Abstract:
The embodiment of the present disclosure provides transparent display system and vehicle equipment provided with the same. The transparent display system may comprise: a transparent display unit positioned between user's eyes and an external light source; a position determination unit for the user's eyes configured to determine a position of user's eyes; a position determination unit for the light source configured to determine a position of the external light source; a projective coordinate calculation unit configured to calculate coordinate distribution of a projective area based on the position of the user's eyes and the position of the external light source, the projective area being a region through which the user watches and suffers from blaring so as to be shielded; and a control unit configured to generate a display control signal based on the coordinate distribution information of the projective area; the shielding is along the viewing direction of the user so as to display based on the display control signal to implement appropriate shielding in the projective area.
Abstract:
The present disclosure discloses a display device, a display system and a control method for achieving simutaneous interaction between a terminal device and a liquid crystal display device, and meanwhile guaranteeing the consistency of a touch point between the display device and the terminal device. The display device includes a receiving module for receiving an image frame; a first decoder for decoding the image frame; the display module for performing an outputting and displaying process on decoded image data; a touch module for responding to an image display command corresponding to a touch point of a user on a touch screen; a touch point coordinate extracting module for reading a first coordinate data of the touch point of the user on the touch screen; a microcontroller for converting the first coordinate data into a second coordinate data according to a correspondence between a resolution of the display device and a resolution of the terminal device; an encoder for generating a control frame including the second coordinate data; and a transmitting module for transmitting the control frame to the terminal device.
Abstract:
A system configured for vehicle communication includes a first smart apparatus associated with a first vehicle having a first horn and configured to acquire a first target information and a transmission direction information; a first horn control portion embedded in the first vehicle and configured to control the first horn in the first vehicle to send a first sound wave signal modulated by the first target information to a second vehicle based on the transmission direction information; and a second smart apparatus associated with the second vehicle and configured to receive the first sound wave signal and demodulate the first sound wave signal to obtain the first target information.
Abstract:
An acceleration measuring device includes a housing with an inner cavity, a reference substance disposed in the inner cavity, an elastic supporting member connected between the bottom portion of the inner cavity and the reference substance, a light source secured to a side of the reference substance, a lens secured to the reference substance that is positioned at a side of the light source away from the reference substance, an image sensor at a top portion of the inner cavity and located at a side of the lens away from the reference substance for receiving light emitted by the light source and scattered by the lens, and a processor configured to calculate displacement information of the reference substance in a vertical direction according to light received by the image sensor, and calculate an acceleration of the reference substance according to the displacement information.
Abstract:
A positioning method includes determining a positioning coordinate (x101,y101,z101) of a positioning device in a scene coordinate system o-xyz based on one or a combination of (1) an estimated coordinate (x1,y1,z1) of the positioning device in the scene coordinate system o-xyz; and (2) positions of image objects of one or more reference illumination sources of a plurality of illumination sources in a scene image, fixed coordinate positions (x0, y0, z0) of the one or more reference illumination sources of the plurality of illumination sources in the scene coordinate system o-xyz, and an included angle α between an x-axis of the scene coordinate system o-xyz and an x′-axis of a positioning device coordinate system o′-x′y′z′.
Abstract:
A video player is provided, comprising: a video playing unit, configured to convert an image inputted to the video playing unit into a driving signal for driving a display panel; and an image preprocessing unit, configured to receive the inputted image from a display source, to preprocess the inputted image into n preprocessed images, and to output the n preprocessed images to the video playing unit, wherein the video playing unit is further configured to convert the n preprocessed images into n sets of first driving signals, and to output the n sets of first driving signals via the n output terminals of the video playing unit for displaying, wherein the n preprocessed images correspond to the n output terminals of the video playing unit with each other in a preset manner. Furthermore, a display apparatus and a video playing system and a video playing method are also provided. The video player can display high resolution images at a low cost.
Abstract:
Embodiments of the present invention provide an assembled wearable device. The assembled wearable device comprises a first functional module, a second functional module and a connecting structure for connecting the first functional module and the second functional module, wherein the connecting structure comprises a first inserting member and a first receiving member matching each other, the first receiving member is configured for receiving the first inserting member so that the first inserting member is confined to the first receiving member in at least one direction.
Abstract:
The present disclosure discloses a display device, a display system and a control method. The display device includes a receiving module for receiving an image frame; a first decoder for decoding the image frame; the display module for performing an outputting and displaying process on decoded image data; a touch module for responding to an image display command corresponding to a touch point of a user on a touch screen; a touch point coordinate extracting module for reading a first coordinate data of the touch point of the user on the touch screen; a microcontroller for converting the first coordinate data into a second coordinate data according to a correspondence between a resolution of the display device and a resolution of the terminal device; an encoder for generating a control frame including the second coordinate data; and a transmitting module for transmitting the control frame to the terminal device.
Abstract:
Disclosed are a display system and a control method for the same. The display system includes a display means (1), an image input means (2), a depth of field analysis means (3) and a bending degree control means (4). The image input means (2) inputs the images to the depth of field analysis means; the depth of field analysis means (3) analyzes the depth of field of the images; the bending degree control means (4) controls the bending degree of the display means according to the depth of field of the images; the display means (1) displays the images. The display system and the control method thereof can adapt to the images with different depth of field, thus observer's visual experience is improved.
Abstract:
The present invention provides a self-ejectable port fixing device for contact connecting with a port having a port chip. The port fixing device comprises a casing having an opening through which the port chip is allowed to insert and to contact with a receptacle chip provided in the casing. The port fixing device further comprises an elastic unit and a locking unit. The elastic unit is compressed directly or indirectly by the port so as to accumulate elastic potential energy while the port chip is getting closer to the receptacle chip. When the port chip is in contact with the receptacle chip, the locking unit locks the port chip at this contacting position. When the locking unit is unlocked, the elastic unit releases the elastic potential energy to push the port chip to be detached from the receptacle chip.