摘要:
Systems and methods for removing electrical noise from an input signal from a touchpad device are provided. The touchpad device and one or more sensors may be coupled to a frame. Mechanical vibrations resulting from contact with a surface of the touchpad device during a motion input to the touchpad device may propagate via the frame to the one or more sensors. Information from the input signal and mechanical vibration signals received by one or more sensors may be processed to remove the electric noise from the input signal. In one example, information associated with relative motion of the input may be determined based on varying intensities of mechanical vibration signals received from the one or more sensors. Information of the input signal and the information associated with the relative motion may be correlated to determine position and/or movement information associated with the motion input.
摘要:
The present disclosure describes example systems and methods for identifying an indication of an injury of a user of a wearable computing device. The systems and methods may be directed to determining that an acceleration experienced by the wearable computing device exceeds a threshold value. In response, the wearable computing device may perform a diagnostic procedure in order to identify an indication of an injury experienced by the user of the wearable computing device. The diagnostic procedure may include one or more of an eye response test, a verbal response test, a motor response test, and a visual diagnostic test.
摘要:
A wearable computing system may include a head-mounted display (HMD) with a display configured to display images viewable at a viewing location. When aligned with an HMD wearer's line of sight, the entire display area of the display may be within the HMD wearer's field of view. The area within which an HMD wearer's eye can move and still view the entire display area is termed an “eye box.” However, if the HMD slips up or down, the display area may become obscured, such that the wearer can no longer see the entire image. By scaling or subsetting an image area within the display area, the effective eye box dimensions may increase. Further, in response to movements of the HMD with respect to the wearer, the image area can be adjusted to reduce effects such as vibration and slippage.
摘要:
A system and method of determining regions of interest via collective gaze of multiple wearable head-mounted displays (HMDs) is disclosed. Each of a plurality of HMDs can be communicatively connected with a communication network, and can transmit respective location-orientation data to the communication network or a server or server system in the network. Location-orientation data from the plurality can be collected and analyzed by the server in order to determine spatial regions that are or appear to be focal points of collective or common gaze of two or more HMDs of the plurality. Information about those regions or about the analysis that identified them may thereafter be provided back to one or more HMDs or other wearable computing devices.
摘要:
Methods and systems for unlocking a screen using eye tracking information are described. A computing system may include a display screen. The computing system may be in a locked mode of operation after a period of inactivity by a user. Locked mode of operation may include a locked screen and reduced functionality of the computing system. The user may attempt to unlock the screen. The computing system may generate a display of a moving object on the display screen of the computing system. An eye tracking system may be coupled to the computing system. The eye tracking system may track eye movement of the user. The computing system may determine that a path associated with the eye movement of the user substantially matches a path associated with the moving object on the display and switch to be in an unlocked mode of operation including unlocking the screen.
摘要:
Methods and systems for unlocking a screen using eye tracking information are described. A computing system may include a display screen. The computing system may be in a locked mode of operation after a period of inactivity by a user. Locked mode of operation may include a locked screen and reduced functionality of the computing system. The user may attempt to unlock the screen. The computing system may generate a display of a moving object on the display screen of the computing system. An eye tracking system may be coupled to the computing system. The eye tracking system may track eye movement of the user. The computing system may determine that a path associated with the eye movement of the user substantially matches a path associated with the moving object on the display and switch to be in an unlocked mode of operation including unlocking the screen.
摘要:
Methods and systems disclosed herein relate to a shading function or device for use with a head-mountable device. An example method could include determining, from a touch-sensitive surface of the head-mountable device, a swipe interaction. The head-mountable device could include at least one optical element. The at least one optical element could be configured to transmit outside light from an environment of the head-mountable device. The method could further include causing at least one property of the at least one portion of the at least one optical element to be controlled based on the swipe interaction. The at least one property could include a transmittance of the at least one optical element. In one implementation, the optical element could be mounted a substantially distal surface of a see-through display.
摘要:
Methods and systems for authenticating a user using eye tracking information are described. A wearable computing system may include a head mounted display (HMD). The wearable computing system may be operable to be in a locked mode of operation after a period of inactivity by a user. Locked mode of operation may include a locked screen and reduced functionality of the wearable computing system. The user may be authenticated to be able to use the wearable computing system after the period of inactivity. The wearable computing system may generate a display of a random content on the HMD including a content personalized to the user. The wearable computing system may receive information associated with a gaze location of an eye of the user and determine that the gaze location substantially matches a predetermined location of the content personalized to the user on the HMD and authenticate the user.
摘要:
Methods and systems for using eye-tracking data to stabilize a video are provided. An example method may involve receiving a video captured using a body-mountable camera and receiving gaze-direction data from one or more head-mountable eye trackers. Additionally, the method may include analyzing the received gaze-direction data to detect at least one involuntary orbital eye-movement. According to the method, the received video may be stabilized based at least in part on the detected at least one involuntary orbital eye-movement, and the stabilized video may be sent In some instances, camera-movement data may also be received and utilized to detect involuntary orbital eye-movements or stabilize the received video.
摘要:
Methods and systems for unlocking a screen using eye tracking information are described. A computing system may include a display screen. The computing system may be in a locked mode of operation after a period of inactivity by a user. Locked mode of operation may include a locked screen and reduced functionality of the computing system. The user may attempt to unlock the screen. The computing system may generate a display of a moving object on the display screen of the computing system. An eye tracking system may be coupled to the computing system. The eye tracking system may track eye movement of the user. The computing system may determine that a path associated with the eye movement of the user substantially matches a path associated with the moving object on the display and switch to be in an unlocked mode of operation including unlocking the screen.