WO2018094945A1 - Dispositif de simulation somatosensorielle ayant une fonction de génération d'odeur, et système de simulation somatosensorielle - Google Patents

Dispositif de simulation somatosensorielle ayant une fonction de génération d'odeur, et système de simulation somatosensorielle Download PDF

Info

Publication number
WO2018094945A1
WO2018094945A1 PCT/CN2017/079176 CN2017079176W WO2018094945A1 WO 2018094945 A1 WO2018094945 A1 WO 2018094945A1 CN 2017079176 W CN2017079176 W CN 2017079176W WO 2018094945 A1 WO2018094945 A1 WO 2018094945A1
Authority
WO
WIPO (PCT)
Prior art keywords
user
somatosensory
odor
circuit board
somatosensory simulation
Prior art date
Application number
PCT/CN2017/079176
Other languages
English (en)
Chinese (zh)
Inventor
彭子民
Original Assignee
深圳市行远科技发展有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 深圳市行远科技发展有限公司 filed Critical 深圳市行远科技发展有限公司
Publication of WO2018094945A1 publication Critical patent/WO2018094945A1/fr

Links

Images

Classifications

    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/011Arrangements for interaction with the human body, e.g. for user immersion in virtual reality
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63FCARD, BOARD, OR ROULETTE GAMES; INDOOR GAMES USING SMALL MOVING PLAYING BODIES; VIDEO GAMES; GAMES NOT OTHERWISE PROVIDED FOR
    • A63F13/00Video games, i.e. games using an electronically generated display having two or more dimensions
    • A63F13/25Output arrangements for video game devices
    • A63F13/28Output arrangements for video game devices responding to control signals received from the game device for affecting ambient conditions, e.g. for vibrating players' seats, activating scent dispensers or affecting temperature or light
    • A63F13/285Generating tactile feedback signals via the game input device, e.g. force feedback
    • AHUMAN NECESSITIES
    • A41WEARING APPAREL
    • A41DOUTERWEAR; PROTECTIVE GARMENTS; ACCESSORIES
    • A41D1/00Garments
    • A41D1/002Garments adapted to accommodate electronic equipment
    • AHUMAN NECESSITIES
    • A41WEARING APPAREL
    • A41DOUTERWEAR; PROTECTIVE GARMENTS; ACCESSORIES
    • A41D31/00Materials specially adapted for outerwear
    • A41D31/02Layered materials
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63FCARD, BOARD, OR ROULETTE GAMES; INDOOR GAMES USING SMALL MOVING PLAYING BODIES; VIDEO GAMES; GAMES NOT OTHERWISE PROVIDED FOR
    • A63F13/00Video games, i.e. games using an electronically generated display having two or more dimensions
    • A63F13/90Constructional details or arrangements of video game devices not provided for in groups A63F13/20 or A63F13/25, e.g. housing, wiring, connections or cabinets
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/011Arrangements for interaction with the human body, e.g. for user immersion in virtual reality
    • G06F3/014Hand-worn input/output arrangements, e.g. data gloves
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/016Input arrangements with force or tactile feedback as computer generated output to the user
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63FCARD, BOARD, OR ROULETTE GAMES; INDOOR GAMES USING SMALL MOVING PLAYING BODIES; VIDEO GAMES; GAMES NOT OTHERWISE PROVIDED FOR
    • A63F2300/00Features of games using an electronically generated display having two or more dimensions, e.g. on a television screen, showing representations related to the game
    • A63F2300/30Features of games using an electronically generated display having two or more dimensions, e.g. on a television screen, showing representations related to the game characterized by output arrangements for receiving control signals generated by the game device
    • A63F2300/302Features of games using an electronically generated display having two or more dimensions, e.g. on a television screen, showing representations related to the game characterized by output arrangements for receiving control signals generated by the game device specially adapted for receiving control signals not targeted to a display device or game input means, e.g. vibrating driver's seat, scent dispenser
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F2203/00Indexing scheme relating to G06F3/00 - G06F3/048
    • G06F2203/01Indexing scheme relating to G06F3/01
    • G06F2203/013Force feedback applied to a game

Definitions

  • the present invention relates to the technical field of human body feeling simulation, and more particularly to a body feeling simulation device and a body feeling simulation system having an odor generating function.
  • Somatosensory also known as somatosensory, is a general term for touch, pressure, temperature, pain, and proprioception (about muscle and joint position and movement, body posture and movement, and facial expression). Somatosensory technology is to simulate and monitor the sense of body, to achieve the corresponding functions or cooperation and interaction with other devices. For example, in conjunction with a scene related to a movie or a game, a vibration, a cold feeling, and the like are simulated to enhance the user's realism.
  • the current somatosensory simulation device generally combines a specific application scenario to simulate a single or a few physical senses required by the scene through the wearable device.
  • the somatosensory glove is used to simulate the touch of the hand; the somatosensory vest with the sensor is placed therein to simulate the feeling of vibration to match the needs of the game scene.
  • the control unit issues a control signal according to the correlation analysis, and controls the somatosensory simulation component of the corresponding position to perform somatosensory stimulation to implement the somatosensory simulation.
  • the conventional somatosensory simulation device can only simulate part of the feeling of the body part, such as the touch of the hand, the vibration of the chest part, etc., but does not cooperate with the feeling of other parts of the body; in particular, most of the existing body feeling simulation devices
  • the lack of functional modules that can generate odors makes the user lack the experience of odor stimulation, which also makes the user feel less realistic when experiencing the application scene, and reduces the simulation effectiveness of the somatosensory simulation device.
  • the object of the present invention is to overcome the defects of the prior art and provide a somatosensory simulation device having an odor generating function.
  • the somatosensory simulation device in the prior art performs odor stimulation only in a part of the body part of the user, thereby causing the odor stimulation to be ineffective.
  • a somatosensory simulation device having an odor generating function includes:
  • a wearable body for wrapping the entire body of the user
  • each of the plurality of somatosensory simulation components being disposed on the wearable body, each of the somatosensory simulation components including at least an odor function module for generating an odor stimulus, so that the user feels at least the odor Somatosensory stimulation
  • control unit electrically coupled to each of the somatosensory analog components for issuing one or more control commands to one or more of the somatosensory analog components.
  • the odor function module includes an odor function circuit board, an odor source provided on the odor function circuit board and electrically connected to the scent function circuit board, and can combine a plurality of fragrances, and is disposed on the scent
  • the functional circuit board is electrically coupled to the scent function circuit board to direct the odor generated by the scent source to the user's olfactory scent drain.
  • the wearable body includes a fabric having an envelope shape and covering the entire body of the user, and a gas permeable inner layer coated on the inner side of the fabric, and the plurality of the somatosensory simulation components are disposed on the gas permeable inner layer. on.
  • the wearable body includes a garment that wraps the torso of the human body and the limbs, or the wearable body includes a garment for wrapping the torso and limbs of the user, a glove attached to the garment to wrap the user's hand, and The garment is attached to wrap a foot cover of the user's foot, or the wearable body includes a garment for wrapping the torso and limbs of the user, and a hat for wrapping the user's head, or the wearable body includes a garment that wraps the user's torso and limbs, gloves that are attached to the garment to wrap the user's hand, a foot cover that is attached to the garment to wrap the user's foot, and is attached to the garment A hat that wraps the user's head.
  • the somatosensory analog component is detachable and/or the control unit is detachable.
  • the wearable body is in close contact with the entire body of the user.
  • control unit to each of the somatosensory analog components is directly connected to the control unit and each of the somatosensory analog components.
  • the electrical connection between the control unit and each of the somatosensory analog components is: the control unit is directly connected to a part of the somatosensory analog components, and is indirectly connected to the remaining part of the somatosensory analog components, wherein The indirect connection is achieved by a direct connection of the portion of the somatosensory analog component to the remaining portion of the somatosensory analog component.
  • the somatosensory stimulation component further includes one or more of the following functional modules: a vibration function module for subjecting the user's body to massage or vibration, and a tactile function module that can stimulate the user's perceptual portion to make the user tactile feedback.
  • the pain function module that allows the user to feel the painless tingling, the user's body is subjected to a thermal touch function module, and the user feels the cold touch function module of the cold touch, so that the user feels the pressure function module of the pressure feeling, so that the user feels The wind-sensing function module of the hair dryer makes the user feel the wet feeling of the moist function module.
  • the present invention also provides a somatosensory simulation system including a central processing unit and a somatosensory simulation device having an odor generating function as described above.
  • the control unit receives a control signal sent by the central processing unit and controls the somatosensory analog component to simulate a sense of body according to the preset function according to the control signal.
  • the technical effect of the somatosensory simulation device and the somatosensory simulation system having the odor generating function of the present invention is that a plurality of somatosensory simulation components are disposed in the wearable body by using the body-wrapable wearable body, thereby enabling the user to have various parts of the whole body. All can produce corresponding sense of body according to the needs of the application scene, and not only single or individual body parts receive stimulation, which greatly improves the effectiveness of the somatosensory simulation and the realism of the user experience.
  • the plurality of somatosensory simulation components can at least simulate the odor effect, when the odor body feeling simulation is performed, the odor can be generated in all parts of the user body, thereby improving the effectiveness of the odor body feeling simulation.
  • Figure 1 is a front elevational view of a somatosensory simulation device having an odor generating function of the present invention
  • Figure 2 is a rear elevational view of the somatosensory simulation device having the odor generating function of the present invention
  • FIG. 3 is a schematic view showing a somatosensory simulation device having an odor generating function in combination with a video device according to the present invention
  • FIG. 4 is a control block diagram of a somatosensory simulation device having an odor generating function according to the present invention
  • FIG. 5 is a schematic structural view of another embodiment of a wearable body of a somatosensory simulation device having an odor generating function according to the present invention
  • FIG. 6 is a schematic structural view of a somatosensory simulation component of a somatosensory simulation device having an odor generating function according to the present invention
  • FIG. 7 is a schematic structural view of a thermal function module of a somatosensory simulation device having an odor generating function according to the present invention.
  • FIG. 8 is a schematic structural view of a cold sensing function module of a somatosensory simulation device having an odor generating function according to the present invention
  • FIG. 9 is a schematic structural view of an odor function module of a somatosensory simulation device having an odor generating function according to the present invention.
  • FIG. 10 is a schematic structural view of a pressure function module of a somatosensory simulation device having an odor generating function according to the present invention
  • Figure 11 is a schematic view showing the structure of a wind function module of a somatosensory simulation device having an odor generating function according to the present invention.
  • the somatosensory simulation device 100 having the odor generating function of the present embodiment can be used alone or in combination with the video device 200, such as an ordinary home television, a computer, or a video device 200 such as a VR/AR.
  • VR is virtual reality technology, which is a computer simulation system that can create and experience virtual world. Specifically, it uses computer to generate a simulation environment, which is a multi-source information fusion interaction.
  • AR which is augmented reality technology
  • 3D models the goal of this technology is to reflect the virtual world on the screen and interact with it in the real world.
  • the somatosensory simulation device 100 having an odor generating function includes a wearable body 10, a somatosensory simulation component 20, and a control unit 30. Further description of each component of the somatosensory simulation device 100 having an odor generating function will be further described below:
  • the wearable body 10 is used to cover the entire body of the user; wherein the meaning of the whole body refers to all major parts of the body, including but not limited to the body parts covered by the usual long-sleeved tops and trousers.
  • the meaning of the package not only means covering the whole body of the user, but also contacting most parts of the user's body, so that the user can get the feeling of being surrounded and touched, so that when the user accepts the somatosensory stimulation of the somatosensory simulation component 20 provided in the wearable body 10, the user
  • the realism of the feeling is improved; in order to ensure the comfort of the user, the wearable body 10 is preferably made of an elastic material.
  • the somatosensory simulation component 20 is configured to simulate a somatosensory function according to a preset function, such as a simulated tactile sensation, a vibration sensation, a heating sensation, etc., wherein a plurality of the somatosensory simulation components 20 are disposed at different positions of the wearable body 10, It should be noted that a plurality of them are greater than or equal to two, and the meanings of the settings are that they are located on the wearable body 10 and are in contact with the wearable body 10, and may or may not be connected to the wearable body 10.
  • Each of the individual sense simulation components 20 is composed of a plurality of functional modules, thereby enabling simultaneous simulation of multiple body senses in one location.
  • each of the somatosensory simulation components 20 includes at least
  • the scent-stimulated scent function module 26 is generated to enable the user to at least feel the somatosensory stimuli of the scent, and by the odor function module 26, certain specific scent scenes can be realized, thereby expanding the application range of the sensation simulation device 100. , can improve the user experience.
  • the control unit 30 is configured to control the somatosensory simulation component 20 to simulate the body sense according to the preset function; for example, control the somatosensory simulation component 20 located in the chest and the hand to simulate the pain sense function, or control the somatosensory simulation component 20 located in the hand. Simulating the feeling of wind blowing, controlling the somatosensory simulation component 20 located at the foot simulates the feeling of wetness.
  • the control unit 30 is disposed on the wearable body 10 and electrically connected to each of the somatosensory analog components 20 respectively. In addition, the control unit 30 can also be connected to the video device 200 so that the user can feel the content of the virtual scene in a non-stimulated manner.
  • control unit may adopt a single-level mode, that is, the control unit directly controls each of the somatosensory analog components; or a multi-level mode, the control unit includes a control main unit and a control sub-unit, and the control main unit and the control sub-unit perform A wired or wireless communication connection, the control sub-unit corresponding to the control somatosensory analog component.
  • the specific architecture of the control unit can be built on an MCU, FPGA or other chip.
  • the plurality of functional modules included in the somatosensory analog component can be implemented by various types of functional sensors or other components.
  • control unit 30 is electrically coupled to each of somatosensory analog components 20 for issuing one or more control commands to one or more of somatosensory analog components 20. That is, the control unit 30 may selectively issue one or more instructions to the somatosensory analog component 20 of one or more locations under different scenarios or requirements, and may apply the same command to multiple somatosensory analog components, or may be different.
  • the somatosensory analog component 20 gets different instructions, even the same individual sense emulation component 20 gets different instructions to cause different modules to execute different instructions.
  • the wearable body 10 of the whole body is wrapped, and the plurality of somatosensory simulation components 20 are disposed on the wearable body 10, the respective body parts of the user can be generated according to the needs of the application scene. , not just single or individual body parts that accept thorns Exciting, greatly improving the effectiveness of somatosensory simulation and the realism of user experience.
  • the plurality of somatosensory simulation components 20 can at least simulate the odor effect, so that all parts of the user can feel the scent stimulation of the scent according to the demand, and the user's requirement for the scent stimulation and the real experience are ensured.
  • the odor function module 26 includes an odor function circuit board 261 disposed on the odor function circuit board 261. And electrically connected to the scent function circuit board 261 and combined with a plurality of scented scent sources 262, and disposed on the scent function circuit board 261 and electrically connected to the scent function circuit board 261 to direct the odor generated by the scent source 262 to The user smells the odor guide 263.
  • the odor function module 26 further includes a housing having an envelope structure for fixing the components, and the scent function circuit board 261 and the scent source 262 are both disposed inside the housing to be protected by the package of the housing;
  • the housing can be made of plastic to reduce its weight.
  • the scent function circuit board 261 may be a flexible circuit board, a rigid circuit board or a rigid-flex circuit board, and the scent function circuit board 261 is electrically connected to the control unit 30.
  • the scent source 262 is composed of a plurality of fragrances having different odors, such as jasmine fragrance, rose fragrance, lily fragrance, grass fragrance, apple flavor, etc.; and each fragrance is correspondingly disposed in a sealed container, and the sealed container is provided with a
  • the switching device inside thereof can be electrically opened or closed, and the switching device is electrically connected to the scent function circuit board 261 to be controlled by the scent function circuit board 261. Accordingly, when the user is required to smell the jasmine odor, the control unit 30 issues a work instruction to the scent function circuit board 261, and after receiving the relevant command, the scent function circuit board 261 holds the jasmine fragrance to the scent source 262.
  • the switch device on the sealed container issues a work command to open a sealed container containing jasmine fragrance, thereby releasing the jasmine odor to allow the user to feel the smell.
  • the control unit 30 sends a work instruction to the scent function circuit board 261, and after receiving the relevant command, the scent function circuit board 261 will hold the odor source 262.
  • the switch device on the sealed container of the jasmine fragrance and the switch device on the sealed container containing the rose fragrance respectively issue work instructions to respectively open the sealed container containing the jasmine fragrance and the sealed container containing the rose fragrance. This releases the mixed scent of jasmine and rose to make the user feel the smell.
  • the switching device An electric valve can be used. Of course, other electric switch devices can be used, so that the sealed container containing the fragrance can be opened at any time, and the corresponding odor can be quickly released.
  • the odor drain 263 is an air pump, and the air pump 273 is a micro air pump, so that the miniaturized structure can reduce the space occupation, and is convenient for carrying and easy to install; and the length range thereof is 130 mm-180 mm.
  • the width range is from 50mm to 85mm and the height range is from 100mm to 155mm.
  • the odor drain 263 is a fan, and the fan is a micro fan, so that the miniaturized structure can reduce the space occupation, and is convenient for carrying and easy to install; and at the same time, the length of the micro fan
  • the size ranges from 8mm to 20mm, the width ranges from 8mm to 20mm, and the height ranges from 2mm to 5mm.
  • the odor function module 26 includes a guide that also includes one end facing the designated position and the other end connected to the scent drain 263. Leading.
  • the odor function module 26 is provided in plurality, and the plurality of odor function modules 26 are disposed on the wearable body 10 at a position corresponding to the face or the nose of the user, so as to pass through The odor function module 26 simultaneously releases the odor concentration to meet the specified requirements, thereby ensuring that the user can clearly smell the desired odor; wherein, it should be noted that the plurality of fingers herein refers to two or more. That is, the odor function module 26 can be two, three or four, etc., and such an embodiment is also within the scope of protection of the present embodiment.
  • the plurality of scent function modules 26 are electrically connected to each other, and when the plurality of scent function modules 26 are connected, they may be directly connected or indirectly connected, for example, the indirect connection is realized by the control unit 30.
  • a preferred embodiment of the wearable body 10 in the present embodiment includes a fabric 11a having an envelope shape and covering the entire body of the user, and coating.
  • a gas permeable inner layer 12a having a gas permeable function inside the fabric 11a is provided on the gas permeable inner layer 12a.
  • the fabric 11a is mainly made of high-strength yarn and weaved by warp and weft so that the fabric 11a has a plurality of knitted mesh structures to ensure the gas permeability.
  • the fabric 11a comprises a relatively large gas permeable structure, and a relatively small gas permeable structure having a weaker gas permeability than the larger gas permeable structure.
  • the larger gas permeable structure of the fabric 11a is a good flexibility using warp knitting or weft knitting.
  • the stretch characteristic, the larger ventilating structure of the fabric 11a has a single-layer mesh structure, for example, forming a tuck organization or a mesh structure, and the structure has good gas permeability, and the fabric 11a has a large gas permeable structure.
  • the material is nylon, polyester or spandex; as for the smaller air permeable structure of the fabric 11a, the requirements for the deformation of the fabric 11a are small, and the requirements for the ventilation are small, so that only the tight material can be used, and the fabric 11a
  • the material used for the smaller venting structure is also nylon, polyester or spandex.
  • the fabric 11a further includes an in-plane ventilation structure for passing hot air or cold air in the surface of the fabric 11a; preferably, the in-plane ventilation structure is preferably a spacer fabric (mainly weft-woven fabric), which is due to both sides.
  • the in-plane ventilation structure is preferably a spacer fabric (mainly weft-woven fabric), which is due to both sides.
  • the tightness of the fabric structure is different, the two fabrics are connected by the intermediate spacer wires, and the density of the spacer filaments is small, and the ventilation effect is very good.
  • Such fabrics are very suitable for the effect of cold and hot air, and the fabrics are used in the VR part game scene.
  • the real cold air effect can be simulated by inserting a cold air nozzle on one side of the fabric.
  • the material of the gas permeable inner layer 12a is preferably a gel to ensure its skin-friendliness and gas permeability.
  • Gel also known as jelly, is a thick substance with a special elasticity between a liquid and a solid. It is formed by the process of protein, enzyme, recombinant protein, antibody, nucleic acid, etc. Biomolecules, after tens of thousands of assays and fifteen chromatography and purification, ultimately extract an object that resembles a specific result substance of human skin. Of course, the process of refining this material is very complicated. It is a combination of plant extracting molecules and natural essential oils using water regenerative properties derived composite materials.
  • the gel is a solid in liquid, its special touch is unmatched by other materials. Breathing, constant temperature, insect proof, anti-mite and high viscoelasticity and ventilation and permeability make it a rare substance. Substances with very similar properties to the skin are known as "artificial skin”.
  • the wearable body 10 includes a garment 11 that wraps the torso and limbs of the human body, i.e., includes a garment portion 12 that wraps the torso and all of the arms and wraps all of the legs.
  • the pants portion 13 in other words, the wearable body 11 may include a long-sleeved shirt and trousers, or a piece of clothing including long sleeves and trousers, thereby allowing various parts of the user's body Both can accept the relevant somatosensory stimulation to simulate the sense of body, and improve the realism of the somatosensory simulation and the user experience.
  • the wearable body 10 is a garment 11 including a torso and limbs for wrapping a user, and a glove 14 connected to the garment 11 to wrap the user's hand. And the foot cover 15 connected to the clothes 11 to wrap the user's foot.
  • the wearable body 10 is a piece of clothing composed of the clothes 11, the glove 14 and the foot cover 15. That is, not only the main parts of the general user's whole body are wrapped, but also the parts including the hands and feet are also wrapped, so that the hands and feet can simultaneously receive the same or different somatosensory stimulations with other parts of the body, further enhancing the somatosensory simulation. Realism.
  • the garment comprising the glove 14 and the foot cover 15 is in the form of an integral piece of garment that provides a better sense of somatosensory simulation, and those skilled in the art will also appreciate the use of gloves 14 Embodiments of the invention can also be implemented in the form of splits of the foot cover 15 and the garment.
  • the wearable body 10 includes a garment 11 for wrapping a torso and limbs of a user, and a hat 16 for wrapping a user's head.
  • the wearable body 10 is a one-piece garment composed of the garment 11 and the hat 16. Thereby, the user's head can also receive the same or different somatosensory stimulations with the body at the same time, further improving the realism of the user's somatosensory simulation.
  • the wearable body 10 includes a garment 11 for wrapping the torso and limbs of the user, a glove 14 attached to the garment 11 to wrap the user's hand, and The clothes 11 are connected to cover the foot cover 15 of the user's foot, and the hat 16 connected to the clothes to wrap the user's head.
  • the wearable body 10 is a combination of the clothes 11, the gloves 14, the foot cover 15 and the hat 16. Body clothes. Understandably, not only the main parts of the general user's whole body are wrapped, but also the parts including the hands, feet and head are also wrapped, so that the hands, feet and heads can receive the same or different somatosensory stimulations simultaneously with other parts of the body. To further enhance the realism of somatosensory simulation.
  • each of the somatosensory analog components 20 and each of the control units 30 are detachable. Then, when it is necessary to adjust the positions of the somatosensory simulation component 20 and the control unit 30, flexible adjustment can be performed to expand the somatosensory simulation device of the present invention having an odor generating function. Set the scope of 100 and save costs.
  • the wearable body 10 is in intimate contact with the user.
  • the pattern of the tights further enhances the fit of the wearable body 10 to the entire body of the user.
  • the somatosensory simulation component 20 performs somatosensory stimulation on various parts of the user's body, the somatosensory simulation is more effective and the user experience is more realistic.
  • a specific implementation manner of the electrical connection between the control unit 30 and each of the somatosensory analog components 20 is that the control unit 30 is directly connected to each of the somatosensory analog components 20, that is, Electrical wires are provided between the control unit 30 and each of the somatosensory analog components 20 to achieve a direct electrical connection, simplify the structure, and facilitate control.
  • control unit 30 may be one or more.
  • control unit 30 includes one main control unit and several slave control units, one main control unit being electrically connected to all of the plurality of slave control units.
  • a number of slave control units are electrically coupled directly to corresponding somatosensory analog components.
  • the electrical connection between the control unit 30 and each of the somatosensory analog components 20 is such that the control unit 30 is directly connected to a portion of the somatosensory analog component 20 and indirectly connected to the remaining portion of the somatosensory analog component 20,
  • the indirect connection is achieved by a direct connection of a portion of the somatosensory analog component 20 to the remaining portion of the somatosensory analog component 20.
  • control unit 30 is electrically connected directly to the somatosensory analog component 20 of the chest through a wire
  • somatosensory analog component 20 of the chest is directly electrically connected to the somatosensory analog component 20 of the shoulder through the wire, thereby realizing the somatosensory simulation of the control unit 30 and the shoulder. Electrical connection of assembly 20.
  • control unit 30 may be one or more.
  • control unit 30 includes one main control unit and several slave control units, one main control unit and all Directly or indirectly electrically connected from the control unit, a plurality of slave control units are electrically connected directly or indirectly to the corresponding body-sensing analog components, thereby saving the length of the wires used for electrical connection in the entire body-sensing simulator 100 having the odor generating function, simplifying the odor The structure of the functional somatosensory simulation device 100 occurs, and the failure rate due to the wire failure is reduced.
  • the somatosensory simulation component 20 includes a vibration function module 21, a tactile function module 22, and a pain function module 23.
  • the vibration function module 21 is configured to generate a body surface vibration stimulus to massage or vibrate the user's body.
  • the vibration function module 21 includes a body surface vibration function circuit board and a surface vibration function circuit board. a surface vibration component electrically connected to the surface vibration function circuit board, wherein the surface vibration function circuit board can be a flexible circuit board, a rigid circuit board or a rigid-flex circuit board, and the surface vibration function circuit board and the control unit 30 electrical connection; while the surface vibration component uses regular long-term vibration components, so as to ensure that vibration combinations of different frequencies, different time intervals and different durations can be realized, and the work can be carried out in different vibration occasions;
  • the haptic function module 22 is configured to generate a tactile stimuli by stimulating the user's sensation part to make the user haptic feedback.
  • the haptic function module 22 includes a tactile vibration function circuit board and is disposed on the tactile vibration function circuit board.
  • a tactile vibration component electrically connected to the tactile vibration function circuit board, wherein the tactile vibration function circuit board can adopt a flexible circuit board, a rigid circuit board or a rigid-flex circuit board, and the tactile vibration function circuit board is electrically connected to the control unit 30;
  • the tactile vibration component uses a vibrating component that has a short shaking time and can generate different vibration intensities to achieve different vibration intensities and durations. Accordingly, if the tactile function module 22 is placed in the wearable body 10, the end of the user's finger is wrapped. At the position of the position or other sensing parts, tactile feedback can be realized, such as making the user feel the touch, the object, the archery feedback, etc.;
  • the pain function module 23 is for generating a non-traumatic pain stimulation, so that the user is subjected to a non-invasive tingling sensation.
  • the pain function module 23 includes a tingling function circuit board and is disposed on the tingle function circuit board and The stinging function circuit board is electrically connected to the electric shock device that makes the user feel a tingling feeling by electric shock, wherein the stinging function circuit board can adopt a flexible circuit board, a rigid circuit board or a rigid-flexible circuit board, and the stinging function circuit
  • the board is electrically connected to the control unit 30; and different strengths, different pulse intervals, and different stimulation frequencies can be achieved by the electric shock device, whereby different intense short-term stimuli such as shooting and heavy hits can be simulated.
  • the somatosensory analog component 20 further includes a thermal function module 24 for generating thermal stimuli to make the body part of the user feel the thermal touch.
  • the thermal sensing function module 24 can realize the thermal touch of certain scenes, such as sudden traumatic bleeding, sudden contact with the flame, etc., thereby expanding the application range of the somatosensory simulation device 100 having the odor generating function, and improving User experience.
  • the thermal function module 24 includes a thermal function circuit board 241 and is disposed on the thermal function circuit board 241. Graphene 242 electrically connected to the thermal function circuit board 241.
  • the thermal function circuit board 241 can be a flexible circuit board, a rigid circuit board or a rigid-flex circuit board, and the thermal function circuit board 241 is electrically connected to the control unit.
  • graphene 242 since it has the advantages of high heat generation speed, high heat dissipation speed, and precise temperature range control, it is advantageous to realize far infrared heat treatment and at the same time reduce the occurrence of burns; and preferably, graphene 242
  • the sheet structure can be used, or the film structure can be used to facilitate the installation; of course, the metal heating wire can be used instead of the graphene 242 according to the actual situation, so as to reduce the production cost.
  • control unit 30 controls the operation of the graphene 242 through the thermal function circuit board 241, and after the graphene 242 operates, it rapidly generates heat to allow the user to experience thermal stimulation.
  • the entire operation process is simple and convenient.
  • the somatosensory analog component 20 further includes a cold sensing function module 25 for generating cold stimulation, Make the user's body feel a cold touch.
  • the cold sensing function module 25 the ice touch of some scenes can be realized, such as encountering ice, thereby expanding the application range of the body feeling simulation device 100 having the odor generating function and improving the user experience.
  • the cold sensing function module 25 includes a cold sensing function circuit board 251 and is disposed on the cold sensing function circuit board 251.
  • a semiconductor 252 electrically connected to the cold sensing function circuit board 251.
  • the cold sensing function circuit board 251 can be a flexible circuit board, a rigid circuit board or a rigid-flexible combination.
  • the circuit board and the cold sensing function circuit board 251 are electrically connected to the control unit 30.
  • the semiconductor 252 As a special cold source, it has the following advantages and features in technical applications:
  • the semiconductor 252 has two functions: one for cooling and the other for heating.
  • the cooling efficiency is generally not high, but the heating efficiency is very high, always greater than 1. Therefore, a separate heating system and refrigeration system can be used with one piece.
  • the semiconductor 252 is a current-transducing type piece. Through the control of the input current, high-precision temperature control can be realized. Together with the temperature detection and control means, it is easy to realize remote control, program control and computer control, and it is convenient to form an automatic control system. .
  • semiconductor 252 thermal inertia is very small, cooling and heating time is very fast, in the case of good heat dissipation at the cold end cold end no load, the power can be less than one minute, the cooling sheet can reach the maximum temperature difference.
  • the reverse use of the semiconductor 252 is temperature difference power generation, and it is generally suitable for power generation in the middle and low temperature regions.
  • the single cooling element of the semiconductor 252 has a relatively small power, and when a large power is to be obtained, a plurality of cooling elements of the same type may be used and combined into a stack by a stack or parallel connection to form a refrigeration.
  • the system whereby a larger power semiconductor 252 can be obtained.
  • This structural feature also enables the cooling power of the semiconductor 252 to be in the range of a few milliwatts to tens of thousands of watts.
  • the temperature difference of the semiconductor 252 is large, and can be realized from a positive temperature of 90 ° C to a negative temperature of 130 ° C.
  • the semiconductor 252 can preferentially adopt a sheet structure to facilitate mounting settings.
  • a heat sink and a cooling fan can be added to improve the overall cooling effect.
  • the control unit 30 controls the operation of the semiconductor 252 through the cold sensing function circuit board 251, and after the semiconductor 252 operates, it generates a cold source, so that the user experiences the cold stimulation, the whole The operation process is simple and convenient.
  • the somatosensory simulation component 20 further includes a pressure function module 27 for generating a compression feeling stimulus, Make the user feel oppressed.
  • a pressure function module 27 for generating a compression feeling stimulus, Make the user feel oppressed.
  • the pressure function module 27 includes a compression function circuit board 271, an air bag 272 disposed on the wearable body 10 and swellably squeezing the user, and An air pump 273 is provided on the compression function circuit board 271 and connected to the air bag 272 to supply the air bag 272 with a gas that expands.
  • the pressing function circuit board 271 can be a flexible circuit board, a rigid circuit board or a rigid-flex circuit board, and the pressing function circuit board 271 is electrically connected to the control unit 30.
  • the air pump 273 is a micro air pump, so that the miniaturized structure can reduce the space occupation, and is convenient for carrying and easy to install; and the length range is 130mm-180mm, and the width dimension is 50mm- 85mm, height range from 100mm to 155mm.
  • control unit 30 controls the operation of the air pump 273 through the pressing function circuit board 271, and after the air pump 273 operates, it generates gas to control the inflation of the air bag to press the user, thereby causing the user to generate A sense of oppression.
  • the somatosensory analog component 20 further includes a wind sense function module 28 for generating a wind blow feeling.
  • a wind sense function module 28 for generating a wind blow feeling.
  • the feeling of blowing in some scenes can be realized, thereby expanding the application range of the body feeling simulation device 100 having the odor generating function and improving the user experience.
  • the wind function module 28 includes a wind function circuit board 281, is disposed on the wind function circuit board 281, and is connected to the wind function circuit.
  • the plate 281 is electrically connected to the airflow generator 282 that blows the airflow to the user, and is provided to be wearable
  • the body 10 is worn with a venting structure (not shown) for the airflow generated by the airflow generator 282 to be delivered to the user's body.
  • the wind function circuit board 281 can be a flexible circuit board, a rigid circuit board or a rigid-flex circuit board, and the wind function circuit board 281 is electrically connected to the control unit 30.
  • the airflow generator 282 is a fan, and the fan is a micro fan, so that the miniaturized structure can reduce the space occupation, and is convenient for carrying and easy to install; and at the same time, the micro fan has a length range of 8 mm- 20mm, width range from 8mm to 20mm, height range from 2mm to 5mm.
  • the venting structure includes a passageway disposed on the wearable body 10 and in communication with the airflow generator 282.
  • the control unit 30 controls the operation of the airflow generator 282 through the wind function circuit board 281, and after the airflow generator 282 is activated, it generates airflow and passes through the wearable body 10.
  • the upper passage sends the airflow to the designated location, so that the user can experience the wind stimulation, and the whole operation process is simple and convenient.
  • the somatosensory simulation component 20 further includes a moisturizing device for generating moist feeling stimuli.
  • the function module 29 is to make the user feel a wet feeling. By the humidifying function module 29, some scenes in which the skin is wet can be realized, thereby expanding the application range of the body feeling simulation device 100 having the odor generating function and improving the user experience.
  • the wet function module 29 comprises a wet material applied to the wearable body 10 and can be changed from a semi-solid state to a flowable liquid state after energization, and the wet material is preferably a gel, wherein after the gel is energized, The gel changes from a semi-solid state to a flowable liquid.
  • the wet material is the same material as the gas permeable inner layer 12a coated on the wearable body 10.
  • each of the somatosensory analog components 20 and each of the control units 30 are detachable. Then the bits of the somatosensory analog component 20 and the control unit 30 need to be adjusted. At the time of the setting, flexible adjustment can be performed, and the range of application of the body feeling simulation device 100 having the odor generating function of the present invention can be expanded and the cost can be saved.
  • a somatosensory simulation system which includes a central processing unit and a somatosensory simulation device 100 having an odor generating function in each of the above embodiments.
  • the control unit 30 receives the control signal sent by the central processing unit and controls the somatosensory analog component 20 to simulate the body feeling according to the preset function according to the control information.

Landscapes

  • Engineering & Computer Science (AREA)
  • Multimedia (AREA)
  • General Engineering & Computer Science (AREA)
  • Theoretical Computer Science (AREA)
  • Human Computer Interaction (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Textile Engineering (AREA)
  • User Interface Of Digital Computer (AREA)
  • Finger-Pressure Massage (AREA)

Abstract

L'invention concerne un dispositif de simulation somatosensorielle (100) ayant une fonction de génération d'odeur, comprenant un corps pouvant être porté (10), de multiples ensembles de simulation somatosensorielle (20), et une unité de commande (30). Le corps pouvant être porté (10) est utilisé pour envelopper le corps entier d'un utilisateur ; les multiples ensembles de simulation somatosensorielle (20) sont tous disposés sur le corps pouvant être porté (10), et chaque ensemble de simulation somatosensorielle (20) comprend au moins un module de fonction d'odeur (26); l'unité de commande (30) est électriquement connectée à chaque ensemble de simulation somatosensorielle (20) séparément. Grâce à l'utilisation du corps pouvant être porté (10) qui enveloppe le corps entier, et procure les multiples ensembles de simulation somatosensorielle (20) dans le corps pouvant être porté (10), chaque zone de l'ensemble du corps de l'utilisateur peut générer une sensation somatique correspondante en fonction des exigences de scénarios d'application, mais la stimulation n'est pas limitée à une seule ou quelques parties individuelles du corps, et par conséquent, l'efficacité de simulation somatosensorielle et l'authenticité de la sensation ressentie par l'utilisateur sont considérablement améliorées. De plus, tous les multiples ensembles de simulation somatosensorielle (20) peuvent simuler au moins un effet d'odeur, de telle sorte que chaque partie de l'utilisateur peut ressentir la stimulation somatosensorielle de l'odeur, les exigences de l'utilisateur pour une stimulation d'odeur sont satisfaites et une expérience réelle est assurée.
PCT/CN2017/079176 2016-11-22 2017-03-31 Dispositif de simulation somatosensorielle ayant une fonction de génération d'odeur, et système de simulation somatosensorielle WO2018094945A1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201611048119.1 2016-11-22
CN201611048119.1A CN106406548A (zh) 2016-11-22 2016-11-22 具有气味发生功能的体感模拟装置及体感模拟系统

Publications (1)

Publication Number Publication Date
WO2018094945A1 true WO2018094945A1 (fr) 2018-05-31

Family

ID=58082230

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2017/079176 WO2018094945A1 (fr) 2016-11-22 2017-03-31 Dispositif de simulation somatosensorielle ayant une fonction de génération d'odeur, et système de simulation somatosensorielle

Country Status (2)

Country Link
CN (1) CN106406548A (fr)
WO (1) WO2018094945A1 (fr)

Families Citing this family (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106406548A (zh) * 2016-11-22 2017-02-15 深圳市行远科技发展有限公司 具有气味发生功能的体感模拟装置及体感模拟系统
CN206224387U (zh) * 2016-11-22 2017-06-06 包磊 体感模拟用具的气味发生装置
US11883739B2 (en) 2017-12-13 2024-01-30 OVR Tech, LLC Replaceable liquid scent cartridge
JP2021508132A (ja) * 2017-12-13 2021-02-25 オーヴィーアール・テック・エルエルシー 嗅覚刺激を生成するためのシステムおよび方法
US11351450B2 (en) 2017-12-13 2022-06-07 OVR Tech, LLC Systems and techniques for generating scent

Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20090289778A1 (en) * 2005-02-10 2009-11-26 Quentin King System for applying tactile stimulation to the controller of unmanned vehicles
CN103735395A (zh) * 2014-01-20 2014-04-23 东南大学 一种具有温度觉和振动觉的穿戴装置
CN105717994A (zh) * 2016-04-01 2016-06-29 京东方科技集团股份有限公司 穿戴式智能设备
CN106406548A (zh) * 2016-11-22 2017-02-15 深圳市行远科技发展有限公司 具有气味发生功能的体感模拟装置及体感模拟系统
CN106406546A (zh) * 2016-11-22 2017-02-15 包磊 具有冷触感的体感模拟装置及体感模拟系统
CN106406545A (zh) * 2016-11-22 2017-02-15 包磊 体感刺激发生装置
CN106474737A (zh) * 2016-11-22 2017-03-08 包磊 具有热触感的体感模拟装置及体感模拟系统

Family Cites Families (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US9282893B2 (en) * 2012-09-11 2016-03-15 L.I.F.E. Corporation S.A. Wearable communication platform
WO2015100482A1 (fr) * 2013-12-31 2015-07-09 Iftech Inventing Future Technology Inc. Dispositifs pouvant être portés, systèmes, procédés et architectures pour une stimulation et une manipulation sensorielles, et une acquisition de données physiologiques
CN204790729U (zh) * 2015-07-10 2015-11-18 阮恩铭 虚拟现实头盔及系统

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20090289778A1 (en) * 2005-02-10 2009-11-26 Quentin King System for applying tactile stimulation to the controller of unmanned vehicles
CN103735395A (zh) * 2014-01-20 2014-04-23 东南大学 一种具有温度觉和振动觉的穿戴装置
CN105717994A (zh) * 2016-04-01 2016-06-29 京东方科技集团股份有限公司 穿戴式智能设备
CN106406548A (zh) * 2016-11-22 2017-02-15 深圳市行远科技发展有限公司 具有气味发生功能的体感模拟装置及体感模拟系统
CN106406546A (zh) * 2016-11-22 2017-02-15 包磊 具有冷触感的体感模拟装置及体感模拟系统
CN106406545A (zh) * 2016-11-22 2017-02-15 包磊 体感刺激发生装置
CN106474737A (zh) * 2016-11-22 2017-03-08 包磊 具有热触感的体感模拟装置及体感模拟系统

Also Published As

Publication number Publication date
CN106406548A (zh) 2017-02-15

Similar Documents

Publication Publication Date Title
WO2018094934A1 (fr) Dispositif de génération de stimulation somatosensorielle
WO2018094933A1 (fr) Dispositif de simulation de sensations somatiques pouvant être porté, procédé de simulation de sensations somatiques et système de simulation de sensations somatiques
WO2018094948A1 (fr) Dispositif de simulation somatosensorielle ayant une fonction de souffle de vent, et système de simulation somatosensorielle
WO2018094935A1 (fr) Dispositif de simulation de sensation somatique donnant une sensation tactile thermique et système de simulation de sensation somatique
WO2018094999A1 (fr) Appareil de simulation somatosensorielle ayant une fonction de stimulation de rafraîchissement par air
WO2018094936A1 (fr) Dispositif de simulation de sensation somatique dont une sensation tactile de froid, et système de simulation de sensation somatique
WO2018094993A1 (fr) Dispositif de simulation de sensations somatiques
WO2018095000A1 (fr) Appareil de simulation somatosensorielle à stimulation passive
WO2018094945A1 (fr) Dispositif de simulation somatosensorielle ayant une fonction de génération d'odeur, et système de simulation somatosensorielle
WO2018094998A1 (fr) Appareil de simulation somatosensorielle ayant une fonction de stimulation de rhumatismes
WO2018094947A1 (fr) Dispositif de simulation de sensation somatique ayant une fonction de compression, et système de simulation de sensation somatique
WO2018094997A1 (fr) Appareil de simulation somatosensorielle ayant une fonction de stimulation de sensation de chaleur
WO2018094992A1 (fr) Dispositif de simulation de sensation somatique ayant une fonction de mouillage, et système de simulation de sensation somatique
CN207627896U (zh) 一种增强型移动式虚拟现实体感装置
CN207520121U (zh) 体感检测与模拟系统
CN207640968U (zh) 一种移动式虚拟现实体感装置
CN206757919U (zh) 具有暖感刺激功能的体感模拟设备
WO2018133527A1 (fr) Dispositif et procédé de détection somatosensorielle et de stimulation somatosensorielle
WO2018133523A1 (fr) Dispositif et procédé de détection somatosensorielle et de simulation somatosensorielle
CN206563941U (zh) 可穿戴的体感模拟装置及体感模拟系统
WO2018133526A1 (fr) Système et procédé de détection et de simulation somatosensorielles
CN206777832U (zh) 具有风湿刺激功能的体感模拟设备
CN206574038U (zh) 具有压迫功能的体感模拟装置及体感模拟系统
CN206660581U (zh) 体感模拟设备
CN206563940U (zh) 体感刺激发生装置

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 17873398

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 17873398

Country of ref document: EP

Kind code of ref document: A1