Abstract:
A biometric security method and apparatus for a capacitive sensor system is provided herein, where the method may include capturing a set of raw capacitive frames for a body part via the capacitive sensor system, wherein each raw capacitive frame includes a distribution of a plurality of capacitance levels measured from the body part; creating a capacitive profile based on the set of raw capacitive frames; comparing a first value in the capacitive profile to a second value in a biometric template generated from an enrolled body part, wherein the first value and the second value are located at a similar location with respect to the capacitive profile; and, generating an authentication signal based on a difference between the first value and the second value.
Abstract:
Methods, systems, computer-readable media, and apparatuses for adjusting the manner in which haptic feedback is provided to the user based on physical characteristics of the user. Physical characteristics may include stable physical characteristics that are non-changing with respect to a level of physical activity of the user. Examples of such stable physical characteristics may include age, gender, race, visual impairments and/or other physical characteristics. In some embodiments, the mobile device may adjust the haptic feedback by adjusting the intensity of the haptic feedback, frequency of the haptic feedback, duration for which the haptic feedback is provided to the user and changing a type of haptic feedback provided to the user of the device.
Abstract:
Disclosed is an apparatus and method for automatically configuring a mobile device based on user feature data. A mobile device can detect a change in orientation from a first to a second orientation based on images captured with a touchscreen of the mobile device. The device may then apply a first configuration to the mobile device when the mobile device is in the second orientation. The detection of the second orientation may include capturing a first image and a second image and extracting user feature data from the images. Once a shift in the extracted user feature data above a threshold indicating motion is detected, the first configuration may then be applied to a mobile device. A third image may also be captured, and if a shift back is detected, an initial configuration may be restored.
Abstract:
Disclosed is a method and apparatus for biometric based media data sharing. The method may include initiating, in a first device, biometric data capture of a user based, at least in part, on playback of media data by the first device. The method may also include determining that captured biometric data of the user does not correspond with biometric data associated with an authorized user of the first device. Furthermore, the method may also include in response to a failure to match the captured biometric data by the first device, establishing that the user is an authorized user of a second device based, at least in part, on the captured biometric data. The method may also include sharing the media data with the second device.
Abstract:
Methods, systems, computer-readable media, and apparatuses for authenticating users using the haptic, aural, and/or olfactory association processing channels that are unique to humans are presented. In some embodiments, a computer-implemented method includes displaying a plurality of images and generating a sensory output, wherein the sensory output includes a tactile sensation that corresponds to one of the plurality of images. The method further includes receiving input corresponding to a selection of an image of the plurality of images and determining whether the selected image matches the one of the plurality of images for which the sensory output corresponds.
Abstract:
An electronic device is operated by determining its location on a body of a human or an animal, as an ending point of a path from another electronic device. The path is predetermined by measuring at multiple frequencies, a property indicative of loss of an AC signal that propagates through the body along the path between the pair of electronic devices, to obtain measurements. The multiple measurements are thereafter used to select a particular path through the body, from among a group of paths through the body which are characterized in one or more training phases, e.g. by use of a classifier. After a particular path through the body is identified, based on an ending point of the particular path, an electronic device at that ending point is configured, e.g. by turning on or turning off a specific sensor, or by setting a rate of transmission of data.
Abstract:
Aspects of the disclosure are related to a method for determining a touch pressure level on a touchscreen, comprising: detecting a touch event by the touchscreen; obtaining data relating to features associated with the touch event comprising a capacitance value, a touch area, and/or a touch duration; and determining a touch pressure level based on one or more of the features.
Abstract:
Methods, devices, and computer program products for using touch orientation to distinguish between users are disclosed herein. In one aspect, a method of identifying a user of a touch device from a plurality of users of the touch device is described. The method includes receiving touch data from a touch panel of the touch device, the touch data indicating a user's touch on the touch screen. The method further includes determining an orientation of the user's touch based on the received touch data. Finally, the method includes identifying the user of the plurality of users which touched the device, based at least in part on the orientation of the touch.
Abstract:
Aspects of the disclosure are related to a method for determining a touch pressure level on a touchscreen, comprising: detecting a touch event by the touchscreen; obtaining data relating to features associated with the touch event comprising a capacitance value, a touch area, and/or a touch duration; and determining a touch pressure level based on one or more of the features.
Abstract:
An electronic device is operated by determining its location on a body of a human or an animal, as an ending point of a path from another electronic device. The path is predetermined by measuring at multiple frequencies, a property indicative of loss of an AC signal that propagates through the body along the path between the pair of electronic devices, to obtain measurements. The multiple measurements are thereafter used to select a particular path through the body, from among a group of paths through the body which are characterized in one or more training phases, e.g. by use of a classifier. After a particular path through the body is identified, based on an ending point of the particular path, an electronic device at that ending point is configured, e.g. by turning on or turning off a specific sensor, or by setting a rate of transmission of data.