Head-mounted Internet of Things photoelectromagnetic wave identification and control method and network system

Through the head-mounted IoT photoelectromagnetic wave recognition and control technology, variable, recognizable and controllable photoelectromagnetic waves are used for identification and manipulation, which solves the problem of health problems caused by manual operations and mismatch between market demand, and realizes the control of electronic devices and IoT products without manual operations, and promotes the rapid development of the Internet of Things and artificial intelligence.

CN119937768APending Publication Date: 2025-05-06李亮
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202311458126.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2023-11-05
Publication Date
2025-05-06

AI Technical Summary

Technical Problem

In the prior art, manual operation of mobile phones leads to the "head-down people" and other health problems such as heart and brain diseases. At the same time, manual operation does not match the market demands of the Internet of Things, digitalization, and intelligence.

Method used

The head-mounted IoT photoelectromagnetic wave recognition and control technology is adopted, and multiple light-sensitive or magnetic-sensitive control displays are installed on the hat on the head, and variable, recognizable and controllable photoelectromagnetic waves are used for identification and control, so that electronic devices and IoT products can be controlled without manual operation.

Benefits of technology

It realizes the function of identifying and manipulating electronic devices and IoT products without manual operation, reduces the threat to the health of the "head-down people", and adapts to the needs of the Internet of Things and other markets, promoting the rapid and efficient transformation of the Internet of Things and the development of artificial intelligence.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure FT_1
    Figure FT_1
  • Figure FT_2
    Figure FT_2
  • Figure FT_3
    Figure FT_3
Patent Text Reader

Abstract

The invention is suitable for the technical field of head-mounted Internet of Things intelligent mobile terminals, and provides a method and a network system for recognizing and controlling'variable, recognizable and controllable light-electromagnetic waves' of the head-mounted Internet of Things, namely the method and the network system for recognizing and controlling the light-electromagnetic waves of the head-mounted Internet of Things. Comprising but not limited to a plurality of light-sensitive identification and control displays mounted on one (top) or multiple (top) cap bodies. The light sensation (magnetic sensation) recognition control display can recognize a human body and an object through the wavelength of light rays (magnetic lines), and can be connected with a specific control symbol by recognizing the parts of the head of the human body and different forms of actions of the parts, so that the purpose of liberating both hands by controlling the parts of the head and the actions of the parts is achieved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This patent relates to the field of new optical electromagnetic wave identification and control technology used in head-mounted IoT smart mobile terminals. More specifically, it relates to a method and network system for head-mounted IoT optical electromagnetic wave identification and control. Background Art

[0002] With the continuous development of acoustic wave speech recognition and control technology, the technology has become relatively mature. However, at present, optical wave recognition is mostly used for "manual" type, especially "mobile" face recognition and some online shopping object recognition, and basically uses visible light face recognition and online shopping object recognition. "Mobile phones" controlled by "hands" are bound by hands, feet, body, and head during operation, especially for "head-down tribes" who cause cardiovascular and cerebrovascular diseases, stroke in severe cases, and even sudden death, endangering life and safety. Moreover, "mobile" control does not match the needs of current market changes such as the Internet of Things, digitalization, and intelligence. A new operation technology that does not rely on "fingers" and "hands" is needed. This technology is the "head" machine, that is, the "object image" of various parts of the "head" or "head" to identify and control everything, that is, the head-mounted Internet of Things optical electromagnetic wave recognition and control technology. Summary of the invention

[0003] The purpose of this patent is to provide a head-mounted Internet of Things optical and electromagnetic wave recognition and control method and network The system can solve the current problems of manual face recognition, online shopping object recognition and remote control, and solve problems including but not limited to the constraints of hands, feet, body and head due to mobile phone operation, especially the cardiovascular and cerebrovascular diseases caused by people who are addicted to their phones, so as to adapt to the current market changes such as the Internet of Things, photoelectricity, magneto-electricity, digitization, intelligence, wisdom and intelligent connection.

[0004] In order to achieve the above-mentioned purpose, the technical solution adopted by this patent is to provide a head-mounted Internet of Things optical electromagnetic wave recognition and control method and network system worn on the head hat body. The method and network system for head-mounted Internet of Things optical electromagnetic wave recognition and control, its construction method and network characteristics are: providing a head-mounted Internet of Things "variable, recognizable and controllable optical electromagnetic wave" recognition and control method and network system, connecting multiple light-sensitive (magnetic) recognition and control displays installed on one (top) or multiple (top) hat bodies. "Variable, recognizable and controllable optical electromagnetic waves" include, but are not limited to, a collection of three types of "optical electromagnetic waves", namely "variable optical electromagnetic waves", "recognizable optical electromagnetic waves" and "controllable optical electromagnetic waves". "Optical electromagnetic waves" include but are not limited to a collection of "photoelectric waves" and "magnetic waves".

[0005] Furthermore, with the above-mentioned head-mounted Internet of Things optical and electromagnetic wave recognition and control method and network system, users can use the "variable, recognizable and controllable optical and electromagnetic waves" related devices to not only effectively identify the keyboards and other objects of the existing electronic device control interface, but also to control existing smart phones, matching computers and other electronic products and other objects connected to networks such as Bluetooth, WIFI, local area network, Internet and Internet of Things.

[0006] Furthermore, the above-mentioned head-mounted IoT optical electromagnetic wave recognition and control method and network system, the optical sensing recognition and control display, can recognize human bodies and objects through the "variable recognizable optical electromagnetic waves" of light (magnetic lines of force). "Variable recognizable optical electromagnetic waves" are optical electromagnetic waves emitted by the optical sensing (including magnetic sensing, the same below) recognition and control display, which can automatically change according to environmental changes, recognition difficulty and other factors, and self-adapt until the variable wavelength is sufficient to "recognize" the keyboard and other objects of the existing electronic device control interface.

[0007] Furthermore, the above-mentioned head-mounted IoT optical electromagnetic wave recognition and control method and network system, the optical (magnetic) recognition and control display, can recognize the human body and objects through the "variable identifiable and controllable optical electromagnetic waves" of light (including magnetic lines of force, the same below), and the keyboard and other electronic devices of the existing electronic device control interface. "Variable identifiable and controllable optical electromagnetic waves" means that the optical electromagnetic waves emitted by the optical (magnetic lines of force) recognition and control display can adopt different and variable electromagnetic wavelengths according to actual recognition and control needs, until the variable wavelength is sufficient to recognize and control the keyboard and other electronic devices of the existing electronic device control interface.

[0008] Furthermore, the above-mentioned head-mounted Internet of Things optical and electromagnetic wave recognition and control method and network system, the "variable, recognizable and controllable optical and electromagnetic waves" emitted by the light-sensitive (magnetic) recognition and control display can be connected with the control characters and other objects of specific electronic products by identifying the different forms of the "tongue, lips, mouth, eyes, face" and other parts of the human head and their movements, so as to achieve the purpose of controlling the mouse keys, number keys, letter keys, symbol keys and other arbitrary keys and other objects with the various parts of the head and their movements.

[0009] Furthermore, the above-mentioned head-mounted Internet of Things optical and electromagnetic wave recognition and control method and network system, the optical and electromagnetic wave source of the "variable, recognizable and controllable optical and electromagnetic waves" of the optical (magnetic) recognition and control display is not only visible light, but also includes invisible light (invisible magnetic lines) such as "far infrared, infrared, ultraviolet, x-rays, gamma rays and radio waves", which can autonomously, automatically and self-consistently serve as the optical and electrical wave (magnetic wave) sensor of the optical (magnetic) display to perform the functions of variable optical wave recognition and variable optical and electrical wave (magnetic wave) control.

[0010] Furthermore, the above-mentioned head-mounted Internet of Things optical and electromagnetic wave recognition and control method and network system, the "variable, recognizable and controllable optical and electromagnetic waves" of the light-sensitive (magnetic) recognition and control display have greater recognition and control advantages in invisible scenes such as dark nights, tunnels and mines, and the invisible light waves and invisible magnetic waves have greater recognition and control advantages for the recognition and manipulation of objects such as mouse keys, number keys, letter keys, symbol keys and other arbitrary keys.

[0011] Furthermore, in the above-mentioned head-mounted Internet of Things optical and electromagnetic wave recognition and control method and network system, the layout and installation positions of the basic unit devices (including components, the same below) of the "variable, recognizable and controllable optical and electromagnetic wave" light-sensing recognition and control display include but are not limited to the brim on the cap body, and also include other positions on the cap body.

[0012] Furthermore, the above-mentioned head-mounted Internet of Things optical electromagnetic wave recognition and control method and network system, the basic unit device (component) layout and installed equipment of the "variable, recognizable and controllable optical electromagnetic wave" light-sensing recognition and control display include but are not limited to auxiliary equipment such as a "six-phase battery" and a memory card installed on the cap body, and also include other equipment on the cap body.

[0013] Furthermore, the above-mentioned head-mounted Internet of Things optical electromagnetic wave recognition and control method and network system, the layout and installed equipment of the basic unit devices (components) of the light-sensing recognition and control display of the "variable, recognizable and controllable optical electromagnetic wave" include but are not limited to night vision goggles, focusers, and light enhancers installed on the brim of the hat, and also include other equipment on the hat body.

[0014] Furthermore, the above-mentioned head-mounted Internet of Things optical electromagnetic wave recognition and control method and network system, the basic unit device (component) layout and installed equipment of the "variable, recognizable and controllable optical electromagnetic wave" light-sensing recognition and control display include but are not limited to recognition and control devices such as optical wave sensors and cameras installed on the brim of the hat, and also include other equipment on the hat body.

[0015] Furthermore, the above-mentioned head-mounted Internet of Things optical and electromagnetic wave recognition and control method and network system, the basic unit device (component) layout and installed equipment of the "variable, recognizable and controllable optical and electromagnetic wave" light-sensing recognition and control display include but are not limited to Bluetooth, WIFI, local area network, Internet and Internet of Things and other network devices on the hat brim, and also include other devices on the hat body and other devices and equipment composed of a complete system.

[0016] Furthermore, the above-mentioned head-mounted Internet of Things optical electromagnetic wave recognition and control method and network system, the layout and installation equipment of the basic unit devices (components) of the light-sensing recognition and control display of the "variable, recognizable and controllable optical electromagnetic wave" include but are not limited to a system composed of various devices and equipment such as a display device installed on the brim of the hat, and also includes a system composed of other devices on the hat body.

[0017] Furthermore, the above-mentioned head-mounted IoT optical electromagnetic wave recognition and control method and network system, the control method of the "variable, identifiable and controllable optical electromagnetic wave" optical sensing recognition and control display, with the optical sensing recognition and control display as the connection, includes but is not limited to the tongue-controlled mouse "universal" one-stop control of swiping the tongue to recognize the direction, and also includes other swiping object recognition and image control. "Universal" one-stop control can recognize and control objects in all relevant directions.

[0018] Furthermore, the above-mentioned head-mounted IoT optical electromagnetic wave recognition and control method and network system, the control method of the "variable, identifiable and controllable optical electromagnetic wave" optical sensing recognition and control display, with the optical sensing recognition and control display as the connection, includes but is not limited to the lip-controlled number mark "0, 1" two-combination control of lip swipe recognition, and also includes other swipe object recognition and image control. The "0, 1" two-combination control can recognize and control all digital objects.

[0019] Furthermore, the head-mounted IoT optical electromagnetic wave recognition and control method and network system described above, the control method of the "variable, recognizable and controllable optical electromagnetic wave" optical sensing recognition and control display, with the optical sensing recognition and control display as the connection, includes but is not limited to the "tongue, lips, mouth" three-in-one control of the mouth-controlled keyboard for swiping the mouth to recognize words, and also includes other swiping object recognition and image control. The "tongue, lips, mouth" three-in-one control can recognize and control all objects related to letters and words and other text-related images.

[0020] Furthermore, the above-mentioned head-mounted IoT optical electromagnetic wave recognition and control method and network system, the control method of the "variable, recognizable and controllable optical electromagnetic wave" light-sensing recognition and control display, with the light-sensing recognition and control display as the connection, includes but is not limited to the "tongue, lips, mouth, eyes" four-in-one control of the eye-controlled keyboard for swiping eyes to recognize words, and also includes other swiping object recognition and image control. The "tongue, lips, mouth, eyes" four-in-one control can recognize and control all images of related symbols.

[0021] Furthermore, the above-mentioned head-mounted IoT optical electromagnetic wave recognition and control method and network system, the control method of the "variable, identifiable and controllable optical electromagnetic wave" optical recognition and control display, with the optical recognition and control display as the connection, includes but is not limited to the face recognition of face control of all things "tongue, lips, mouth, eyes, face" five-in-one control, and also includes other object recognition and image recognition control. The "tongue, lips, mouth, eyes, face" five-in-one control can recognize and control all images of all things.

[0022] Furthermore, the head-mounted Internet of Things optical electromagnetic wave recognition and control method and network system, and the different control modes of the "variable, identifiable and controllable optical electromagnetic wave" optical sensing recognition and control display can greatly promote the Internet of Things of all things to be transformed into photoelectric, photoelectric to digital, digital to intelligent, intelligent to wisdom, wisdom to intelligent connection..., and so on. Intelligent connection forms intelligent products, intelligent business and intelligent connection of all things through the connection of human brain wisdom and artificial intelligence.

[0023] Furthermore, the head-mounted IoT optical electromagnetic wave recognition and control method and network system, the magnetic induction recognition and control are similar to the above-mentioned "variable, identifiable and controllable optical electromagnetic wave" optical induction recognition and control, through the conversion of magnetic field waves and electric field waves into photoelectric magnetic field waves. Photoelectric magnetic field waves are a collection of optical field waves and magnetic electric field waves, both of which are recognized and controlled in the form of radio waves, and the recognition and control methods are basically the same as the above methods.

[0024] The construction method and network system of the head-mounted IoT live broadcast device provided by this patent have the beneficial effect of promoting the modernization of the photoelectric, magnetic, digital, intelligent, smart and intelligent connection of the "Internet of Things" of all things. If manual recognition and control is changed to head movement recognition and control, just like manual input is changed to voice input, then the transformation of the Internet of Things to digitalization will be faster and more efficient, and the rapid and efficient transformation of the Internet of Things to digitalization will drive the rapid and efficient development of artificial intelligence. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] Figure 1 , schematic diagram of light sensing recognition and control display;

[0026] Figure 2 , Tongue brushing to identify direction: Schematic diagram of the photoelectric signal generation module (photoelectricity) of the tongue-controlled mouse (universal control);

[0027] Figure 3 , Lip swipe to identify numbers: lip control number mark (0 open, 1 closed) photoelectric signal generation module (photoelectricity);

[0028] Figure 4 , Word recognition by mouth brushing: Schematic diagram of the photoelectric signal generation module (photoelectric) of the mouth-controlled keyboard (tongue control, lip control, mouth control);

[0029] Figure 5 , Eye swipe to recognize symbols: Schematic diagram of electronic signal module of eye-controlled keyboard (tongue control, lip control, mouth control, eye control);

[0030] Figure 6 , Face recognition: Schematic diagram of electronic signal module for face control of everything (tongue control, lip control, mouth control, eye control, face control);

[0031] Figure 7 , Schematic diagram of the transformation between IoT and Zhilian;

[0032] Figure 8 , schematic diagram of magnetoelectric and photoelectric conversion. DETAILED DESCRIPTION

[0033] In order to make the technical problem of head-mounted IoT optical electromagnetic wave recognition and control to be solved by this patent, and to make the technical solution and beneficial effects clearer, the following is a further detailed description of this patent in conjunction with the accompanying drawings and implementation cases. It should be understood that the specific implementation cases described here are only used to explain this patent and are not used to limit this patent.

[0034] It should be pointed out that, in the implementation process, there should be multiple recognition and control options, and the following front options should be gradually transitioned to the latter options: the first option, hand control using finger recognition, users begin to get used to controlling with both hands, so the hand control option still needs to be retained; the second option, voice control using sound waves, is voice control using sound waves of the head, that is, the head, to control the device and its system through sound sensors; the third option, light control using light waves, can choose a certain part of the head, such as tongue control using the tongue, mouth control using the mouth, face control using facial expressions, and eye control using eye movements; the fourth option, brain control using brain waves, can be implemented by referring to the "human brain detection" approach, where a hat similar to the one worn when doing an electroencephalogram is worn on the head. There are many electrodes in the hat, which can measure, analyze, recognize and control the user's brain waves, which are not described one by one here.

[0035] Optionally, the hand control, voice control, light control and brain control associated with the head-mounted controller can be organically combined and implemented in a mixed manner, or a certain part or a certain feature of hand control, voice control, light control and brain control can be controlled. For example, light control can be implemented gradually in three steps from the tongue to the lips, from the lips to the face, and from the face to the eyes.

[0036] It should be noted that the technical solution adopted by this patent is to provide a "head-mounted" IoT optical electromagnetic wave recognition and control method and network system worn on the head hat body. The "head-mounted" IoT optical electromagnetic wave recognition and control method and network system are different from the "hand-mounted" (mobile phone) and other forms of IoT optical electromagnetic wave recognition and control methods and network systems.

[0037] Furthermore, the "head-worn" object of the above-mentioned "head-worn" IoT optical electromagnetic wave recognition and control method and network system is not limited to the hat body, but also includes other head-worn objects. As long as it is a helmet, headscarf, glasses, accessories and other objects worn on the head, they can be adopted and protected by this patent. The "head-worn" object can be not only one (top) object (hat body), but also multiple (top) objects (hat bodies).

[0038] The “variable optical electromagnetic waves” involved in the “variable, recognizable and controllable optical electromagnetic waves” can be emitted by one “radio wave generator” with a variety of variable wavelengths, can also be emitted by multiple “radio wave generators” with a variety of variable wavelengths, and can be emitted by a combination of one “radio wave generator” emitting a variety of variable wavelengths and multiple “radio wave generators” emitting a variety of variable wavelengths.

[0039] The "identifiable light and electromagnetic waves" involved in "variable, identifiable and controllable light and electromagnetic waves" can match and identify controllable objects through the wavelength propagation modes of radio waves in "variable light and electromagnetic waves" such as direct radiation, reflection, refraction, penetration, diffraction (diffraction) and scattering with the wavelength transmission information received by the controllable object. The wavelength of the radio wave can be selected by the amount of information transmitted. The shorter the wavelength of the radio wave and the higher the frequency, the more information can be transmitted in the same time.

[0040] The "controllable light and electromagnetic waves" involved in "variable, recognizable and controllable light and electromagnetic waves" are based on "variable light and electromagnetic waves" and "recognizable light and electromagnetic waves". The radio waves emitted by controllable objects such as mouse keys, number keys, letter keys, symbol keys and other arbitrary keys, as well as objects and images are controlled. This kind of radio wave is "controllable light and electromagnetic waves". In other words, "controllable light and electromagnetic waves" are radio waves emitted by controllable objects, and the controller dynamically identifies and accurately controls this radio wave signal. The controlled object itself has controllable devices and equipment.

[0041] In the description of this patent, it is important to emphasize that the head-mounted IoT optical electromagnetic wave recognition and control method and network system described above can enable users to effectively recognize keyboards and other objects in the control interface of existing electronic devices through the related devices and apparatuses of "variable, identifiable and controllable optical electromagnetic waves", and can also implement control of existing smart phones, matching computers and other electronic products and other objects connected to networks such as Bluetooth, WIFI, local area network, Internet and IoT. Network connection greatly enhances the ability of remote control.

[0042] Furthermore, the above-mentioned head-mounted IoT optical electromagnetic wave recognition and control method and network system, the optical sensing recognition and control display, can recognize human bodies and objects through the "variable recognizable optical electromagnetic waves" of light (magnetic lines of force). "Variable recognizable optical electromagnetic waves" are optical electromagnetic waves emitted by the optical sensing (magnetic sensing) recognition and control display that can automatically change according to environmental changes, recognition difficulty and other factors, and self-adapt until the variable wavelength is sufficient to recognize the keyboard and other objects of the existing electronic device control interface.

[0043] Furthermore, the above-mentioned head-mounted IoT optical electromagnetic wave recognition and control method and network system, the optical (magnetic) recognition and control display, can recognize the human body and objects through the "variable, identifiable and controllable optical electromagnetic waves" of light (magnetic lines of force) and the keyboard and other electronic devices of the existing electronic device control interface. "Variable, identifiable and controllable optical electromagnetic waves" means that the optical electromagnetic waves emitted by the optical (magnetic lines of force) recognition and control display can adopt different and variable electromagnetic wavelengths according to actual recognition and control needs, until the variable wavelength is sufficient to recognize and control the keyboard and other electronic devices of the existing electronic device control interface.

[0044] Furthermore, the above-mentioned head-mounted Internet of Things optical and electromagnetic wave recognition and control method and network system, the "variable, recognizable and controllable optical and electromagnetic waves" emitted by the light-sensitive (magnetic) recognition and control display can be connected with the control characters and other objects of specific electronic products by identifying the different forms of the "tongue, lips, mouth, eyes, face" and other parts of the human head and their movements, so as to achieve the purpose of controlling the mouse keys, number keys, letter keys, symbol keys and other arbitrary keys and other objects with the various parts of the head and their movements.

[0045] Furthermore, the above-mentioned head-mounted Internet of Things optical and electromagnetic wave recognition and control method and network system, the optical and electromagnetic wave source of the "variable, recognizable and controllable optical and electromagnetic waves" of the optical (magnetic) recognition and control display is not only visible light, but also includes far infrared, infrared, ultraviolet, x-rays, gamma rays and radio waves and other invisible light (invisible magnetic lines), all of which can autonomously, automatically and self-consistently serve as the optical and electrical wave (magnetic and electrical wave) sensor of the optical (magnetic) display to perform the functions of variable optical wave recognition and variable optical and electrical wave (magnetic and electrical wave) control.

[0046] Furthermore, the above-mentioned head-mounted Internet of Things optical and electromagnetic wave recognition and control method and network system, the "variable, recognizable and controllable optical and electromagnetic waves" of the light-sensitive (magnetic) recognition and control display have greater recognition and control advantages in invisible scenes such as dark places (at night), tunnels and mines, and the invisible light waves and invisible magnetic waves have greater recognition and control advantages for the recognition and manipulation of objects such as mouse keys, number keys, letter keys, symbol keys and other arbitrary keys.

[0047] Furthermore, in the above-mentioned head-mounted Internet of Things optical and electromagnetic wave recognition and control method and network system, the layout and installation positions of the basic unit devices (components) of the "variable, recognizable and controllable optical and electromagnetic wave" light-sensing recognition and control display include but are not limited to the brim on the cap body, and also include other positions on the cap body, which are not limited here.

[0048] Furthermore, the above-mentioned head-mounted Internet of Things optical and electromagnetic wave recognition and control method and network system, the basic unit device (component) layout and installed equipment of the "variable, recognizable and controllable optical and electromagnetic wave" light-sensing recognition and control display include but are not limited to "six-phase battery" and memory card and other auxiliary equipment installed on the cap body, and also include other equipment on the cap body, which are not limited here.

[0049] Furthermore, the above-mentioned head-mounted Internet of Things optical and electromagnetic wave recognition and control method and network system, the layout and installed equipment of the basic unit devices (components) of the light-sensing recognition and control display of the "variable, recognizable and controllable optical and electromagnetic waves" include but are not limited to night vision goggles, focusers, and light enhancers installed on the brim of the hat, and also include other equipment on the hat body, which is not limited here.

[0050] Furthermore, the above-mentioned head-mounted Internet of Things optical and electromagnetic wave recognition and control method and network system, the basic unit device (component) layout and installed equipment of the "variable, recognizable and controllable optical and electromagnetic wave" light-sensing recognition and control display include but are not limited to recognition and control devices such as optical wave sensors and cameras installed on the brim of the hat, and also include other equipment on the hat body, which is not limited here.

[0051] Furthermore, the above-mentioned head-mounted Internet of Things optical electromagnetic wave recognition and control method and network system, the basic unit device (component) layout and installed equipment of the "variable, recognizable and controllable optical electromagnetic wave" light-sensing recognition and control display include but are not limited to network devices such as Bluetooth, WIFI, local area network, Internet and Internet of Things on the brim of the hat, and also include other devices on the hat body and other devices and equipment composed of a complete system.

[0052] Furthermore, the above-mentioned head-mounted Internet of Things optical electromagnetic wave recognition and control method and network system, the layout and installation equipment of the basic unit devices (components) of the light-sensing recognition and control display of the "variable, recognizable and controllable optical electromagnetic wave" include but are not limited to a system composed of various devices and equipment such as a display device installed on the brim of the hat, and also includes a system composed of other equipment on the hat body.

[0053] Furthermore, the above-mentioned head-mounted IoT optical electromagnetic wave recognition and control method and network system, the control method of the "variable, identifiable and controllable optical electromagnetic wave" optical sensing recognition and control display, with the optical sensing recognition and control display as the connection, includes but is not limited to the tongue-controlled mouse "universal" one-stop control of swiping the tongue to recognize the direction, and also includes other swiping object recognition and image control. "Universal" one-stop control can recognize and control objects in all relevant directions.

[0054] Furthermore, the above-mentioned head-mounted IoT optical electromagnetic wave recognition and control method and network system, the control method of the "variable, identifiable and controllable optical electromagnetic wave" optical sensing recognition and control display, with the optical sensing recognition and control display as the connection, includes but is not limited to the lip-controlled number mark "0, 1" two-combination control of lip swipe recognition, and also includes other swipe object recognition and image control. The "0, 1" two-combination control can recognize and control all digital objects.

[0055] Furthermore, the head-mounted IoT optical electromagnetic wave recognition and control method and network system described above, the control method of the "variable, recognizable and controllable optical electromagnetic wave" optical sensing recognition and control display, with the optical sensing recognition and control display as the connection, includes but is not limited to the "tongue, lips, mouth" three-in-one control of the mouth-controlled keyboard for swiping the mouth to recognize words, and also includes other swiping object recognition and image control. The "tongue, lips, mouth" three-in-one control can recognize and control all objects related to letters and words and other text-related images, without limitation here.

[0056] Furthermore, the above-mentioned head-mounted IoT optical electromagnetic wave recognition and control method and network system, the control method of the "variable, recognizable and controllable optical electromagnetic wave" light-sensing recognition and control display, with the light-sensing recognition and control display as the connection, includes but is not limited to the "tongue, lips, mouth, eyes" four-in-one control of the eye-controlled keyboard for swiping eyes to recognize words, and also includes other swiping object recognition and image control. The "tongue, lips, mouth, eyes" four-in-one control can recognize and control all images of related symbols.

[0057] Furthermore, the above-mentioned head-mounted IoT optical electromagnetic wave recognition and control method and network system, the control method of the "variable, identifiable and controllable optical electromagnetic wave" light-sensing recognition and control display, with the light-sensing recognition and control display as the connection, includes but is not limited to the face-swiping face recognition of all things "tongue, lips, mouth, eyes, face" five-in-one control, and also includes other object recognition and image recognition control. The "tongue, lips, mouth, eyes, face" five-in-one control can recognize and control all objects related to the image.

[0058] Furthermore, the head-mounted Internet of Things optical electromagnetic wave recognition and control method and network system, and the different control modes of the "variable, identifiable and controllable optical electromagnetic wave" optical sensing recognition and control display can greatly promote the Internet of Things of all things to be transformed into photoelectric, photoelectric to digital, digital to intelligent, intelligent to wisdom, wisdom to intelligent connection..., and so on. Intelligent connection can form systems such as intelligent products, intelligent business and intelligent connection of all things through the connection of human brain wisdom and artificial intelligence.

[0059] Furthermore, the head-mounted IoT optical electromagnetic wave recognition and control method and network system, the magnetic induction recognition and control are similar to the above-mentioned "variable, recognizable and controllable optical electromagnetic wave" optical induction recognition and control, through the conversion of magnetic field waves and electric field waves into photoelectric magnetic field waves. Photoelectric magnetic field waves are a collection of optical field waves and magnetic electric field waves, both of which are recognized and controlled in the form of radio waves, and the recognition and control methods are generally consistent with the above methods.

[0060] In the description of this patent, the term "six-phase" battery pack is to identify and control micro-current, micro-voltage and micro-power as a minimum standard battery unit, and to optimize the combination of two or more battery units by connecting them in series to increase voltage and in parallel to increase current, and to form a network system standard interface for head-mounted IoT smart mobile terminals. The "six-phase" battery pack is used for descriptive purposes only and cannot be understood as indicating or implying relative importance or implicitly indicating the number of technical features indicated.

[0061] It should be pointed out that in the description of this patent, the term "object image" is a combination of an object and an image. The object is real and the image is virtual. The virtual and the real are combined, and "virtual symbols" are used to identify and control "real objects" through electronic signals of components and electromagnetic wave signals. "Virtual symbols" include tongue marks, numbers, letters, words, punctuation marks and other object image symbols. "Object images" are the basis of the Internet of Things, and are also the prerequisite for the evolution of the Internet of Things to digitalize, intelligentize, and connect intelligently.

[0062] The beneficial effect of the head-mounted IoT optical electromagnetic wave recognition and control method and network system provided by this patent is that through the high-quality and high-speed development of IoT "recognition and control", it greatly promotes the modernization of the photoelectric, magnetic, digital, intelligent, wise and intelligent connection of the "Internet of Things". If "manual" recognition and control is changed to "head movement" recognition and control, just like manual input is changed to voice input, then the transformation of the Internet of Things to digitalization will be faster and more efficient, and the rapid and efficient transformation of the Internet of Things to digitalization will drive the high-quality development of "artificial intelligence".

Claims

1. A method and network system for head-mounted IoT optical electromagnetic wave recognition and control, and its construction method and network features are: This patent is applicable to the field of head-mounted IoT intelligent mobile terminal technology, and provides a method and network system for head-mounted IoT "variable, recognizable and controllable optical electromagnetic wave" recognition and control, connecting multiple optical (magnetic) recognition and control displays installed on one (top) or multiple (top) hat bodies. Users can use these devices to identify keyboards and other objects in the control interface of existing electronic devices, and can also control existing mobile phones, computers and other electronic products connected to the network and other objects, etc., to accelerate the high-quality development of IoT "recognition and control".

2. The head-mounted IoT optical electromagnetic wave recognition and control method and network system as claimed in claim 1, the recognition and control display can recognize the human body and objects through "variable identifiable optical electromagnetic waves". "Variable identifiable optical electromagnetic waves" means that the electromagnetic waves emitted by the recognition and control display are variable, until the variable wavelength is sufficient to recognize the keyboard and other objects of the existing electronic device control interface.

3. The head-mounted IoT optical electromagnetic wave recognition and control method and network system as claimed in claim 1, the recognition and control display can recognize the human body and objects through "variable identifiable and controllable optical electromagnetic waves", and the keyboard and other electronic devices of the existing electronic device control interface. "Variable identifiable and controllable optical electromagnetic waves" means that the electromagnetic waves emitted by the recognition and control display are variable, until the variable wavelength is sufficient to recognize and control the keyboard and other electronic devices of the existing electronic device control interface.

4. According to the head-mounted Internet of Things optical and electromagnetic wave recognition and control method and network system as described in claim 1, the "variable, recognizable and controllable optical and electromagnetic waves" emitted by the recognition and control display can be connected with the control characters and other objects of specific electronic products by identifying the different forms of the parts of the human head and their movements, thereby achieving the purpose of control using the parts of the head and their movements.

5. As claimed in claim 1, the method and network system for head-mounted Internet of Things optical and electromagnetic wave recognition and control, the "variable, recognizable and controllable optical and electromagnetic waves" of the optical (magnetic) recognition and control display are not only sourced from visible light, but also include invisible light and invisible magnetic lines, and both have the function of autonomously, automatically and self-consistently acting as the optical (magnetic) display's optical and electromagnetic wave (magnetic wave) sensor to perform variable optical wave recognition and variable optical and electromagnetic wave (magnetic wave) control.

6. As claimed in claim 1, the method and network system for head-mounted Internet of Things optical electromagnetic wave recognition and control, the basic unit devices (components) of the light-sensing recognition and control display of "variable, recognizable and controllable optical electromagnetic waves" include but are not limited to the brim on the hat body, and also include "six-phase battery" and memory card and other auxiliary equipment installed on the brim, night vision goggles, focusers and dimmers and other adjustment devices, optical wave sensors and cameras and other recognition and control devices, Bluetooth, WIFI, local area network, Internet and Internet of Things and other network devices, as well as display devices and other devices and devices. The relevant devices and devices in the system are organically connected and indispensable.

7. The method and network system for head-mounted Internet of Things optical electromagnetic wave recognition and control as described in claim 1, the control method of the "variable, recognizable and controllable optical electromagnetic wave" light-sensitive recognition and control display, with the light-sensitive recognition and control display as the connection, includes but is not limited to: tongue-controlled mouse "universal" one-way control for swiping the tongue to recognize direction; lip-controlled number mark "0, 1" two-way control for swiping the lips to recognize numbers; mouth-controlled keyboard "tongue, lips, mouth" three-way control for swiping the mouth to recognize words; eye-controlled keyboard "tongue, lips, mouth, eyes" four-way control for swiping the eyes to recognize symbols; face-controlled everything "tongue, lips, mouth, eyes, face" five-way control for swiping the face to recognize objects.

8. The head-mounted Internet of Things optical electromagnetic wave recognition and control method and network system as claimed in claim 1 can greatly promote the Internet of Things of all things to be transformed into photoelectric, photoelectric to digital, digital to intelligent, intelligent to wisdom, wisdom to intelligent connection, etc. through the different control methods of the "variable, recognizable and controllable optical electromagnetic wave" optical sensing recognition and control display of claim 7, and thus cycle back and forth. Intelligent connection can form systems such as intelligent products, intelligent business and intelligent everything through the connection of human brain intelligence and artificial intelligence.

9. The method and network system for head-mounted Internet of Things optical electromagnetic wave recognition and control as described in claim 1, the magnetic induction recognition and control is similar to the optical induction recognition and control of the "variable, recognizable and controllable optical electromagnetic wave" described above, which is converted into photoelectric magnetic field waves through magnetic field waves and electric field waves. The photoelectric magnetic field waves constitute the system of this claim as described above.