type.

[0021] The above-described technical solutions to the problems are only a part of the embodiments of the present invention. Those skilled in the art can deduce and understand various embodiments reflecting the technical features of the present invention based on the detailed description of the present invention described below.

[0022] Invention Effects

[0023] The present invention has the following effects.

[0024] This invention can visualize prompts without requiring direct user input.

[0025] In addition, the present invention can request a structured response format, thereby enabling the acquisition of a structured response from an interactive artificial intelligence service.

[0026] In addition, the present invention can output a response that is appropriate to the user's intent, thereby improving the user experience.

[0027] The effects that can be obtained by the present invention are not limited to those mentioned above. Those skilled in the art can clearly understand other effects not mentioned from the following description. Attached Figure Description

[0028] To aid in understanding the invention, embodiments of the invention are provided in the accompanying drawings, which are part of the detailed description, and the technical concept of the invention is explained in conjunction with the detailed description.

[0029] Figure 1 It is a block diagram used to illustrate the various components of a display device.

[0030] Figure 2 This is a diagram illustrating a display device according to an embodiment of the present invention.

[0031] Figure 3 and Figure 4 A structural diagram of the system for interactive artificial intelligence services according to the present invention is shown.

[0032] Figure 5 A block diagram of the prompt word generation apparatus of the present invention is shown.

[0033] Figure 6 The present invention illustrates a plurality of display frame structure types.

[0034] Figures 7 to 8 This shows an example of how a response to a user's question / query is structured.

[0035] Figures 9 to 10 This shows an example of how a response to a user's question / query is structured.

[0036] Figure 11 This is a flowchart illustrating the steps related to the generation of prompt words and the response to them in an embodiment of the present invention.

[0037] Figure 12 This is a flowchart illustrating the steps related to the generation of prompt words and the response to them in an embodiment of the present invention. Detailed Implementation

[0038] The embodiments disclosed in this specification will be described in detail below with reference to the accompanying drawings. Here, identical or similar constituent elements are given the same reference numerals, regardless of the drawing numbers, and repeated descriptions of them will be omitted. The suffixes "module" and "part" used for constituent elements in the following description are assigned or used interchangeably only for ease of writing and do not inherently have a distinguishing meaning or function. Furthermore, in the process of describing the embodiments disclosed in this specification, if it is determined that a detailed description of related well-known technologies would obscure the essence of the embodiments disclosed in this specification, a detailed description of those technologies will be omitted. Moreover, the accompanying drawings are only for ease of understanding of the embodiments disclosed in this specification and should not be used to limit the technical ideas disclosed in this specification. Rather, they should be understood to cover all modifications, equivalents, and even alternatives included within the scope of the ideas and techniques of this specification.

[0039] Terms containing ordinal numbers, such as "first" and "second," can be used to describe various constituent elements, but the constituent elements are not limited by these terms. These terms are used only for the purpose of distinguishing one constituent element from others.

[0040] When it is mentioned that a component is "connected" or "coupled" to another component, it should be understood that the structural element can be directly connected or coupled to the other component, or that there are other components between them. Conversely, when it is mentioned that a component is "directly connected" or "directly coupled" to another component, it should be understood that there are no other components between them.

[0041] Unless the context clearly indicates otherwise, singular expressions include plural expressions.

[0042] In this application, terms such as “comprising” or “having” are used only to specify the presence of features, numbers, steps, actions, constituent elements, components or combinations thereof as described in the specification, and are not intended to exclude the possibility of the presence or addition of one or more other features or numbers, steps, actions, constituent elements, components or combinations thereof.

[0043] In the following description, although referred to as display device 100, the display device may be called by various names, such as TV or multimedia device, and the scope of the invention claims is not limited by its name.

[0044] Figure 1 This is a block diagram illustrating the various configurations of a display device 100 according to an embodiment of the present invention.

[0045] The display device 100 may include a broadcast receiver 110, an external device interface 171, a network interface 172, a storage unit 140, a user input interface 173, an input unit 130, a control unit 180, a display module 150, an audio output unit 160, and / or a power supply unit 190.

[0046] The broadcast receiver 110 may include a tuning unit 111 and a demodulation unit 112.

[0047] On the other hand, unlike the accompanying drawings, the display device 100 may also include only the external device interface 171 and the network interface 172, which are part of the broadcast receiver 110, the external device interface 171, and the network interface 172. That is, the display device 100 may also exclude the broadcast receiver 110.

[0048] The tuning unit 111 can select a broadcast signal corresponding to a user-selected channel or all pre-stored channels from broadcast signals received via an antenna (not shown) or cable (not shown). The tuning unit 111 can convert the selected broadcast signal into an intermediate frequency signal or a baseband image or audio signal.

[0049] For example, if the selected broadcast signal is a digital broadcast signal, the tuning unit 111 will convert it into a digital intermediate frequency (IF) signal (DIF); if it is an analog broadcast signal, it will convert it into an analog baseband image or audio signal (CVBS / SIF). That is, the tuning unit 111 can process both digital and analog broadcast signals. The analog baseband image or audio signal (CVBS / SIF) output from the tuning unit 111 can be directly input to the control unit 180.

[0050] On the other hand, the tuning unit 111 can sequentially select broadcast signals from all broadcast channels stored by the channel storage function from the received broadcast signals and convert them into intermediate frequency signals or baseband image or audio signals.

[0051] On the other hand, in order to receive broadcast signals from multiple channels, the tuning unit 111 can be implemented as having multiple tuners. Alternatively, it can be implemented as a single tuner that simultaneously receives broadcast signals from multiple channels.

[0052] The demodulation unit 112 can receive the digital IF signal (DIF) converted in the tuning unit 111 and perform demodulation. After performing demodulation and channel decoding, the demodulation unit 112 can output a streaming signal (TS). At this time, the streaming signal can be a signal multiplexed from an image signal, an audio signal, or a data signal.

[0053] The streaming signal output from the demodulation unit 112 can be input to the control unit 180. After performing demultiplexing, image / audio signal processing, etc., the control unit 180 can output an image through the display module 150 and output audio through the audio output unit 160.

[0054] The sensing unit 120 refers to a device that senses changes within the display device 100 or changes in the external environment. For example, it may include at least one of a proximity sensor, an illumination sensor, a touch sensor, an infrared sensor (IR sensor), an ultrasonic sensor, an optical sensor (e.g., a camera), a voice sensor (e.g., a microphone), a battery gauge, and an environmental sensor (e.g., a hygrometer, a thermometer, etc.).

[0055] The control unit 180 can check the status of the display device 100 based on the information collected from the sensing unit 120, and can control it to notify the user or adjust itself to maintain the best status when a problem occurs.

[0056] Furthermore, the content, image quality, and size of the image provided to the display module 150 can be controlled differently based on factors such as the viewer or ambient lighting sensed by the sensing unit, thereby providing an optimal viewing environment. As smart display devices develop, the functions integrated into these devices gradually increase, and the sensing unit 20 also increases accordingly.

[0057] The input unit 130 may be located on one side of the main body of the display device 100. For example, the input unit 130 may include a touchpad, physical buttons, etc. The input unit 130 may receive various user commands related to the operation of the display device 100, and may transmit control signals corresponding to the input commands to the control unit 180.

[0058] In recent years, as the size of the bezel of the display device 100 has decreased, the number of display devices 100 that minimize the size of the physical button-shaped input section 130 exposed to the outside has gradually increased. Instead, the smallest physical buttons can be provided on the back or side, and user input can be received from the remote control device 200 via a touchpad or the user input interface section 173 described later.

[0059] The storage unit 140 can store programs for processing and controlling various signals within the control unit 180, and can also store processed image, audio, or data signals. For example, the storage unit 140 can store applications designed to perform various tasks that can be processed by the control unit 180, and can selectively provide a portion of the stored applications when requested by the control unit 180.

[0060] If the programs stored in the storage unit 140 can be executed by the control unit 180, there are no particular limitations. The storage unit 140 can also perform functions for temporarily storing image, audio, or data signals received from external devices through the external device interface unit 171. The storage unit 140 can store information related to a specified broadcast channel through channel storage functions such as channel mapping.

[0061] Although Figure 1 An embodiment is shown in which the storage unit 140 and the control unit 180 are arranged separately, but the scope of the present invention is not limited thereto, and the storage unit 140 may also be included within the control unit 180.

[0062] The storage unit 140 may include at least one of volatile memory (e.g., DRAM, SRAM, SDRAM, etc.) and non-volatile memory (e.g., flash memory, hard disk drive (HDD), solid-state drive (SSD), etc.).

[0063] The display module 150 can generate drive signals by converting image signals, data signals, OSD signals, control signals processed in the control unit 180, or image signals, data signals, control signals, etc., received from the interface unit 171. The display module 150 may include a display panel 181 having a plurality of pixels.

[0064] The plurality of pixels disposed on the display panel may have RGB subpixels. Alternatively, the plurality of pixels disposed on the display panel may also have RGBW subpixels. The display module 150 can generate drive signals for the plurality of pixels by converting image signals, data signals, OSD signals, control signals, etc., processed in the control unit 180.

[0065] The display module 150 can be a plasma display panel (PDP), a liquid crystal display (LCD), an organic light-emitting diode (OLED), a flexible display module, or a 3D display module. The 3D display module 150 can be divided into non-glasses type and glasses type.

[0066] The display device 100 includes a display module that occupies most of the front area and a housing that covers the back and sides of the display module and encapsulates the display module.

[0067] In recent years, in order to further realize curved screens from flat surfaces, display device 100 can use flexible display modules 150 such as LEDs (Light Emitting Diodes) or OLEDs (Organic Light Emitting Diodes).

[0068] In existing LCDs, which are the primary technology used in the field, a backlight unit is required to receive light because LCDs themselves are difficult to emit. The backlight unit is a device that uniformly supplies light from a light source to the liquid crystal located on the front. While ultra-thin LCDs can be achieved by gradually thinning the backlight unit, it is difficult to implement a backlight unit using flexible materials. When the backlight unit is bent, it is difficult to uniformly supply light to the liquid crystal, resulting in variations in screen brightness.

[0069] Conversely, in the case of LEDs or OLEDs, since each element forming a pixel can emit its own light, a backlight unit is not needed and bending can be achieved. Furthermore, because each element emits its own light, its brightness is not affected even if its positional relationship with adjacent elements changes; therefore, LEDs or OLEDs can be used to implement a bending display module 150.

[0070] OLED (Organic Light Emitting Diodes) panels officially appeared in mid-2010 and quickly replaced LCDs in the small and medium-sized display market. OLED displays are manufactured by utilizing the self-emissive phenomenon of light emission when an electric current flows through fluorescent organic compounds. Their image quality response time is faster than LCDs, so there is almost no ghosting when playing videos.

[0071] OLEDs are light-emitting display products that use three phosphor organic compounds with self-emissive properties: red, green, and blue. They utilize the phenomenon that electrons injected into the cathode and anode combine with positively charged particles within the organic material and emit light on their own. Therefore, there is no need for a backlight (backlight device) that would cause color degradation.

[0072] LED (Light Emitting Diode) panels, as a technology that uses a single LED element as a pixel, can reduce the size of LED elements compared to existing technologies, thereby enabling curved display modules 150. Devices known in the prior art as LED TVs use LEDs as the light source for a backlight unit that supplies light to an LCD; LEDs themselves cannot form a screen.

[0073] The display module includes a display panel, a coupling magnet located on the back of the display panel, a first power supply unit, and a first signal module. The display panel may include a plurality of pixels R, G, and B. The plurality of pixels R, G, and B may be formed in each region where a plurality of data lines intersect with a plurality of gate lines. The plurality of pixels R, G, and B may be configured or arranged in a matrix.

[0074] For example, a plurality of pixels R, G, B may include red (hereinafter "R") subpixels, green ("G") subpixels, and blue ("B") subpixels. A plurality of pixels R, G, B may also include white (hereinafter "W") subpixels.

[0075] In the display module 150, the side on which the image is displayed can be referred to as the front or front side. When the display module 150 displays an image, the side on which the image cannot be observed can be referred to as the back or back side.

[0076] On the other hand, the display module 150 is composed of a touch screen and can be used as an input device in addition to being an output device.

[0077] The audio output unit 160 receives the processed audio signal from the control unit 180 and outputs it as audio.

[0078] The interface section 170 serves as a channel for various types of external devices connected to the display device 100. The interface section can include not only wired methods for transmitting and receiving data via cables, but also wireless methods using antennas.

[0079] The interface section 170 may include at least one of the following: a wired / wireless headset port, an external charger port, a wired / wireless data port, a memory card port, a port for connecting a device equipped with an identification module, an audio I / O port, a video I / O port, and a headphone port.

[0080] As an example of a wireless method, the aforementioned broadcast receiver 110 may include not only broadcast signals, but also mobile communication signals, short-range communication signals, wireless internet signals, etc.

[0081] The external device interface section 171 can transmit or receive data with connected external devices. For this purpose, the external device interface section 171 may include an A / V input / output section (not shown).

[0082] The external device interface unit 171 can be connected to external devices such as digital versatile discs (DVD), Blu-ray, game consoles, cameras, camcorders, computers (laptops), and set-top boxes in a wired / wireless manner, and can perform input / output operations with external devices.

[0083] In addition, the external device interface unit 171 can establish a communication network with various remote control devices 200, receive control signals related to the operation of the display device 100 from the remote control device 200, or transmit data related to the operation of the display device 100 to the remote control device 200.

[0084] The external device interface unit 171 may include a wireless communication unit (not shown) for short-range wireless communication with other electronic devices. Through this wireless communication unit (not shown), the external device interface unit 171 can exchange data with adjacent mobile terminals. In particular, the external device interface unit 171 can receive device information, currently running application information, application images, etc., from the mobile terminal in mirror mode.

[0085] The network interface unit 172 can provide an interface for connecting the display device 100 to a wired / wireless network, including the Internet. For example, the network interface unit 172 can receive content or data provided by the Internet or a content provider or network operator. Alternatively, the network interface unit 172 may include a communication module (not shown) for connecting to a wired / wireless network.

[0086] The external device interface section 171 and / or the network interface section 172 may include communication modules for short-range communication, such as Wi-Fi, Bluetooth, Bluetooth Low Energy (BLE), Zigbee, and Near Field Communication (NFC), and may also include communication modules for cellular communication, such as Long-Term Evolution (LTE), LTE-A, CDMA, Wideband CDMA, Universal Mobile Telecommunications System (UMTS), and Wireless Broadband (WiBro).

[0087] The user input interface 173 can transmit user input signals to the control unit 180, or transmit signals from the control unit 180 to the user. For example, it can transmit / receive user input signals such as power on / off, channel selection, and screen settings from the remote control device 200, or transmit user input signals input from local keys (not shown) such as power button, channel button, volume button, and setting value to the control unit 180, or transmit user input signals input from a sensor unit (not shown) that senses the user's gestures to the control unit 180, or send signals from the control unit 180 to the sensor unit.

[0088] The control unit 180 may include at least one processor, and the overall operation of the display device 100 can be controlled by utilizing the processor. Here, the processor may be a general-purpose processor such as a central processing unit (CPU). Of course, the processor may be a dedicated device such as an application-specific integrated circuit (ASIC) or a processor based on other hardware.

[0089] The control unit 180 can demultiplex the input stream through the tuning unit 111, demodulation unit 112, external device interface unit 171 or network interface unit 172, or process the demultiplexed signal to generate and output a signal for outputting image or audio.

[0090] The image signal processed in the control unit 180 can be input to the display module 150, and an image corresponding to the image signal can be displayed. Additionally, the image signal processed in the control unit 180 can also be input to an external output device via the external device interface unit 171.

[0091] The audio signal processed in the control unit 180 can be output as sound via the audio output unit 160. Additionally, the audio signal processed in the control unit 180 can be input to an external output device via the external device interface unit 171. Furthermore, the control unit 180 may include a demultiplexing unit, an image processing unit, etc.

[0092] Furthermore, the control unit 180 can control the overall operation within the display device 100. For example, the control unit 180 can control the tuning unit 111 to select a broadcast corresponding to a user-selected channel or a pre-stored channel.

[0093] Furthermore, the control unit 180 can control the display device 100 by using user commands or internal programs input through the user input interface unit 173. On the other hand, the control unit 180 can control the display module 150 to display images. At this time, the image displayed on the display module 150 can be a still image or video, or a 2D image or a 3D image.

[0094] On the other hand, the control unit 180 can display specified 2D objects within the image displayed by the display module 150. For example, the object can be at least one of the following: accessed web page screens (news, magazines, etc.), electronic program guides (EPGs), various menus, widgets, icons, still images, videos, and text.

[0095] On the other hand, the control unit 180 can modulate and / or demodulate the signal using amplitude shift keying (ASK). Here, amplitude shift keying (ASK) refers to a method of modulating the signal by changing the amplitude of the carrier wave according to the data value, or restoring the analog signal to digital data value according to the amplitude of the carrier wave.

[0096] For example, the control unit 180 can modulate the image signal using amplitude shift keying (ASK) and transmit it via a wireless communication module.

[0097] For example, the control unit 180 can use amplitude shift keying (ASK) to demodulate and process the image signal received by the wireless communication module.

[0098] Therefore, even without using unique identifiers such as Media Access Control Address (MAC) or complex communication protocols such as TCP / IP, the display device 100 can easily send and receive signals with other image display devices configured in adjacent locations.

[0099] On the other hand, the display device 100 may also include a camera unit (not shown). The camera unit can capture images of the user. The camera unit may be implemented by a single camera, but is not limited to this, and may also be implemented by multiple cameras. On the other hand, the camera unit may be embedded in the display module 150 of the display device 100 or configured separately. Image information captured by the camera unit can be input to the control unit 180.

[0100] The control unit 180 can identify the user's position based on the image captured by the imaging unit. For example, the control unit 180 can identify the distance (z-axis coordinate) between the user and the display device 100. In addition, the control unit 180 can identify the x-axis coordinate and y-axis coordinate corresponding to the user's position within the display module 150.

[0101] The control unit 180 can sense the user's gestures based on images captured by the camera unit, signals sensed by the sensor unit, or a combination of both.

[0102] The power supply unit 190 can supply power to the entire display device 100. In particular, it can supply power to the control unit 180, which can be implemented as a system on chip (SOC), the display module 150 for displaying images, and the audio output unit 160 for outputting audio.

[0103] Specifically, the power supply unit 190 may have a converter (not shown) that converts alternating current to direct current and a direct current / direct current (Dc / Dc) converter (not shown) that converts the level of direct current.

[0104] On the other hand, the power supply unit 190 serves to receive power from the outside and distribute the power to the various components. The power supply unit 190 can be directly connected to an external power source and supply AC power, and may include a battery that can be charged for use.

[0105] In the former case, the use of a wired connection makes movement difficult or restricts the range of movement. In the latter case, movement is more free, but the weight and volume increase accordingly with the battery, and for charging, it is necessary to connect directly to the power cable for a specified time, or to be connected to a charging dock (not shown) that supplies power.

[0106] The charging dock can connect to the display device via exposed terminals, or it can wirelessly charge the built-in battery when it is nearby.

[0107] The remote control device 200 can transmit user input to the user input interface 173. For this purpose, the remote control device 200 can employ Bluetooth, radio frequency (RF) communication, infrared (IR) communication, ultra-wideband (UWB), ZigBee, or other methods. Furthermore, the remote control device 200 can receive image, audio, or data signals output from the user input interface 173 and display them on the remote control device 200 or at the audio output.

[0108] On the other hand, the aforementioned display device 100 can be a fixed or mobile digital broadcast receiver to receive digital broadcasts.

[0109] on the other hand, Figure 1 The block diagram of the display device 100 shown is only a block diagram for one embodiment of the present invention. The constituent elements of the block diagram can be integrated, added or omitted according to the rules of the actual implementation of the display device 100.

[0110] That is, as needed, two or more constituent elements can be combined into one constituent element, or one constituent element can be divided into two or more constituent elements. Furthermore, the functions executed in each module are used to illustrate embodiments of the present invention, and their specific actions or devices do not limit the scope of the invention.

[0111] Figure 2 This is a diagram illustrating a display device according to an embodiment of the present invention. Hereinafter, descriptions that are repeated above will be omitted.

[0112] Reference Figure 2 The display device 100 houses the display module 150 inside the housing 210. At this time, the housing 210 may include an upper housing 210a and a lower housing 210b, and the upper housing 210a and the lower housing 210b may be manufactured as an openable structure.

[0113] In one embodiment, the upper housing 210a of the display device 100 may include an audio output unit 160, and the lower housing 210b may house a motherboard, power board, power supply unit 190, battery, interface unit 170, sensing unit 120, and input unit 130 (including a local key), which serves as a control unit 180. Here, the interface unit 170 may include a wireless fidelity module, Bluetooth module, and NFC module for communicating with external devices, and the sensing unit 120 may include a light sensor and an IR sensor.

[0114] In one embodiment, the display module 150 may include a DC-DC board, a sensor, and a low voltage differential signaling (LVDS) conversion board.

[0115] In another embodiment, the display device 100 may also include four detachable legs 220a, 220b, 220c, and 220d. Here, the four legs 220a, 220b, 220c, and 220d may be attached to the lower housing 210b and lift the display device 100 off the ground.

[0116] Figure 2 The display device shown is exemplary, and the present invention can be applied to display devices not only with new form factors, but also to existing form factors of conventional flat-panel TVs. Furthermore, the display devices of the present invention include those with rollable displays and / or transparent displays.

[0117] The following is for reference Figures 3 to 12 This explains the proposed technology.

[0118] Figure 3 and Figure 4 A structural diagram of a system for the interactive artificial intelligence service of this invention is shown.

[0119] Figure 3 The diagram illustrates the structure of system 1000, which is a system in which display device 100 works in collaboration with natural language processing server 300, artificial intelligence agent server 400, and servers 510, 520, and 530 such as search servers on the Internet to generate prompts for interactive artificial intelligence services. Figure 3 The display device 100 may include Figure 1 Other components not shown.

[0120] Natural Language Processing (NLP) server 300 analyzes user intent based on user queries, inquiries, or requests converted into text. NLP server 300 determines whether to use AI agent server 400 based on the analyzed user intent. To analyze user intent or determine whether to use AI agent server, NLP server 300 can interact with external servers A510 to Z530. External servers A510 to Z530 may include servers of portal websites providing various services, including search services.

[0121] The AI ​​agent server 400 generates prompts and determines which generative artificial intelligence (AI) server (610 to 630) to use. Generative AI servers may include, for example, servers that generate content (responses) specifically for text (text), servers that generate content (responses) specifically for images (videos), etc.

[0122] On the other hand, although the natural language processing server device 300 and the artificial intelligence agent server device 400 are shown in separate configurations, the present invention can be implemented as a single server.

[0123] Reference Figure 4 ,and Figure 3 In contrast, the display device 100 incorporates a natural language processor 181 and an artificial intelligence agent 182. Figure 4 The natural language processor 181 and artificial intelligence agent 182 shown are respectively built into the display device 100. Figure 3 Servers 300 and 400 generate prompts for the interactive artificial intelligence service of this invention. The actions or functions of the natural language processor 181 and the artificial intelligence agent 182 can be... Figure 3 The server devices 300 and 400 shown are the same.

[0124] On the other hand, although the natural language processor 181 and the artificial intelligence agent 182 are shown in separate configurations, the present invention can be implemented in the form of a control unit 180 built into the display device 100.

[0125] In the following explanation, as shown in the example Figure 3 The present invention is described based on the system shown. In this specification, the artificial intelligence agent server 400 is referred to as the prompt word generation device 400.

[0126] Figure 5 A block diagram of the prompt word generation apparatus 400 of the present invention is shown. The prompt word generation apparatus 400 generates prompt words for interactive artificial intelligence services.

[0127] The prompt generation device 400 may include a window structure generator 410 and a response composition information generator 420. Alternatively, the prompt generation device 400 may include a controller (not shown), and the functions and actions of the window structure generator 410 and the response composition information generator 420 may be embedded in the controller.

[0128] The window structure generator 410 receives display-related information for the user's display device. This display-related information may include at least the display resolution and display size. Furthermore, it may include information about whether the display is transparent or rollable. Additionally, it may include information about whether the display is in landscape or portrait mode.

[0129] Window structure generator 410 determines the display frame structure for the interactive AI service based on received display-related information. The display frame structure, as a method of displaying information such as responses to the interactive AI service on the display, may include information about the amount or length, size, and configuration of the information displayed on the display (e.g., text and images). (See reference...) Figure 6 The description shows the framework structure.

[0130] Figure 6 The present invention illustrates a plurality of display frame structure types. Figure 6 (a) to Figure 6 (e) shows the display frame structure. The display frame structure includes information about the quantity, size, and configuration (or position) of text (text), images, and / or transparent images.

[0131] Reference Figure 6 Each display frame structure type is defined by the number of images or the length of text. However, the display frame structure includes information about the size of the images and text (or the size of the display area where the images and text can be displayed) and the arrangement (or position) of the images and text relative to each other.

[0132] As described above, the display frame structure of the present invention is used to efficiently display information according to the size, type, or characteristics of the display. Therefore, it is necessary to set a display frame structure (or its type) that matches the display-related information.

[0133] On the other hand, when the window structure generator 410 determines the display frame structure, in addition to the received display-related information, it can also additionally determine the display frame structure based on the keywords of the user's query, question, or request, or the user intent obtained from them, which serve as the basis for generating the prompt words. That is, the window structure generator 410 can additionally determine the display frame structure based on the keywords of the user's query, question, or request, or the user intent obtained from them.

[0134] This means that, for example, even when displaying the same relevant information—that is, when displaying responses to interactive AI services through the same display device—different display frameworks can be used based on keywords or user intent. This can be a factor that improves user satisfaction with the service.

[0135] The window structure generator 410 generates prompts that reflect the defined display frame structure. For example, in addition to sentences or expressions related to keywords, the prompts also include a request for a response format suitable for the display structure type, such as "Please provide a response containing N images and less than M words of text."

[0136] The window structure generator 410 then transmits the generated prompt to the interactive artificial intelligence service and receives a response to it from the interactive artificial intelligence service.

[0137] The response composition information generator 420 can generate response composition information so that the response to the prompt words is suitable for the display frame structure. For example... Figures 7 to 10 As shown, the response configuration information includes the configuration of the screen 1500 displayed on the monitor.

[0138] Figures 7 to 8 This section shows an example of how a response to a user's question / query might be structured. For instance, the user's question is a request for information about avocados.

[0139] Figure 7 (a) is a device for use with a large display. Figure 7 (b) is a device for having a rollable display. Figure 7 (c) is a device for having a transparent display. Each response consists of image 1510, 1511 and text 1520 portions.

[0140] in addition, Figure 8 (a) is a device for a small display with a portrait mode. Figure 8 (b) is a device for a small display with a landscape mode. Each response consists of only 1520 text characters.

[0141] Figures 9 to 10 This example illustrates the structure of a response to a question / query requesting weather information. As an example, the user's question / query is about weather information.

[0142] Figure 9 (a) is a device for use with a large display. Figure 9 (b) is a device for having a rollable display. Figure 9 (c) is a device for having a transparent display. Figure 9 (a) and Figure 9 The response of (c) consists of images 1510 and 1511 and text 1520. Figure 9 The response of (b) consists of only image 1510.

[0143] in addition, Figure 10(a) is a device for a small display with a portrait mode. Figure 10 (b) is a device for a small display with a landscape mode. Each response consists of an image 1510 and text 1520.

[0144] Reference Figures 7 to 10 The example of the response shown in the figure is the same regardless of the size or resolution of the display, or whether the display is rollable. Figure 7 (b) and Figure 9 (b) and Figure 8 and Figure 10 (This can also provide different response structures from each other. This is because, as mentioned above, the display frame structure is additionally determined based on keywords or user intent. See reference...) Figure 9 (b) does not include text information in the display frame structure because weather forecasts can be understood using only weather symbols, therefore the display frame structure is determined to include only images.

[0145] Figure 11 This is a flowchart illustrating the steps involved in generating prompts and responding to them according to an embodiment of the present invention. The display device 100 is an example of a user device, and its terminology does not limit the scope of the invention. The display device 100 includes a user input interface for receiving input from a user, such as a question, query, or request, and a display for outputting a response thereto.

[0146] Display device 100 receives user questions, queries, or requests (S100). Display device transmits user questions, queries, or requests to prompt word generation device 400 (S110). Alternatively, display device 100 can extract keywords from user questions, queries, or requests and transmit the extracted keywords to prompt word generation device 400.

[0147] On the other hand, although the flowchart shows that S100 and S110 are executed first, S100 and S110 only need to be executed before S140 or S150.

[0148] Additionally, the display device 100 acquires display-related information (S120). This display-related information may include at least the display resolution and display size. Furthermore, it may also include information about whether the display is transparent or rollable. Additionally, it may include information about whether the display is in landscape or portrait mode.

[0149] Furthermore, the display-related information consists of a set of display information, which includes at least the display resolution and the display size. Additionally, the display-related information may include two or more sets of display information.

[0150] For example, in the case of a rollable display, the display-related information can include n sets (n is an integer greater than 2), each set consisting of {display resolution, display size}. Since the size of a rollable display changes depending on its roll-up state, the resolution may also change accordingly, thus it can include at least two sets of information consisting of {display resolution, display size}.

[0151] The display device 100 transmits the acquired display-related information to the prompt word generation device 400 (S130).

[0152] The prompt word generation device 400 determines the display frame structure for interactive artificial intelligence services based on the received display-related information (S140). The prompt word generation device 400 may further determine the display frame structure based on keywords of the user's query, question, or request, or the user intent obtained from them, which serve as the basis for prompt word generation.

[0153] The prompt generation device 400 generates prompts that reflect the display frame structure (S150). Specifically, in addition to sentences or expressions composed of keywords, the prompts may also include requests for a format that represents the response to the display frame structure, such as the number of images or the length of text.

[0154] The prompt generation device 400 can transmit the generated prompt to the interactive artificial intelligence server 600 (S160). Afterwards, the prompt generation device 400 can receive a response corresponding to the prompt (S170).

[0155] The prompt word generation device 400 can generate response composition information such that the received response to the prompt word is suitable for the display frame structure determined in S140 (S180).

[0156] The prompt word generation device 400 can transmit response composition information to the display device 100 (S190).

[0157] The display device 100 can use the received response composition information to appropriately output the response to the display (S195).

[0158] on the other hand, Figure 11 The steps of the flowchart can also be implemented by a system consisting of the display device 100 and a prompt word generation device 400 connected to the display device 100 via a wired or wireless communication network (i.e., the two devices work together). The prompt word generation device 400 also includes a reference... Figure 1 At least a portion of the display device 100 described constitutes the corresponding configuration.

[0159] Furthermore, if the display device 100 and the prompt word generation device 400 work together to implement the present invention, the display device 100 can be referred to as a client device, and the prompt word generation device 400 can be referred to as a server device.

[0160] On the other hand, such as Figure 3 As shown, the present invention can be executed by system 1000. The present invention is explained in relation to the configuration of a system 1000 consisting of display device 100, natural language processing server 300, and prompt word generation device 400.

[0161] Figure 12 This is a flowchart illustrating the steps related to prompt word generation and response to it in an embodiment of the present invention.

[0162] System 1000 acquires user questions, queries, or requests (S200). System 1000 can extract keywords from user questions, queries, or requests.

[0163] On the other hand, although the flowchart shows that S200 is executed first, S200 only needs to be executed before S220 or S230.

[0164] Additionally, system 1000 acquires display-related information (S210). This display-related information may include at least the display resolution and display size. Furthermore, it may also include information about whether the display is transparent or rollable. Additionally, it may include information about whether the display is in landscape or portrait mode.

[0165] Furthermore, the display-related information consists of a set of display information, which includes at least the display resolution and the display size. Additionally, the display-related information may include two or more sets of display information.

[0166] System 1000 determines the display frame structure for interactive artificial intelligence services based on display-related information (S220). System 1000 may further determine the display frame structure based on keywords in the user's query, question, or request that form the basis for prompt word generation, or on user intent derived therefrom.

[0167] System 1000 generates prompts that reflect the display frame structure (S230). Specifically, in addition to sentences or expressions composed of keywords, prompts may also include requests for the format of the response representing the display frame structure, such as the number of images or the length of text.

[0168] System 1000 can transmit the generated prompt words to interactive artificial intelligence server 600 and can receive responses corresponding to the prompt words (S240).

[0169] System 1000 can generate response composition information so that the received response to the prompt word is suitable for the display frame structure determined in S220 (S250).

[0170] System 1000 can use the response composition information to appropriately output the response to the display (S260).

[0171] Alternatively, when configuring system 1000, display device 100 and natural language processing server 300 can also constitute system 1000. This will be explained below.

[0172] System 1000 acquires user questions, queries, or requests (S200). System 1000 can extract keywords from user questions, queries, or requests.

[0173] On the other hand, although the flowchart shows that S200 is executed first, S200 only needs to be executed before S220 or S230.

[0174] Additionally, system 1000 acquires display-related information (S210). This display-related information may include at least the display resolution and display size. Furthermore, it may also include information about whether the display is transparent or rollable. Additionally, it may include information about whether the display is in landscape or portrait mode.

[0175] Furthermore, the display-related information consists of a set of display information, which includes at least the display resolution and the display size. Additionally, the display-related information may include two or more sets of display information.

[0176] System 1000 can transmit display-related information to prompt word generation device 400.

[0177] The prompt generation device 400 determines the display frame structure for interactive artificial intelligence services based on the received display-related information (S220). The prompt generation device 400 may further determine the display frame structure based on keywords from the user's query, question, or request, or the user intent derived therefrom, which forms the basis for prompt generation. To this end, the system 1000 may provide information about keywords from the user's query, question, or request, or the user intent derived therefrom, which forms the basis for prompt generation, to the prompt generation device 400.

[0178] The prompt word generation device 400 generates prompt words that reflect the determined display frame structure (S230). Specifically, in addition to sentences or expressions composed of keywords, the prompt words may also include requests for the format of the response representing the display frame structure, such as the number of images or the length of text.

[0179] On the other hand, after generating the prompt word, or before generating the prompt word, the prompt word generation device 400 can determine which type of generative AI server (610 to 630) to use. The prompt word generation device 400 can determine which type of generative AI server (610 to 630) to use based on the user's intent.

[0180] The prompt generation device 400 transmits the generated prompt to the interactive artificial intelligence service and receives a response to the generated prompt from the interactive artificial intelligence service (S240).

[0181] The prompt word generation device 400 can generate response composition information so that the received response to the prompt word is suitable for the display frame structure determined in S220 (S250).

[0182] The prompt word generation device 400 can transmit response composition information to the system 1000.

[0183] System 1000 can use the response composition information to appropriately output the response to the display (S260).

[0184] On the other hand, the generation of response composition information can be performed by system 1000. In this case, system 1000 can receive information about the display frame structure from prompt generation device 400 in advance.

[0185] Alternatively, when configuring system 1000, display device 100 and prompt generation device 400 can also constitute system 1000. This will be explained below.

[0186] System 1000 acquires user questions, queries, or requests (S200). System 1000 can extract keywords from user questions, queries, or requests.

[0187] On the other hand, although the flowchart shows that S200 is executed first, S200 only needs to be executed before S220 or S230.

[0188] Additionally, system 1000 acquires display-related information (S210). This display-related information may include at least the display resolution and display size. Furthermore, it may also include information about whether the display is transparent or rollable. Additionally, it may include information about whether the display is in landscape or portrait mode.

[0189] Furthermore, the display-related information consists of a set of display information, which includes at least the display resolution and the display size. Additionally, the display-related information may include two or more sets of display information.

[0190] System 1000 determines the display framework structure for interactive artificial intelligence services based on display-related information (S220). System 1000 may further determine the display framework structure based on keywords in the user's query, question, or request, or the user intent obtained from them, which forms the basis for prompt word generation. When using user intent, System 1000 may transmit the user's query, question, or request to Natural Language Processing Server 300, and may request analysis of the user's intent in response to the query, question, or request. System 1000 may receive information about the user intent from Natural Language Processing Server 300.

[0191] System 1000 generates prompts that reflect the display frame structure (S230). Specifically, in addition to sentences or expressions composed of keywords, prompts may also include requests for the format of the response representing the display frame structure, such as the number of images or the length of text.

[0192] System 1000 can transmit the generated prompt words to interactive artificial intelligence server 600 and can receive responses corresponding to the prompt words (S240).

[0193] System 1000 can generate response composition information so that the received response to the prompt word is suitable for the display frame structure determined in S220 (S250).

[0194] System 1000 can use the response composition information to appropriately output the response to the display (S260).

[0195] Alternatively, the display device 100 may not constitute a system, but the present invention may be implemented by working in conjunction with the natural language processing server 300 and the prompt word generation device 400. This will be explained in more detail.

[0196] Display device 100 receives user questions, queries, or requests (S200). Display device 100 can extract keywords from user questions, queries, or requests.

[0197] On the other hand, although the flowchart shows that S200 is executed first, S200 only needs to be executed before S220 or S230.

[0198] Additionally, the display device 100 acquires display-related information (S210). This display-related information may include at least the display resolution and display size. Furthermore, it may also include information about whether the display is transparent or rollable. Additionally, it may include information about whether the display is in landscape or portrait mode.

[0199] Furthermore, the display-related information consists of a set of display information, which includes at least the display resolution and the display size. Additionally, the display-related information may include two or more sets of display information.

[0200] The display device 100 can transmit display-related information to the prompt generation device 400.

[0201] The prompt word generation device 400 determines the display framework structure for interactive artificial intelligence services based on display-related information (S220). The prompt word generation device 400 may further determine the display framework structure based on keywords in the user's query, question, or request, or the user intent obtained from them, which forms the basis for prompt word generation. When using user intent, the display device 100 may transmit the user's query, question, or request to the natural language processing server 300 and may request analysis of the user's intent in response to the query, question, or request. The display device 100 may receive information about the user intent from the natural language processing server 300 and may transmit this information to the prompt word generation device 400. Alternatively, the information about the user intent may be transmitted directly from the natural language processing server 300 to the prompt word generation device 400.

[0202] The prompt word generation device 400 generates prompt words that reflect the display frame structure (S230). Specifically, in addition to sentences or expressions composed of keywords, the prompt words may also include requests for the format of the response representing the display frame structure, such as the number of images or the length of text.

[0203] The prompt generation device 400 can transmit the generated prompts to the interactive artificial intelligence server 600 and can receive responses corresponding to the prompts (S240).

[0204] The prompt word generation device 400 can generate response composition information so that the received response to the prompt word is suitable for the display frame structure determined in S220 (S250).

[0205] The prompt word generation device 400 can transmit response composition information to the display device 100.

[0206] The display device 100 can use the response configuration information to appropriately output the response on the display (S260).

[0207] On the other hand, the generation of response composition information can be performed by the display device 100. In this case, the display device 100 can receive information about the display frame structure from the prompt generation device 400 in advance.

[0208] on the other hand, Figure 5The prompt word generation device 400 is shown and described in a configuration including two components 410 and 420, but the function or configuration of the prompt word generation device 400 may be embedded in the display device 100.

[0209] This invention explains the function or configuration of the prompt word generation device 400 embedded in the display device 100. For this purpose, please refer again... Figure 12 .

[0210] Display device 100 receives user questions, queries, or requests (S200). Display device 100 can extract keywords from user questions, queries, or requests.

[0211] On the other hand, although the flowchart shows that S200 is executed first, S200 only needs to be executed before S220 or S230.

[0212] Additionally, the display device 100 acquires display-related information (S210). This display-related information may include at least the display resolution and display size. Furthermore, it may also include information about whether the display is transparent or rollable. Additionally, it may include information about whether the display is in landscape or portrait mode.

[0213] Furthermore, the display-related information consists of a set of display information, which includes at least the display resolution and the display size. Additionally, the display-related information may include two or more sets of display information.

[0214] Display device 100 determines the display frame structure for interactive artificial intelligence services based on the received display-related information (S220). Display device 100 may further determine the display frame structure based on keywords of the user's query, question, or request that serve as the basis for prompt word generation, or on user intent obtained from them.

[0215] The display device 100 generates prompts reflecting the display frame structure (S230). Specifically, in addition to sentences or expressions composed of keywords, the prompts may also include requests for the format of the response representing the display frame structure, such as the number of images or the length of text.

[0216] The display device 100 can transmit the generated prompts to the interactive artificial intelligence server 600 and can receive responses corresponding to the prompts (S240).

[0217] The display device 100 can generate response configuration information such that the received response to the prompt word is adapted to the display frame structure determined in S220 (S250).

[0218] The display device 100 can use the response configuration information to appropriately output the response on the display (S260).

[0219] Furthermore, as another aspect of the present invention, code that can be implemented, carried out, or executed by a "computer" (including the comprehensive concept of a system on chip (SoC) or (micro) processor, etc.) can be provided, or provided as a computer-readable storage medium storing or including said code, or provided as a computer program product, etc. The scope of the present invention can be extended to said code, or to a computer-readable storage medium storing or including said code, or to a computer program product.

[0220] The detailed description of the preferred embodiments of the invention disclosed above is provided to enable those skilled in the art to implement and practice the invention. While the invention has been described above with reference to preferred embodiments, it should be understood that those skilled in the art can make various modifications and alterations to the invention as set forth in the claims. Therefore, the invention is not limited to the disclosed embodiments, but is intended to impose the broadest scope consistent with the disclosed principles and novel features.

Claims

1. A prompt word generation apparatus for generating prompt words for interactive artificial intelligence services, wherein, include: A controller is used to generate the prompt words; as well as A transceiver is used to transmit the generated prompts to the interactive artificial intelligence service; The controller receives display-related information for the user's display device; The controller determines the display framework structure for the interactive artificial intelligence service based on the received display-related information; The controller generates prompts that reflect the determined display frame structure.

2. The prompt word generation device according to claim 1, wherein, The controller transmits the generated prompts to the interactive artificial intelligence service; The generated prompt includes a request for a formatted response corresponding to the display frame structure.

3. The prompt word generation device according to claim 2, wherein, The format of the response includes text and its length, and images and their size or number.

4. The prompt word generation device according to claim 1, wherein, The controller receives a response to the generated prompt word and generates response composition information suitable for the type of the display frame structure.

5. The prompt word generation device according to claim 4, wherein, The controller transmits the response composition information to the display device.

6. The prompt word generation device according to claim 1, wherein, The display-related information consists of a set of display information, which includes at least the display resolution and the display size. The display-related information includes two or more sets of display information.

7. The prompt word generation apparatus according to claim 6, wherein, The display-related information also includes at least one of the following: whether the display is transparent and whether the display is rollable.

8. The prompt word generation device according to claim 1, wherein, The controller also determines the display frame structure based on the keywords of the prompt words or the user intent obtained from them.

9. A method for generating prompt words for an interactive artificial intelligence service, the method being performed by means including a controller for generating the prompt words and a transceiver for transmitting the generated prompt words to the interactive artificial intelligence service, wherein... The method includes: The steps of receiving display-related information for a user's display device; The steps of determining the display framework structure for the interactive artificial intelligence service based on the received display-related information; and The step of generating prompts that reflect the determined display frame structure.

10. The prompt word generation method according to claim 9, wherein, This includes the step of transmitting the generated prompts to the interactive artificial intelligence service; The generated prompt includes a request for a formatted response corresponding to the display frame structure.

11. The prompt word generation method according to claim 10, wherein, The format of the response includes text and its length, and images and their size or number.

12. The prompt word generation method according to claim 9, wherein, include: The steps include receiving a response to the generated prompt word and generating response composition information suitable for the type of the display frame structure.

13. The prompt word generation method according to claim 12, wherein, include: The step of transmitting the response constitutes information to the display device.

14. The prompt word generation method according to claim 9, wherein, The display-related information consists of a set of display information, which includes at least the display resolution and the display size. The display-related information includes two or more sets of display information.

15. The prompt word generation method according to claim 14, wherein, The display-related information also includes at least one of the following: whether the display is transparent and whether the display is rollable.

16. The prompt word generation method according to claim 9, wherein, This includes the step of determining the display frame structure based on the keywords of the prompt words or the user intent obtained therefrom.

17. A computer-readable storage medium, wherein, A computer program for performing the prompt word generation method according to any one of claims 9 to 16.

18. A system comprising a client device and a server device for generating prompts for interactive artificial intelligence services, wherein, The client device includes: The controller acquires display-related information from the client device; and The transceiver transmits the display-related information to the server device; The server device includes: The transceiver receives the display-related information from the client device; and The controller determines the display frame type for the interactive AI service based on the received display-related information, and generates prompt words that reflect the determined display frame type.