Display system
By combining transparent screens and framed screens, and utilizing the intelligent control of signal input modules and the host, the problem of insufficient stereoscopic effect and immersive viewing experience in existing display technologies has been solved, achieving higher display quality and user interactivity.
Patent Information
- Application Number
- CN202422518941.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-17
- Publication Date
- 2025-11-18
- Estimated Expiration
- 2034-10-17
AI Technical Summary
Existing display technologies have limitations in display effects, making it difficult to provide a three-dimensional and immersive viewing experience.
The design combines a transparent screen and a framed screen. The transparent screen displays the virtual character, while the framed screen displays the generated artwork image. Intelligent control is achieved through a signal input module and the host computer, enabling the collaborative display of the transparent screen and the framed screen.
It provides highly immersive and realistic interactive visuals, enhancing the user's viewing experience and the system's intelligence.
Smart Images

Figure CN223566282U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to display equipment technical field, especially a display system. BACKGROUND
[0002] In the prior art display screen technology, the traditional method usually depends on the display performance of the display screen itself and the lighting conditions of the surrounding environment to present the image. However, this method often has certain limitations, such as poor display effect, lack of stereoscopic image, and difficulty in providing immersive viewing experience for users. SUMMARY
[0003] The main purpose of the utility model is to provide a display system, which aims to provide a display effect with strong stereoscopic effect for users, thereby improving the viewing experience of users.
[0004] To achieve the above purpose, the utility model provides a display system, which comprises:
[0005] A display box is provided with an inner cavity and a door hole communicating with the inner cavity;
[0006] A transparent screen is installed at the door hole and used for displaying a virtual character;
[0007] A picture frame screen is rotationally connected in the inner cavity and used for displaying a generated work image; a signal input module is arranged in the display box; and
[0008] A host computer is fixed to the display box and electrically connected with the transparent screen, the display screen and the signal input module; the host computer is used for controlling the transparent screen and the picture frame screen to display corresponding images according to the input information of the signal input module.
[0009] In an embodiment, the signal input module comprises:
[0010] A sound pickup device is arranged on the outer wall of the display box and electrically connected with the host computer; the sound pickup device is used for receiving live voice and transmitting the live voice to the host computer; and
[0011] A keyboard is arranged on the outer wall of the display box and electrically connected with the host computer; the keyboard is arranged in a spaced manner with the sound pickup device and used for inputting control instructions to the host computer.
[0012] In an embodiment, the signal input module further comprises an operation display screen arranged on the outer wall of the display box, the operation display screen is electrically connected with the host computer and arranged in a spaced manner with the sound pickup device and the keyboard, and is used for displaying the input information of the sound pickup device and the keyboard.
[0013] In an embodiment, the display system further comprises a capture camera arranged at the back side of the frame screen, the capture camera being electrically connected to the host computer and being arranged apart from the signal input module, and being configured to capture a live image of a user who has a desire to interact with the painting.
[0014] In an embodiment, the display system further comprises at least three display light sources, each of the display light sources being arranged in the inner cavity and being configured to provide light for the transparent screen, and the three display light sources being arranged at the left inner wall, the right inner wall and the top inner wall of the display box, respectively.
[0015] In an embodiment, the display system further comprises a motion capture box and a motion capture device, the motion capture box being connected to the display box and being arranged at a side of the display box opposite to the door hole, the motion capture device being arranged in the motion capture box and being electrically connected to the host computer, and the motion capture device being configured to capture a motion of an action actor imitating the painting, so as to display a virtual character on the transparent screen in accordance with the motion of the action actor.
[0016] In an embodiment, the motion capture device comprises:
[0017] a signal capturing mechanism arranged in the motion capture box, the signal capturing mechanism being configured to capture a signal emitted by a sensor arranged on the action actor; and
[0018] a data transmission mechanism arranged in the motion capture box and being electrically connected to the signal capturing mechanism and the host computer, the data transmission mechanism being configured to transmit the captured signal from the signal capturing mechanism to the host computer.
[0019] In an embodiment, the display system further comprises a monitoring display screen arranged in the motion capture box, the monitoring display screen being electrically connected to the host computer and being arranged apart from the motion capture device, and the monitoring display screen being configured to display a captured motion image of the action actor.
[0020] In an embodiment, the display system further comprises a Bluetooth microphone arranged in the motion capture box and a sound device arranged on the outer wall of the display box, the Bluetooth microphone and the sound device being electrically connected to the host computer, the Bluetooth microphone being configured to capture a voice of the action actor, and the sound device being configured to play the voice of the action actor.
[0021] In an embodiment, the display system further comprises a heat sublimation printer arranged on the outer wall of the display box and being electrically connected to the host computer, and the heat sublimation printer being configured to print an image of a work displayed on the display screen.
[0022] The technical scheme of the utility model discloses a display system which comprises a display box, a transparent screen, a picture frame screen, a signal input module and a host computer, the display box is provided with an inner cavity and a door hole communicated with the inner cavity, the transparent screen is installed at the door hole and is used for displaying a virtual character, the picture frame screen is rotatably connected in the inner cavity and is used for displaying a generated work image, the signal input module is arranged on the display box, the host computer is fixed on the display box and is electrically connected with the transparent screen, the display screen and the signal input module, the host computer is used for controlling the transparent screen and the display screen to display corresponding images according to the input information of the signal input module, the transparent screen displays real-time action images of the virtual character and provides a more stereoscopic and real interactive screen for the user, the picture frame screen is arranged in the display box and is rotatable in the display box, forming a state in real painting and a state after completing painting, in this way, the transparent screen and the picture frame screen are combined together to simulate a scene of manual painting, the transparent screen and the picture frame screen have a more real stereoscopic effect in the display box, a stronger stereoscopic display effect is provided for the user, and the user's viewing experience is improved. BRIEF DESCRIPTION OF DRAWINGS
[0023] In order to more clearly illustrate the technical scheme in the embodiments of the utility model or the prior art, the following will briefly introduce the drawings needed to be used in the embodiment or the prior art description, and obviously, the drawings in the following description are only some embodiments of the utility model, and for those skilled in the art, other drawings can be obtained according to the structure shown in these drawings without creating labor.
[0024] Fig. 1 The structure schematic diagram of the display system provided by the utility model in painting interaction is shown in the figure.
[0025] Fig. 2 The structure schematic diagram of the display system provided by the utility model after painting interaction is shown in the figure.
[0026] Fig. 3 The top view of the display system provided by the utility model is shown in the figure.
[0027] Explanation of reference numerals:
[0028] 10, display box;20, transparent screen;30, picture frame screen;40, signal input module;41, sound pickup;42, keyboard;43, operation display screen;50, capture camera;60, display light source;70, motion capture box;80, motion capture device;81, signal capture mechanism;82, data transmission mechanism;90, monitoring display screen;100, sound;110, heat sublimation printer.
[0029] The realization, functional characteristics and advantages of the utility model will be further explained by combining with the embodiments and referring to the drawings. DETAILED DESCRIPTION
[0030] The technical solutions in the embodiments of the present application will be clearly and completely described with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative efforts belong to the scope of the present application.
[0031] It should be noted that if the embodiments of the present application involve directional indications (such as up, down, left, right, front, back, etc.), the directional indications are only used to explain the relative positional relationship, movement condition, etc. between components in a certain posture, and if the certain posture changes, the directional indications also change accordingly.
[0032] In addition, if the embodiments of the present application involve descriptions such as "first", "second", etc., the descriptions of "first", "second", etc. are only for description purposes, and cannot be understood as indicating or implying the relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features limited by "first" and "second" can explicitly or implicitly include at least one of the features. In addition, "and / or" or "and / or" appearing throughout the text means that the three parallel schemes are included, for example, "A and / or B" includes A scheme, or B scheme, or A and B simultaneously satisfy the scheme. In addition, the technical solutions of each embodiment can be combined with each other, but it must be based on the realization of ordinary skilled in the art, when the combination of technical solutions appears contradictory or unachievable, it should be considered that the combination of technical solutions does not exist, and is not within the protection scope required by the present application.
[0033] The display system is disclosed.
[0034] Please refer to Figs. 1-3 In an embodiment of the present application, the display system comprises a display box 10, a transparent screen 20, a picture frame screen 30, a signal input module 40 and a host. The display box 10 is provided with an inner cavity and a door hole communicating with the inner cavity. The transparent screen 20 is installed at the door hole and is used for displaying virtual characters. The picture frame screen 30 is rotatably connected in the inner cavity and is used for displaying generated work images. The signal input module 40 is arranged on the display box 10. The host is fixed on the display box 10 and is electrically connected with the transparent screen 20, the display screen and the signal input module 40. The host is used for controlling the transparent screen 20 and the display screen to display corresponding images according to the input information of the signal input module 40.
[0035] The display box 10 is the basic part of the display system, and its internal structure includes an inner cavity and a door hole communicating with the inner cavity. The design of the inner cavity fully considers the space utilization and heat dissipation requirements, so that the whole system runs stably and reliably. The setting of the door hole facilitates the installation and maintenance of the transparent screen 20 and the picture frame screen 30. The transparent screen 20 is installed at the door hole, and its function is to display virtual characters. The transparent screen 20 is selected by using a new type of transparent display technology, which has the characteristics of high transparency and high display clarity, and can provide users with immersive visual experience. Next is the picture frame screen 30, which is rotationally connected in the inner cavity and used to display generated artwork images. The design of the picture frame screen 30 adopts a flexible rotational connection method, so that it can adjust the angle as needed to meet the display requirements of different scenes. The picture frame screen 30 has excellent image display effect, with rich colors and high contrast, which can vividly display various artistic works. The signal input module 40 is provided in the display box 10, which is responsible for receiving external input signals and transmitting these signals to the host computer. The design of the signal input module 40 considers various signal input methods, including wired and wireless input, with strong compatibility and flexibility. The host computer is the control center of the whole display system and is fixed inside the display box 10. The host computer is electrically connected with the transparent screen 20, the picture frame screen 30 and the signal input module 40, and realizes data transmission and system control through electrical connection. The host computer has strong processing capability and can control the transparent screen 20 and the picture frame screen 30 to display corresponding images in real time according to the input information of the signal input module 40.
[0036] In the specific operation process, the user first inputs the image information required by the artwork image displayed by the picture frame screen 30 through the signal input module 40. After receiving these image information, the host computer processes according to the preset program and algorithm, and then controls the transparent screen 20 to display the image of the virtual character and controls the picture frame screen 30 to display the artwork image generated according to the image information input by the signal input module 40. The display effect of the transparent screen 20 and the picture frame screen 30 is accurately controlled by the host computer, ensuring the clarity and stability of image display.
[0037] The transparent screen 20 displays real-time action images of virtual characters, providing users with more stereoscopic and realistic interactive images. The picture frame screen 30 is arranged in the display box 10 and can rotate in the display box 10, forming a state in the real painting and a state after completing the painting. In this way, the transparent screen 20 and the picture frame screen 30 are combined together to simulate the scene of manual painting, so that the transparent screen 20 and the picture frame screen 30 have a more realistic three-dimensional effect in the display box 10, providing users with a strong three-dimensional display effect and improving the user's viewing experience.
[0038] The use of the transparent screen 20 and the picture frame screen 30 makes the display system of the utility model have more display functions and higher display quality. The transparent screen 20 is installed at the door opening and can clearly display virtual characters, thereby providing the user with more vivid and stereoscopic visual experience. The picture frame screen 30 is rotatably connected in the inner cavity and can display the generated work image as required, which facilitates the display of the work and increases the flexibility of the system. The cooperation of the two display screens makes the display system of the utility model have higher definition and fidelity in image display. Furthermore, the signal input module 40 and the host are arranged, so that the display system of the utility model has higher intelligent degree. The signal input module 40 is responsible for receiving external input information and provides data support for the host. The host intelligently controls the transparent screen 20 and the picture frame screen 30 to display corresponding images according to the input information. This intelligent control mode not only improves the response speed and accuracy of the system, but also reduces the operation difficulty and improves the user experience.
[0039] In an embodiment, referring to Figs. 1-3 , the signal input module 40 includes a sound pickup 41 and a keyboard 42. The sound pickup 41 is arranged on the outer wall of the display box 10 and is electrically connected with the host. The sound pickup 41 is used for receiving live voice and transmitting it to the host. The keyboard 42 is arranged on the outer wall of the display box 10 and is electrically connected with the host. The keyboard 42 is arranged separately from the sound pickup 41 and is used for inputting control instructions to the host.
[0040] The sound pickup 41 is arranged on the outer wall of the display box 10 and is connected with the host through an electric connection line. The sound pickup 41 adopts a high-sensitivity microphone and can effectively receive live voice signals and transmit the voice signals to the host through the electric connection line for processing. The keyboard 42 is connected with the host through an electric connection line and is used for inputting control instructions. The keyboard 42 is designed with multiple function keys, including but not limited to volume adjustment keys, play / pause keys, mode switching keys, etc., to meet different operation needs of the user.
[0041] The arrangement position of the sound pickup 41 ensures that it can cover the sound around the display box 10, thereby improving the reception quality of the voice signals. The electric connection line between the sound pickup 41 and the host adopts an anti-interference design to ensure the stability and reliability of signal transmission. The arrangement position of the keyboard 42 is separate from the sound pickup 41, which avoids accidental touch during operation and improves the accuracy of operation. The function keys on the keyboard 42 are arranged reasonably, and the user can easily operate them, thereby improving the user experience.
[0042] When the user needs to make voice input, the sound pickup 41 receives the live voice signal and transmits it to the host computer through the electrical connection line. The user can input corresponding control instructions through the keyboard 42, such as adjusting the volume, playing / pausing the music, confirming the drawing interaction, confirming the photographing, etc. The host computer processes corresponding operations according to the received voice signal and control instructions, such as playing the music, adjusting the volume, drawing the interaction, taking the photograph, etc.
[0043] The signal input module 40 of the utility model includes the sound pickup 41 and the keyboard 42, both of which are arranged on the outer wall of the display box 10 and are electrically connected with the host computer. This design makes the user more convenient during operation, and the user can make voice input and instruction operation without opening or turning over the device, thereby improving the user experience. The sound pickup 41 is arranged on the outer wall of the display box 10 and can effectively receive the live voice. Compared with the existing built-in sound pickup 41, this design can reduce the noise interference in the device, improve the reception quality and clarity of the voice, and make the voice transmission more accurate and reliable.
[0044] In an embodiment, referring to Figs. 1-3 The signal input module 40 further includes an operation display screen 43 arranged on the outer wall of the display box 10. The operation display screen 43 is electrically connected with the host computer and is arranged apart from the sound pickup 41 and the keyboard 42, and is used to display the input information of the sound pickup 41 and the keyboard 42.
[0045] The operation display screen 43 is used to display the input information of the sound pickup 41 and the keyboard 42, which greatly improves the confirmation efficiency of the user for the input information. The user can directly see the input information of the sound pickup 41 and the keyboard 42 on the operation display screen 43, thereby avoiding repeated operation caused by information error and improving the overall work efficiency. In addition, the utility model not only improves the operation convenience and accuracy, but also considers the aesthetics of the product. The arrangement of the operation display screen 43 is coordinated with the overall design of the display box 10, which does not damage the overall appearance of the display box 10, but rather increases the sense of technology and modernity of the product.
[0046] The operation display screen 43 is arranged apart from the sound pickup 41 and the keyboard 42, which effectively avoids the mis-touch phenomenon during operation and improves the accuracy of the operation.
[0047] Specifically, the operation display screen 43 has multiple display partitions, which are a keyword input area, a drawing style theme partition, a live photo preview partition, a photo cutout partition, a style transfer partition, etc. The display partitions are not limited to the above-mentioned partitions, and can be changed according to the actual use scene.
[0048] In an embodiment, referring to Figs. 1-3The display system further comprises a capture camera 50 arranged at the back side of the frame screen 30. The capture camera 50 is electrically connected to the host computer and is arranged apart from the signal input module 40, and is used to capture the live image of the user who has the painting interactive demand.
[0049] The outer wall of the display box 10 is made of high-strength material to ensure the stability and safety of the system. The capture camera 50 is arranged on the inner wall of the display box 10, and the specific position can be adjusted according to actual needs. The capture camera 50 is selected to be a high-resolution camera that can clearly capture the user image. The camera is electrically connected to the host computer through a data line to ensure real-time transmission of image signals. The capture camera 50 is electrically connected to the host computer through a data line, and the data line is selected to be a high-speed transmission line to ensure the real-time and stability of the image signals. During the connection process, the interface between the camera and the host computer should use a standard interface for easy maintenance and replacement.
[0050] In this embodiment, when the user enters the capture range of the capture camera 50, the camera automatically starts the shooting function. The capture camera 50 captures the user image in real time and transmits the image signal to the host computer. The host computer processes the received image signal and extracts the user feature information. The host computer transmits the processed image signal to the signal input module 40 for subsequent painting interaction.
[0051] By arranging the capture camera 50 on the outer wall of the display box 10, the real-time capture of user interactive demand is realized. Compared with the prior art, this design enables the display system to more intuitively obtain the live image of the user, improving the interactivity of the system and the user's sense of participation. When the user performs painting and other interactive operations, the capture camera 50 can capture the user's actions and expressions in real time, providing more rich user data for the host computer, thereby optimizing the user's interactive experience.
[0052] In an embodiment, referring to Figs. 1-3 The display system further comprises at least three display light sources 60, each of which is installed in the inner cavity and used to provide light for the transparent screen 20. The three display light sources 60 are respectively arranged on the left inner wall, the right inner wall and the top inner wall of the display box 10.
[0053] The display light source 60 comprises a light source body and a light source driving circuit. The light source body comprises a plurality of LED lamp beads which are uniformly distributed on the surface of the light source body to ensure that the light uniformly illuminates the transparent screen 20. The light source driving circuit is connected to the light source body to control the brightness and switching of the LED lamp beads.
[0054] The transparent screen 20 is made of high-strength transparent material and has high light transmittance and strength. The transparent screen 20 is in the shape of a rectangle, and the size can be adjusted according to actual needs. The inner cavity of the transparent screen 20 is a hollow structure, and the internal space is sufficient to install the display light source 60.
[0055] The display light source 60 is installed in the inner cavity of the display box 10; the power supply line of the display light source 60 is connected to ensure stable power supply; the brightness and switching of the LED lamp beads are controlled by the light source driving circuit, so that the display light can make the transparent screen 20 display images or texts more clearly and brightly; when it is necessary to replace the images or texts, the content can be re-input through a computer or other input device, and the light source driving circuit will automatically adjust the brightness and switching of the LED lamp beads.
[0056] Since the display light source 60 is installed in the inner cavity of the display box 10, it can directly provide light to the transparent screen 20, so that the brightness of the transparent screen 20 is significantly improved, the display effect is more clear, and the user's visual experience is greatly improved.
[0057] In an embodiment, please refer to Figs. 1-3 The display system further comprises a motion capture box 70 and a motion capture device 80. The motion capture box 70 is connected with the display box 10 and located on the side of the display box 10 facing away from the door opening. The motion capture device 80 is arranged in the motion capture box 70 and electrically connected with the host computer. The motion capture device 80 is used to capture the actions of the action actor imitating drawing to display a virtual character on the transparent screen 20 consistent with the actions of the action actor.
[0058] The display box 10 is the core part of the display system and is used to display a virtual character. The front of the display box 10 is provided with a transparent display screen through which the audience can watch the drawing actions of the virtual character. The motion capture box 70 is connected with the display box 10 and located on the side of the display box 10 facing away from the door opening. The size of the motion capture box 70 is designed according to actual needs and is sufficient to accommodate the motion capture device 80. The motion capture device 80 is arranged in the motion capture box 70 and electrically connected with the host computer. The main function of the motion capture device 80 is to capture the actions of the action actor so as to display a virtual character on the transparent screen 20 consistent with the actions of the action actor. The action actor imitates the actions of drawing in the motion capture box 70, and the motion capture device 80 captures the actions of the actor in real time. The motion capture device 80 transmits the captured action data to the host computer through a data transmission module. After receiving the action data, the host computer processes and generates a virtual character animation consistent with the actions of the action actor and displays it on the transparent screen 20.
[0059] The display system introduces the motion capture box 70 and the motion capture device 80. The motion capture device 80 can accurately capture the actions of the action actor imitating drawing to provide accurate action data for the transparent screen 20 display, ensure that the actions of the virtual character are consistent with the actions of the actor, realize real-time capture of the actions of the action actor and synchronous display of the virtual character, and thus improve the realism and interactivity of the display system.
[0060] In an embodiment, please refer to Figs. 1-3The motion capture device 80 comprises a signal capture mechanism 81 and a data transmission mechanism 82. The signal capture mechanism 81 is arranged in the motion capture box 70 and is used to capture the signals emitted by the sensors on the motion actor. The data transmission mechanism 82 is arranged in the motion capture box 70 and is electrically connected with the signal capture mechanism 81 and the host computer. The data transmission mechanism 82 is used to transmit the captured signals from the signal capture mechanism 81 to the host computer.
[0061] The signal capture mechanism 81 comprises a sensor receiver and a signal processing module. The sensor receiver is arranged in the motion capture box 70 and is used to receive the signals emitted by the sensors on the motion actor. The sensor receiver has multiple receiving channels and can simultaneously receive the signals of multiple sensors. The signal processing module is arranged in the motion capture box 70 and is electrically connected with the sensor receiver. The signal processing module is responsible for processing the signals received by the sensor receiver, including signal filtering and amplification, to obtain accurate motion data. The data transmission mechanism 82 comprises a data transmission module and an interface circuit. The data transmission module is arranged in the motion capture box 70 and is electrically connected with the signal processing module. The data transmission module is responsible for transmitting the processed motion data to the host computer through wired or wireless means. The interface circuit is arranged in the motion capture box 70 and is electrically connected with the data transmission module. The interface circuit is used to realize the electrical connection between the data transmission module and the host computer, ensuring the stability and security of data transmission.
[0062] The sensors on the motion actor are connected with the sensor receiver to ensure the normal operation of the sensors. The signal processing module is started to process the signals received by the sensor receiver, obtaining accurate motion data. The processed motion data is transmitted to the host computer through the data transmission module. The host computer controls the transparent screen 20 to display the motion actor's imitated actions in synchronization according to the received data.
[0063] The signal capture mechanism 81 is arranged in the motion capture box 70 and can accurately capture the signals emitted by the sensors on the motion actor. This design optimizes the accuracy of signal capture and effectively avoids the distortion problem of motion capture caused by signal capture errors. At the same time, the high efficiency of the signal capture mechanism 81 enables every subtle action of the motion actor to be accurately captured, thereby improving the authenticity and reliability of the motion data.
[0064] In an embodiment, referring to Figs. 1-3 The display system further comprises a monitoring display screen 90 arranged in the motion capture box 70. The monitoring display screen 90 is electrically connected with the host computer and is arranged apart from the motion capture device 80. The monitoring display screen 90 is used to display the captured motion image of the motion actor.
[0065] By setting a monitoring display screen 90 in the motion capture box 70 and electrically connecting it with the host computer, the motion actor can observe his own captured motion images in real time, so as to timely adjust the motion and improve the accuracy and efficiency of motion capture. Secondly, the application of the monitoring display screen 90 enables the motion actor to directly observe his own motion images, reducing the information transmission link and optimizing the workflow of motion capture. In the existing technology, the motion actor often needs to rely on the feedback information of the operator of the motion capture device to adjust his own motion, which not only increases the communication cost, but also is easy to cause misunderstanding, resulting in poor capture effect.
[0066] In an embodiment, please refer to Figs. 1-3 , the display system further comprises a Bluetooth microphone arranged in the motion capture box 70 and a sound 100 arranged on the outer wall of the display box 10, both of which are electrically connected with the host computer. The Bluetooth microphone is used to capture the voice of the motion actor, and the sound 100 is used to play the voice of the motion actor.
[0067] A Bluetooth microphone is arranged in the motion capture box 70, which has the characteristics of high sensitivity and low delay, and can effectively capture the voice of the motion actor. The Bluetooth microphone is fixed at a proper position inside the motion capture box 70 to facilitate the capture of the actor's voice. Its specific position and direction are carefully designed to ensure the clarity and accuracy of the sound.
[0068] A sound 100 is arranged on the outer wall of the display box 10, which has high-fidelity sound quality and is used to play the voice of the motion actor. The sound 100 is fixed at a proper position on the outer wall of the display box 10 to facilitate the transmission of the actor's voice to the audience. The position and angle of the sound 100 are carefully adjusted to ensure the uniform distribution and clarity of the sound.
[0069] The Bluetooth microphone and the sound 100 are connected with the host computer. The connection mode is wireless connection, which is realized through Bluetooth technology. The host computer has the ability to process and transmit audio signals.
[0070] The motion actor performs in the motion capture box 70, and the Bluetooth microphone captures the actor's voice in real time. The host computer receives the voice signal of the Bluetooth microphone and processes it. The processed audio signal is transmitted to the sound 100 through Bluetooth technology. The sound 100 plays the voice of the motion actor, and the audience can clearly hear the voice of the motion actor, which gives the virtual character displayed on the transparent screen 20 a voice.
[0071] The integration of the Bluetooth microphone and the sound 100 enables the display system to realize real-time voice interaction function. The voice of the motion actor can be directly played through the sound 100, enhancing the interactivity between the actor and the user and improving the user's sense of participation and immersion.
[0072] In an embodiment, please refer toFigs. 1-3 Figs. 1-3 The display system further comprises a heat sublimation printer 110 arranged on the outer wall of the display box 10 and electrically connected with the host computer; the heat sublimation printer 110 is used for printing the work image displayed on the display screen.
[0073] The heat sublimation printer 110 adopts a common thermal printing technology, one end of the heat sublimation printer 110 is provided with a printing port for outputting the printed work image, and the other end is provided with an interface electrically connected with the host computer. Under the control of the host computer, the heat sublimation printer 110 prints the work image displayed on the display screen. In actual use, the installation position of the heat sublimation printer 110 can be adjusted according to needs to adapt to the needs of different scenes.
[0074] The above merely illustrates the exemplary embodiments of the present application, and does not limit the patent scope of the present application, and any equivalent structural transformation or direct / indirect application in other related technical fields within the technical concept of the present application and the content of the present application specification and drawings are included in the patent protection scope of the present application.
Claims
1. A display system, characterized by, The display system comprises: a display box provided with an inner cavity and a door opening communicating with the inner cavity; a transparent screen installed at the door opening for displaying a virtual character; a picture frame screen pivotally connected in the inner cavity for displaying a generated work image; a signal input module provided in the display box; and a host fixed to the display box and electrically connected with the transparent screen, the picture frame screen and the signal input module, the host being configured to control the transparent screen and the picture frame screen to display corresponding images according to input information of the signal input module.
2. The display system of claim 1, wherein, The signal input module comprises: a microphone provided on an outer wall of the display box and electrically connected with the host, the microphone being configured to receive live voice and transmit the live voice to the host; and a keyboard provided on the outer wall of the display box and electrically connected with the host, the keyboard being configured to input control instructions to the host.
3. The display system of claim 2, wherein, The signal input module further comprises an operation display screen provided on the outer wall of the display box, the operation display screen being electrically connected with the host and being spaced apart from the microphone and the keyboard, the operation display screen being configured to display input information of the microphone and the keyboard.
4. The display system of claim 1, wherein, The display system further comprises a capture camera provided at a back side of the picture frame screen, the capture camera being electrically connected with the host and being spaced apart from the signal input module, the capture camera being configured to capture a user live image of a user having a painting interactive demand.
5. The display system of claim 1, wherein, The display system further comprises at least three display light sources, each of the display light sources being installed in the inner cavity and configured to provide light for the transparent screen, and the three display light sources being respectively located at a left inner wall, a right inner wall and a top inner wall of the display box.
6. The display system of claim 1, wherein, The display system further comprises a motion capture box and a motion capture device, the motion capture box being connected with the display box and being located at a side of the display box facing away from the door opening, the motion capture device being provided in the motion capture box and being electrically connected with the host, the motion capture device being configured to capture actions of an action actor imitating painting, so that the transparent screen displays a virtual character consistent with the actions of the action actor.
7. The display system of claim 6, wherein, The motion capture device comprises: a signal capture mechanism provided in the motion capture box, the signal capture mechanism being configured to capture signals emitted by sensors located on the action actor; and a data transmission mechanism provided in the motion capture box and electrically connected with the signal capture mechanism and the host, the data transmission mechanism being configured to transmit the captured signals from the signal capture mechanism to the host.
8. The display system of claim 6, wherein, The display system further comprises a monitoring display screen provided in the motion capture box, the monitoring display screen being electrically connected with the host and being spaced apart from the motion capture device, the monitoring display screen being configured to display captured action images of the action actor.
9. The display system of claim 6, wherein, The display system further comprises a Bluetooth microphone provided in the motion capture box and a sound device provided on an outer wall of the display box, the Bluetooth microphone and the sound device being electrically connected with the host, the Bluetooth microphone being configured to capture voice of the action actor, and the sound device being configured to play the voice of the action actor.
10. The display system of claim 1, wherein, The display system further comprises a heat sublimation printer, which is arranged on the outer wall of the display box and electrically connected with the host computer; the heat sublimation printer is used for printing the work image displayed by the picture frame screen.