Abstract:
Disclosed are systems and methods for improving interactions with and between computers in an authentication system supported by or configured with authentication servers or platforms. The systems interact to identify access and retrieve data across platforms, which data can be used to improve the quality of results data used in processing interactions between or among processors in such systems. The disclosed anti-spoofing systems and methods provide improved functionality to facial recognition systems by enabling enhanced “spoof” (or attempts to impersonate a user) detection while authenticating a user. The disclosed systems and method provide additional functionality to existing facial recognition systems that enables such systems to actually determine whether the image being captured and/or recorded is that of an actual person, as opposed to a non-human representation.
Abstract:
Techniques for communicating particular information from a user to a touch screen device by way of a touch event is provided. Sensors that are operatively coupled to a sensing device sense an input from the user which conveys particular information. This input is then converted by the sensing device into another signal called the sensing device signal which is then transmitted from the sensing device to the user's skin. Then a second set of sensors that are operatively coupled to a touch device receive a user-touch signal that is transmitted from the user's body. The user-touch signal is based, at least in part on the sensing device signal. The touch device then decodes the user-touch signal to determine the location of the touch event on the touch device and sensing device signal embedded in the user-touch signal to extract the particular information related to the user.
Abstract:
One or more systems and/or methods for storing personal information within a first device and/or for providing personal information from the first device to the second device are provided. The first device (e.g., a smartphone) may identify a user interface (e.g., a movie streaming website) populated with user specified data (e.g., a password). The user specified data may be evaluated to identify personal information of the user (e.g., a movie streaming website password). The personal information may be stored within the first device. Responsive to determining that a second device (e.g., a smart television) displays a personal information input field (e.g., a movie streaming website password input field), an input event comprising the personal information may be provided from the first device to the second device. The input event may invoke the second device to input the movie streaming website password into the movie streaming website password input field.
Abstract:
Stabilization of content displays in a wearable device when the wearer is in motion is disclosed. The acceleration and rotation forces acting on the wearable device are obtained. The forces acting on the body part bearing the wearable device are modeled. One or more offsets to counteract the forces are determined based on the models. The offsets are applied to the content display shown on the wearable device.
Abstract:
A user is authenticated based on feature data of a target such as a body-part or other object obtained by a touchscreen of a computing device. When the user positions the target to interact with the touchscreen, interaction data is gathered. Feature data of the target is determined from the gathered interaction data. The feature data is used to identify one or more of the target and the user. Various actions are executed based on the identification and authentication of the user.
Abstract:
Techniques for communicating particular information from a user, using a sensing device, to a touch device by way of a touch event is provided. Sensors that are operatively coupled to a sensing device sense an input from the user which conveys particular information. This input is then converted by the sensing device into another signal that is then transmitted from the sensing device to the touch device. When the user uses the sensing device to interact with the touch device, the interaction causes a touch event on the touch device. A touch event occurs when the sensors within the touch device receive a touch-signal from the sensing device. The touch-signal is based, at least in part, on detected biometric information of the user. The touch device then decodes the touch-signal to both (a) determine the location of the touch event on the touch device and (b) obtain the sensing device signal embedded in the touch signal to extract the particular information related to the user.
Abstract:
One or more systems and/or methods for storing personal information within a first device and/or for providing personal information from the first device to the second device are provided. The first device (e.g., a smartphone) may identify a user interface (e.g., a movie streaming website) populated with user specified data (e.g., a password). The user specified data may be evaluated to identify personal information of the user (e.g., a movie streaming website password). The personal information may be stored within the first device. Responsive to determining that a second device (e.g., a smart television) displays a personal information input field (e.g., a movie streaming website password input field), an input event comprising the personal information may be provided from the first device to the second device. The input event may invoke the second device to input the movie streaming website password into the movie streaming website password input field.
Abstract:
Methods and systems for predicting content consumption are provided herein. An application log of a user, comprising a user's application data, and a viewing log of the user, comprising the user's viewing data (e.g., television programs watched by the user), may be evaluated over a time period to construct a model. The model may comprise a correlation between the viewing log and the application log during the time period (e.g., what applications the user interacts with while watching a program). Second application data, regarding application usage of a second user, may be extracted. The model may be applied to the second application data to identify an expected viewing action of the second user (e.g., what program the second user is likely to watch during the time period based upon applications used by the second user). The second user may be provided with content related to the expected viewing action.
Abstract:
Techniques for communicating particular information from a user to a touch screen device by way of a touch event is provided. Sensors that are operatively coupled to a sensing device sense an input from the user which conveys particular information. This input is then converted by the sensing device into another signal called the sensing device signal which is then transmitted from the sensing device to the user's skin. Then a second set of sensors that are operatively coupled to a touch device receive a user-touch signal that is transmitted from the user's body. The user-touch signal is based, at least in part on the sensing device signal. The touch device then decodes the user-touch signal to determine the location of the touch event on the touch device and sensing device signal embedded in the user-touch signal to extract the particular information related to the user.
Abstract:
Techniques for communicating particular information from a user to a touch screen device by way of a touch event is provided. Sensors that are operatively coupled to a sensing device sense an input from the user which conveys particular information. This input is then converted by the sensing device into another signal called the sensing device signal which is then transmitted from the sensing device to the user's skin. Then a second set of sensors that are operatively coupled to a touch device receive a user-touch signal that is transmitted from the user's body. The user-touch signal is based, at least in part on the sensing device signal. The touch device then decodes the user-touch signal to determine the location of the touch event on the touch device and sensing device signal embedded in the user-touch signal to extract the particular information related to the user.