CN210038715U - Gesture recognition glove and finger-guessing toy - Google Patents

Gesture recognition glove and finger-guessing toy Download PDF

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Publication number
CN210038715U
CN210038715U CN201921006876.1U CN201921006876U CN210038715U CN 210038715 U CN210038715 U CN 210038715U CN 201921006876 U CN201921006876 U CN 201921006876U CN 210038715 U CN210038715 U CN 210038715U
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China
Prior art keywords
finger
ring
processor
gesture recognition
sensor
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Expired - Fee Related
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CN201921006876.1U
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Chinese (zh)
Inventor
许榆涵
黄仰辉
施劭镛
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Individual
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Individual
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Abstract

The utility model relates to a gesture recognition gloves technical field, in particular to gesture recognition gloves and finger guessing toy. The hand gesture recognition glove comprises a power supply, a processor and a plurality of finger rings, wherein conductive layers are arranged outside the finger rings, the finger rings are connected with the processor through electric wires, the power supply supplies power to the processor, the finger rings are sleeved on the fingers, and the processor recognizes the state that the conductive layers between the finger rings are in mutual contact or separation. The device is simple in structure and low in cost, is particularly suitable for being used in simple scenes such as children toys, can train children to master a finger guessing game and preliminarily know a man-machine interaction mode, and is a good edutainment tool.

Description

Gesture recognition glove and finger-guessing toy
Technical Field
The utility model relates to a gesture recognition gloves technical field, in particular to gesture recognition gloves and finger guessing toy.
Background
Gesture recognition is a new form of human-computer interaction, and through gesture recognition, the learning cost of interaction between an input user and a computer can be reduced. If chinese patent with an authorization publication number of CN 207115332U discloses a body sensing glove and a gesture capturing system, the body sensing glove is characterized by comprising: a glove body; the gesture sensing device is arranged on the glove body; the positioning device is arranged on the glove body; the signal transmission device is arranged on the glove body and is connected with the gesture sensing device; when the somatosensory glove is worn on a hand of a user, the gesture sensing device is used for detecting and obtaining gesture parameters, and the positioning device is used for detecting and obtaining and feeding back position parameters of the hand; the signal transmission device is used for transmitting the gesture operation information related to the gesture parameters to another device. The existing somatosensory gloves use more sensors, the data amount required to be processed by the content identified by the sensors is large, the calculation requirement on a processor is also high, the gloves are suitable for being used in high-precision and complex environments, the gloves are easy to use, if the gloves are used in low-complexity use scenes such as children toys, the cost of the gloves is high, the gloves are difficult to accept in the market, and therefore the gloves are low in cost and suitable for the simple use scenes.
SUMMERY OF THE UTILITY MODEL
For overcoming the deficiencies in the prior art, the utility model provides a gesture recognition glove and finger-guessing toy which has simple structure and low cost and is suitable for being used in simple scenes.
In order to achieve the above object, the utility model adopts the following technical scheme: a gesture recognition glove, comprising: the finger ring comprises a power supply, a processor and a plurality of finger rings, wherein a conductive layer is arranged outside the finger rings, the finger rings are connected with the processor through electric wires, the power supply supplies power to the processor, the finger rings are sleeved on fingers, and the processor identifies the state that the conductive layers between the finger rings are mutually contacted or separated.
Furthermore, the finger rings comprise a first finger ring, a second finger ring, a third finger ring and a fourth finger ring which are respectively sleeved at the finger roots of the index finger, the middle finger, the ring finger and the little finger.
Furthermore, the processor comprises a master controller, a first touch current sensor and a second touch current sensor, the first touch current sensor is connected with the first ring and the second ring to identify the contact or separation state of the first ring and the second ring conductive layer, the second touch current sensor is connected with the third ring and the fourth ring to identify the contact or separation state of the third ring and the fourth ring conductive layer, and the master controller receives and processes signals of the first touch current sensor and the second touch current sensor.
The wrist lifting sensor is connected with the processor and used for detecting the arm lifting or horizontal placing state, the wrist lifting sensor comprises a closed space, a rolling ball, a first position sensor and a second position sensor, the closed space is provided with a rolling plane, the first position sensor and the second position sensor are respectively arranged at two ends of the rolling plane, the rolling ball is arranged in the closed space and can roll in the rolling plane, when the arm is vertical, the rolling ball slides to one end under the action of gravity to be in contact with the first position sensor, so that the wrist lifting sensor sends a hand lifting signal to the processor, when the arm is horizontal, the rolling ball slides to the other end under the action of gravity to be in contact with the second position sensor, so that the wrist lifting sensor sends a horizontal placing signal to the processor.
Further, the rolling ball is made of a conductive material, the first position sensor and the second position sensor are current sensors and are respectively provided with a positive plate and a negative plate, included angles are arranged in closed spaces at two ends of a rolling plane, the positive plate and the negative plate of the first position sensor are respectively arranged at two sides of the included angle at one end, the positive plate and the negative plate of the second position sensor are respectively arranged at two sides of the included angle at the other end, and the rolling ball rolls to one included angle to connect the positive plate and the negative plate at the end to form a path so as to enable the end sensor to send signals.
Further, the power supply and the processor are integrated in the wrist ring.
Furthermore, an elastic layer is arranged inside the finger ring, and the elastic layer can fill gaps between the fingers and the finger ring so as to fix the position of the finger ring on the fingers.
A finger-guessing boxing toy is characterized in that: the hand gesture recognition glove comprises a display panel and the hand gesture recognition glove, wherein the display panel is connected with a processor, the display panel can display patterns of stones, scissors, cloth, victory, failure and tie, the hand gesture recognition glove acquires hand gesture information of a user to process, and the display panel displays the patterns to achieve a human-computer interaction game.
It is right by the aforesaid the utility model discloses a description can know, compares with prior art, the utility model provides a pair of gesture recognition gloves and guess fist toy, simple structure, low cost uses under the simple and easy scene such as children's toy very much, can train children master guess fist recreation and tentatively know the human-computer interaction mode, is a better teaching in the instrument of joy.
Drawings
Fig. 1 is a schematic view of the structure of a glove for gesture recognition of the present invention.
Fig. 2 is a schematic view of a usage status of the gesture recognition glove of the present invention.
Fig. 3 is a schematic structural view of the finger-guessing boxing toy of the utility model.
Fig. 4 is a schematic diagram of the circuit principle of the finger guessing toy of the utility model.
The labels in the figure correspond to the following: 1. the finger ring comprises a finger ring body, a first finger ring body, a second finger ring body, a third finger ring body, a fourth finger ring body, a conductive layer, a flexible layer 12, a power supply 2, a processor 3, a main controller 31, a first touch current sensor 32, a second touch current sensor 33, a wrist lifting sensor 4, a wrist lifting sensor 41, a closed space 411, a rolling plane 42, a rolling ball 43, a first position sensor 44, a second position sensor 431, a positive plate 441, (432, 442) a negative plate, a wrist ring 5, and a display panel 6.
Detailed Description
The present invention will be further described with reference to the following detailed description.
Referring to fig. 1 to 4, a finger-guessing toy comprises a gesture recognition glove and a display panel 6.
Gesture recognition gloves include ring 1, power 2, treater 3, lift wrist inductor 4, wrist ring 5, ring 1 includes first ring 1a, second ring 1b, third ring 1c, fourth ring 1d, the forefinger is located to the cover respectively, the middle finger, the ring finger, the finger root department of little thumb, ring 1 outside is equipped with conducting layer 11, inside is equipped with elastic layer 12, conducting layer 11 passes through the wire and is connected with treater 3, elastic layer 12 can fill the gap between finger and ring 1 with the position of fixed ring 1 at the finger.
The power supply 2, the processor 3 and the wrist-lifting sensor 4 are arranged in the wrist ring 5, the power supply 2 supplies power for the processor 3, the power supply 2 can adopt a 1.5v button cell, the processor 3 comprises a main controller 31, a first touch current sensor 32 and a second touch current sensor 33, the first touch current sensor 32 is connected with the first finger ring 1a and the second finger ring 1b to identify the contact or separation state of the first finger ring 1a and the second finger ring 1b, namely, a channel is formed at the first touch current sensor 32 to send a contact signal when the conducting layers 11 of the first finger ring 1a and the second finger ring 1b are mutually touched, and if the conducting layers are not contacted, the first touch current sensor 32 sends the signal to the main controller 31; the second touch current sensor 33 is connected with the third ring 1c and the fourth ring 1d to identify the contact or separation state of the third ring 1c and the fourth ring 1d, that is, a path is formed at the second touch current sensor 33 to send a contact signal when the conductive layers 11 of the third ring 1c and the fourth ring 1d are touched with each other, and if the conductive layers are not contacted, the conductive layers are separated, the second touch current sensor 33 transmits the signal to the master controller 31;
the wrist-lifting sensor 4 is connected with the main controller 31, the wrist-lifting sensor 4 detects the arm lifting or flat-laying state, the wrist-lifting sensor 4 comprises a closed space 41, a rolling ball 42, a first position sensor 43 and a second position sensor 44, the closed space 41 is provided with a rolling plane 411, the first position sensor 43 and the second position sensor 44 are respectively arranged at two ends of the rolling plane 411, the rolling ball 42 is arranged in the closed space 41 and can roll in the rolling plane 411, the rolling ball 42 is made of conductive material, the first position sensor 43 and the second position sensor 44 are current sensors and respectively provided with a positive plate 431, a negative plate 432 and a negative plate 432, 442, an included angle is arranged in the closed space 41 at two ends of the rolling plane 411, the positive plate 431 and the negative plate 432 of the first position sensor 43 are respectively arranged at two sides of the included angle at one end, the positive plate 441 and the negative plate 442 of the second position sensor 44 are respectively arranged at two sides of the other end, when the rolling ball 42 rolls to one end of the rolling ball, the positive pole pieces (431, 441) and the negative pole pieces (432, 442) at the end are connected to form a passage so that the sensor at the end sends a signal, when the arm is vertical, the rolling ball 42 slides to one end under the action of gravity to be contacted with the first position sensor 43, so that the wrist lifting sensor 4 sends a hand lifting signal to the main controller 31, when the arm is horizontally placed, the rolling ball 42 slides to the other end under the action of gravity to be contacted with the second position sensor 44, so that the wrist lifting sensor 4 sends a horizontal placing signal to the main controller 31.
Display panel 6 is connected with master controller 31, and display panel 6 can show "stone", "scissors", "cloth", "victory", "failure", "tie" figure, and the gesture recognition gloves obtain user's gesture information and show the figure through display panel 6 and realize man-machine interaction recreation, are equipped with wireless communication module in display panel 6 and the master controller 31, through the signal of wireless communication module transmission display panel 6 and master controller 31.
The working principle and the using method of the finger guessing toy comprise the following steps:
step one, wearing the hand of a user with the hand gesture recognition glove, sleeving a first finger ring 1a at the finger root of an index finger, sleeving a second finger ring 1b at the finger root of a middle finger, sleeving a third finger ring 1c at the finger root of a ring finger, and sleeving a fourth finger ring 1d at the finger root of a little finger, wherein an elastic layer 12 in the finger ring 1 can fill a gap between the finger and the finger ring 1 so as to fix the position of the finger ring 1 on the finger; the wrist ring 5 is worn on the wrist of the user;
step two, the user lifts the arm vertically, at this time, the rolling ball 42 of the wrist-raising sensor 4 slides to the end provided with the first position sensor 43 along the rolling plane 411 under the action of gravity, at this time, the rolling ball 42 connects the positive pole piece 431 and the negative pole piece 432 of the first position sensor 43, the first position sensor 43 is conducted to enable the wrist-raising sensor 4 to send a hand-raising signal towards the master controller 31, namely, a preparation mark, and the master controller 31 confirms that a new round of games starts;
step two, the user puts the arm flat and makes one of the gestures of "stone", "scissors" and "cloth" guessing a fist, at this time, the rolling ball 42 of the wrist-raising sensor 4 slides to one end provided with the second position sensor 44 along the rolling plane 411 under the action of gravity, at this time, the rolling ball 42 is connected with the positive plate 441 and the negative plate 442 of the second position sensor 44, the second position sensor 44 is connected to enable the wrist-raising sensor 4 to send a flat-placing signal towards the master controller 31, namely, an ending signal, the master controller 31 randomly generates a signal of "stone", "scissors" and "cloth" when receiving the signal and transmits the signal to the display panel 6, and the display panel 6 displays the patterns of "stone", "scissors" and "cloth" according to the received signal;
step three, the main controller 31 identifies the gestures of the user; the first touch current sensor 32 detects that the first finger ring 1a is in contact with the second finger ring 1b, the second touch current sensor 33 detects that the third finger ring 1c is in contact with the fourth finger ring 1d, the first touch current sensor 32 and the second touch current sensor 33 transmit signals to the master controller 31, and the master controller 31 recognizes that the finger guessing gesture is 'stone'; the first touch current sensor 32 detects that the first finger ring 1a is separated from the second finger ring 1b, the second touch current sensor 33 detects that the third finger ring 1c is touched with the fourth finger ring 1d, the first touch current sensor 32 and the second touch current sensor 33 transmit signals to the master controller 31, and the master controller 31 recognizes that the finger guessing gesture is 'scissors'; the first touch current sensor 32 detects that the first finger ring 1a is separated from the second finger ring 2b, the second touch current sensor 33 detects that the third finger ring 1c is separated from the fourth finger ring 1d, the first touch current sensor 32 and the second touch current sensor 33 transmit signals to the master controller 31, and the master controller 31 recognizes that the finger guessing gesture is 'cloth';
step four, the main controller 31 compares the recognized user gesture with the gesture signal sent to the display panel 6, if the user gesture is 'stone' and the gesture signal of the display panel 6 is 'scissors', the victory is judged, and a 'victory' graph is displayed on the display panel 6; if the gesture of the user is 'stone' and the gesture signal of the display panel 6 is 'cloth', the failure is judged, and a 'failure' graph is displayed on the display panel 6; if the gesture of the user is 'stone' and the gesture signal of the display panel 6 is 'stone', the tie is judged, and a 'tie' graph is displayed on the display panel 6; according to the traditional stone scissors cloth game rules, the rest conditions are analogized in the same way;
and step five, when the wrist-lifting sensor 4 detects that the user lifts the arm vertically again, returning to the step two, and marking to start a new round of game.
The above-mentioned only be the utility model discloses a concrete implementation way, nevertheless the utility model discloses a design concept is not limited to this, and all utilize this design right the utility model discloses carry out immaterial change, all should belong to the act of infringement the protection scope of the utility model.

Claims (8)

1. A gesture recognition glove, comprising: the finger ring comprises a power supply, a processor and a plurality of finger rings, wherein a conductive layer is arranged outside the finger rings, the finger rings are connected with the processor through electric wires, the power supply supplies power to the processor, the finger rings are sleeved on fingers, and the processor identifies the state that the conductive layers between the finger rings are mutually contacted or separated.
2. The gesture recognition glove of claim 1, wherein: the finger rings comprise a first finger ring, a second finger ring, a third finger ring and a fourth finger ring which are respectively sleeved at the finger roots of the index finger, the middle finger, the ring finger and the little finger.
3. The hand gesture recognition glove of claim 2, wherein: the processor comprises a master controller, a first touch current sensor and a second touch current sensor, the first touch current sensor is connected with the first ring and the second ring to identify the contact or separation state of the first ring and the second ring conductive layer, the second touch current sensor is connected with the third ring and the fourth ring to identify the contact or separation state of the third ring and the fourth ring conductive layer, and the master controller receives and processes signals of the first touch current sensor and the second touch current sensor.
4. The gesture recognition glove of claim 1, wherein: the wrist lifting sensor is connected with the processor and used for detecting the arm lifting or horizontal placing state, the wrist lifting sensor comprises a closed space, a rolling ball, a first position sensor and a second position sensor, the closed space is provided with a rolling plane, the first position sensor and the second position sensor are respectively arranged at two ends of the rolling plane, the rolling ball is arranged in the closed space and can roll in the rolling plane, the rolling ball slides to one end under the action of gravity to be in contact with the first position sensor when the arm is vertical, so that the wrist lifting sensor sends a hand lifting signal to the processor, and the rolling ball slides to the other end under the action of gravity to be in contact with the second position sensor when the arm is horizontal, so that the wrist lifting sensor sends a horizontal placing signal towards the processor.
5. The gesture recognition glove of claim 4, wherein: the rolling ball is made of conductive materials, the first position sensor and the second position sensor are current sensors and are respectively provided with a positive plate and a negative plate, included angles are arranged in closed spaces at two ends of a rolling plane, the positive plate and the negative plate of the first position sensor are respectively arranged at two sides of the included angle at one end, the positive plate and the negative plate of the second position sensor are respectively arranged at two sides of the included angle at the other end, and the rolling ball rolls to one included angle to connect the positive plate and the negative plate so as to form a passage to enable the end sensor to send signals.
6. The gesture recognition glove of claim 4, wherein: the power supply and the processor are integrated in the wrist ring.
7. The gesture recognition glove of claim 1, wherein: the ring is internally provided with an elastic layer which can be filled in the gap between the finger and the finger ring so as to fix the position of the ring on the finger.
8. A finger-guessing boxing toy is characterized in that: the hand gesture recognition glove comprises a display panel and the hand gesture recognition glove as claimed in any one of claims 1 to 7, wherein the display panel is connected with a processor, the display panel can display graphs of stones, scissors, cloth, victory, failure and tie, the hand gesture recognition glove obtains hand gesture information of a user to process, and the graphs are displayed through the display panel to achieve a human-computer interaction game.
CN201921006876.1U 2019-07-01 2019-07-01 Gesture recognition glove and finger-guessing toy Expired - Fee Related CN210038715U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921006876.1U CN210038715U (en) 2019-07-01 2019-07-01 Gesture recognition glove and finger-guessing toy

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921006876.1U CN210038715U (en) 2019-07-01 2019-07-01 Gesture recognition glove and finger-guessing toy

Publications (1)

Publication Number Publication Date
CN210038715U true CN210038715U (en) 2020-02-07

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CN201921006876.1U Expired - Fee Related CN210038715U (en) 2019-07-01 2019-07-01 Gesture recognition glove and finger-guessing toy

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110399038A (en) * 2019-07-01 2019-11-01 许长熊 A kind of gesture identification gloves and gesture identification method and finger-guessing game toy

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110399038A (en) * 2019-07-01 2019-11-01 许长熊 A kind of gesture identification gloves and gesture identification method and finger-guessing game toy
CN110399038B (en) * 2019-07-01 2024-08-02 许长熊 Gesture recognition glove, gesture recognition method and fist-guessing toy

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Granted publication date: 20200207