Intelligent interaction glove and intelligent interaction system
By designing intelligent interactive gloves, using the technology of simultaneous operation of multi-finger and thumb touch linkage, the existing intelligent interactive gloves are solved, and efficient and accurate text input and multi-functional command feedback are achieved.
Patent Information
- Application Number
- CN202420939780.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-04-30
- Publication Date
- 2025-05-20
- Estimated Expiration
- 2034-04-30
AI Technical Summary
The existing smart interactive gloves are inefficient in typing and are prone to mist touching, which cannot meet the requirements of fast typing and communication.
An intelligent interactive glove is designed, including a first glove body, a second glove body, an intelligent controller and multiple touch controls. By setting the first touch control to cooperate with at least one of the little finger, ring finger, middle finger and index finger, multiple fingers can be simultaneously operated, and the second touch control is linked with the thumb touch, so as to realize the control function of the mouse cursor and the text input function.
It effectively improves typing efficiency, reduces the chance of accidentally touching when fingers are moved, improves the working reliability of smart interactive gloves and the accuracy of typing input, and is suitable for long-term wear and interaction with AR glasses.
Smart Images

Figure CN222887758U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of intelligent interaction devices, and more particularly, to an intelligent interaction glove and an intelligent interaction system. Background Art
[0002] With the development of modern electronic technology, more and more intelligent wearable electronic products have entered the daily life of the general public. Among these intelligent wearable products, devices developed along the three technical routes of VR (Virtual Reality), AR (Augmented Reality), and MR (Mixed Reality) have become the mainstream products in this consumer market.
[0003] The core of AR technology is to implant some virtual effects on the basis of the real world. For example, presenting virtual three-dimensional objects and other elements on a mobile phone or other electronic screen, allowing users to easily observe virtual information content in the real world. Among them, intelligent wearable glasses (AR glasses) are the most important products in the AR industry; by wearing AR glasses, users can easily and intuitively experience and perceive the overlap and interaction between the virtual world and the real world.
[0004] Human-computer interaction is an extremely important part of AR devices. In most electronic products, keyboards and mice are the most common input tools, and especially the keyboard is the core input device. However, existing keyboards and mice are not easy to carry. Therefore, in AR products, in order to achieve an effect similar to that of keyboards and mice, gesture capture technologies are generally adopted, and users can issue commands to relevant AR devices through hand movements.
[0005] Currently in the market, there are several different technical routes to achieve the tracking and recognition of users' hand movements. For example, gesture recognition through cameras, motion capture or button input through VR controllers or gloves, and hand tracking through EMG sensor bracelets, etc.; however, the related AR interaction devices currently on the market all have various degrees of related defects; especially the existing intelligent gloves are mostly thick and heavy, and due to the inclusion of various types of sensors, their volume is large and power consumption is high, and their many defects cannot adapt to the lightweight features of AR products, resulting in poor user experience.
[0006] One of the most important functions of a keyboard is to input text through an input method. However, since the commonly used 26-key input method requires a large number of keys, it cannot be directly transplanted onto a smart glove. The commonly used design concept based on the 9-key input method has fewer keys, so it is used more on smart gloves. In addition, in order to achieve functions such as cursor control in a mouse, most existing intelligent interaction products use joysticks and gesture recognition solutions. These technical routes and solutions all have defects to varying degrees. For example, the handle joystick is too heavy, gesture recognition is not accurate enough and consumes a lot of effort, etc.
[0007] In the prior art, there are some intelligent interaction gloves that can realize text input and control. For example, CN2706973Y discloses a finger-pinching glove mobile phone. According to the knuckle partitions of a person's fingers, the common nine keys of a mobile phone are integrated on the knuckles of the other fingers of the glove except the thumb, and the thumb is used to press the keys to achieve text input. However, in the above solution, the keys are easily accidentally touched as the fingers move, resulting in inefficient manual input. At the same time, when operating with one hand, multiple keys are only controlled by the pressing of the thumb, and the pressing efficiency of a single finger is low, which cannot meet the requirements of actual fast typing and communication. Utility Model Content
[0008] The present utility model provides an intelligent interaction glove and an intelligent interaction system to solve the problems of low typing efficiency and easy accidental touch of the intelligent interaction gloves in the prior art.
[0009] To solve the above problems, according to one aspect of the present utility model, there is provided an intelligent interaction glove, including: a first glove body sleeved on at least a part of the palm of a human hand; a second glove body sleeved on the index finger and / or middle finger of a human hand; an intelligent controller disposed on the first glove body; a plurality of first touch controls spaced apart on the part of the first glove body located at the palm of the human hand; the number of the plurality of first touch controls is less than or equal to nine, and each is electrically connected to the intelligent controller; at least one second touch control disposed on the second glove body; the second touch control is electrically connected to the intelligent controller; wherein, on the same human hand, the second touch control is touched by the thumb, and the first touch controls are touched by at least one of the little finger, ring finger, middle finger and index finger, and the first touch controls and the second touch control respectively input information to the intelligent controller.
[0010] Further, the number of the first touch controls is two, four, six or eight; taking the direction from the wrist of the human hand to the fingertip of the middle finger as the first direction, and taking the direction parallel to the palm plane of the human hand and perpendicular to the first direction as the second direction, in the first direction, an even number of first touch controls are arranged at intervals in a row, and / or, in the second direction, an even number of first touch controls are arranged at intervals in a column to form an arrangement matrix; wherein, the number of rows of the arrangement matrix is less than the number of columns, so that the extending direction of the maximum dimension of the arrangement matrix is parallel to the second direction.
[0011] Further, the number of the first touch controls is eight, the number of rows of the arrangement matrix is two, and the number of columns of the arrangement matrix is four. The two first touch controls in the first column are arranged corresponding to the index finger, the two first touch controls in the second column are arranged corresponding to the middle finger, the two first touch controls in the third column are arranged corresponding to the ring finger, and the two first touch controls in the fourth column are arranged corresponding to the little finger. The distance between the first column and the second column is L1, the distance between the root of the index finger and the root of the middle finger is L2, and L1 is adapted to L2; the distance between the second column and the third column is L3, the distance between the root of the middle finger and the root of the ring finger is L4, and L3 is adapted to L4; the distance between the third column and the fourth column is L5, the distance between the root of the ring finger and the root of the little finger is L6, and L5 is adapted to L6.
[0012] Further, the number of the first touch controls is two, four, six or eight; taking the direction from the fingertip to the root of the index finger as the first radial direction, taking the direction from the fingertip to the root of the middle finger as the second radial direction, taking the direction from the fingertip to the root of the ring finger as the third radial direction, and taking the direction from the fingertip to the root of the little finger as the fourth radial direction, an even number of first touch controls are arranged at intervals along at least one of the first radial direction, the second radial direction, the third radial direction and the fourth radial direction.
[0013] Further, the number of the first touch controls is eight, and two first touch controls are arranged at intervals on each of the first radial direction, the second radial direction, the third radial direction and the fourth radial direction.
[0014] Further, the first touch control and / or the second touch control adopts a flexible curved surface touch film or a pressing button; the keycap of the pressing button adopts a waterproof flexible material.
[0015] Further, the second glove body is sleeved on the index finger of the human hand; the second glove body has an outer peripheral surface arranged around the index finger, the part of the outer peripheral surface facing the palm is the inner surface, and the part of the outer peripheral surface facing the thumb is the side surface, and the second touch control is arranged on the inner surface and / or the side surface.
[0016] Further, there are at least two second touch controls, two of which are both push buttons and are spaced along the direction from the base to the tip of the index finger; or, there are at least two second touch controls, one of which is a flexible curved surface touch film, and the touch surface of the flexible curved surface touch film extends along the direction from the base to the tip of the index finger.
[0017] Further, the intelligent interaction glove further includes a power supply battery and a wireless transmitter; the power supply battery and the wireless transmitter are respectively arranged on the first glove body; the power supply battery is electrically connected to the intelligent controller, the first touch control and the second touch control respectively for providing electric energy; the wireless transmitter is electrically connected to the intelligent controller for wirelessly transmitting data; and / or, the intelligent interaction glove further includes a speaker, and the speaker is electrically connected to the intelligent controller for broadcasting the text information converted by the intelligent controller.
[0018] Further, the power supply battery is a flexible battery; at least one of the circuits of the power supply battery electrically connected to the intelligent controller, the circuit of the power supply battery electrically connected to the first touch control, the circuit of the power supply battery electrically connected to the second touch control, the circuit of the wireless transmitter electrically connected to the intelligent controller, the circuits of the plurality of first touch controls respectively electrically connected to the intelligent controller, and the circuit of the second touch control electrically connected to the intelligent controller is a flexible circuit; the wireless transmitter includes a Bluetooth transmitter and / or a WIFI transmitter.
[0019] Further, the seams of the first glove body and / or the second glove body are sealed with liquid silicone; the outside of the first glove body and / or the second glove body has a superhydrophobic nano coating or an aluminum-magnesium alloy particle reinforced coating; the intelligent controller is located inside the first glove body and is sealed with an epoxy resin material; and / or, the part of the first touch control located inside the first glove body is sealed with an epoxy resin material; and / or, the part of the second touch control located inside the second glove body is sealed with an epoxy resin material.
[0020] Further, the first glove body and / or the second glove body includes an outer layer facing the outside and an inner layer in contact with the human hand. The outer layer is made of polytetrafluoroethylene material or polyolefin material, and the inner layer is made of polyurethane material; the first glove body and / or the second glove body further includes a waterproof layer located between the outer layer and the inner layer, and the waterproof layer is made of polybutene material; or, the waterproof layer is made of a micro-nano level waterproof microporous membrane.
[0021] According to another aspect of the present invention, there is provided an intelligent interaction system. The intelligent interaction system includes the above-mentioned intelligent interaction glove; the intelligent interaction system further includes an intelligent terminal, the intelligent terminal has a screen for displaying information, and the intelligent terminal is electrically connected to the intelligent interaction glove for information transmission.
[0022] Furthermore, the intelligent terminal includes at least one of a computer, a mobile phone, smart glasses and an electronic display.
[0023] Applying the technical solution of the utility model, the utility model provides a smart interactive glove, including: a first glove body, which is mounted on at least a part of the palm of a human hand; a second glove body, which is mounted on the index finger and / or middle finger of the human hand; an intelligent controller, which is arranged on the first glove body; a plurality of first touch components, which are arranged at intervals on the palm portion of the first glove body located on the human hand; the number of the plurality of first touch components is less than or equal to nine, and they are electrically connected to the intelligent controller respectively; at least one second touch component, which is arranged on the second glove body; the second touch component is electrically connected to the intelligent controller; wherein, on the same human hand, the second touch component is touched by the thumb, and the first touch component is touched by at least one of the little finger, ring finger, middle finger and index finger, and the first touch component and the second touch component respectively input information to the intelligent controller.
[0024] The utility model realizes multi-finger simultaneous operation by setting the first touch control unit to cooperate with at least one of the little finger, ring finger, middle finger and index finger. After the multiple first touch controls are subsequently set to the input logic similar to the nine-key input method, multi-finger linkage fast typing can be realized, thereby effectively improving typing efficiency; by setting the second touch control unit to be linked with the thumb touch control, when the thumb is used to slide and touch the second touch control unit, both the control function of the mouse cursor and the sliding switching and directional selection of the target can be realized; in addition, the second touch control unit can also realize the text input function, and by cooperating with the multiple first touch controls, simultaneous and efficient text input and output can be realized; the utility model realizes multiple The first touch control groups are arranged at intervals in the palm part of the first glove body located on the human hand, which is different from the existing technical solution of setting the touch control on the finger knuckles. It not only effectively reduces the probability of accidental touch during finger movement, but also allows multiple first touch control groups to be effectively protected by the palm, thereby improving the working reliability of the smart interactive gloves and the accuracy of typing input; the smart interactive gloves proposed by the utility model can be worn by users for a long time, and can be used as a keyboard for interaction with AR glasses, thereby realizing multi-functional command feedback; the smart interactive gloves proposed by the utility model avoid many defects existing in existing smart interactive devices, are flexible and efficient in control, and are comfortable and convenient to wear, and are suitable for large-scale promotion and use. Brief Description of the Figures
[0025] The drawings constituting part of this application are used to provide a further understanding of the utility model. The illustrative embodiments of the utility model and their descriptions are used to explain the utility model and do not constitute an improper limitation on the utility model. In the drawings:
[0026] Figure 1Shows the specific structural schematic diagram of the intelligent interaction glove provided by the embodiment of the present utility model from the front view angle;
[0027] Figure 2 Shows Figure 1 Partial structural schematic diagram of the position of the second touch control in;
[0028] Figure 3 Shows the external structural schematic diagram of the intelligent interaction glove provided by the embodiment of the present utility model from the back view angle;
[0029] Figure 4 Shows the cooperation working schematic diagram of the second touch control and the thumb provided by the embodiment of the present utility model;
[0030] Figure 5 Shows the specific structural schematic diagram of the first touch control in the intelligent interaction glove provided by the embodiment of the present utility model;
[0031] Figure 6 Shows the external structural schematic diagram when the finger controls the first touch control to input provided by the embodiment of the present utility model;
[0032] Figure 7 Shows the display interface schematic diagram when the finger controls the first touch control to input provided by the embodiment of the present utility model;
[0033] Figure 8 Shows the external structural schematic diagram when the thumb controls the second touch control to slide and switch provided by the embodiment of the present utility model;
[0034] Figure 9 Shows the display interface schematic diagram when the thumb controls the second touch control to slide and switch provided by the embodiment of the present utility model.
[0035] Among them, the above-mentioned drawings include the following reference numerals:
[0036] 10. First glove body;
[0037] 20. Second glove body;
[0038] 30. Intelligent controller;
[0039] 40. First touch control;
[0040] 50. Second touch control. Detailed implementation manners
[0041] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of them. The following description of at least one exemplary embodiment is actually only illustrative and is by no means a limitation on the utility model and its application or use. Based on the embodiments of the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.
[0042] If Figures 1 to 9 As shown, an embodiment of the utility model provides a smart interactive glove, comprising: a first glove body 10, which is mounted on at least a part of the palm of a human hand; a second glove body 20, which is mounted on the index finger and / or middle finger of the human hand; a smart controller 30, which is arranged on the first glove body 10; a plurality of first touch components 40, which are arranged at intervals on the palm portion of the first glove body 10 located on the human hand; the number of the plurality of first touch components 40 is less than or equal to nine, and they are electrically connected to the smart controller 30 respectively; at least one second touch component 50, which is arranged on the second glove body 20; the second touch component 50 is electrically connected to the smart controller 30; wherein, on the same human hand, the second touch component 50 is touched by the thumb, and the first touch component 40 is touched by at least one of the little finger, ring finger, middle finger and index finger, and the first touch component 40 and the second touch component 50 respectively input information to the smart controller 30.
[0043] The utility model realizes multi-finger simultaneous operation by setting the first touch part 40 to cooperate with at least one of the little finger, ring finger, middle finger and index finger. By setting the second touch part 50 to be linked with the thumb touch, when the thumb is used to slide and touch the second touch part 50, it can realize the control function of the mouse cursor and the sliding switching and directional selection of the target; the intelligent interactive gloves proposed by the utility model avoid many defects existing in existing intelligent interactive devices, have flexible and efficient control, are comfortable and convenient to wear, and are suitable for large-scale promotion and use.
[0044] After setting multiple first touch controls 40 to an input logic similar to that of a nine-key input method subsequently, multi-finger linkage for fast typing can be achieved, thereby effectively improving typing efficiency. In addition, the second touch control 50 can also implement a text input function. By cooperating with multiple first touch controls 40, simultaneous and efficient text input and output can be realized. In the present utility model, multiple first touch controls 40 are spaced apart and arranged on the palm part of the first glove body 10 corresponding to the human hand. Different from the existing technical solution of setting touch controls on finger joints, it not only effectively reduces the probability of accidental touch during finger movement, but also enables multiple first touch controls 40 to be effectively protected by the palm, thereby improving the working reliability of the intelligent interaction glove and the accuracy of typing input. The intelligent interaction glove proposed by the present utility model allows users to wear it for a long time and can be used as a keyboard for interacting with AR glasses, thereby realizing multi-functional command feedback.
[0045] In a specific embodiment of the present utility model, no switches or buttons are provided on the back of the first glove body 10 of the intelligent interaction glove, and this part only serves for binding and fixing. Such a setting improves the aesthetics and wearing comfort of the intelligent interaction glove. In addition, the intelligent interaction glove may include adjustable waterproof straps. These waterproof straps are made of waterproof rubber materials and are connected to the first glove body 10 and / or the second glove body 20, ensuring comprehensive waterproofing from the wrist to the fingers and realizing reliable fixation of the intelligent interaction glove on the human hand.
[0046] In another specific embodiment of the present utility model, as Figure 3 shown, to achieve the design concept of maximizing lightness and comfort, the fabric area of the back of the first glove body 10 will be reduced. The material of the back part uses a fabric with breathability, lightness, and elasticity to make (for example: polyester fiber). The elastic property of the fabric used on the back can minimize the required fabric area while fixing the intelligent interaction glove on the palm. The above design can reduce the overall weight of the intelligent interaction glove to a certain extent, leaving only a very small part of the user's back covered by the fabric, improving the usage experience during long-term wearing.
[0047] As Figure 1 、 Figure 5 and Figure 6As shown, the number of the first touch controls 40 is two, four, six or eight; taking the direction from the wrist of a human hand pointing to the fingertip of the middle finger as the first direction, and taking the direction parallel to the palm plane of the human hand and perpendicular to the first direction as the second direction, in the first direction, an even number of the first touch controls 40 are arranged at intervals in a row, and / or, in the second direction, an even number of the first touch controls 40 are arranged at intervals in a column to form an arrangement matrix; wherein, the number of rows of the arrangement matrix is less than the number of columns, so that the extension direction of the maximum size of the arrangement matrix is parallel to the second direction.
[0048] By arranging an even number of the first touch controls 40 to form an arrangement matrix, it is convenient for multiple fingers to operate multiple first touch controls 40 simultaneously; by setting the number of rows of the arrangement matrix to be less than the number of columns, the extension direction of the maximum size of the arrangement matrix is parallel to the second direction, thereby making the size setting of the arrangement matrix more in line with the general size of the human palm and improving the use comfort and convenience.
[0049] As Figure 1 、 Figure 5 and Figure 6 shown, the number of the first touch controls 40 is eight, the number of rows of the arrangement matrix is two, the number of columns of the arrangement matrix is four, two first touch controls 40 in the first column are arranged corresponding to the index finger, two first touch controls 40 in the second column are arranged corresponding to the middle finger, two first touch controls 40 in the third column are arranged corresponding to the ring finger, two first touch controls 40 in the fourth column are arranged corresponding to the little finger, the distance between the first column and the second column is L1, the distance between the root of the index finger and the root of the middle finger is L2, and L1 is adapted to L2; the distance between the second column and the third column is L3, the distance between the root of the middle finger and the root of the ring finger is L4, and L3 is adapted to L4; the distance between the third column and the fourth column is L5, the distance between the root of the ring finger and the root of the little finger is L6, and L5 is adapted to L6.
[0050] By setting L1 to be adapted to L2, L3 to be adapted to L4, and L5 to be adapted to L6, the first touch controls 40 can be touched by the little finger, the ring finger, the middle finger and the index finger respectively at the same time, thereby maximizing the typing efficiency.
[0051] It should be noted that: in a specific embodiment of the present invention, as Figure 5 and Figure 6As shown in the figure, the characters and functions corresponding to the eight first touch controls 40 are as follows: for the two first touch controls 40 in the first column, the first touch points correspond to "2", "A", "B", and "C"; the second touch points correspond to "6", "M", "N", and "O"; for the two first touch controls 40 in the second column, the first touch points correspond to "3", "D", "E", and "F"; the second touch points correspond to "7", "P", "Q", "R", and "S"; for the two first touch controls 40 in the third column, the first touch points correspond to "4", "G", "H", and "I"; the second touch points correspond to "8", "T", "U", and "V"; for the two first touch controls 40 in the fourth column, the first touch points correspond to "5", "J", "K", and "L"; the second touch points correspond to "9", "W", "X", "Y", and "Z". Of course, for the specific characters corresponding to the eight buttons (the first touch controls 40), the user can also make software-level modifications and adjustments according to their own habits.
[0052] In addition, in order to facilitate the user to correspondingly control the eight buttons (the first touch controls 40), identification marks can be added to the surfaces of the buttons to facilitate the user to input corresponding characters according to the marks; in the specific use process of the present utility model, it can be set that when the number 1 key, the number 4 key corresponding to the two first touch controls 40 and the second touch control 50 (flexible touch touch layer) are held down simultaneously for 2 seconds, the intelligent interaction glove will be turned on, and the shutdown method is the same.
[0053] Optionally, the number of the first touch controls 40 is two, four, six, or eight; taking the direction from the fingertip to the finger root of the index finger as the first radial direction, the direction from the fingertip to the finger root of the middle finger as the second radial direction, the direction from the fingertip to the finger root of the ring finger as the third radial direction, and the direction from the fingertip to the finger root of the little finger as the fourth radial direction, an even number of first touch controls 40 are arranged at intervals along at least one of the first radial direction, the second radial direction, the third radial direction, and the fourth radial direction.
[0054] By arranging an even number of first touch controls 40 at intervals along at least one of the first radial direction, the second radial direction, the third radial direction, and the fourth radial direction, the position setting of the first touch controls 40 is more in line with the finger bending law, and the first touch controls 40 can be touched by natural finger bending, thereby improving the use comfort.
[0055] Specifically, the number of the first touch controls 40 is eight, and two first touch controls 40 are arranged at intervals along the first radial direction, the second radial direction, the third radial direction, and the fourth radial direction respectively. With this setting, the first touch controls 40 can be touched by the little finger, the ring finger, the middle finger, and the index finger respectively, thereby maximizing the typing efficiency.
[0056] Specifically, the first touch control 40 and / or the second touch control 50 adopt a flexible curved surface touch film or a pressing button; the keycap of the pressing button adopts a waterproof flexible material.
[0057] By setting the first touch control 40 and / or the second touch control 50 to adopt a flexible curved surface touch film, the first touch control 40 and / or the second touch control 50 are more sensitive to touch and the overall quality is lighter; by setting the first touch control 40 and / or the second touch control 50 to adopt a pressing button, the feedback to the human body during pressing is better, which is convenient for users to type quickly and accurately; in addition, it should be noted that: the touch of the flexible curved surface touch film is more sensitive than that of the pressing button, so the probability of accidental touch will increase. Therefore, the structures of the first touch control 40 and the second touch control 50 can be flexibly selected according to actual usage requirements.
[0058] It should be noted that: in the specific design of the pressing button, according to the design concept of ergonomics, in order to enable the user to more easily press the button inside the palm in a clenched fist state; the area, vertical spacing and spatial distribution of each button in the flexible keyboard formed by the pressing button or the flexible curved surface touch film can be flexibly adjusted and adapted; based on the different touch areas of different fingertips when actually pressing the button, the actual volume of different buttons will be determined by the size of the corresponding finger; for example: the touch area required by the little finger is significantly smaller than that of the middle finger, so the areas of the two buttons under the little finger can be reduced according to the actual situation; based on the different hand shapes and finger thicknesses of the user, the specific shape of the intelligent interaction glove will also be adjusted accordingly; while ensuring the input accuracy, the area of multiple buttons protruding from the palm part can be reduced, thereby improving the wearing comfort of the user during long-term use.
[0059] In addition, in a specific embodiment of the present utility model, the shape of the pressing button is oval; the oval shape effectively reduces the surface area compared with the traditional square button. The button keycap can be made of a flexible material with waterproof properties, such as a material mainly composed of liquid silicone and thermoplastic polyurethane rubber; such materials have good performance in terms of flexibility, stretchability, corrosion resistance and sealing performance, and can ensure sufficient comfort and meet frequent use in complex scenarios.
[0060] It should be noted that: in a specific embodiment of the present utility model, several conductive film-formed finger-ring-shaped contacts are bonded to the bottom of the pressing button, and the micro-pressure generated by the collision of the ring-shaped contacts can connect the contact circuit. The ring-shaped contacts are connected to the intelligent controller 30 through a conductive circuit. The conductive circuit is a strip-shaped conductive film pasted on the back of the intelligent interaction glove. The intelligent controller 30 is installed on the back of the first glove body 10 and is used to receive, process and send the signals generated by the connection of the ring-shaped contacts.
[0061] Such as Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 、Figure 5 and Figure 6 As shown in Figure 6 , the second glove body 20 is sleeved on the index finger of a human hand; the second glove body 20 has an outer peripheral surface arranged around the index finger, the part of the outer peripheral surface facing the palm is the inner surface, and the part of the outer peripheral surface facing the thumb is the side surface, and the second touch control 50 is arranged on the inner surface and / or the side surface. By arranging the second touch control 50 on the inner surface and / or the side surface, it is more convenient for the thumb to directly control, thereby improving the control efficiency and use convenience.
[0062] In a specific embodiment of the present invention, the second glove body 20 is a finger sleeve structure, sleeved on the index finger of a human hand. The main body part of the finger sleeve structure and the main body of the first glove body 10 are made of the same fiber soft fabric and are directly stitched and connected; the second touch control 50 includes a flexible curved surface touch control film, so that the touch function of the intelligent interaction glove is concentrated on the outer layer of the finger sleeve structure; the touch control electrodes arranged below the surface layer of the flexible curved surface touch control film can recognize actions such as clicking and dragging after the finger touches.
[0063] It should be noted that: the surface layer part of the flexible curved surface touch control film is composed of flexible fibers coated with a conductive coating; at the four corners of the conductive coating, there are probes composed of conductive fibers. Based on the voltage triangulation method, by recognizing the different probe voltage changes after the finger touches, the flexible curved surface touch control film can recognize actions such as clicking and sliding of the hand; the flexible curved surface touch control film uses conductive fibers as wires, which can minimize the thickness of the touch area of the finger sleeve structure (the second glove body 20) and enhance the elasticity of the finger sleeve structure, further improving the extensibility, flexibility and comfort of the finger sleeve structure.
[0064] Optionally, there are at least two second touch controls 50. Two of the second touch controls 50 are both push buttons, and are arranged at intervals along the direction from the finger root to the fingertip of the index finger; or, there are at least two second touch controls 50, and one of the second touch controls 50 is a flexible curved surface touch control film, and the touch surface of the flexible curved surface touch control film extends along the direction from the finger root to the fingertip of the index finger.
[0065] In a specific embodiment of the present invention, the second touch control 50 includes three push buttons, all arranged at the index finger position. One push button is arranged at the bottom of the side surface and is set as a delete key; one push button is arranged in the middle of the side surface and is set as a confirmation key; one push button is arranged at the top of the side surface and is set as a right swipe key; of course, for the specific characters corresponding to the three buttons, the user can modify and adjust according to their own habits.
[0066] In addition, in order to facilitate the user to correspondingly control the three push buttons (the second touch control 50), identification marks can be added to the surface of the buttons, so as to facilitate the user to input corresponding characters according to the marks.
[0067] In another specific embodiment of the present utility model, as Figure 8 and Figure 9 shown, the second touch control 50 includes a flexible curved surface touch film. It is set that after the thumb contact touches the touch layer of the flexible curved surface touch film and slides to the left, it will select to the left on the display screen; after the thumb contact touches the touch layer and slides to the right, it will select to the right on the display screen; after the thumb contact touches the touch layer and double-clicks quickly twice, it will be recognized as confirmation on the display screen;
[0068] When the thumb double-clicks the confirmation key within 0.3 seconds, the intelligent interaction glove will enter an intelligent answering mode. This mode uses pre-installed language processing software to analyze the current conversation environment and automatically generate answer options consistent with the user's conversation habits; the intelligent answering mode predicts the user's possible language responses through a built-in large neural network model and displays these predicted responses in the associated word area of the user interface for the user to quickly select, thereby improving the communication efficiency; in the intelligent answering mode, the device will record the user's selection and input habits to train the language model to more accurately match the user's language style and word usage habits, so that the generated answers are more natural and personalized; the intelligent answering mode also includes a dynamic update function, which can download the latest language model and dictionary updates through a wireless network to ensure the timeliness and relevance of the answers; this mode has an adaptive adjustment algorithm that can automatically adjust the answer generation strategy according to the user's feedback. For example, after the user frequently selects or modifies certain associated words, the system will optimize the prediction accuracy of these words; the intelligent answering mode supports multi-language processing capabilities and can provide intelligent answering services in the corresponding language according to the user's set language preference, increasing the usage range of the device and the convenience of the user; when providing intelligent answers, this mode will analyze the context environment of the current conversation, analyze the keywords and sentence structures in the conversation to generate answer options that match the context; the user can trigger specific answer templates by setting keywords, and these templates can be used in the intelligent answering mode to quickly reply to common or repeated inquiries, improving the reply efficiency.
[0069] In another specific embodiment of the present utility model, the intelligent answering mode can subsequently access the user's calendar and mailbox, analyze upcoming events or email content, and provide relevant quick answer options so that the user can reply more efficiently; this mode also includes a privacy protection mechanism to ensure the security of user data, especially when dealing with sensitive information, such as encrypting the user's input and stored information; the intelligent answering mode can be synchronized with the user's social network account to analyze the user's speech and interactions on the social network to better imitate the user's online communication style. The device can also perform personalized learning through the user's historical data, such as past conversation records and common expressions, making the intelligent answer more in line with the user's personal expression habits. Embedded with a deep learning algorithm, this algorithm automatically constructs a personalized language model by analyzing the user's past language usage patterns and frequencies; this model can predict the user's possible answers based on the user's historical data and provide them to the user as preset answer options; this mode provides a user feedback system where the user can directly evaluate the generated answers, and these data will be used to further optimize the quality and relevance of the answers; in the intelligent answering mode, the system will display the confidence level of the predicted answer, and the user can select the most likely answer option based on the confidence level or edit the answer with low confidence; in this mode, the device can provide relevant answer suggestions according to the current application or website content, such as providing a quick answer for information retrieval when browsing the web; in addition, the intelligent answering mode is embedded with an emotion analysis module, which can identify the emotional tendency of the information entering the system and generate answers that match the emotional color. This makes the answer not only logically correct but also emotionally in line with the user's expression; the intelligent answering mode adjusts the emotional color of the answer by analyzing the user's mood and tone to interact with the user or other interlocutors more humanely.
[0070] Maintain an extensive industry database and a common Q&A database in the background system. The intelligent answering mode can utilize these data to provide more professional and accurate answers, which is especially suitable for applications in professional fields or specific industries.
[0071] It should be noted that: as Figure 7 and Figure 8 shown, the advantage of using a flexible curved surface touch film for the second touch control 50 is that the touch surface can perform multi-functional operations, such as sliding and switching, which is an advantage that a single press button does not have. Therefore, in actual use, multiple second touch controls 50 can adopt a combination of a flexible curved surface touch film and a press button to improve applicability and operation convenience; for example: the second touch control 50 on the second glove body 20 sleeved on the index finger of the human hand adopts a flexible curved surface touch film, and the second touch control 50 on the second glove body 20 sleeved on the middle finger of the human hand adopts a press button.
[0072] Specifically, the intelligent interaction glove further includes a power supply battery and a wireless transmitter; the power supply battery and the wireless transmitter are respectively arranged on the first glove body 10; the power supply battery is electrically connected to the intelligent controller 30, the first touch control 40 and the second touch control 50 respectively, for providing electrical energy; the wireless transmitter is electrically connected to the intelligent controller 30, for wirelessly transmitting data; and / or, the intelligent interaction glove further includes a speaker, and the speaker is electrically connected to the intelligent controller 30, for broadcasting the text information converted by the intelligent controller 30.
[0073] By setting the speaker to broadcast the text information converted by the intelligent controller 30, the intelligent interaction glove proposed by the present utility model can be used as a daily communication tool for special groups such as deaf-mutes. After being proficiently used, the special group users can use the intelligent interaction glove proposed by the present utility model to realize voice and text output, thereby facilitating the smooth communication of special groups in daily life;
[0074] It should be noted that: the intelligent interaction glove proposed by the present utility model has begun to be popularized and used among special groups such as deaf-mutes. Subsequently, the finger control actions of the intelligent interaction glove can become "new sign languages", which are more convenient for special groups such as deaf-mutes to communicate with people who do not understand the current sign language rules, and have important application value and significance in practice.
[0075] Specifically, the power supply battery is a flexible battery; at least one of the circuits of the power supply battery electrically connected to the intelligent controller 30, the circuit of the power supply battery electrically connected to the first touch control 40, the circuit of the power supply battery electrically connected to the second touch control 50, the circuit of the wireless transmitter electrically connected to the intelligent controller 30, the circuits of the multiple first touch controls 40 respectively electrically connected to the intelligent controller 30, and the circuit of the second touch control 50 electrically connected to the intelligent controller 30 adopts a flexible circuit; the wireless transmitter includes a Bluetooth transmitter and / or a WIFI transmitter. Such a setting not only ensures the working reliability and functional diversity of the intelligent interaction glove, but also makes the overall structure of the intelligent interaction glove simple and light.
[0076] In a specific embodiment of the present utility model, the power supply battery is a rechargeable flexible battery, and the rechargeable flexible battery is a magnetic adsorption rechargeable battery.
[0077] Optionally, the seams of the first glove body 10 and / or the second glove body 20 are sealed with liquid silicone; the exterior of the first glove body 10 and / or the second glove body 20 has a superhydrophobic nano-coating or an aluminum-magnesium alloy particle reinforced coating; the intelligent controller 30 is located inside the first glove body 10 and is sealed with an epoxy resin material; and / or, the part of the first touch control 40 located inside the first glove body 10 is sealed with an epoxy resin material; and / or, the part of the second touch control 50 located inside the second glove body 20 is sealed with an epoxy resin material.
[0078] By using liquid silicone to seal at the seams of the first glove body 10 and / or the second glove body 20, a highly elastic and waterproof sealing layer can be formed after the liquid silicone cures, thereby effectively preventing moisture from penetrating into the interior of the intelligent interaction glove; by providing a superhydrophobic nano-coating on the outside of the first glove body 10 and / or the second glove body 20, the superhydrophobic nano-coating is efficiently utilized to cover the surface of the intelligent interaction glove. This nano-coating can make water droplets form beads and roll off rapidly when touching the surface, greatly enhancing the waterproof performance of the intelligent interaction glove; by providing an aluminum-magnesium alloy particle-reinforced coating on the outside of the first glove body 10 and / or the second glove body 20, the wear resistance and waterproof ability of the intelligent interaction glove are effectively improved, making it more suitable for use in harsh environments; by setting the electronic components inside the intelligent interaction glove to be sealed with epoxy resin, a hard protective layer is formed during the hardening process of the epoxy resin, effectively waterproofing and providing physical protection for the electronic components.
[0079] In a specific embodiment of the present invention, the electronic components inside the intelligent interaction glove are coated with polyvinyl chloride material (PVC). Polyvinyl chloride material is a known excellent waterproof material that can provide an additional protective layer to prevent water damage; alternatively, the electronic components inside the intelligent interaction glove are coated with polyacrylate material (PAA). The polyacrylate material has fibers inside, and these fibers can expand to form a sealing layer when encountering water, effectively blocking the entry of moisture; alternatively, the electronic components inside the intelligent interaction glove are wrapped with a waterproof film made of polyvinyl alcohol material (PVOH). The polyvinyl alcohol material has excellent waterproof performance and is environmentally friendly.
[0080] In another specific embodiment of the present invention, the internal suture of the first glove body 10 and / or the second glove body 20 uses a fiber thread with a polytetrafluoroethylene coating (PTFE coating). This fiber thread has a very low water absorption rate, ensuring complete waterproofing at the suture; in addition, fiber-reinforced polymer materials (FRP) can be added during the manufacturing process of the first glove body 10 and / or the second glove body 20. Such materials have excellent mechanical strength and waterproofness, and are more suitable for harsh external conditions.
[0081] Optionally, the first glove body 10 and / or the second glove body 20 includes an outer layer facing the outside and an inner layer in contact with the human hand. The outer layer is made of polytetrafluoroethylene material or polyolefin material, and the inner layer is made of polyurethane material; the first glove body 10 and / or the second glove body 20 further includes a waterproof layer located between the outer layer and the inner layer. The waterproof layer is made of polybutene material; alternatively, the waterproof layer is made of a micro-nano level waterproof microporous membrane.
[0082] By setting the outer layer to use polytetrafluoroethylene material (PTFE), the polytetrafluoroethylene material can provide effective waterproof and antifouling capabilities due to its excellent chemical stability and low friction coefficient; by setting the outer layer to use polyolefin material (TPO), the polyolefin material has high elasticity and durability and can maintain its waterproof performance under various climatic conditions; by setting the inner layer to use polyurethane material (PU), the polyurethane material is not only waterproof but also has good air permeability, which can keep the hand dry and comfortable; by setting the waterproof layer to use polybutene material (PIB), the viscosity and flexibility of the polybutene material can form an effective waterproof barrier at the seams and edges of the gloves; by setting the waterproof layer to use a micro-nano level waterproof microporous membrane, it can effectively prevent water penetration while maintaining air circulation.
[0083] In a specific embodiment of the present utility model, the outer surface coating of the first glove body 10 and / or the second glove body 20 uses a silicon-based multi-layer composite coating. This material combines the flexibility of silicone and the waterproofness of polymers, and can provide all-round waterproof protection for the intelligent interaction gloves; alternatively, a nano-silver particle coating is applied to the outer surface or the inner layer of the first glove body 10 and / or the second glove body 20. Silver has natural antibacterial properties and can effectively prevent the growth of microorganisms on the intelligent interaction gloves, extending the service life; in addition, the outer surface coating of the first glove body 10 and / or the second glove body 20 can also use a silica-based super-hydrophilic coating. This material can quickly spread the water layer to form a protective film when in contact with water, preventing water droplets from invading.
[0084] The present utility model also provides an intelligent interaction system. The intelligent interaction system includes the above-mentioned intelligent interaction gloves; the intelligent interaction system also includes an intelligent terminal. The intelligent terminal has a screen for displaying information. The intelligent terminal is electrically connected to the intelligent interaction gloves for information transmission. With such a setting, intelligent interaction is achieved.
[0085] Specifically, the intelligent terminal includes at least one of a computer, a mobile phone, smart glasses, and an electronic display.
[0086] Now, the specific working process and different usage scenarios of the present utility model are described in detail as follows:
[0087] Rich interaction functions such as text input are carried out on the AR glasses; a total of 8 buttons are set, and each button corresponds to a pinyin combination in the nine-key input method; based on the usage habits of different users, the pinyin combination mapped by each button can be customized; in normal use, the four fingers except the thumb respectively correspond to the two buttons below it; when the user wants to implement text input, by pressing the corresponding pinyin buttons in sequence with the four fingers, typing can be quickly carried out on the AR glasses through the nine-key input method; when inputting in Chinese nine-key, based on the corresponding pinyin combination input, the nine-key input method will provide a series of associated words for the user to select which one is the correct input character or word; through the flexible touch film (the second touch control 50), the user can use the thumb to slide left or right to select the correct associated character or word; after selecting the correct option, then tap the flexible touch film with the thumb, and this click will be recognized as the confirmation key, and the selected word will be selected into the input box;
[0088] The specific input method is as follows: as Figure 7 and Figure 9 shown, when using the Chinese character input method (the keyboard is in the Chinese input state by default), press the buttons where the letters are located in sequence according to the pinyin order of the Chinese characters to be input, and the Chinese characters with the same pronunciation can be obtained. Select the correct Chinese characters according to the order of the Chinese characters displayed on the screen. When the input Chinese characters are not in the input preselection area, the page turning function of the flexible touch film can also be used to turn the page to find the correct Chinese characters; when using the English input method, switch to the English input state (for example, double-click Figure 6 the GHI key in to switch), and use the thumb to select the correct English letter in the input preselection area; when using the digital input method, double-click Figure 6 the PQRS button in to switch to the digital input state, and then the numbers can be input according to the corresponding key positions; when the flexible touch film is used for text input, the left and right sliding of the thumb on it is equivalent to the selection function of the left and right keys on an ordinary keyboard, and touching the flexible touch film lightly is equivalent to the enter key on an ordinary keyboard, which is equivalent to confirmation; this set of systems is adapted to the common nine-key input methods on the market. Because the nine-key input method is also widely used on smart phones, this interactive intelligent interaction glove effectively reduces the learning cost of users;
[0089] The presence of physical buttons ensures the input accuracy of the user during intelligent interaction, such as typing; because the physical buttons have a certain protrusion, input will only occur when the finger actually clicks down; when using this intelligent interaction glove for interaction, the hand is in a fist state. The flexible touch film (the second touch control 50) is arranged on the outer side of the index finger glove, and the user can naturally and simply use the thumb to interact through the flexible touch film; the flexible touch film not only provides the functions of selecting associated words and confirmation during text input, but it can also play more functional roles. For example: by sliding the thumb on the surface of the touch film layer, the function of a cursor can be realized on the terminal;
[0090] To avoid accidental touch, the area size of the flexible touch film can be changed according to the actual needs of the user; the distribution position of the flexible touch film on the glove can also be changed according to the user's habits; the user can activate the intelligent answering mode by quickly double-clicking the flexible touch film (the second touch control 50) on the intelligent interaction glove; this action is recognized by the intelligent controller 30 of the intelligent interaction glove and triggers a connection with the smartphone or cloud server to activate the artificial intelligence system to start analyzing the current conversation environment.
[0091] For example: during a business negotiation, when the other party asks a complex question about market trends, the user double-clicks the intelligent interaction glove to activate the intelligent answering mode; the intelligent interaction glove intelligently analyzes the user's browsing history and professional database and recommends answers such as "According to the latest market report, we expect the market to... in the next year" to ensure that the answer is professional and in line with the user's business communication style;
[0092] In a social occasion, when a friend asks about the recent travel experience, the intelligent interaction glove automatically analyzes the user's social media dynamics and recommends answers such as "I just came back from Bali, and the beaches there are really beautiful" that match the posts the user has made;
[0093] During an interview, when the interviewer asks about project management experience, the user double-clicks the numeric keys of the intelligent interaction glove; the intelligent system retrieves the user's work file and previous work experience and recommends answers such as "In my past project management role, I successfully led a multinational team" to showcase the user's professional background and achievements;
[0094] In a cultural exchange activity, when asked about the user's views on a certain culture, the intelligent interaction glove analyzes the user's reading history and relevant activity participation records and provides personalized and culture-sensitive answers such as "I have a deep interest in this culture, especially its art forms of expression, such as...";
[0095] In a health consultation, the doctor asks about the user's lifestyle. The user double-clicks the intelligent interaction glove to activate the intelligent answering mode. The intelligent interaction glove accesses the data of the health tracker and recommends, for example, "According to my health monitoring data, I walk more than 10,000 steps every day and try to maintain a low-fat diet as much as possible.";
[0096] In an investment lecture, someone asks about stock market investment strategies. The intelligent interaction glove analyzes the user's investment records and preference for financial news and provides answers that suit the user's style, such as "Based on the current economic situation and my risk tolerance, I am more inclined to invest in value stocks rather than high-volatility stocks.";
[0097] During a family dinner, when cooking skills are discussed, the intelligent interaction glove recalls the user's recipe search records and purchase history and recommends, "I recently tried some new cooking techniques, such as slow cooking and using herbs for flavor, and the results were very good.";
[0098] During outdoor activities, when discussing hiking equipment, the intelligent interaction glove analyzes the user's past purchase and activity participation records and puts forward, "I found that wearing lightweight and adequately supportive hiking shoes is really important. I used them in the last hiking activity...", etc.;
[0099] At a technology product exhibition, the other party asks the user's opinion on new technologies. The intelligent interaction glove reviews the user's technology magazine subscriptions and forum activities and gives, "I am very interested in this new technology, especially its application in sustainability, such as...".
[0100] Thus, it can be seen that the intelligent interaction glove provided by the present utility model can effectively assist users in different usage scenarios. After being adapted to relevant software and AI models in the future, it can provide more convenient assistance to users in different life scenarios, and has broad application prospects.
[0101] In summary, the present utility model provides an intelligent interaction glove and an intelligent interaction system. By arranging the first touch control 40 to cooperate with at least one of the little finger, ring finger, middle finger and index finger, the present utility model realizes multi-finger simultaneous operation. After setting multiple first touch controls 40 into an input logic similar to that of a nine-key input method subsequently, multi-finger linkage fast typing can be realized, thereby effectively improving the typing efficiency. By arranging the second touch control 50 to be linked with the thumb touch control, when the thumb slides to touch the second touch control 50, the control function of the mouse cursor can be realized, and the sliding switching and directional selection of the target can also be realized. In addition, the second touch control 50 can also realize the text input function, and by cooperating with multiple first touch controls 40, high-efficiency simultaneous text input and output can be realized. By arranging multiple first touch controls 40 at intervals on the palm part of the first glove body 10 where the human hand is located, which is different from the existing technical solution of setting the touch control on the finger joints, the probability of accidental touch during finger movement is effectively reduced, and multiple first touch controls 40 can be effectively protected by the palm, thereby improving the working reliability of the intelligent interaction glove and the accuracy of typing input. The intelligent interaction glove proposed by the present utility model allows users to wear it for a long time and can be used as a keyboard for interacting with AR glasses, thereby realizing multi-functional command feedback. The intelligent interaction glove proposed by the present utility model avoids many defects existing in the existing intelligent interaction devices, is flexible and efficient in control, comfortable and convenient to wear and use, and is suitable for large-scale popularization and use.
[0102] It should be noted that the terms used herein are only for describing specific embodiments and are not intended to limit the exemplary embodiments according to the present application. As used herein, unless the context clearly indicates otherwise, the singular form is also intended to include the plural form. In addition, it should be understood that when the terms "comprising" and / or "including" are used in this specification, they indicate the presence of features, steps, operations, devices, components and / or combinations thereof.
[0103] Unless otherwise specifically stated, the relative arrangements of components and steps, numerical expressions and values set forth in these embodiments do not limit the scope of the present utility model. At the same time, it should be understood that for the sake of convenience of description, the dimensions of each part shown in the drawings are not drawn in actual proportional relationship. Technologies, methods and devices known to those of ordinary skill in the relevant art may not be discussed in detail, but where appropriate, the said technologies, methods and devices should be regarded as part of the description. In all the examples shown and discussed here, any specific values should be construed as merely exemplary and not as a limitation. Therefore, other examples of the exemplary embodiments may have different values. It should be noted that like reference numerals and letters denote like items in the following drawings, and thus, once an item is defined in one drawing, further discussion thereof is not required in subsequent drawings.
[0104] In the description of the present utility model, it should be understood that the orientation or positional relationship indicated by orientation words such as "front, rear, upper, lower, left, right", "lateral, vertical, perpendicular, horizontal" and "top, bottom", etc. is usually based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present utility model and simplifying the description. Without contrary explanation, these orientation words do not indicate and imply that the device or element referred to must have a specific orientation or be constructed and operated in a specific orientation. Therefore, it should not be construed as a limitation on the protection scope of the present utility model; the orientation words "inside, outside" refer to the inside and outside relative to the contour of each component itself.
[0105] For the convenience of description, spatial relative terms such as "above...", "over...", "on the upper surface of...", "above" and the like can be used here to describe the spatial positional relationship between a device or feature shown in the drawings and other devices or features. It should be understood that the spatial relative terms are intended to include different orientations in use or operation in addition to the orientation described in the drawings for the device. For example, if the device in the drawing is inverted, the device described as "above other devices or structures" or "over other devices or structures" will then be positioned "below other devices or structures" or "under other devices or structures". Thus, the exemplary term "above..." can include both the orientations of "above..." and "below...". The device can also be positioned in other different ways (rotated 90 degrees or in other orientations), and corresponding interpretations should be made for the spatial relative descriptions used here.
[0106] In addition, it should be noted that the use of words such as "first", "second" to limit components is only for the convenience of distinguishing the corresponding components. Without additional statement, the above words have no special meaning. Therefore, it should not be construed as a limitation on the protection scope of the present utility model.
[0107] The above are only the preferred embodiments of the present utility model and are not intended to limit the present utility model. For those skilled in the art, various modifications and variations can be made to the present utility model. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present utility model shall be included within the protection scope of the present utility model.
Claims
1. A smart interactive glove, characterized in that: include: A first glove body (10) is mounted on at least a portion of a palm of a human hand; A second glove body (20) is mounted on the index finger and / or middle finger of a human hand; An intelligent controller (30) disposed on the first glove body (10); A plurality of first touch components (40) are arranged at intervals on the palm portion of the first glove body (10) located on a human hand; the number of the plurality of first touch components (40) is less than or equal to nine, and each of the plurality of first touch components (40) is electrically connected to the intelligent controller (30); At least one second touch control part (50) is arranged on the second glove body (20); the second touch control part (50) is electrically connected to the intelligent controller (30); Wherein, on the same human hand, the second touch control part (50) is touched by the thumb, and the first touch control part (40) is touched by at least one of the little finger, the ring finger, the middle finger and the index finger, and the first touch control part (40) and the second touch control part (50) respectively input information to the intelligent controller (30).
2. The intelligent interactive glove according to claim 1, characterized in that: The number of the first touch groups (40) is two, four, six or eight; the direction from the wrist of a human hand to the tip of the middle finger is the first direction, and the direction parallel to the palm plane of the human hand and perpendicular to the first direction is the second direction. In the first direction, an even number of the first touch groups (40) are arranged in rows at intervals, and / or, in the second direction, an even number of the first touch groups (40) are arranged in columns at intervals to form an arrangement matrix; wherein the number of rows of the arrangement matrix is less than the number of columns, so that the extension direction of the maximum size of the arrangement matrix is parallel to the second direction.
3. The intelligent interactive glove according to claim 2, characterized in that: The number of the first touch groups (40) is eight, the number of rows of the arrangement matrix is two, the number of columns of the arrangement matrix is four, the two first touch groups (40) in the first column are arranged corresponding to the index finger, the two first touch groups (40) in the second column are arranged corresponding to the middle finger, the two first touch groups (40) in the third column are arranged corresponding to the ring finger, and the two first touch groups (40) in the fourth column are arranged corresponding to the little finger, the spacing between the first column and the second column is L1, the spacing between the heel of the index finger and the heel of the middle finger is L2, and L1 is adapted to L2; The distance between the second column and the third column is L3, the distance between the heel of the middle finger and the heel of the ring finger is L4, and L3 matches L4; The distance between the third column and the fourth column is L5, the distance between the heel of the ring finger and the heel of the little finger is L6, and L5 matches L6.
4. The intelligent interactive glove according to claim 1, characterized in that: The number of the first touch groups (40) is two, four, six or eight; the direction from the fingertip to the heel of the index finger is the first radial direction, the direction from the fingertip to the heel of the middle finger is the second radial direction, the direction from the fingertip to the heel of the ring finger is the third radial direction, and the direction from the fingertip to the heel of the little finger is the fourth radial direction. An even number of the first touch groups (40) are arranged at intervals along at least one of the first radial direction, the second radial direction, the third radial direction and the fourth radial direction.
5. The intelligent interactive glove according to claim 4, characterized in that: The number of the first touch groups (40) is eight, and two of the first touch groups (40) are arranged at intervals in the first radial direction, the second radial direction, the third radial direction, and the fourth radial direction, respectively.
6. The intelligent interactive glove according to claim 1, characterized in that: The first touch panel (40) and / or the second touch panel (50) are made of a flexible curved touch film or a push button; the key cap of the push button is made of a waterproof flexible material.
7. The intelligent interactive glove according to claim 1, characterized in that: The second glove body (20) is mounted on the index finger of a human hand; the second glove body (20) has an outer peripheral surface arranged around the index finger, the portion of the outer peripheral surface facing the palm is the inner surface, the portion of the outer peripheral surface facing the thumb is the side surface, and the second touch component (50) is arranged on the inner surface and / or the side surface.
8. The intelligent interactive glove according to claim 7, characterized in that: There are at least two second touch groups (50), wherein both of the two second touch groups (50) are press buttons and are spaced apart along the direction from the heel of the index finger to the fingertip; or, there are at least two second touch groups (50), wherein one of the second touch groups (50) is a flexible curved touch film, and the touch surface of the flexible curved touch film extends along the direction from the heel of the index finger to the fingertip.
9. The intelligent interactive glove according to claim 1, characterized in that: The intelligent interactive glove further comprises a power supply battery and a wireless transmitter; the power supply battery and the wireless transmitter are respectively arranged on the first glove body (10); the power supply battery is respectively electrically connected to the intelligent controller (30), the first touch component (40) and the second touch component (50) for providing electric energy; the wireless transmitter is electrically connected to the intelligent controller (30) for wireless data transmission; and / or the intelligent interactive glove further comprises a speaker, the speaker is electrically connected to the intelligent controller (30) for broadcasting text information converted by the intelligent controller (30).
10. The intelligent interactive glove according to claim 9, characterized in that: The power supply battery is a flexible battery; At least one of the circuits electrically connecting the power supply battery and the intelligent controller (30), the circuits electrically connecting the power supply battery and the first touch panel (40), the circuits electrically connecting the power supply battery and the second touch panel (50), the circuits electrically connecting the wireless transmitter and the intelligent controller (30), the circuits electrically connecting the plurality of first touch panels (40) and the intelligent controller (30), and the circuits electrically connecting the second touch panel (50) and the intelligent controller (30) uses a flexible circuit; The wireless transmitter includes a Bluetooth transmitter and / or a WIFI transmitter.
11. The intelligent interactive glove according to claim 1, characterized in that: The seams of the first glove body (10) and / or the second glove body (20) are sealed with liquid silicone; The first glove body (10) and / or the second glove body (20) has a super-hydrophobic nano coating or an aluminum-magnesium alloy particle-reinforced coating on the outside; The intelligent controller (30) is located in the first glove body (10) and is sealed with an epoxy resin material; and / or the first touch panel (40) is located in the first glove body (10) and is sealed with an epoxy resin material; and / or the second touch panel (50) is located in the second glove body (20) and is sealed with an epoxy resin material.
12. The intelligent interactive glove according to claim 1, characterized in that: The first glove body (10) and / or the second glove body (20) comprises an outer layer facing outwards and an inner layer in contact with a human hand, wherein the outer layer is made of polytetrafluoroethylene material or polyolefin material, and the inner layer is made of polyurethane material; The first glove body (10) and / or the second glove body (20) further comprises a waterproof layer located between the outer layer and the inner layer, wherein the waterproof layer is made of polybutylene material; or, the waterproof layer is made of a micro-nano waterproof microporous membrane.
13. An intelligent interactive system, characterized in that: The intelligent interactive system includes the intelligent interactive glove according to any one of claims 1 to 12; the intelligent interactive system also includes an intelligent terminal, the intelligent terminal has a screen for displaying information, and the intelligent terminal is electrically connected to the intelligent interactive glove for information transmission.
14. The intelligent interactive system according to claim 13, characterized in that: The intelligent terminal includes at least one of a computer, a mobile phone, smart glasses and an electronic display.
Citation Information
Patent Citations
Fingers-nipping gloves cell phone
CN2706973Y