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:
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:
The present disclosure describes aspects of injected conductive tattoos for powering implants. In some aspects, a system comprises a conductive tattoo used to efficiently transfer power wirelessly received from a transmitter outside a body to an electronic device in the body. The conductive tattoo is formed from a conductive material injected into an outermost permanent layer of the body. The conductive tattoo is configured to wirelessly receive and relay the power from the transmitter to the electronic device. In particular, the conductive tattoo may transfer the power to the electronic device over a coupling between the conductive tattoo and the electronic device.
Abstract:
Embodiments of the present invention are directed toward providing ongoing authentication using biometric data. Fingerprints and/or other biometric data can be captured during the normal use of an electronic device, such as typing on a keyboard, and compared with associated reference biometrics to provide ongoing authentication to an application while the electronic device is being used. Comparison results may further be combined with additional physiological or behavioral biometrics to determine a level of authentication encompassing multiple biometric inputs and/or types.
Abstract:
A master device images an object device and uses the image to identify the object device. The master device determines whether the object device is cable of being interfaced with based on the image and registers with the object device for interfacing. The master device then automatically interfaces with the identified object device. The master device may receive broadcast data from the object device including information about the visual appearance of the object device and use the broadcast data in the identification of the object device. The master device may retrieve data related to the object device and display the related data, which may be display the data over the displayed image of the object device. The master device may provide an interface to control the object device or be used to pass data to the object device.
Abstract:
A method of providing mode changes to wireless devices is provided. The method may include receiving a request from a wireless device to connect with a network device and sending a signal to the wireless device to enter a location defined mode.
Abstract:
Method, computer program product, and apparatus for providing interactions of tangible and augmented reality objects are disclosed. In one embodiment, a method for use with an augmented reality enabled device (ARD) comprises performing 3-dimensional tracking of one or more objects based at least in part on captured images of the one or more objects, detecting a state change of at least one object of the one or more objects based at least in part on the captured images, and causing an augmentation to be rendered in response to the state change of the at least one object, where a type of the augmentation is based at least in part on the state change of the at least one object.
Abstract:
Methods and systems according to one or more embodiments are provided for combining touch inputs and offset non-touch gestures. In an embodiment, a method includes concurrently capturing touch input data on a screen of a user device and non-touch gesture input data, the non-touch gesture input data being indicative of a gesture performed in an area offset from the screen of the user device to inhibit obstruction of a user's view of the screen. The method also includes determining an input command based at least in part on a combination of the concurrently captured touch input data and the non-touch gesture input data. In addition, the method further includes affecting an operation of the user device based on the determined input command.
Abstract:
Methods and systems according to one or more embodiments are provided for enhancing interactive inputs. In an embodiment, a method includes concurrently capturing touch input data on a screen of a user device and non-touch gesture input data off the screen of the user device. The method also includes determining an input command based at least in part on a combination of the concurrently captured touch input data and the non-touch gesture input data. And the method further includes affecting an operation of the user device based on the determined input command.