A device for creating and managing style prototypes through the integration of physical and virtual tools.
The apparatus integrates physical and virtual tools to enhance design verification and presentation, reducing time and cost by simulating vehicle prototypes with real-time feedback, addressing the inefficiencies of conventional mock-up models.
Patent Information
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2021-09-28
- Publication Date
- 2026-03-30
AI Technical Summary
Current design processes for vehicle exteriors and interiors face challenges in integrating physical and virtual tools to reduce time, cost, and waste associated with conventional mock-up models, while lacking an apparatus for seamless integration and presentation.
An apparatus integrating a physical support, CPU, and a display and control device with a 3D virtual or augmented reality visor, allowing for the correlation and adjustment of physical elements with digital media to simulate and present design prototypes.
Enables efficient design verification and presentation by reducing physical mock-up production, saving time and cost, and providing real-time feedback through tactile and visual integration of physical and virtual environments.
Smart Images

Figure 0007837064000001 
Figure 0007837064000002 
Figure 0007837064000003
Abstract
Description
Technical Field
[0001] The present invention relates to an apparatus for designing and / or devising, examining, and presenting solutions for prototypes of vehicle (exterior and interior), and more particularly, to an apparatus that enables a seamless connection between a physical support (including at least one floor, a pair of seats, and a front head including a steering wheel) and a digital medium.
Background Art
[0002] Since the design of the exterior (exterior) and interior (interior) of a passenger car is a fundamental aspect of sales success, the definition, creation, improvement, and presentation of the body shape and interior ergonomics pose significant challenges for designers facing new technical and stylistic issues regarding tools, especially with respect to improving and presenting models that are not appropriate from an economic and environmental perspective.
[0003] Currently, for example, in the design process of a new car, it is common practice to create a full-scale physical model in order to improve the surface shape and to present the model to engineers and customers.
[0004] To date, with the use of computers, most of the design process has been digitized, and designers can more quickly and directly control the definition and creation of the desired shape. However, there is currently no apparatus that enables designers to improve and present their projects by integrating physical tools and virtual tools in order to reduce the typical time, cost, and waste associated with creating conventional mock-up models (such as 3D prints, wooden and clay models, etc.).
Summary of the Invention
[0005] The object of the present invention is to overcome the aforementioned drawbacks. To achieve this object, the present invention relates to an apparatus for integrating physical and virtual environments for the preparation, evaluation, and presentation of a style prototype of the type defined in the preamble of claim 1. The present invention comprises a physical support, a CPU, and a display and control device, the display and control device including at least one 3D virtual or augmented reality visor (44) that can be worn by a user. The position of the physical support is correlated with the position of a movable and adjustable digital medium by a plurality of respective actuators. The CPU is configured to perform at least one of the following actions: acting on one or more actuators to adjust the position of the physical support to a predetermined position, which is set by the display and control device, and / or displaying the position of the physical support by the display and control device, which is set by acting on the actuators.
[0006] Thanks to the idea behind this solution, a single device according to the present invention can be used for improving and presenting various projects, reducing the production of physical mock-up supports that are normally required, and offering advantages in terms of cost, time, model storage space, and transportation. A further advantage of the present invention lies in providing a device that enables a reduction in the time and cost of the design process. Such a combination of physical supports and virtual models allows designers to replace physical models with almost entirely digitized design, study, and presentation models.
[0007] Furthermore, thanks to 3D virtual or augmented reality visors, the color, shape, ergonomics, and other aspects of components can be displayed, verified, presented, and, in some cases, modified in real time, ensuring a complete integration of sight and touch for the user.
[0008] In one embodiment, the display and control device may include a tablet, computer, flat screen, etc., directly or indirectly connected to the CPU, and in addition to managing the movement of physical objects, it can represent a movement layout that replicates an entire ergonomic sequence. This allows, for example, the presentation of a new car model to be shared remotely with multiple users.
[0009] In one embodiment of the present invention, the plurality of movable physical supports may include one or more of the following supports that can directly interface with a virtual reality reproduced on a display device: at least one automotive pedal positioned below the steering wheel; at least one armrest positioned laterally on one side of the seat, which may incorporate a pressure sensor suitable for providing ergonomic feedback to and from the virtual reality; and at least one switch and / or at least one screen positioned in front of the head.
[0010] In preferred embodiments of the present invention, the front head and rear head and the floor are provided with portions that support at least one of grooved rectangular areas, screw holes, and / or neodymium magnets for connecting additional functional, visual, and mock-up elements to be installed on the device. In fact, the device according to the present invention is designed as an "open" platform, that is, as a base on which various types of physical supports, such as CNC-milled foam components, additional supports, and screens, can be added to simulate the design shape and ergonomics as much as possible.
[0011] According to a further aspect of the present invention, an apparatus for creating and managing style prototypes comprises at least one manual switch for operating at least one actuator.
[0012] According to a further aspect of the present invention, the apparatus can simulate multiple configurations of a sheet, which differ from the standard design configuration of the sheet, by means of one or more further adjustment devices and / or at least one manual switch.
[0013] Furthermore, the apparatus according to the present invention preferably comprises a movable unit.
[0014] The present invention also relates to a digital medium that can interface with a 3D virtual or augmented reality visor, and is designed to connect sensation and feedback with the movement and / or adjustment of a plurality of physical supports, preferably including a floor, at least one seat, and a front head including a steering wheel. The digital medium comprises a CPU and a display and control device (44, 45, 46). The CPU is configured to display the position of the physical supports by the display and control device so as to actuate one or more actuators to adjust the position of the physical supports to predetermined positions. The predetermined positions are set by the display and control device. The positions are set by actinguating the actuators. The predetermined positions are reproductions of all components and actuators of a new or existing vehicle that reproduce the habitability, accessibility and reachability of all physical supports.
[0015] Therefore, the present invention provides an apparatus for creating and managing style prototypes that enables the user to: To consider and present the interior and exterior designs of the car during the design process, both on-site and remotely. To develop and verify ergonomics related to design, such as armrest height and the placement of instruments and cockpit screens. To present various automotive models to customers remotely using a single device, share the same experience as participants, reduce the travel distance required for design managers, and reduce the time and cost of transporting physical models around the world.
[0016] Furthermore, the present invention provides the use of a user-worn 3D virtual or augmented reality visor. The screen is connected to a CPU. The CPU is configured to perform at least one of the following actions: activating one or more actuators to adjust the position of a physical support to a predetermined position; and displaying the position of the physical support by a display and control device. The predetermined position is set by the display and control device. The position is set by activating the actuators. The predetermined position is, for example, a reproduction of a new or existing vehicle by routine movement of all components and actuators to reproduce the habitability, availability and reachability of the physical support.
[0017] The objective of this invention is to create a correlation between the real world and the digital world in order to enhance originality and communication capabilities compared to presentations using "conventional workflows."
[0018] Furthermore, the objective of the present invention is to verify the design in the early stages of the process, making the design faster and more cost-effective, and to provide a design tool that makes design development more efficient and effective.
[0019] The design process involves many steps from start to finish, with a list of "specifications" created at the end of each step. This invention makes these specifications implementable and displayable, reducing the risk of errors or misunderstandings through continuous verification, thereby enabling the establishment of a new workflow defined as a "phygital prototyping process."
[0020] Therefore, the present invention creates a dynamic, real-time correlation between physical and digital elements that enables early verification of the design, saving time and costs and making the conventional vehicle design process simpler and more flexible.
[0021] Furthermore, in the present invention, user test steps can be performed at the start of a project rather than at the end (as is usually the case). For example, the user can try out and verify ergonomics using a device that integrates the physical and virtual environments according to the present invention so that an optimal layout can be predetermined for each of various projects.
[0022] Based on the idea of this solution, digital technology can be combined with the surrounding physical environment. For example, virtual design can be enabled, animations of specific designs can be prepared, and the device according to the present invention can physically reproduce it. This new process enables simulation of the virtual design of a vehicle by mapping it to the physical environment.
[0023] Furthermore, the device according to the present invention can add only the components / limitations considered relevant to the verification of the design, making the whole more cost-effective and easier.
[0024] Furthermore, the device according to the present invention enables the user to physically view and try what they are seeing in virtual reality, transmit the content to a standard screen or tablet, and synchronize them bidirectionally. Therefore, viewers can obtain feedback on what is happening in virtual reality, and can add value to a presentation where usually only a limited number of users use VR technology.
[0025] Furthermore, in addition to visual effects, the solution according to the present invention enables the provision of tactile feedback.
Brief Description of the Drawings
[0026] The present invention will be described in detail by referring to the accompanying drawings provided merely as non-limiting examples.
[0027] [Figure 1] FIG. 1 is a schematic front perspective view of a first embodiment of a device for creating and managing a style prototype according to the present invention. [Figure 2] Figure 2 is a schematic rear perspective view of a second embodiment of the apparatus according to the present invention. [Figure 3] Figure 3 is a partial exploded view of Figure 1. [Figure 4] Figure 4 is a schematic perspective view showing details of Figure 1. [Figure 5] Figure 5 is an exploded view of Figure 4. [Figure 6] Figure 6 is an enlarged longitudinal sectional view of a part of Figure 4. [Figure 7] Figure 7 is an exploded view showing another detail of Figure 1.
Embodiments for Carrying Out the Invention
[0028] First, referring to Figure 1, an embodiment is shown that includes a floor 8 that can be moved vertically by two pairs of actuators 9, 10, 11, 12 arranged close to the corner at the end of the floor 8 for integrating a physical environment and a virtual environment for creating and managing style prototypes according to the present invention. The floor 8 is provided with a pair of front rectangular openings 22 and a pair of rear rectangular openings 23 for installing a pair of front sheets 1, 2 and a pair of rear sheets 3, 4 respectively. Each sheet 1 is provided with respective electric and adjustment devices 13 described below. The apparatus according to the present invention further includes a front head 5 including a steering wheel 6 that is also movable and adjustable, and a rear head 7 including a part of a digital medium described later.
[0029] Figure 2 shows another embodiment of the present invention. Parts that are the same or similar to those in the above-described embodiment are shown using the same reference numerals and include only a pair of sheets 1, 2. Further, Figure 2 shows a pair of automotive pedals 15, an electric device 14 for moving and adjusting the steering wheel 6, screens 46, 3D virtual or augmented reality visors 44, and tablets 45 arranged on the front head 5, which will be described below.
[0030] Referring here to Figure 3, the floor 8 has a pair of lateral portions 16 with rectangular areas carrying grooves for connecting one or more armrests 40 equipped with pressure sensors 41 suitable for providing ergonomic feedback to and from virtual reality, doors, and other additional functional elements and mockups, and an intermediate portion 48 with screw holes and / or neodymium magnets. Furthermore, the front head 5 and rear head 7 also have upper panels 17, 18 respectively, with screw holes and / or neodymium magnets for connecting additional functional and visual elements, such as a flat screen 46 shown in Figure 2. The front / rear heads 5, 7 further include a fixing frame 24 for supporting the front / rear cover net 27 and the upper panels 17, 18.
[0031] Referring further to Figure 3, each of the floor actuators 9, 10, 11, and 12 is provided with a movable bracket 19 connected to the end of the floor 8 so as to be able to be raised and lowered relative to other physical supports of the apparatus according to the present invention. Furthermore, each of the front actuators 9 and 10 is provided with axially movable supports 20 and 21 connected at the top to the lateral portion of the front head 5 for adjustment and movement. The rear head 7 includes a portion of the digital media, including a frame 24, a CPU 25, and a cover panel 26.
[0032] Figures 4, 5, and 6 show an electrical device 13 for moving and adjusting each of the seats 1, 2, 3, and 4, which can be moved and adjusted along three axes X, Y, and Z. The moving and adjusting device 13 includes a support frame 28 on which a slide 29 can move along a longitudinal slide guide 30 actuated by an actuator 31, and a support body 32 that can move laterally relative to the slide 29 along the guide 33. Inside the support body 32 are hollow elements 34, inside which are cylindrical actuators 35 that can actuate vertically along the direction of the arrows and are connected to each of the seats 1 by a plate 43.
[0033] Figure 7 shows a device for longitudinal adjustment of the steering wheel 6, comprising a portion 16 of the front head 5 that carries a coupling groove, a support 36 that is movable along a lateral guide by an actuator 38 for laterally adjusting the steering wheel 6, a pair of guides 37, and a bracket 14 that is articulated to the fixed support 36 and rotatable by an actuator 39.
[0034] The apparatus according to the present invention can be used in at least two different operating modes.
[0035] Firstly, for example, in the presentation of a new automobile model, the designer can use a computer or tablet 45 to position each of the aforementioned movable supports in relation to the technical, ergonomic, and legal layout of the vehicle. Thus, potential customers can, for example, use a 3D virtual or augmented reality visor 44 or screen 46 to view the visual features of the design, and at the same time, use appropriately positioned physical supports to try out the ergonomics and practical functionality of the current automobile's basic controls and commands.
[0036] In the second operating mode, the apparatus according to the present invention allows a designer to, for example, use a 3D virtual or augmented reality visor 44 or screen 46 to verify a predetermined configuration of the physical elements of the automobile under design, and at the same time, to test its ergonomics and style, and if necessary, the user can modify them in real time using, for example, a computer or tablet 45.
[0037] Clearly, the structural details and embodiments can be broadly modified with respect to those described and illustrated without departing from the scope of protection of the present invention as defined in the claims. Therefore, for example, the general configuration of the seat, steering wheel 6, and pedals may differ from those shown in the drawings and can be adapted to models of automobiles worldwide.
Claims
1. A device for integrating physical and virtual environments, Multiple physical supports, each movable and / or adjustable by a plurality of actuators, including a floor, at least one seat, and a front head including a steering wheel, A digital medium comprising a CPU and a display and control device, Equipped with, The CPU performs the following actions: Activating one or more of the actuators to adjust the position of the physical support to a predetermined position, wherein the predetermined position is set using the display and control device, The display and control device is configured to perform the following: the display and control device includes at least one 3D virtual or augmented reality visor worn by the user; the CPU is configured to display the position of the physical support through the display and control device; the position is set by the activation of the actuators; and the predetermined position is a reproduction of all components and actuators that reproduce the habitability, availability and reachability of the physical support. An apparatus characterized by the following features.
2. The apparatus according to claim 1, wherein the display and control device comprises a tablet, computer, or flat screen directly or indirectly connected to the CPU, and is capable of managing the movement of physical objects, as well as representing a movement layout that reproduces an entire ergonomic sequence.
3. The plurality of movable physical supports include one or more supports that can directly interface with the virtual reality reproduced on the display and control device, The aforementioned support is At least one automotive pedal located below the steering wheel, One of the armrests positioned laterally on one side of the seat may incorporate a pressure sensor suitable for providing ergonomic feedback between the seat and virtual reality. At least one switch and / or at least one screen located on the front head, including, The apparatus according to claim 1 or claim 2, characterized in that
4. Equipped with a rear head, The floor, the front head and the rear head are for the combination of additional functional, visual, and mock-up elements installed in the apparatus. A rectangular area with a groove, screw hole, Neodymium magnets, It comprises a part that carries at least one of the following, The apparatus according to any one of claims 1 to 3, characterized in that
5. The apparatus according to any one of claims 1 to 4, characterized by comprising at least one manual switch for operating at least one of the actuators.
6. The apparatus according to claim 5, characterized in that the apparatus can simulate multiple configurations of the sheet, which differ from the standard design configuration of the sheet, by means of one or more further adjustment devices.
7. A digital medium which can interface with a 3D virtual or augmented reality visor, is designed to connect sensation and feedback with the movement and / or adjustment of a plurality of physical supports, the plurality of physical supports including a floor, at least one seat, and a front head including a steering wheel, the digital medium comprises a CPU and a display and control device, the CPU performs the following operations Activating one or more actuators to adjust the position of the physical support to a predetermined position, wherein the predetermined position is set by the display and control device, It is configured to perform, The CPU is configured to display the position of the physical support through the display and control device, the position is set by operating the actuator, and the predetermined position is a reproduction of all components and actuators that reproduce the habitability, usability and reachability of the physical support. A digital medium characterized by the following features.
8. The digital medium according to claim 7, characterized in that the display and control device includes at least one 3D virtual or augmented reality visor that can be worn by one or more users.
9. A method for using a 3D virtual or augmented reality visor that can be worn by a user, wherein the screen is connected to a CPU, and the CPU performs the following operations Activating one or more actuators to adjust the position of a physical support to a predetermined position, wherein the predetermined position is set by a display and control device, It is configured to perform, The CPU is configured to display the position of the physical support through the display and control device, and the position is set by operating the actuator. The predetermined position is a reproduction of a new or existing vehicle, through the movement routines of all components and actuators, that reproduce the habitability, usability, and accessibility of the physical support. A method for using a 3D virtual or augmented reality visor, characterized by the following features.
Citation Information
Patent Citations
Simulation setup and method for simulating a vehicle interior
DE102013021138A1
Cockpit Pilot-Vehicle interface evaluation system
KR1020170084855A
Method for operating a virtual reality system, and virtual reality system
US20190004315A1
Programmable vehicle model
US6371766B1
System and method of subjective evaluation of a vehicle design within a virtual environment using a virtual reality
US7761269B1