CN108490644B - Intelligent glasses frame, glasses and method for controlling intelligent glasses frame - Google Patents

Intelligent glasses frame, glasses and method for controlling intelligent glasses frame Download PDF

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Publication number
CN108490644B
CN108490644B CN201810450781.2A CN201810450781A CN108490644B CN 108490644 B CN108490644 B CN 108490644B CN 201810450781 A CN201810450781 A CN 201810450781A CN 108490644 B CN108490644 B CN 108490644B
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frame
glasses
detection device
user
glasses frame
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CN108490644A (en
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杜玉强
谭智聪
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Shenzhen Tianzhilian Technology Co ltd
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Shenzhen Tianzhilian Technology Co ltd
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    • GPHYSICS
    • G02OPTICS
    • G02CSPECTACLES; SUNGLASSES OR GOGGLES INSOFAR AS THEY HAVE THE SAME FEATURES AS SPECTACLES; CONTACT LENSES
    • G02C11/00Non-optical adjuncts; Attachment thereof
    • G02C11/10Electronic devices other than hearing aids
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01DMEASURING NOT SPECIALLY ADAPTED FOR A SPECIFIC VARIABLE; ARRANGEMENTS FOR MEASURING TWO OR MORE VARIABLES NOT COVERED IN A SINGLE OTHER SUBCLASS; TARIFF METERING APPARATUS; MEASURING OR TESTING NOT OTHERWISE PROVIDED FOR
    • G01D21/00Measuring or testing not otherwise provided for
    • G01D21/02Measuring two or more variables by means not covered by a single other subclass

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  • Physics & Mathematics (AREA)
  • Health & Medical Sciences (AREA)
  • General Physics & Mathematics (AREA)
  • Acoustics & Sound (AREA)
  • General Health & Medical Sciences (AREA)
  • Otolaryngology (AREA)
  • Ophthalmology & Optometry (AREA)
  • Optics & Photonics (AREA)
  • Eyeglasses (AREA)

Abstract

The invention discloses an intelligent glasses frame which comprises a glasses frame body and processing components which are arranged on the glasses frame body and used for correcting bad eye habits, wherein the glasses frame body comprises a left frame and a right frame which are symmetrically arranged, the left frame is connected with the right frame, the processing components are divided into a first group of processing components and a second group of processing components which are equal in weight, the first group of processing components are arranged on the left frame, and the second group of processing components are arranged on the right frame so as to balance the left side and the right side of the glasses frame body. The invention further provides glasses which comprise the glasses frame and the lenses arranged on the glasses frame, wherein the glasses frame adopts the intelligent glasses frame, so that the comfort level of wearing of a user is high, and the bad eye habit of the user can be corrected. The invention also provides a method for controlling the intelligent glasses frame, which can correct bad eye habit of the user.

Description

Intelligent glasses frame, glasses and method for controlling intelligent glasses frame
Technical Field
The invention relates to the technical field of glasses, in particular to an intelligent glasses frame, glasses comprising the intelligent glasses frame and a method for controlling the intelligent glasses frame.
Background
With the rise of the domestic population myopia rate, the number of domestic myopes is as high as 6 hundred million, which is almost half of the number of Chinese population. It is known that the myopia rate of high school students and college students in China is over 70%, the myopia rate of the pupil is close to 40%, the pupil has a tendency to increase year by year, the vision rate in China is high and the first in the world, and 80% of myopia is demonstrated by experts to be caused by bad eye habit of people.
The intelligent glasses frame on the market is mostly used for shooting or entertainment, and common glasses
The frame can only be worn and used, bad eye habits of the user cannot be found, and reminding of the bad habits of the user cannot be carried out.
In addition, some products for glasses exist as accessories of the glasses, and are usually arranged on one side of the glasses frame, so that the weight of the two sides of the glasses frame is unbalanced, and users easily feel uncomfortable and easily cause eyestrain due to unbalance of the left side and the right side of the glasses in the process of wearing the glasses.
Disclosure of Invention
One object of the present invention is to: the utility model provides an intelligent glasses frame, the gross weight of the left and right sides of picture frame is balanced, promotes the comfort that the user wore, reduces and uses the eyestrain.
Another object of the invention is: provided are glasses which are highly comfortable to wear by a user and which can correct the bad eye habit of the user.
A further object of the invention is: provided is a control method of an intelligent glasses frame, which can correct bad eye habit of a user.
In order to achieve the above purpose, the invention adopts the following technical scheme:
the utility model provides an intelligent glasses frame, including the picture frame body and set up in be used for correcting bad processing component that uses the eye custom on the picture frame body, the picture frame body includes left frame and the right frame that the symmetry set up, left side frame with right frame coupling, processing component divide into the first group processing component and the second group processing component that the weight equals, first group processing component installs on the left frame, second group processing component installs on the right frame, so that picture frame body left and right sides is balanced.
As a preferable technical solution of the smart glasses frame, the processing component includes a contact charging assembly, and the contact charging assembly includes a charging contact disposed on the glasses frame body.
As a preferable technical scheme of the intelligent glasses frame, the left frame comprises a left glasses frame and a left glasses leg, one end of the left glasses leg is connected with the left glasses frame, and the right frame comprises a right glasses frame and a right glasses leg, one end of the right glasses leg is connected with the right glasses frame;
the charging contact is arranged at the bottom of the left mirror frame and/or the bottom of the right mirror frame;
or, the charging contact is arranged at the top of the left lens frame and/or the top of the right lens frame;
or, the charging contact is arranged at the outer side of the left mirror foot and/or the outer side of the right mirror foot;
or, the charging contact is arranged at one end of the Zuo Jing foot away from the left eyeglass frame and/or one end of the right eyeglass foot away from the right eyeglass frame.
As a preferable technical scheme of the intelligent glasses frame, the processing component further comprises a power module, wherein the power module comprises a waterproof protection device, and the waterproof protection device is a self-recovery fuse.
As a preferable technical scheme of the intelligent glasses frame, the processing component further comprises a control module, a detection module and an alarm device; the detection module comprises a distance detection device, a time metering device, a gesture detection device and an illumination detection device, wherein the distance detection device, the time metering device, the gesture detection device, the illumination detection device and the alarm device are respectively connected with the control module.
As a preferable technical scheme of the intelligent glasses frame, one of the illumination detection device and the distance detection device is arranged at the front end of the left glasses frame, and the other is arranged at the front end of the right glasses frame;
or, the illumination detection device and the distance detection device are arranged at the front end of the left mirror frame and the front end of the right mirror frame;
or the illumination detection device and the distance detection device are respectively arranged on nose pads distributed between the left mirror frame and the right mirror frame;
or, one of the illumination detection device and the distance detection device is provided with the front ends of the left mirror frame and the right mirror frame, and the other one is arranged on the nose pad distributed between the left mirror frame and the right mirror frame.
As a preferable technical scheme of the intelligent glasses frame, the processing component further comprises at least one travel switch connected with the power module, and the travel switch is arranged at the joint of the left glasses frame and the left glasses legs; and/or the travel switch is arranged at the joint of the right mirror frame and the right mirror foot.
The invention also provides a pair of glasses, comprising a glasses frame and lenses arranged on the glasses frame, wherein the glasses frame adopts the intelligent glasses frame as claimed in the claims.
The invention further provides a control method of the intelligent glasses frame, which is used for controlling the intelligent glasses frame, and provides a detection device, an alarm device and a control module, wherein the detection device comprises a distance detection device, a time metering device, an illumination detection device and a gesture detection device, the distance detection device is used for detecting the distance between a user and a target reading material, the time metering device is used for metering the eye use time of the user, the illumination detection device is used for detecting the reading illumination environment of the user, the gesture detection device is used for detecting the sitting posture of the user, the distance detection device, the time metering device, the illumination detection device and the gesture detection device are used for sending the detection results of the distance detection device, the time metering device, the illumination detection device and the gesture detection device to the control module, and when any detection result of the distance detection device, the time metering device, the illumination detection device and the gesture detection device exceeds a safe range value, the control module sends an instruction to start the alarm device.
As a preferable technical scheme of the control method of the intelligent glasses frame, the distance detecting device, the time metering device, the illumination detecting device and the gesture detecting device detect one side every time T, if the distance detecting device, the time metering device, the illumination detecting device and the gesture detecting device detect the results within the safe range value, the detection is continued, otherwise, the control module sends out an instruction to start the alarm device.
The beneficial effects of the invention are as follows: the weight of the first set of processing components is set equal to the weight of the second set of processing components such that the sum of the weights borne by the left frame is equal to the sum of the weights borne by the right frame. Balance the weight of the left and right sides of picture frame body promotes the equilibrium of picture frame body when wearing, prevents that the user from because the weight unbalance of left and right sides from arousing holistic side of glasses when wearing intelligent glasses frame, promotes user's comfort, reduces the danger of using asthenopia. The time metering device, the illumination detection device, the distance detection device and the gesture detection device are used for detecting the eye use time length of the user, the distance between the user and the reading target, the reading sitting posture and the reading illumination environment, and the alarm device is used for sending an alarm signal to remind the user so that the user can correct bad eye use habits in time.
Drawings
The invention is described in further detail below with reference to the drawings and examples.
Fig. 1 is a schematic view illustrating an angle of a smart glasses frame according to an embodiment.
Fig. 2 is a schematic view illustrating another angle of the smart glasses frame according to an embodiment.
Fig. 3 is a schematic structural diagram of a smart glasses frame according to another embodiment.
Fig. 4 is a flowchart of a control method of the smart glasses frame according to an embodiment.
In the figure:
100. a left frame; 110. a left mirror frame; 120. left mirror foot; 200. a right frame; 210. a right mirror frame; 220. a right temple; 230. a storage groove; 240. a hinge shaft; 250. a charging pin; 260. a conductive contact; 300. a nose pad;
1. an alarm device; 2. a time measuring device; 3. a control module; 4. a power module; 5. distance detection means; 6. an illumination detection device; 7. and a posture detecting device.
Detailed Description
The technical scheme of the invention is further described below by the specific embodiments with reference to the accompanying drawings.
As shown in fig. 1 to 4, in this embodiment, the intelligent glasses frame according to the present invention includes a glasses frame body and processing components disposed on the glasses frame body for correcting bad eye habits, the glasses frame body includes a left frame 100 and a right frame 200 which are symmetrically disposed, the left frame 100 is connected with the right frame 200, the processing components are divided into a first group of processing components and a second group of processing components with equal weights, the first group of processing components are mounted on the left frame 100, and the second group of processing components are mounted on the right frame 200, so that left and right sides of the glasses frame body are balanced.
Since the weight of the first group of processing components is equal to the weight of the second group of processing components, the left frame 100 and the right frame 200 are symmetrically arranged, and the first group of processing components and the second group of processing components are respectively mounted on the left frame 100 and the right frame 200, so that the sum of the weights born by the left frame 100 is equal to the sum of the weights born by the right frame 200, and the left side and the right side of the mirror frame body are balanced. Through this design, the weight of the left and right sides of balanced picture frame body promotes the equilibrium of picture frame body when wearing, prevents that the user from because the weight unbalance of left and right sides from arousing holistic side of glasses when wearing intelligent glasses frame, promotes user's comfort, reduces the danger of using asthenopia. It should be noted that, in this embodiment, when the smart glasses frame is worn correctly, the left side portion of the frame body located at the nose bridge of the user is the left frame 100, and the right side portion of the frame body located at the nose bridge of the user is the right frame 200.
Wherein the processing component includes a contact charging assembly including a charging contact disposed on the frame body. The setting of contact charging assembly can be right intelligent glasses frame charges, guarantees the normal work of processing part, extension intelligent glasses frame's life. In order to avoid that water enters into the inside of the glasses frame body from the position where the charging contact is connected with the glasses frame body when the glasses are cleaned, waterproof sealant is coated at the position where the charging contact is connected with the glasses frame body.
The left frame 100 includes a left mirror frame 110 and a left temple 120 having one end connected to the left mirror frame 110, and the right frame 200 includes a right mirror frame 210 and a right temple 220 having one end connected to the right mirror frame 210. Wherein the charging contacts are provided on the left frame 100 and/or the right frame 200. Specifically, the charging contact may be disposed at an end of the right temple 220 away from the right frame 210, or the charging contact may be disposed at an end of the left temple 120 away from the left frame 110; alternatively, charging contacts are provided at both the end of the left temple 120 remote from the left frame 110 and the end of the right temple 220 remote from the right frame 210. Alternatively, the charging contact is disposed on the outside of the left temple 120 and/or the outside of the right temple 220. Alternatively, the charging contact may be disposed at the bottom or top of the left frame 110; alternatively, the charging contact may be disposed at the bottom or top of the right frame 210; alternatively, the charging contacts are provided at both the bottom of the right frame 210 and the bottom of the left frame 110. Alternatively, charging contacts are provided on both the top of the right frame 210 and the top of the left frame 110. Alternatively, the charging contact is disposed at one end of the left lens frame 110 near the left lens leg 120; alternatively, the charging contact may be disposed at an end of the right frame 210 that is adjacent to the right temple 220. It should be noted that, the specific setting positions of the charging contacts include, but are not limited to, the above positions, and the specific setting positions of the charging contacts may be actually set according to the structure, shape of the frame body or the usage habit of the user, so long as the charging contacts are set on the frame body and the charging contacts are conveniently connected with an external power source.
In one embodiment, as shown in fig. 2, the charging contact is provided as a charging pin 250. The charging pin 250 is disposed at one end of the right glasses leg 220 away from the right glasses frame 210, in order to facilitate the charging pin 250 to be retracted when the charging pin 250 is not charged, a storage groove 230 is disposed at a position of the left glasses frame 110 corresponding to the charging pin 250, one end of the charging pin 250 is hinged to the bottom of the storage groove 230 through a hinge shaft 240, when charging is not required, the charging pin 250 is rotated around the hinge shaft 240 to enable the charging pin 250 to be folded into the storage groove 230 at one end far away from the hinge shaft 240, so that the charging pin 250 is stored into the storage groove 230, the charging pin 250 is prevented from occupying redundant space, the charging pin 250 is protected, and the overall aesthetic property of the intelligent glasses frame is improved. In order to prevent the charging pins 250 from easily sliding out of the inside of the receiving groove 230 when the charging pins 250 are received in the receiving groove 230, an adhesive layer is provided at the bottom of the receiving groove 230 to adhere the charging pins 250 in the receiving groove 230 through the adhesive layer.
In another embodiment, as shown in fig. 3, the charging contact is configured as a conductive contact 260, and the smart glasses frame may be charged through connection of the conductive contact 260 to an external power source. The setting of conductive contact 260 makes things convenient for the user to charge to intelligent glasses frame, makes the user at the in-process of using direct with conductive contact 260 and external power source contact can realize charging, has made things convenient for the user to charge, is different from the setting of charging the in-process of participating in need to open the charging the in-process of participating in from accomodating the groove and can charge. In this embodiment, preferably, in order to prevent loosening between the conductive contact 260 and the external power supply during charging, the charging contact is set to be a magnetic conductive contact, and the magnetic conductive contact can be attracted to the charging position of the external power supply by using the attraction of the magnet through the magnetic conductive contact, so as to avoid poor contact between the charging contact and the charging position of the external power supply due to the existence of a gap.
In still another embodiment, the charging contact is set as a USB charging interface (not shown in the figure), and in the charging process, a USB charging connector connected to an external power source is connected to the USB charging interface, so as to realize charging of the smart glasses frame.
Of course, in other embodiments, the smart glasses frame may be charged by wireless charging. Specifically, the charging contact is set to be a wireless charging module, and the wireless charging module receives external radio frequency energy to charge the power module of the intelligent glasses frame, so that the charging is convenient.
In a specific implementation, the charging contact may be connected to an external power source through an external charging cord, so as to charge the smart glasses frame. The user can charge the intelligent glasses frame when sleeping or under the condition of not using glasses, so that the intelligent glasses frame is convenient to use.
As a preferred embodiment, can with intelligent glasses frame and have the spectacle case cooperation of function of charging and use, wherein, set up in the spectacle case with the place position of intelligent glasses frame adaptation place the position with the position that the contact corresponds charges sets up the interface that charges, will charge the contact with charge interface connection, realize to the charge of intelligent glasses frame, will intelligent glasses frame place the usable spectacle case of charging in the spectacle case protects the glasses, prevents to damage glasses, also avoids using the charging wire simultaneously, and it is more convenient to charge.
The processing component further comprises a power module 4, said power module 4 comprising a waterproof protection means. Preferably, the waterproof protection device is a self-restoring fuse. Can wash intelligent glasses frame through setting up waterproof protection device, when the circuit of intelligent glasses frame takes place short circuit or overload and leads to circuit trouble owing to intaking, the heat that the heavy current that flows through from the recovery fuse produced makes the polymeric resin melt, and the volume increases rapidly, forms the high resistance state, and operating current reduces rapidly to restrict and protect the circuit. After the fault is removed, the self-recovery fuse is cooled again for crystallization, the volume is contracted, the conductive particles form a conductive path again, and the self-recovery fuse is recovered to be in a low-resistance state, so that the protection of a circuit is finished, manual replacement is not needed, and even if water or liquid enters the inside of the intelligent glasses frame during cleaning, the circuit inside the intelligent glasses frame is not damaged. It should be noted that the waterproof protection device is not limited to the self-restoring fuse, and the waterproof protection device may be a short-circuit protection device having a function equivalent to that of the self-restoring fuse.
The processing component comprises a control module 3, a detection module and an alarm device 1; the detection module comprises a distance detection device 5, a time metering device 2, a gesture detection device 7 and an illumination detection device 6, and specifically, the distance detection device 5, the time metering device 2, the gesture detection device 7, the illumination detection device 6 and the alarm device 1 are respectively connected with the control module 3.
Specifically, the power module 4 is configured to supply power to the control module 3, the detection module, and the alarm device 1. The distance detection device 5 is used for detecting the distance between the mirror frame body and the reading target, when a shielding object in front of the mirror frame body enters the detection range of the distance detection device 5, the control module 3 sends out an instruction, the time measurement device 2 starts timing so as to measure the reading or office time (namely the eye duration) of a user, when the shielding object of the mirror frame body leaves the detection range of the distance detection device 5 and exceeds the sleep time set by the time measurement device 2, the time measurement device 2 clears when the shielding object does not appear in the detection range of the distance detection device 5 again in front of the mirror frame body, and if the shielding object appears again in front of the mirror frame body in the sleep time range set by the time measurement device 2, the time measurement device 2 continues timing. The gesture detection device 7 is used for detecting the sitting gesture of the user, the illumination detection device 6 is used for detecting the illumination intensity of the reading environment of the user, the detection device detects the sitting gesture of the user, the illumination intensity, the distance between the user and the reading target and the eye use time length, and if any item exceeds a set safety index, the alarm device 1 sends an alarm signal to remind the user of paying attention to eye use safety and correct the eye use time length in time. In a specific use process, the detection results are transmitted to the control module 3 after the eye use time of the user, the distance between the user and the reading target, the reading sitting posture and the reading illumination environment are detected through the time metering device 2, the distance detection device 5, the posture detection device 7 and the illumination detection device 6 respectively, and if any one of the detection results exceeds a set safety index, the alarm device 1 sends an alarm signal to remind the user correspondingly so as to correct the bad eye use habit of the user. The power module 4, the time measuring device 2, the distance detecting device 5, the gesture detecting device 7 and the illumination detecting device 6 are connected through wires penetrating through a wiring channel inside the glasses frame body. Of course, in other embodiments, the power module 4, the time measuring device 2, the distance detecting device 5, the gesture detecting device 7, and the illumination detecting device 6 may also be connected wirelessly.
In this embodiment, two nose pads 300 are disposed at the connection position between the left frame 110 and the right frame 210, so that the pressure of the glasses on the face is reduced by the nose pads 300, and the comfort of the user wearing the glasses is improved.
In order to improve accuracy of reading illumination intensity and reading distance detection, in this embodiment, the illumination detection device 6 is disposed at the front end of the left lens frame 110, and the distance detection device 5 is disposed at the front end of the right lens frame 210, so as to avoid influence on detection results due to shielding of the illumination detection device 6 and the distance detection device 5 by hair or clothing accessories of a user. It should be noted that the front end of the left frame 110 refers to the side of the left frame 110 away from the user when the user wears the glasses correctly, and the front end of the right frame 210 refers to the side of the right frame 210 away from the user when the user wears the glasses correctly. The installation positions of the light detecting device 6 and the distance detecting device 5 are not limited to this design, and in other embodiments, the light detecting device 6 and the distance detecting device 5 are respectively disposed on the nose pads 300 distributed between the left lens frame 110 and the right lens frame 210. Or, one of the light detecting device 6 and the distance detecting device 5 is disposed at the front ends of the left lens frame 110 and the right lens frame 210, and the other is disposed on the nose pad 300 distributed between the left lens frame 110 and the right lens frame 210, or the distance detecting device 5 is disposed on the left lens frame 110, the light detecting device 6 is disposed on the right lens frame 210, or the distance detecting device 5 and the light detecting device 6 are disposed on the left lens frame 110 or the right lens frame 210 at the same time, so that the accuracy of reading light intensity and reading distance detection can be improved in all the above four modes.
In other embodiments, one of the distance detecting device 5 and the light detecting device 6 may be disposed on the left temple 120 or the right temple 220, or the distance detecting device 5 and the light detecting device 6 may be disposed on the left temple 120 and the right temple 220 at the same time.
In the present embodiment, the alarm device 1, the time measuring device 2 and the gesture detecting device 7 are disposed on the left temple 120, the power module 4 and the control module 3 are disposed on the right temple 220, but not limited to the above-mentioned arrangement, in actual production, the positions of the alarm device 1, the power module 4, the control module 3 and the time measuring device 2 actually disposed on the frame body are set according to their respective actual weights, and only the sum of the weights borne by the left frame 100 and the right frame 200 needs to be ensured to be equal, and the left and right sides of the frame body are balanced.
The processing unit further comprises at least one travel switch (not shown in the figure) connected to the power module 4, and the travel switch is disposed at the connection position between the left lens frame 110 and the left lens leg 120; or the travel switch is disposed at the connection between the right lens frame 210 and the right lens leg 220. In this embodiment, two travel switches are provided, one of which is disposed at the connection between the left lens frame 110 and the left lens leg 120, and the other of which is disposed at the connection between the right lens frame 210 and the right lens leg 220, and the two travel switches are connected in series to the circuit of the intelligent lens frame, and are connected to the power module 4, so as to control the power on or power off of the circuit in the intelligent lens frame. When left mirror frame 110 and left mirror foot 120 or right mirror frame 210 and any one or two of right mirror foot 220 are folding simultaneously, the travel switch who sets up in its corresponding junction breaks off, realizes intelligent glasses frame automatic shutdown, when left mirror frame 110 and left mirror foot 120 and right mirror frame 210 and right mirror foot 220 open simultaneously, the travel switch who sets up in the junction of left mirror frame 110 and left mirror foot 120 and the travel switch of junction of right mirror frame 210 and right mirror foot 220 close, and the switch-on circuit realizes intelligent glasses frame's automatic start. Through this design, when the user opens left side mirror foot 120 and right side mirror foot 220 and wears, intelligent glasses frame immediately starts work, when plucking the glasses will left side mirror foot 120 and right side mirror foot 220 fold when packing up, intelligent glasses frame stop work, travel switch's setting can control when folding or opening left side mirror foot 120 and right side mirror foot 220 the closing or opening and shutting of intelligent glasses frame, the user need not extra operation switch and just can open or close intelligent glasses frame, and convenience of customers uses to the power consumption of intelligent glasses frame has been saved. Of course, in other embodiments, a travel switch may be disposed at any connection position between the left lens frame 110 and the left lens leg 120 and between the right lens frame 210 and the right lens leg 220, so as to achieve automatic startup and automatic shutdown of the intelligent glasses frame.
The alarm device 1 comprises any one or a combination of any two or more of a sound unit, a vibration unit, a light-emitting unit, an electrode stimulation unit and an electrochromic unit. The alarm mode of the alarm device 1 of the intelligent glasses frame can generate alarm prompts in different forms or different form combinations such as sound, vibration, luminescence, electrode stimulation or electrochromic according to the signals and instructions of the control module 3. Preferably, the sound unit may be a bone conduction voice transducer.
In this embodiment, the distance detecting device 5 is an infrared sensor, the gesture detecting device 7 is a gesture detecting sensor, and the illumination detecting device 6 is an illumination detecting sensor.
The invention also provides glasses, which comprise a glasses frame and lenses arranged on the glasses frame, wherein the glasses frame adopts the intelligent glasses frame. The pair of glasses can improve the comfort of wearing of a user and correct the bad eye habit of the user so as to achieve the purpose of preventing myopia.
The glasses further comprise auxiliary correction components capable of selectively forming a shielding layer on the surface of the lenses, when the time metering device 2, the distance detection device 5, the gesture detection device 7 and the illumination detection device 6 detect the eye use time of the user, the distance between the user and a reading target, the reading sitting posture and the reading illumination environment, the detection results are transmitted to the control module 3, if any one of the detection results exceeds a set safety index, the auxiliary correction components are started to form the shielding layer on the surface of the lenses through the control module 3, so that the user can not continue to normally use the glasses temporarily, the glasses are forced to correct bad eye use habits in time, and the correction effect of the user is improved.
As a preferable technical solution, the auxiliary correcting component includes a water bag disposed in the lens frame body and a water outlet hole disposed on the periphery of the left lens frame 110 and the right lens frame 210 and facing the lens, the water outlet hole is communicated with the water bag through a water guide pipe, and an electric valve is disposed at an opening of the water outlet hole and connected with the control module 3. When the time metering device 2, the distance detecting device 5, the gesture detecting device 7 and the illumination detecting device 6 detect the eye duration of the user, the distance between the user and the reading target, the reading sitting posture and the reading illumination environment, and then transmit the detection result to the control module 3, if any one of the detection results exceeds the set safety index, the control module 3 sends out a command to switch on the power supply module 4 of the electric valve, the electric valve is started to spray water in the water sac onto the lens through the electric valve to form a shielding layer which obscures the surface of the lens, and the user is forced to correct the current bad eye habit. In practical use, the opening time of the electric valve can be set to be 0.5s-1s each time.
The water bag is provided with the water injection hole that communicates with the frame body surface, and the surface of frame body is provided with the open-ended shutoff stopper of selectively shutoff water injection hole, makes things convenient for the water of water bag to add.
As another preferable technical scheme, the auxiliary correcting component comprises an atomized glass layer arranged on the surface of the lens, the atomized glass is selectively connected with the power module 4, and the power on/off of the atomized glass is controlled by the control module 3. When the glasses work normally, the atomized glass die is normally connected with the power module 4, the atomized glass is in a transparent state, when the time metering device 2, the distance detection device 5, the gesture detection device 7 and the illumination detection device 6 detect the eye use time of a user, the distance between the user and a reading target, the reading sitting posture and the reading illumination environment, then the detection result is transmitted to the control module 3, if any one of the detection results exceeds a set safety index, the atomized glass is controlled to be powered off by the control module 3, so that the atomized glass is not powered on and is in an opaque state, a shielding layer is formed on the surface of the lens, the user can not use the glasses normally temporarily, and the user is forced to correct bad eye use habits.
The invention also provides a control method of the intelligent glasses frame, which comprises a detection device, an alarm device 1 and a control module 3, wherein the detection device comprises a distance detection device 5, a time metering device 2, an illumination detection device 6 and a gesture detection device 7, the distance detection device 5 is used for detecting the distance between a user and a reading target, the time metering device 2 is used for metering the eye use time of the user, the illumination detection device 6 is used for detecting the reading illumination intensity of the user, the gesture detection device 7 is used for detecting the sitting posture of the user, the time metering device 2, the distance detection device 5, the illumination detection device 6 and the gesture detection device 7 send respective detection results to the control module 3, and when any detection result of the distance detection device 5, the time metering device 2, the illumination detection device 6 and the gesture detection device 7 exceeds a safe range value, the control module 3 sends an instruction to start the alarm device 1. In this embodiment, the smart glasses frame has the structure of implementing the smart glasses frame.
The distance detecting device 5, the time measuring device 2, the illumination detecting device 6 and the gesture detecting device 7 detect one side every time T, if the distance detecting device 5, the time measuring device 2, the illumination detecting device 6 and the gesture detecting device 7 detect the results within the safe range value, the detection is continued, otherwise, the control module 3 sends out an instruction to start the alarm device 1. When the shielding object in front of the mirror frame body enters the detection range of the distance detection device 5, the time measurement device 2 starts timing so as to calculate the reading or office time (namely the eye time length) of a user, when the shielding object of the mirror frame body leaves the detection range of the distance detection device 5, the time measurement device 2 clears when the shielding object in front of the mirror frame body exceeds the sleep time set by the time measurement device 2 and does not appear in the detection range of the distance detection device 5, and if the shielding object appears again in front of the mirror frame body in the sleep time range set by the time measurement device 2, the time measurement device 2 continues timing. In this embodiment, the time T is 1s, and in actual use, the time T may be set according to actual needs.
The control method of the intelligent glasses frame further provides a power module 4 and a travel switch, wherein the travel switch controls the power module 4, and the travel switch is arranged at a connection position of the left glasses frame 110 and the left glasses leg 120 or a connection position of the right glasses frame 210 and the right glasses leg 220 in the intelligent glasses frame. In this embodiment, the connection between the left lens frame 110 and the left lens leg 120 or the connection between the right lens frame 210 and the right lens leg 220 is provided with the travel switch. The control method of the intelligent glasses frame specifically comprises the following specific principles:
when the left eyeglass frame 110 and the right eyeglass frame 210 are opened to wear, the travel switch is connected with the circuit to start the intelligent eyeglass frame, the time metering device 2, the distance detection device 5, the illumination detection device 6 and the gesture detection device 7 detect the eye duration of the user, the distance between the user and the reading target, the illumination environment for reading and the sitting posture of the user respectively every 1s, and transmit the detected result to the control module 3, if any detected result exceeds the set safety range value, the control device sends an instruction to start the alarm device 1 to remind the user to correct in time, if the detected result is within the set safety range value, the detection is continued, after the user receives an alarm prompt of the alarm device 1, the control module 3 continues to send an instruction to start the alarm device 1 before the next detection, otherwise, the detection is continued. When the user removes the glasses and folds the left and right temples 120 and 220, the travel switch turns off the smart glasses frame.
As a preferred embodiment of the control method of the smart glasses frame, the smart glasses frame further includes an eyeball tracking sensor and a control switch, the eyeball tracking sensor is used for tracking movement of eyeballs and transmitting the tracking result to the control module 3, the control module 3 determines that the user is in use by judging the tracking result, if the eyeballs move within a set time, and if the eyeballs do not move within the set time, the user is in a non-use state, and when the user is in the non-use state, the smart glasses frame is closed by the control switch, so that the energy is saved. In the present embodiment, the eye tracking sensor is a capacitive eye tracking sensor
In the description herein, it should be understood that the terms "first" and "second" are used merely to distinguish between the descriptions and not to have a particular meaning.
It should be noted that the above embodiments are merely preferred embodiments of the present invention and the applied technical principles, and any changes or substitutions easily conceivable to those skilled in the art within the scope of the present invention are included in the scope of the present invention.

Claims (3)

1. The glasses comprise a glasses frame and lenses arranged on the glasses frame, and further comprise auxiliary correction components capable of selectively forming a shielding layer on the surfaces of the lenses, wherein the glasses frame is an intelligent glasses frame;
the intelligent glasses frame comprises a glasses frame body and processing components which are arranged on the glasses frame body and used for correcting bad eye habits, the glasses frame body comprises a left frame and a right frame which are symmetrically arranged, the left frame is connected with the right frame, the processing components are divided into a first group of processing components and a second group of processing components which are equal in weight, the first group of processing components are arranged on the left frame, and the second group of processing components are arranged on the right frame so as to balance the left side and the right side of the glasses frame body;
the left frame comprises a left mirror frame and a left mirror leg, one end of the left mirror leg is connected with the left mirror frame, and the right frame comprises a right mirror frame and a right mirror leg, and one end of the right mirror leg is connected with the right mirror frame;
the processing part also comprises a power supply module, wherein the power supply module comprises a waterproof protection device;
the processing part also comprises a control module, a detection module and an alarm device; the detection module comprises a distance detection device, a time metering device, a gesture detection device and an illumination detection device, wherein the distance detection device, the time metering device, the gesture detection device, the illumination detection device and the alarm device are respectively connected with the control module;
the auxiliary correction assembly comprises a water bag arranged in the lens frame body and water outlets which are formed in the periphery of the left lens frame and the right lens frame and face the lenses, the water outlets are communicated with the water bag through water guide pipes, an electric valve is arranged at the opening part of the water outlets, and the electric valve is connected with the control module;
when the time metering device, the distance detection device, the gesture detection device and the illumination detection device detect the eye duration of a user, the distance between the user and a reading target, the reading sitting posture and the reading illumination environment, and then the detection result is transmitted to the control module, if any one of the detection results exceeds a set safety index, the control module sends out a command to switch on the electric valve and the power supply module, the electric valve is started to enable water in the water bag to be sprayed onto the lens through the electric valve to form a shielding layer which obscures the surface of the lens, and the user is forced to correct the current bad eye habit;
the auxiliary correction component comprises atomized glass arranged on the surface of the lens, the atomized glass is selectively connected with the power supply module, and the power on/off of the atomized glass is controlled by the control module;
when the glasses work normally, the atomized glass is normally connected with the power supply module, the atomized glass is in a transparent state, when the time metering device, the distance detection device, the gesture detection device and the illumination detection device detect the eye use time of a user, the distance between the user and a reading target, the reading sitting posture and the reading illumination environment, then the detection result is transmitted to the control module, if any one of the detection results exceeds a set safety index, the control module controls the atomized glass to be powered off, so that the atomized glass is not powered on and is in an opaque state, a shielding layer is formed on the surface of the lens, the user can not use the glasses normally temporarily, and bad eye use habit is forced to be corrected by the user.
2. The pair of spectacles according to claim 1, wherein the water bag is provided with a water injection hole communicated with the outer surface of the spectacles frame body, and the outer surface of the spectacles frame body is provided with a plugging plug capable of selectively plugging the opening of the water injection hole.
3. The spectacles of claim 1, wherein the time per opening of the motorized valve is 0.5s to 1s.
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