WO2021147797A1 - 一种眼镜腰带式计算机装置 - Google Patents

一种眼镜腰带式计算机装置 Download PDF

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Publication number
WO2021147797A1
WO2021147797A1 PCT/CN2021/072409 CN2021072409W WO2021147797A1 WO 2021147797 A1 WO2021147797 A1 WO 2021147797A1 CN 2021072409 W CN2021072409 W CN 2021072409W WO 2021147797 A1 WO2021147797 A1 WO 2021147797A1
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WO
WIPO (PCT)
Prior art keywords
screen
display
smart phone
glasses
keyboard
Prior art date
Application number
PCT/CN2021/072409
Other languages
English (en)
French (fr)
Inventor
肖晓松
倪智华
何开伟
Original Assignee
肖晓松
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 肖晓松 filed Critical 肖晓松
Priority to US17/918,491 priority Critical patent/US20230140957A1/en
Priority to KR1020227028875A priority patent/KR20220146461A/ko
Priority to EP21743709.4A priority patent/EP4095648A4/en
Publication of WO2021147797A1 publication Critical patent/WO2021147797A1/zh

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Definitions

  • the invention relates to the technical field of mobile human-computer interaction, in particular to a glasses belt type computer device.
  • AR, VR, robotics, Internet of Vehicles, artificial intelligence, Internet of Everything, cloud computing and other technologies require technology and productivity computing to enter the mobile Internet.
  • the gap in its mobile human-computer interaction technology is insurmountable for many years. People need innovative mobility. Human-computer interaction technology to make up for this key technical shortcoming.
  • the present invention provides a glasses belt type computer device, which has a novel structure, is convenient to use, is convenient to carry, and can provide a good human-computer interaction mode.
  • the present invention adopts the following technical solutions.
  • a glasses belt type computer device comprising a belt body, the middle of the front of the belt body or other parts of the body is detachably installed with a smart phone, the front of the belt body is also installed with a left keyboard located on the left side of the belly button of the wearer of the belt and the belt wearer
  • the right-click disk on the right side of the belly button, the left and right-click disks are connected with the smart phone in wired or wireless including Bluetooth mode;
  • the smart phone can be a straight or folding screen smart phone, and the left keyboard and the right keyboard are both folding keyboards; the position of the English letters of the keys on the keyboard is the same as that of the keys of the qwert keyboard in the prior art.
  • the English letters are arranged in the same position, and the left-folding keyboard contains at least 15 letter keys Q, W, E, R, T, A, S, D, F, G, Z, X, C, V, and B.
  • the right foldable keyboard contains at least 11 letter keys Y, U, I, O, P, H, J, K, L, N, and M, which are operated by the right hand of the person wearing the belt;
  • the English letters are set in the direction that the foot of the word faces the head of the wearer of the belt and the head of the word faces the foot of the wearer of the belt;
  • the glasses belt computer device is also provided with a wired connection or a wireless projection connection and a glasses display that receives the information displayed by the smart phone; the belt wearer carries a companion mouse; the back or the other surface of the belt body is also installed Secondary power supply.
  • the projected image to be displayed is sent to the eyes of the user through the optical path, and the size of the content area in the projected image is adjustable.
  • the glasses display is formed by an electronically controlled dimming screen in front of the optical synthesizer lens. Adjust the opaque area so that the content area of the projected image projected to the user’s field of view can be displayed in the opaque area of the electronically controlled dimming screen in the user’s field of view, so that the user of the computer device is in the environment of his mobile field of view, It can obtain the opaque screen image information display that was originally found in the static visual field environment of the PC desktop computer, and provide it with a computing device that can enhance human activity anytime and anywhere;
  • the glasses display includes a glasses holder worn on the head, the glasses holder is equipped with a pair of optical synthesizer lenses; the optical synthesizer lens is provided with a microdisplay that generates projected image signals on the periphery; the optical synthesizer lens
  • the front is equipped with an electronically controlled dimming screen that can be set to a transparent state; the dimming screen is an electro-dimmable color light material screen; the selection range of the electro-dimmable color light material screen includes but is not limited to liquid crystal display dimming Light screen LCD or organic electroluminescence display dimming screen OLED;
  • the microdisplay includes a driving module; the driving module is connected to the electrically controlled dimming screen that can be set to a transparent state, and a part or all of the electrically controlled dimming screen can be set to a transparent state;
  • the area where the electronically controlled dimming screen is not turned into an opaque state is a transparent area; the wearer can see the environment behind the electronically controlled dimming screen through the transparent area; the drive module drives the electronically controlled dimming
  • the screen makes the opaque area of the electronically controlled dimming screen correspond to the projected image content area, so that the content area of the projected image is displayed at the opaque area of the electronically controlled dimming screen in the user's field of vision; the size of the projected image content area
  • the size is adjustable to provide users of the computer device with different sizes of screen display images they need.
  • the accompanying mouse is either a skateboard touch mouse set between two keyboards or on the waistbands on both sides, or a ring mouse of the prior art worn on the fingers of a person wearing a waistband, or a screen touch mouse installed on the waistband body
  • the smart phone touch-screen mouse of the application APP any one of the three types of mice can cooperate with the left-folding keyboard and the right-folding keyboard to implement mobile human-computer interaction for inputting control instructions to the smart phone;
  • a small wireless mouse/or a Bluetooth touchpad mouse provided in the waist belt wearer's pocket can be used alone to implement mobile human-computer interaction for inputting control instructions to the smart phone.
  • the waist belt body is provided with a secondary power source and a secondary power source controller electrically connected to the secondary power source is installed on the left or right side of the secondary power source.
  • the charging control module is the smart phone and the left and right keyboards on the controller.
  • the touchpad mouse is directly connected to the power supply battery life, equipped with a docking station module and an expansion external connection port, the expansion external connection port includes but not limited to an external charging interface, an external video interface, an external audio interface, TF/SD card interface, USB interface, the auxiliary power supply device provides the data line connection plug for the smart phone to extend the external multi-device interface and the integrated connection for direct battery life, so as to solve the traditional mobile phone’s poor battery life, frequent charging and connection to the extension device The connection of multiple external devices is troublesome.
  • the mobile operating system includes ios, Android or Hongmeng; the PC desktop computer operating system includes win10, Yongzhong, Hongqi or Remix OS;
  • a human-computer interaction method for a glasses belt type computer device is connected to a smart phone with the left and right foldable keyboard and at least one accompanying mouse, and uses the human-computer interaction interface of the Windows operating system to display in a single screen mode. Choose one of the display on the smart phone display or the glasses display, or simultaneously display on the smart phone display and the glasses display display in a synchronized or extended manner, and implement mobile human-computer interaction that can be used for strolling;
  • the smart phone can use a PC desktop computer operating system; the PC desktop computer operating system or the PC desktop computer operating system of the cloud host that is called by the cloud computer application APP on the smart phone, Or it is a PC desktop computer operating system installed in a smart phone; the operating system installed in the smart phone can be switched with the original pre-installed mobile operating system;
  • the described mobile human-computer interaction method brings PCs that have not entered the mobile field for many years into the mobile field, enabling new technologies such as robots, big data, artificial intelligence, and the Internet of Things to have a more efficient mobile platform for manipulation;
  • the mobile human-computer interaction method enables cloud computing, which accounts for the majority of scientific and technological productivity calculations, to enter the mobile field, and at the same time enables the operating system software of various desktop PC computers to enter the mobile field without modification, which solves many years of difficult problems.
  • the mobile human-computer interaction also includes a pair of headsets arranged on the left and right ears on the glasses display.
  • the headset implements human-computer interaction for inputting and receiving audio information for the smart phone; the headset adopts a wired manner or includes
  • the Bluetooth method is a wireless method to connect with a smart phone.
  • the device user can operate the smart phone to display a video or display a picture through the display screen.
  • the smart phone is equipped with an application APP that uses a navigation module to detect the walking speed of the user, and automatically or manually adjust the size of the content area in the projected image according to the walking speed;
  • the content area can be automatically or manually adjusted to a human-computer interaction output screen in the shape of a moving banner with a smaller lower part of the user's field of view;
  • the content area can be automatically or manually adjusted to the size of the lower part of the user's field of view, such as the human-computer interaction output screen of a laptop computer display or a PC desktop computer display;
  • the content area can be automatically or manually adjusted to the human-computer interaction output screen at the center of the user's field of view, which is as large as a wall-mounted display screen.
  • the smart phone of the glasses belt computer device includes a 5G communication module, which can indirectly call various cloud computing hosts of different operating systems in a built-in APP; it can also be used with laptop computers, PC desktop computers, and TVs in addition to glasses displays. Realize human-computer interaction through wired connection or wireless projection connection of computer, vertical hanging large-screen display, projection equipment, VR equipment, AR equipment.
  • the spectacle display above includes a spectacle holder worn on the head, the spectacle holder is equipped with a pair of optical synthesizer lenses; the optical synthesizer lens is provided with a projection image signal on the periphery A micro display, the size of the content area of the projected image is adjustable; an electric control dimming screen is arranged in front of the optical synthesizer lens, the micro display includes a driving module; the driving module is connected to the electric control dimming screen , And can adjust part or all of the electronically controlled dimming screen to a transparent or opaque state;
  • the optical synthesizer lens When all areas of the electronically controlled dimming screen are adjusted and set to a transparent state, the optical synthesizer lens superimposes the adjustable projection image of the content area from the micro-display on the view from the real environment.
  • the electronically controlled dimming screen On the image formed by the electronically controlled dimming screen, a variety of different sizes of screens are formed to form augmented reality AR display image output, so that the glasses belt type computer device with a movable keyboard and mouse becomes a movable and interactive computer device of various sizes.
  • On-screen augmented reality AR mobile computer On-screen augmented reality AR mobile computer;
  • the local area of the electronically controlled dimming screen matches the adjusted display shape size from the projection content area of the microdisplay and is adjusted to be set to an opaque state, the remaining areas around the local area are adjusted to be set to a transparent state
  • the optical synthesizer lens superimposes the projection image from the micro-display on the opaque image of the electronically controlled dimming screen to form a superimposed image, the superimposed image and the surrounding real environment pass through the electronically controlled dimming screen.
  • the real images formed by the light screen are combined in the user's field of vision, so that the user's field of vision environment has an image and display area similar to a PC computer screen, making the glasses belt-type computer device with a movable keyboard and mouse become movable Interactive wearable mobile computers with various sizes of computer display screens that can be called.
  • the present invention has the following beneficial effects: the present invention is novel in structure, reasonable in design, small in size, light in weight, convenient to use, easy to carry, and has strong practicability. It not only has basic waist belt function, but also realizes mobile man-machine. Interaction is conducive to going out to work and makes up for the shortcomings of the key technologies of mobile human-computer interaction that have existed for many years.
  • the glasses display device displays augmented reality (AR) content and PC-like display content that enhances the behavioral ability of the active person, it can be electronically controlled dimming that can adjust the transmittance of its light-transmitting area as needed
  • the screen can block the external glare, so it can effectively prevent the external glare from affecting the projection effect of the lens display area, and because the display content (AR augmented reality, the display content of the PC similar to the PC computer that enhances the behavior of the active person) is a black LCD screen.
  • the projected image of the glasses display can reach a higher contrast in the user's field of view, which is more suitable for use in outdoor environments, and because the glasses display can automatically adjust the size of the interactive interface according to the user's walking speed, it also reduces Interfere with the user's visual field while walking.
  • Figure 1 is a schematic diagram of the present invention
  • Figure 2 is a schematic diagram of the principle of the glasses display
  • Fig. 3 is a schematic diagram showing the matching of the opaque area of each electronic control dimming screen with the corresponding projected image when the display size gear n is 0, 1, 2, 3, and the gear position;
  • Figure 4 is a schematic diagram of a glasses display
  • Fig. 5 is another schematic diagram of the glasses display
  • 15-optical synthesizer lens 16-electrically controlled dimming screen; 17-microdisplay; 20-opaque area;
  • A100-display size range n 0, the projection image in the opaque area in the user's field of view;
  • a spectacles waistband computer device includes a waistband body 10, the middle of the front of the waistband body or other parts of the body is detachably installed with a smart phone 12, and the front of the waistband body is also mounted on the belly button of the wearer of the waistband.
  • the left keyboard 11 on the left and the right keyboard 13 located on the right side of the belly button of the wearer of the belt, the left and right keyboards are connected with the smart phone by wired or wireless including Bluetooth;
  • the smart phone can be a straight or folding screen smart phone, and the left keyboard and the right keyboard are both folding keyboards; the position of the English letters of the keys on the keyboard is the same as that of the keys of the qwert keyboard in the prior art.
  • the English letters are arranged in the same position, and the left-folding keyboard contains at least 15 letter keys Q, W, E, R, T, A, S, D, F, G, Z, X, C, V, and B.
  • the right foldable keyboard contains at least 11 letter keys Y, U, I, O, P, H, J, K, L, N, and M, which are operated by the right hand of the person wearing the belt;
  • the English letters are set in the direction that the foot of the word faces the head of the wearer of the belt and the head of the word faces the foot of the wearer of the belt;
  • the glasses belt computer device is also provided with a wired connection or a wireless projection connection and a glasses display that receives the information displayed by the smart phone; the belt wearer carries a companion mouse; the back or the other surface of the belt body is also installed Secondary power supply.
  • the projected image to be displayed is sent to the eyes of the user via the optical path, and the size of the content area in the projected image is adjustable.
  • the glasses display is formed by an electronically controlled dimming screen 16 in front of the optical synthesizer lens 15
  • the opaque area 20 with adjustable size enables the content area of the projected image projected to the user's field of view to be displayed in the opaque area of the electronically controlled dimming screen in the user's field of view;
  • the glasses display includes a glasses holder worn on the head, the glasses holder is equipped with a pair of optical synthesizer lenses; the optical synthesizer lens is provided with a microdisplay 17 that generates projection image signals on the periphery; the optical synthesizer
  • the front of the lens is provided with an electronically controlled dimming screen that can be set to a transparent state; the dimming screen is an electro-dimmable light-modulating material screen; the selection range of the electro-dimmable light material screen includes but is not limited to liquid crystal display Dimming screen LCD or organic electroluminescence display dimming screen OLED;
  • the microdisplay includes a driving module; the driving module is connected to the electrically controlled dimming screen that can be set to a transparent state, and a part or all of the electrically controlled dimming screen can be set to a transparent state;
  • the area where the electronically controlled dimming screen is not turned into an opaque state is a transparent area; the wearer can see the environment behind the electronically controlled dimming screen through the transparent area; the drive module drives the electronically controlled dimming
  • the screen makes the opaque area of the electronically controlled dimming screen correspond to the projected image content area, so that the content area of the projected image is displayed at the opaque area of the electronically controlled dimming screen in the user's field of vision; the size of the projected image content area The size is adjustable.
  • the accompanying mouse is either a skateboard touch mouse set between two keyboards or on the waistbands on both sides, or a ring mouse of the prior art worn on the fingers of a person wearing a waistband, or a screen touch mouse installed on the waistband body
  • the smart phone touch-screen mouse of the application APP any one of the three types of mice can cooperate with the left-folding keyboard and the right-folding keyboard to implement mobile human-computer interaction for inputting control instructions to the smart phone;
  • a small wireless mouse/or a Bluetooth touchpad mouse provided in the waist belt wearer's pocket can be used alone to implement mobile human-computer interaction for inputting control instructions to the smart phone.
  • the waist belt body is provided with a secondary power source and the left side or right side of the secondary power source 14 is equipped with a secondary power source controller 141 electrically connected to the secondary power source.
  • the charging control module is provided on the controller for the smart phone,
  • the left and right keyboards, touchpad and mouse are directly connected for power supply and battery life, equipped with a docking station module and an expansion external connection port.
  • the expansion external connection port includes but not limited to an external charging interface, an external video interface, an external audio interface, and a TF/SD card Interface, USB interface
  • the auxiliary power supply device provides the data line connection plug for the smart phone, which extends the external multi-device interface and integrated connection for direct battery life, so as to solve the traditional mobile phone’s poor battery life, frequent charging and connection It is troublesome to extend the connection of multiple devices outside the machine.
  • the mobile operating system includes ios, Android or Hongmeng; the PC desktop computer operating system includes win10, Yongzhong, Hongqi or Remix OS;
  • a human-computer interaction method for a glasses belt type computer device is connected to a smart phone with the left and right foldable keyboard and at least one accompanying mouse, and uses the human-computer interaction interface of the Windows operating system to display in a single screen mode. Choose one of the display on the smart phone display or the glasses display, or simultaneously display on the smart phone display and the glasses display display in a synchronized or extended manner, and implement mobile human-computer interaction that can be used for strolling;
  • the smart phone can use a PC desktop computer operating system; the PC desktop computer operating system or the PC desktop computer operating system of the cloud host that is called by the cloud computer application APP on the smart phone, Or it is a PC desktop computer operating system installed in a smart phone; the operating system installed in the smart phone can be switched with the original pre-installed mobile operating system;
  • the described mobile human-computer interaction method brings PCs that have not entered the mobile field for many years into the mobile field, enabling new technologies such as robots, big data, artificial intelligence, and the Internet of Things to have a more efficient mobile platform for manipulation;
  • the mobile human-computer interaction method enables cloud computing, which accounts for the majority of scientific and technological productivity calculations, to enter the mobile field, and at the same time enables the operating system software of various desktop PC computers to enter the mobile field without modification, which solves many years of difficult problems.
  • the mobile human-computer interaction also includes a pair of headsets arranged on the left and right ears on the glasses display.
  • the headset implements human-computer interaction for inputting and receiving audio information for the smart phone; the headset adopts a wired manner or includes
  • the Bluetooth method is a wireless method to connect with a smart phone.
  • the device user can operate the smart phone to display a video or display a picture through the display screen.
  • the smart phone is equipped with an application APP that uses a navigation module to detect the walking speed of the user, and automatically or manually adjust the size of the content area in the projected image according to the walking speed;
  • the content area can be automatically or manually adjusted to a human-computer interaction output screen in the shape of a moving banner with a smaller lower part of the user's field of view;
  • the content area can be automatically or manually adjusted to the size of the lower part of the user's field of view, such as the human-computer interaction output screen of a laptop computer display or a PC desktop computer display;
  • the content area can be automatically or manually adjusted to the human-computer interaction output screen at the center of the user's field of view, which is as large as a wall-mounted display screen.
  • the smart phone of the glasses belt computer device includes a 5G communication module, which can indirectly call various cloud computing hosts of different operating systems in a built-in APP; it can also be used with laptop computers, PC desktop computers, and TVs in addition to glasses displays. Realize human-computer interaction through wired connection or wireless projection connection of computer, vertical hanging large-screen display, projection equipment, VR equipment, AR equipment.
  • the spectacle display above includes a spectacle holder worn on the head, the spectacle holder is equipped with a pair of optical synthesizer lenses; the optical synthesizer lens is provided with a projection image signal on the periphery A micro display, the size of the content area of the projected image is adjustable; an electric control dimming screen is arranged in front of the optical synthesizer lens, the micro display includes a driving module; the driving module is connected to the electric control dimming screen , And can adjust part or all of the electronically controlled dimming screen to a transparent or opaque state;
  • the optical synthesizer lens When all areas of the electronically controlled dimming screen are adjusted and set to a transparent state, the optical synthesizer lens superimposes the adjustable projection image of the content area from the micro-display on the view from the real environment.
  • the electronically controlled dimming screen On the image formed by the electronically controlled dimming screen, a variety of different sizes of screens are formed to form augmented reality AR display image output, so that the glasses belt type computer device with a movable keyboard and mouse becomes a movable and interactive computer device of various sizes.
  • On-screen augmented reality AR mobile computer On-screen augmented reality AR mobile computer;
  • the local area of the electronically controlled dimming screen matches the adjusted display shape size from the projection content area of the microdisplay and is adjusted to be set to an opaque state, the remaining areas around the local area are adjusted to be set to a transparent state
  • the optical synthesizer lens superimposes the projection image from the micro-display on the opaque image of the electronically controlled dimming screen to form a superimposed image, the superimposed image and the surrounding real environment pass through the electronically controlled dimming screen.
  • the real images formed by the light screen are combined in the user's field of vision, so that the user's field of vision environment has an image and display area similar to a PC computer screen, making the glasses belt-type computer device with a movable keyboard and mouse become movable Interactive wearable mobile computers with various sizes of computer display screens that can be called.
  • a glasses belt type computer device comprising a belt body 10, a smart phone 12 is detachably installed in the middle of the front of the belt body 10.
  • the smart phone can be mounted on the belt or carried by the user during use; the belt body 10
  • the front is also installed with a left keyboard 11 on the left side of the waistband wearer’s belly button 12 and a right key plate 13 on the right side of the waistband wearer’s belly button.
  • the left and right keys are connected to the smart phone 12 by wired or wireless connection including Bluetooth; left and right
  • the keyboard and the smart phone can be connected wirelessly by Bluetooth, or can be connected by OTG data cable;
  • this kind of glasses belt computer device can be used as an external display device (such as notebook computers, PC desktop computers, wall-mounted large-screen displays, VR glasses or mobile phone projector), the use of smart phones to connect with external display devices, it can be connected via Bluetooth or wireless screen projection; use the package-type computer host to complete the implementation of mobile human-computer interaction with external display devices, to In this way, the functions of the glasses belt-type computer device can be expanded.
  • the VR glasses can output virtual reality (VR) display images or augmented reality (AR) display images in the visual field of the glasses for travelers.
  • VR virtual reality
  • AR augmented reality
  • the smart phone uses the operating system of the mobile terminal smart phone/or the operating system of the PC desktop computer, and can be switched between each other, and can be used indirectly through the cloud computer application APP installed on the smart phone; pedestrians can use it anytime and anywhere during the journey
  • the smart phone uses the operating system of the PC desktop computer to control the keyboard and mouse of the spectacle belt computer device to input control instructions for the smart phone to implement information input between pedestrians and the smart phone, while viewing the
  • the calculation results output by the smart phone or the glasses display or external display device connected to the smart phone are implemented to complete the mobile human-computer interaction.
  • the host allows the existing indoor technology and productivity calculation human-computer interaction methods to enter the mobile terminal
  • the use of smart phones has become a mobile human-computer interaction method.
  • the operating system used by the smart phone in addition to one of the operating systems such as ios, Android, Hongmeng, etc., where a smart phone is initially installed on the phone, another PC computer is used such as win10, Yong One of the operating systems of China, Red Flag, Remix OS, etc., or using the existing technology of installing dual operating systems on one machine, installed in the smart phone and used directly/or installed in the cloud computer host, installed in the smart phone
  • the cloud computer application APP is used indirectly.
  • the smart phone 12 is a folding screen smart phone
  • the left keyboard 11 and the right keyboard 13 are both folding keyboards;
  • the left keyboard is set on the belt surface on the left side of the wearer's belly button, and the right The keyboard is set on the belt surface on the right side of the wearer’s belly button.
  • Both keyboards are folded and stored when not in use.
  • the positions of the English letters of the keys on the folding keyboard are arranged in accordance with those of the prior art Qwert keyboard keys. The positions of the letters are the same.
  • the left foldable keyboard contains at least 15 letter keys Q, W, E, R, T, A, S, D, F, G, Z, X, C, V, and B.
  • the belt-wearing person operates with his left hand, and the right folding keyboard contains at least 11 letter keys Y, U, I, O, P, H, J, K, L, N, and M, which are operated by the belt-wearing person’s right hand; on the keyboard
  • the English letters are all with the foot up and the head down; the left keyboard and the right keyboard can be used with a skateboard touch mouse placed on the belt between the two keyboards, or with the present on the fingers of the belt wearer.
  • a technical ring mouse can be used in conjunction with the smart phone equipped with a screen touch mouse application APP.
  • All three control methods can implement mobile human-computer interaction for inputting control commands to the smart phone;
  • a small wireless mouse/or a skateboard touch wireless mouse provided in the pocket of the belt wearer can be used alone to implement mobile human-computer interaction for inputting control instructions to the smart phone.
  • an auxiliary power source 14 is installed on the back of the waist belt body 10
  • an auxiliary power source controller 141 electrically connected to the auxiliary power source is installed on the right side of the waist belt body.
  • the auxiliary power source controller 141 includes a charging control module.
  • the smart phone, keyboard, touchpad and mouse are directly connected to the power supply for continuous battery life, including the docking station module for the smart phone expansion external connection port, such as external charging port, external video interface, external audio interface, TF/SD card interface, USB interface, etc., the auxiliary power supply provides the data line connection plug for the smart phone.
  • the invention provides a practical glasses belt type computer device for introducing technology and productivity calculations into the mobile Internet, allowing people's commonly used PC computer operating system software to immediately enter the mobile field without any modification, and make up for the mobile human-computer interaction that has existed for many years.
  • this kind of glasses belt computer device can gather the scientific and technological productivity ecological resources of traditional PC computers and the entertainment service ecological resources of smart phones in one machine; it can complete commonly used notebook computers/or PC computers/or hanging Wall TV can complete the work; can provide virtual reality (VR) new technology and augmented reality (AR) new mobile human-computer interaction new methods and new devices; also can be used as a new mobile robot, cloud computing and 5G technology
  • the platform is a multifunctional wearable computer with various commonly used functions of today's computers.
  • the optical synthesizer lens When all areas of the electronically controlled dimming screen are adjusted to a transparent state, the optical synthesizer lens superimposes the projection image from the micro-display to form a field of view from the real environment through the electronically controlled dimming screen.
  • the AR display image output of the augmented reality is formed on the image of the glasses display, and the AR display image output of the glasses display is matched with the human-computer interaction input device of the folding keyboard on the belt and the mouse, plus the smart phone,
  • the present invention has the use of using the AR technology in a mobile situation in the high-efficiency and high-skilled human-computer interaction mode of existing technology and productivity, improves the use ability of the AR technology and expands the application scope of the technology;
  • the glasses display The display image output of the VR is matched with the folding keyboard on the waistband and the human-computer interaction input device of the mouse, and the smart phone enables the present invention to have high efficiency with existing technology and productivity in mobile situations.
  • the use of VR technology in high-skilled human-computer interaction has improved the ability to use VR technology and expanded the scope of use of the technology;
  • the optical The synthesizer lens superimposes the projection image from the micro-display on the opaque image of the electronically controlled dimming screen to form a superimposed image, and the superimposed image and the surrounding reality formed by the real environment through the electronically controlled dimming screen
  • the images are combined in the user’s field of vision, so that the user’s field of vision has an image display output similar to a PC computer screen, the glasses display’s image display output similar to the PC computer screen, and the folding keyboard on the belt and the
  • the human-computer interaction input device of the mouse, coupled with the smart phone, enables the present invention to be used similar to the existing notebook computers, desktop PC computers, and wall-mounted large-screen computers in mobile situations, maintaining people’s original
  • the ecological resources of science, technology and productivity have improved the ability to use existing computer technology and expanded its scope of use.
  • fixed connection can be understood as: a fixed connection that can be detached (for example, a bolt or screw connection), or it can be understood as:
  • the non-detachable fixed connection such as riveting, welding
  • the mutual fixed connection can also be replaced by a one-piece structure (such as one-piece manufacturing using a casting process) (except obviously that the one-piece forming process cannot be used).
  • Any component provided by the present invention can be assembled from a plurality of separate components, or can be a single component manufactured by an integral forming process.

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Abstract

本发明提出一种眼镜腰带式计算机装置,包括腰带本体,所述腰带本体正面中部或本体其它部位可取卸安装有智能手机,腰带本体正面还安装有位于腰带佩戴人肚脐左侧的左键盘和位于腰带佩戴人肚脐右侧的右键盘,所述左、右键盘与智能手机有线或无线包括蓝牙方式连接;在人机交互时,使用者佩戴腰带,使左键盘位于肚脐左边且右键盘位于肚脐右边形成腰带键盘;使用者还可随身携带鼠标来对智能手机进行操控;使用者以鼠标或腰带键盘与智能手机连接,通过智能手机以外的包括眼镜显示器的显示设备显示其人机交互界面;本发明结构新颖,使用方便,便于携带,能提供良好的人机交互方式。

Description

一种眼镜腰带式计算机装置 技术领域
本发明涉及移动人机交互技术领域,尤其是一种眼镜腰带式计算机装置。
背景技术
自1946年计算机发明至今,人机交互技术一直是影响计算机技术发展的关键短板。从最初穿孔纸带输入输出的人机交互技术至今,仅两项伟大发明成为引领计算机技术发展的里程碑,其一是引领PC个人计算机普及千家万户的、键盘鼠标与视窗图标操作显示系统相配合的人机交互技术,其二是让世界上56亿人将智能手机作为必用工具的手指触摸操控电容屏的移动人机交互技术。然而迄今为止,开发者们始终无法为科技和生产力计算创造出适用的移动人机交互技术,手指触摸操控电容屏的移动人机交互技术也因其属人类简单语言的先天不足,无法引领复杂的科技和生产力计算进入移动终领域。
技术问题
AR、VR、机器人、车联网、人工智能、万物互联、云计算等各种科技都需要科技和生产力计算进入移动互联网,然而其移动人机交互技术的鸿沟长年难以逾越,人们需要创新的移动人机交互技术来补上这块关键技术短板。
技术解决方案
本发明提出一种眼镜腰带式计算机装置,结构新颖,使用方便,便于携带,能提供良好的人机交互方式。
本发明采用以下技术方案。
一种眼镜腰带式计算机装置,包括腰带本体,所述腰带本体正面中部或本体其它部位可取卸安装有智能手机,腰带本体正面还安装有位于腰带佩戴人肚脐左侧的左键盘和位于腰带佩戴人肚脐右侧的右键盘,所述左、右键盘与智能手机有线或无线包括蓝牙方式连接;
所述智能手机可选用直板或折叠屏智能手机,所述左键盘和右键盘均为折叠键盘;所述键盘上按键的英文字母的位置排布与现有技术的柯蒂(qwert)键盘按键的英文字母的位置排布相同,其中的左折叠键盘至少含有Q、W、E、R、T、A、S、D、F、G、Z、X、C、V、B共15个字母键,由腰带佩戴人左手操作,其中的右折叠键盘至少含有Y、U、I、O、P、H、J、K、L、N、M共11个字母键,由腰带佩戴人右手操作;所述英文字母均按字脚朝向腰带佩戴人头部,字头朝向腰带佩戴人脚部的方向设置;
所述眼镜腰带式计算机装置还设有有线连接或无线投屏连接和接收所述智能手机显示信息的眼镜显示器;所述腰带佩戴人携带有随行鼠标;所述腰带本体背面或其余表面还安装有副电源。
所述眼镜显示器工作时经光路向使用者眼部发送需显示的投影影像,投影影像中的内容区大小可调,同时所述眼镜显示器以光学合成器镜片前方的电控调光屏形成大小可调的不透明区域,使投影至使用者视野的投影影像的内容区能显示于使用者视野中电控调光屏的不透明区域内,使所述计算机装置的使用者在其移动的视野环境中,能获得原来在其落座使用PC台式电脑的静止不动的视野环境中才有的、不透明的屏幕影像信息显示,为其提供一种能随时随地增强人的活动能力的计算装置;
所述眼镜显示器包括佩戴于头部的眼镜支架,所述眼镜支架配设有一对光学合成器镜片;所述光学合成器镜片周侧设有产生投影影像信号的微显示器;所述光学合成器镜片前方设有可设为透明状态的电控调光屏;所述调光屏为电致调色调光材料屏;所述电致调色调光材料屏的选择范围包括但不限于液晶显示调光屏LCD或有机电致发光显示调光屏OLED;
所述微显示器包括驱动模块;所述驱动模块与所述可设为透明状态的电控调光屏相连,可将所述电控调光屏的部分区域或全部区域设为透明状态;
当眼镜显示器工作时,所述电控调光屏未转为不透明状态的区域为透明区域;佩戴者可通过透明区域看到电控调光屏后的环境;所述驱动模块驱动电控调光屏使电控调光屏的不透明区域与投影影像内容区对应,使所述投影影像的内容区显示于使用者视野中的电控调光屏的不透明区域处;所述投影影像内容区的尺寸大小可调,以为所述计算机装置的使用者提供其需要的不同大小的屏幕显示影像。
所述随行鼠标或是设在两键盘之间或两边的腰带上面的一个滑板触控鼠标,或是戴在腰带佩戴人手指上的现有技术的指环鼠标,或是腰带本体上装有屏幕触控鼠标应用程序APP的所述智能手机触屏鼠标,三种鼠标中的任一种均可可配合所述左折叠键盘和右折叠键盘,实施对所述智能手机输入操控指令的移动人机交互;
当无需与所述键盘配合使用时,可单独使用设在腰带佩戴人口袋里的小型无线鼠标/或蓝牙触控板鼠标,实施对所述智能手机输入操控指令的移动人机交互。
所述腰带本体上设有副电源且副电源的左侧面或右侧面安装有与副电源电性连接的副电源控制器,控制器上设有充电控制模块为所述智能手机、左右键盘、触控板鼠标直接连接供电续航、设有扩展坞模块和扩展外连接口,所述扩展外连接口包括但不限于外接充电接口、外接视频接口、外接音频接口、TF/SD插卡接口、USB接口,所述辅助电源装置为所述智能手机提供所述数据线连接位插头,为其扩展机外多设备接口和一体连接直接续航,以解决传统手机续航能力差、经常充电和连接扩展机外多设备的连线麻烦。
所述移动操作系统包括ios、Android或鸿蒙;所述PC台式电脑操作系统包括win10、永中、红旗或Remix OS;
眼镜腰带式计算机装置的人机交互方法,上述的眼镜腰带式计算机装置,以所述左右折叠键盘和至少一个随行鼠标与智能手机连接,使用视窗操作系统的人 机交互界面,以单屏方式在智能手机显示屏、或眼镜显示器显示屏处择一显示,或是以同步方式或扩展方式同时显示于智能手机显示屏和眼镜显示器显示屏处,实施完成可漫步使用的移动人机交互;
在实施移动人机交互时,所述智能手机可使用PC台式电脑操作系统;所述PC台式电脑操作系统或为通过智能手机上的云电脑应用程序APP调用的云端主机的PC台式电脑操作系统,或为加装于智能手机内的PC台式电脑操作系统;所述智能手机内加装的操作系统与原预装的移动操作系统可相互切换;
所述的移动人机交互方法,将多年未进入移动领域的PC电脑进入移动领域,可使机器人、大数据、人工智能和物联网等新技术有操控更高效的移动平台;
所述移动人机交互方法,使科技生产力计算占多数的云计算进入移动领域,同时使现今各种台式PC电脑的操作系统软件不经修改进入移动领域,解决了多年的难题。
所述移动人机交互还包括所述眼镜显示器上的设于左右耳的一对耳麦,所述耳麦为所述智能手机实施输入和接收音频信息的人机交互;所述耳麦采用有线方式或包括蓝牙方式的无线方式与智能手机连接。
当需以所述计算机装置进行宣传,或是需对装置进行美化时,装置使用者可操作所述智能手机,使之通过所述显示屏放映视频或显示画面。
所述智能手机上设有利用导航模块来检测使用者的行走速度,并根据行走速度来分档位地自动或手动调节投影影像中的内容区大小的应用程序APP;
当使用者行进速度较快或处于跑步状态时,内容区可自动或手动调节为使用者视野下部较小的呈移动条幅形的人机交互输出画面;
当使用者漫步行走时,内容区可自动或手动调节为使用者视野下部的大小如笔记本电脑显示屏或PC台式电脑显示屏的人机交互输出画面;
当使用者停止行走或坐下时,内容区可自动或手动调节为使用者视野中央处大小如挂壁大屏幕显示屏的人机交互输出画面。
所述的眼镜腰带式计算机装置的智能手机包括5G通讯模块,可以内置APP的方式高速间接调用各类不同操作系统的云计算主机;还可与除眼镜显示器以外包括笔记本电脑、PC台式电脑、电视机、立挂大屏幕显示器、投影设备、VR设备、AR设备有线连接或无线投屏连接实施人机交互。
眼镜腰带式计算机装置的使用方法,上述的眼镜显示器包括佩戴于头部的眼镜支架,所述眼镜支架配设有一对光学合成器镜片;所述光学合成器镜片周侧设有产生投影影像信号的微显示器,所述投影影像的内容区大小可调;所述光学合成器镜片前方设有电控调光屏,所述微显示器包括驱动模块;所述驱动模块与所述电控调光屏相连,且可将电控调光屏的部分区域或全部区域调控为透明或不透明状态;
当所述的电控调光屏的全部区域被调控设置为透明状态时,所述光学合成器镜片将来自所述微显示器的内容区大小可调的投影影像叠加到来自现实环境视野透过所述电控调光屏形成的影像上,形成多种不同大小屏幕的增强现实AR的 显示影像输出,使加上可移动键盘鼠标的所述眼镜腰带式计算机装置成为可移动交互的有多种大小屏显示的增强现实AR移动计算机;
当所述的电控调光屏的全部区域被调控设置为不透明状态时,所述光学合成器镜片上只有来自所述微显示器的内容区大小可调的虚拟现实投影形成的虚拟现实VR的显示影像输出,使加上可移动键盘鼠标的所述眼镜腰带式式计算机装置成为可移动交互的有多种大小屏显示的虚拟现实VR移动计算机;
当所述电控调光屏的局部区域与来自所述微显示器投影内容区的调整了的显示形状大小相匹配且被调控设置为不透明状态,所述局部区域周围其余区域被调控设置为透明状态时,所述光学合成器镜片将来自所述微显示器的投影影像叠加到所述电控调光屏的不透明影像上形成叠加影像,该叠加影像与其周围的由现实环境透过所述电控调光屏形成的现实影像在使用者视野中组合,让使用者的视野环境中具有类似PC电脑显示屏的影像和显示区域,使加上可移动键盘鼠标的所述眼镜腰带式计算机装置成为可移动交互的有多种大小电脑显示屏可调用的可穿戴移计算机。
有益效果
与现有技术相比,本发明具有以下有益效果:本发明结构新颖,设计合理,体积小,重量轻,使用方便,便于携带,实用性强,不仅具备基本腰带功能,而且实现了移动人机交互,有利于外出办公,弥补了多年存在的移动人机交互关键技术的短板。
本发明中,由于眼镜显示器装置在显示增强现实(AR)的内容和增强活动人行为能力的类似PC电脑的显示内容时,能以可按需调整其透光区域透光率的电控调光屏来阻挡外界强光,因此可以有效防止外界强光影响镜片显示区的投影效果,而且由于显示内容(AR增强现实,增强活动人行为能力的类似PC电脑的显示内容)以黑色的液晶屏为背景,因此可以让眼镜显示器的投射影像在使用者视野中达到较高的对比度,更适合在户外环境下使用,且由于眼镜显示器可按使用者行走速度来自动调节交互界面尺寸,因此也降低了对使用者行走状态下的视野干扰。
附图说明
下面结合附图和具体实施方式对本发明进一步详细的说明:
附图1是本发明的示意图;
附图2是眼镜显示器的原理示意图;
附图3是显示尺寸档位n为0、1、2、3、档位时的各电控调光屏不透明区与相应投影影像匹配示意图;
附图4是眼镜显示器的示意图;
附图5是眼镜显示器的另一示意图;
图中:10-腰带本体、11-左键盘、12-智能手机、13-右键盘、14-副电源、141-副电源控制器;
15-光学合成器镜片;16-电控调光屏;17-微显示器;20-不透明区域;
100-显示尺寸档位n=0时的不透明区;101-显示尺寸档位n=1时的不透明区;102-显示尺寸档位n=2时的不透明区;103-显示尺寸档位n=3时的不透明区;
A100-显示尺寸档位n=0时,使用者视野内位于不透明区的投影影像;
A101-显示尺寸档位n=1时,使用者视野内位于不透明区的投影影像;
A102-显示尺寸档位n=2时,使用者视野内位于不透明区的投影影像;
A103-显示尺寸档位n=3时,使用者视野内位于不透明区的投影影像;
A111-电控调光屏16上未转为不透明状态的透明区域。
本发明的实施方式
如图1-5所示,一种眼镜腰带式计算机装置,包括腰带本体10,所述腰带本体正面中部或本体其它部位可取卸安装有智能手机12,腰带本体正面还安装有位于腰带佩戴人肚脐左侧的左键盘11和位于腰带佩戴人肚脐右侧的右键盘13,所述左、右键盘与智能手机有线或无线包括蓝牙方式连接;
所述智能手机可选用直板或折叠屏智能手机,所述左键盘和右键盘均为折叠键盘;所述键盘上按键的英文字母的位置排布与现有技术的柯蒂(qwert)键盘按键的英文字母的位置排布相同,其中的左折叠键盘至少含有Q、W、E、R、T、A、S、D、F、G、Z、X、C、V、B共15个字母键,由腰带佩戴人左手操作,其中的右折叠键盘至少含有Y、U、I、O、P、H、J、K、L、N、M共11个字母键,由腰带佩戴人右手操作;所述英文字母均按字脚朝向腰带佩戴人头部,字头朝向腰带佩戴人脚部的方向设置;
所述眼镜腰带式计算机装置还设有有线连接或无线投屏连接和接收所述智能手机显示信息的眼镜显示器;所述腰带佩戴人携带有随行鼠标;所述腰带本体背面或其余表面还安装有副电源。
所述眼镜显示器工作时经光路向使用者眼部发送需显示的投影影像,投影影像中的内容区大小可调,同时所述眼镜显示器以光学合成器镜片15前方的电控调光屏16形成大小可调的不透明区域20,使投影至使用者视野的投影影像的内容区能显示于使用者视野中电控调光屏的不透明区域内;
所述眼镜显示器包括佩戴于头部的眼镜支架,所述眼镜支架配设有一对光学合成器镜片;所述光学合成器镜片周侧设有产生投影影像信号的微显示器17;所述光学合成器镜片前方设有可设为透明状态的电控调光屏;所述调光屏为电致调色调光材料屏;所述电致调色调光材料屏的选择范围包括但不限于液晶显示调光屏LCD或有机电致发光显示调光屏OLED;
所述微显示器包括驱动模块;所述驱动模块与所述可设为透明状态的电控调光屏相连,可将所述电控调光屏的部分区域或全部区域设为透明状态;
当眼镜显示器工作时,所述电控调光屏未转为不透明状态的区域为透明区域;佩戴者可通过透明区域看到电控调光屏后的环境;所述驱动模块驱动电控调光屏使电控调光屏的不透明区域与投影影像内容区对应,使所述投影影像的内容区显示于使用者视野中的电控调光屏的不透明区域处;所述投影影像内容区的尺寸大小可调。
所述随行鼠标或是设在两键盘之间或两边的腰带上面的一个滑板触控鼠标,或是戴在腰带佩戴人手指上的现有技术的指环鼠标,或是腰带本体上装有屏幕触控鼠标应用程序APP的所述智能手机触屏鼠标,三种鼠标中的任一种均可可配合所述左折叠键盘和右折叠键盘,实施对所述智能手机输入操控指令的移动人机交互;
当无需与所述键盘配合使用时,可单独使用设在腰带佩戴人口袋里的小型无线鼠标/或蓝牙触控板鼠标,实施对所述智能手机输入操控指令的移动人机交互。
所述腰带本体上设有副电源且副电源14的左侧面或右侧面安装有与副电源电性连接的副电源控制器141,控制器上设有充电控制模块为所述智能手机、左右键盘、触控板鼠标直接连接供电续航、设有扩展坞模块和扩展外连接口,所述扩展外连接口包括但不限于外接充电接口、外接视频接口、外接音频接口、TF/SD插卡接口、USB接口,所述辅助电源装置为所述智能手机提供所述数据线连接位插头,为其扩展机外多设备接口和一体连接直接续航,以解决传统手机续航能力差、经常充电和连接扩展机外多设备的连线麻烦。
所述移动操作系统包括ios、Android或鸿蒙;所述PC台式电脑操作系统包括win10、永中、红旗或Remix OS;
眼镜腰带式计算机装置的人机交互方法,上述的眼镜腰带式计算机装置,以所述左右折叠键盘和至少一个随行鼠标与智能手机连接,使用视窗操作系统的人机交互界面,以单屏方式在智能手机显示屏、或眼镜显示器显示屏处择一显示,或是以同步方式或扩展方式同时显示于智能手机显示屏和眼镜显示器显示屏处,实施完成可漫步使用的移动人机交互;
在实施移动人机交互时,所述智能手机可使用PC台式电脑操作系统;所述PC台式电脑操作系统或为通过智能手机上的云电脑应用程序APP调用的云端主机的PC台式电脑操作系统,或为加装于智能手机内的PC台式电脑操作系统;所述智能手机内加装的操作系统与原预装的移动操作系统可相互切换;
所述的移动人机交互方法,将多年未进入移动领域的PC电脑进入移动领域,可使机器人、大数据、人工智能和物联网等新技术有操控更高效的移动平台;
所述移动人机交互方法,使科技生产力计算占多数的云计算进入移动领域,同时使现今各种台式PC电脑的操作系统软件不经修改进入移动领域,解决了多年的难题。
所述移动人机交互还包括所述眼镜显示器上的设于左右耳的一对耳麦,所述耳麦为所述智能手机实施输入和接收音频信息的人机交互;所述耳麦采用有线方式或包括蓝牙方式的无线方式与智能手机连接。
当需以所述计算机装置进行宣传,或是需对装置进行美化时,装置使用者可操作所述智能手机,使之通过所述显示屏放映视频或显示画面。
所述智能手机上设有利用导航模块来检测使用者的行走速度,并根据行走速度来分档位地自动或手动调节投影影像中的内容区大小的应用程序APP;
当使用者行进速度较快或处于跑步状态时,内容区可自动或手动调节为使用者视野下部较小的呈移动条幅形的人机交互输出画面;
当使用者漫步行走时,内容区可自动或手动调节为使用者视野下部的大小如笔记本电脑显示屏或PC台式电脑显示屏的人机交互输出画面;
当使用者停止行走或坐下时,内容区可自动或手动调节为使用者视野中央处大小如挂壁大屏幕显示屏的人机交互输出画面。
所述的眼镜腰带式计算机装置的智能手机包括5G通讯模块,可以内置APP的方式高速间接调用各类不同操作系统的云计算主机;还可与除眼镜显示器以外包括笔记本电脑、PC台式电脑、电视机、立挂大屏幕显示器、投影设备、VR设备、AR设备有线连接或无线投屏连接实施人机交互。
眼镜腰带式计算机装置的使用方法,上述的眼镜显示器包括佩戴于头部的眼镜支架,所述眼镜支架配设有一对光学合成器镜片;所述光学合成器镜片周侧设有产生投影影像信号的微显示器,所述投影影像的内容区大小可调;所述光学合成器镜片前方设有电控调光屏,所述微显示器包括驱动模块;所述驱动模块与所述电控调光屏相连,且可将电控调光屏的部分区域或全部区域调控为透明或不透明状态;
当所述的电控调光屏的全部区域被调控设置为透明状态时,所述光学合成器镜片将来自所述微显示器的内容区大小可调的投影影像叠加到来自现实环境视野透过所述电控调光屏形成的影像上,形成多种不同大小屏幕的增强现实AR的显示影像输出,使加上可移动键盘鼠标的所述眼镜腰带式计算机装置成为可移动交互的有多种大小屏显示的增强现实AR移动计算机;
当所述的电控调光屏的全部区域被调控设置为不透明状态时,所述光学合成器镜片上只有来自所述微显示器的内容区大小可调的虚拟现实投影形成的虚拟现实VR的显示影像输出,使加上可移动键盘鼠标的所述眼镜腰带式式计算机装置成为可移动交互的有多种大小屏显示的虚拟现实VR移动计算机;
当所述电控调光屏的局部区域与来自所述微显示器投影内容区的调整了的显示形状大小相匹配且被调控设置为不透明状态,所述局部区域周围其余区域被调控设置为透明状态时,所述光学合成器镜片将来自所述微显示器的投影影像叠加到所述电控调光屏的不透明影像上形成叠加影像,该叠加影像与其周围的由现实环境透过所述电控调光屏形成的现实影像在使用者视野中组合,让使用者的视野环境中具有类似PC电脑显示屏的影像和显示区域,使加上可移动键盘鼠标的所述眼镜腰带式计算机装置成为可移动交互的有多种大小电脑显示屏可调用的可穿戴移计算机。
实施例1:
一种眼镜腰带式计算机装置,包括腰带本体10,所述腰带本体10正面中部可取卸安装有智能手机12,在使用时述智能手机可以装在腰带上也可以由使用者随身携带;腰带本体10正面还安装有位于腰带佩戴人肚脐12左侧的左键盘11和位于腰带佩戴人肚脐右侧的右键盘13,所述左、右键盘与智能手机12有线或无线包括蓝牙方式连接;左、右键盘与智能手机之间可以采用蓝牙无线连接,也可以采用OTG数据线进行有线连接;该一种眼镜腰带式计算机装置可以作为外部显示设备(如笔记本电脑、PC台式电脑、挂壁大屏幕显示器、VR眼镜或者手机投影仪)的主机使用,利用智能手机与外部显示设备进行连接,可以通过蓝牙或无线投屏方式连接;利用该包式计算机主机实施完成与外部显示设备实现移动人机交互,以此来拓展眼镜腰带式计算机装置的功能,通过VR眼镜可为出行人输出在其眼镜视野中的虚拟现实(VR)的显示画面或增强现实(AR)的显示画面。
所述智能手机使用移动终端智能手机的操作系统/或使用PC台式电脑的操作系统,并可相互切换,通过智能手机安装的云电脑应用程序APP间接使用;出行人可在行进中随时随地用所述智能手机,使用所述PC台式电脑的操作系统,操控该一种眼镜腰带式计算机装置的键盘鼠标为所述智能手机输入操控指令,实施出行人与所述智能手机的信息输入,同时察看所述智能手机或者与智能手机连接的眼镜显示器或外部显示设备输出的计算结果,实施完成所述的移动人机交互,该主机使现有室内使用的科技和生产力计算的人机交互方法进入移动终端智能手机使用,成为一种移动人机交互方法。
所述智能手机使用的操作系统,除在所述手机上初装了一个智能手机的如ios、Android、弘蒙等之一的操作系统外,再将另一个PC电脑用的如:win10、永中、红旗、Remix OS等之一的操作系统,或者利用现有一机安装双操作系统的技术,安装在所述智能手机中直接使用/或者安装在云电脑主机内,通过所述智能手机内安装的云电脑应用程序APP间接使用。
在本实施例中,所述智能手机12为折叠屏智能手机,所述左键盘11和右键盘13均为折叠键盘;所述左键盘设在佩戴人肚脐左边的腰带带面上,所述右键盘设在佩戴人肚脐右边的腰带带面上,两个键盘未使用时均折叠收藏,所述折叠键盘上按键的英文字母的位置排布与现有技术的柯蒂(qwert)键盘按键的英文字母的位置排布相同,其中的左折叠键盘至少含有Q、W、E、R、T、A、S、D、F、G、Z、X、C、V、B共15个字母键,由腰带佩戴人左手操作,其中的右折叠键盘至少含有Y、U、I、O、P、H、J、K、L、N、M共11个字母键,由腰带佩戴人右手操作;键盘上的英文字母均按字脚朝上,字头朝下;左键盘和右键盘可与设在两键盘之间腰带上面的一个滑板触控鼠标搭配使用,也可与戴在腰带佩戴人手指上的现有技术的指环鼠标搭配使用,还可与装上屏幕触控鼠标应用程序APP的所述智能手机搭配使用,三种操控方式均可实施对所述智能手机输入操控指令的移动人机交互;当无需与所述键盘搭配使用时,可单独使用设在腰带 佩戴人口袋里的小型无线鼠标/或滑板触控无线鼠标,实施对所述智能手机输入操控指令的移动人机交互。
在本实施例中,所述腰带本体10背面安装有辅助电源14,腰带本体的右侧面安装有与辅助电源电性连接的辅助电源控制器141,辅助电源控制器141包括充电控制模块为所述智能手机、键盘、触控板鼠标直连供电持续续航,包括扩展坞模块为所述智能手机扩展外连接口,如外接充电接口、外接视频接口、外接音频接口、TF/SD插卡接口、USB接口等,所述辅助电源为所述智能手机提供所述数据线连接位插头。
本发明为将科技和生产力计算引入移动互联网提供了一种实用的眼镜腰带式计算机装置,让人们常用的PC电脑操作系统软件不经任何修改立即进入移动领域,弥补了多年存在的移动人机交互关键技术的短板;该一种眼镜腰带式计算机装置能一机汇集传统PC电脑的科技生产力生态资源和智能手机的娱乐服务生态资源;能一机完成常用的笔记本电脑/或PC电脑/或挂壁电视所能完成的工作;能提供虚拟现实(VR)新技术和增强现实(AR)新技术的移动人机交互新方法及其新装置;也可作为机器人、云计算和5G技术的移动新平台,是具有现今计算机各种常用功能的多功能可穿戴计算机。
实施例2:
当所述的电控调光屏的全部区域被调控为透明状态时,所述光学合成器镜片将来自所述微显示器的投影影像叠加到来自现实环境视野透过所述电控调光屏形成的影像上,形成增强现实AR的显示影像输出,所述眼镜显示器的AR的显示影像输出与所述腰带上的折叠键盘和所述鼠标的人机交互输入设备配合,加上所述智能手机,使本发明具有在移动情况下以现有科技和生产力的高效率高技能的人机交互方式使用AR技术的用途,提高了AR技术的使用能力和扩大了该技术的使用范围;
当所述的电控调光屏的全部区域被调控为不透明状态时,所述光学合成器镜片上只有来自所述微显示器的虚拟现实投影形成的虚拟现实VR的显示影像输出,所述眼镜显示器的VR的显示影像输出与所述腰带上的折叠键盘和所述鼠标的人机交互输入设备配合,加上所述智能手机,使本发明具有在移动情况下以现有科技和生产力的高效率高技能的人机交互方式使用VR技术的用途,提高了VR技术的使用能力和扩大了该技术的使用范围;
当所述电控调光屏的局部区域与来自所述微显示器投影内容区的调整形状大小相匹配且被调控为不透明状态,所述局部区域周围其余区域被调控为透明状态时,所述光学合成器镜片将来自所述微显示器的投影影像叠加到所述电控调光屏的不透明影像上形成叠加影像,该叠加影像与其周围的由现实环境透过所述电控调光屏形成的现实影像在使用者视野中组合,让使用者视野中具有类似PC电脑显示屏的影像显示输出,所述眼镜显示器的类似PC电脑显示屏的影像显示输出,与所述腰带上的折叠键盘和所述鼠标的人机交互输入设备配合,加上所述智能手机,使本发明具有在移动情况下使用类似现有笔记本电脑,台式PC电脑、 挂壁大屏幕电脑的的用途,维持了人们原有的科技和生产力生态资源,提高了现有计算机技术的使用能力和扩大了它的使用范围。
上述本发明所公开的任一技术方案除另有声明外,如果其公开了数值范围,那么公开的数值范围均为优选的数值范围,任何本领域的技术人员应该理解:优选的数值范围仅仅是诸多可实施的数值中技术效果比较明显或具有代表性的数值。由于数值较多,无法穷举,所以本发明才公开部分数值以举例说明本发明的技术方案,并且,上述列举的数值不应构成对本发明创造保护范围的限制。
本发明如果公开或涉及了互相固定连接的零部件或结构件,那么,除另有声明外,固定连接可以理解为:能够拆卸地固定连接(例如使用螺栓或螺钉连接),也可以理解为:不可拆卸的固定连接(例如铆接、焊接),当然,互相固定连接也可以为一体式结构(例如使用铸造工艺一体成形制造出来)所取代(明显无法采用一体成形工艺除外)。
另外,上述发明公开的任一技术方案中所应用的用于表示位置关系或形状的术语除另有声明外其含义包括与其近似、类似或接近的状态或形状。
本发明提供的任一部件既可以是由多个单独的组成部分组装而成,也可以为一体成形工艺制造出来的单独部件。
最后应当说明的是:以上实施例仅用以说明本发明的技术方案而非对其限制;尽管参照较佳实施例对本发明进行了详细的说明,所属领域的普通技术人员应当理解:依然可以对本发明的具体实施方式进行修改或者对部分技术特征进行等同替换;而不脱离本发明技术方案的精神,其均应涵盖在本发明请求保护的技术方案范围当中。

Claims (10)

  1. 一种眼镜腰带式计算机装置,其特征在于:包括腰带本体,所述腰带本体正面中部或本体其它部位可取卸安装有智能手机,腰带本体正面还安装有位于腰带佩戴人肚脐左侧的左键盘和位于腰带佩戴人肚脐右侧的右键盘,所述左、右键盘与智能手机有线或无线包括蓝牙方式连接;
    所述智能手机可选用直板或折叠屏智能手机,所述左键盘和右键盘均为折叠键盘;所述键盘上按键的英文字母的位置排布与现有技术的柯蒂(qwert)键盘按键的英文字母的位置排布相同,其中的左折叠键盘至少含有Q、W、E、R、T、A、S、D、F、G、Z、X、C、V、B共15个字母键,由腰带佩戴人左手操作,其中的右折叠键盘至少含有Y、U、I、O、P、H、J、K、L、N、M共11个字母键,由腰带佩戴人右手操作;所述英文字母均按字脚朝向腰带佩戴人头部,字头朝向腰带佩戴人脚部的方向设置;
    所述眼镜腰带式计算机装置还设有有线连接或无线投屏连接和接收所述智能手机显示信息的眼镜显示器;所述腰带佩戴人携带有随行鼠标;所述腰带本体背面或其余表面还安装有副电源。
  2. 根据权利要求1所述的一种眼镜腰带式计算机装置,其特征在于:所述眼镜显示器工作时经光路向使用者眼部发送需显示的投影影像,投影影像中的内容区大小可调,同时所述眼镜显示器以光学合成器镜片前方的电控调光屏形成大小可调的不透明区域,使投影至使用者视野的投影影像的内容区能显示于使用者视野中电控调光屏的不透明区域内;
    所述眼镜显示器包括佩戴于头部的眼镜支架,所述眼镜支架配设有一对光学合成器镜片;所述光学合成器镜片周侧设有产生投影影像信号的微显示器;所述光学合成器镜片前方设有可设为透明状态的电控调光屏;所述调光屏为电致调色调光材料屏;所述电致调色调光材料屏的选择范围包括但不限于液晶显示调光屏LCD或有机电致发光显示调光屏OLED;
    所述微显示器包括驱动模块;所述驱动模块与所述可设为透明状态的电控调光屏相连,可将所述电控调光屏的部分区域或全部区域设为透明状态;
    当眼镜显示器工作时,所述电控调光屏未转为不透明状态的区域为透明区域;佩戴者可通过透明区域看到电控调光屏后的环境;所述驱动模块驱动电控调光屏使电控调光屏的不透明区域与投影影像内容区对应,使所述投影影像的内容区显示于使用者视野中的电控调光屏的不透明区域处;所述投影影像内容区的尺寸大小可调。
  3. 根据权利要求1所述的一种眼镜腰带式计算机装置,其特征在于:所述随行鼠标或是设在两键盘之间或两边的腰带上面的一个滑板触控鼠标,或是戴在腰带佩戴人手指上的现有技术的指环鼠标,或是腰带本体上装有屏幕触控鼠标应用程序APP的所述智能手机触屏鼠标,三种鼠标中的任一种均可可配合所述左折叠键盘和右折叠键盘,实施对所述智能手机输入操控指令的移动人机交互;
    当无需与所述键盘配合使用时,可单独使用设在腰带佩戴人口袋里的小型无线鼠标/或蓝牙触控板鼠标,实施对所述智能手机输入操控指令的移动人机交互。
  4. 根据权利要求1所述的一种眼镜腰带式计算机装置,其特征在于:所述腰带本体上设有副电源且副电源的左侧面或右侧面安装有与副电源电性连接的副电源控制器,控制器上设有充电控制模块为所述智能手机、左右键盘、触控板鼠标直接连接供电续航、设有扩展坞模块和扩展外连接口,所述扩展外连接口包括但不限于外接充电接口、外接视频接口、外接音频接口、TF/SD插卡接口、USB接口,所述辅助电源装置为所述智能手机提供所述数据线连接位插头,为其扩展机外多设备接口和一体连接直接续航。
  5. 眼镜腰带式计算机装置的人机交互方法,其特征在于:权利要求1或2中所述的眼镜腰带式计算机装置,以所述左右折叠键盘和至少一个随行鼠标与智能手机连接,使用视窗操作系统的人机交互界面,以单屏方式在智能手机显示屏、或眼镜显示器显示屏处择一显示,或是以同步方式或扩展方式同时显示于智能手机显示屏和眼镜显示器显示屏处,实施完成可漫步使用的移动人机交互;
    在实施移动人机交互时,所述智能手机可使用PC台式电脑操作系统;所述PC台式电脑操作系统或为通过智能手机上的云电脑应用程序APP调用的云端主机的PC台式电脑操作系统,或为加装于智能手机内的PC台式电脑操作系统;所述智能手机内加装的操作系统与原预装的移动操作系统可相互切换。
  6. 根据权利要求5所述的眼镜腰带式计算机装置的人机交互方法,其特征在于:所述移动人机交互还包括所述眼镜显示器上的设于左右耳的一对耳麦,所述耳麦为所述智能手机实施输入和接收音频信息的人机交互;所述耳麦采用有线方式或包括蓝牙方式的无线方式与智能手机连接。
  7. 根据权利要求5所述的眼镜腰带式计算机装置的人机交互方法,其特征在于:当需以所述计算机装置进行宣传,或是需对装置进行美化时,装置使用者可操作所述智能手机,使之通过所述显示屏放映视频或显示画面。
  8. 根据权利要求7所述的眼镜腰带式计算机装置的人机交互方法,其特征在于:所述智能手机上设有利用导航模块来检测使用者的行走速度,并根据行走速度来分档位地自动或手动调节投影影像中的内容区大小的应用程序APP;
    当使用者行进速度较快或处于跑步状态时,内容区可自动或手动调节为使用者视野下部较小的呈移动条幅形的人机交互输出画面;
    当使用者漫步行走时,内容区可自动或手动调节为使用者视野下部的大小如笔记本电脑显示屏或PC台式电脑显示屏的人机交互输出画面;
    当使用者停止行走或坐下时,内容区可自动或手动调节为使用者视野中央处大小如挂壁大屏幕显示屏的人机交互输出画面。
  9. 根据权利要求7所述的一种眼镜腰带式计算机装置的人机交互方法,其特征在于:所述的眼镜腰带式计算机装置的智能手机包括5G通讯模块,可以内置APP的方式高速间接调用各类不同操作系统的云计算主机;还可与除眼镜显示器 以外包括笔记本电脑、PC台式电脑、电视机、立挂大屏幕显示器、投影设备、VR设备、AR设备有线连接或无线投屏连接实施人机交互。
  10. 眼镜腰带式计算机装置的使用方法,其特征在于:权利要求1或2所述的眼镜显示器包括佩戴于头部的眼镜支架,所述眼镜支架配设有一对光学合成器镜片;所述光学合成器镜片周侧设有产生投影影像信号的微显示器,所述投影影像的内容区大小可调;所述光学合成器镜片前方设有电控调光屏,所述微显示器包括驱动模块;所述驱动模块与所述电控调光屏相连,且可将电控调光屏的部分区域或全部区域调控为透明或不透明状态;
    当所述的电控调光屏的全部区域被调控设置为透明状态时,所述光学合成器镜片将来自所述微显示器的内容区大小可调的投影影像叠加到来自现实环境视野透过所述电控调光屏形成的影像上,形成多种不同大小屏幕的增强现实AR的显示影像输出,使加上可移动键盘鼠标的所述眼镜腰带式计算机装置成为可移动交互的有多种大小屏显示的增强现实AR移动计算机;
    当所述的电控调光屏的全部区域被调控设置为不透明状态时,所述光学合成器镜片上只有来自所述微显示器的内容区大小可调的虚拟现实投影形成的虚拟现实VR的显示影像输出,使加上可移动键盘鼠标的所述眼镜腰带式式计算机装置成为可移动交互的有多种大小屏显示的虚拟现实VR移动计算机;
    当所述电控调光屏的局部区域与来自所述微显示器投影内容区的调整了的显示形状大小相匹配且被调控设置为不透明状态,所述局部区域周围其余区域被调控设置为透明状态时,所述光学合成器镜片将来自所述微显示器的投影影像叠加到所述电控调光屏的不透明影像上形成叠加影像,该叠加影像与其周围的由现实环境透过所述电控调光屏形成的现实影像在使用者视野中组合,让使用者的视野环境中具有类似PC电脑显示屏的影像和显示区域,使加上可移动键盘鼠标的所述眼镜腰带式计算机装置成为可移动交互的有多种大小电脑显示屏可调用的可穿戴移计算机。
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