Abstract:
Aspects of the disclosure relate to a handheld device equipped with arrays of force sensors located along both sides of the device that can provide a novel user interface for operating the device. The sensors can be configured to recognize various grip patterns, gestures, and biometric information of a user operating the device. Using the arrays of force sensors in addition to a touchscreen, a new paradigm for operating a handheld device is provided.
Abstract:
Embodiments of the present invention are directed toward controlling electronic devices based on hand gestures detected by detecting the topography of a portion of a user's body. For example, pressure data indicative of a user's bone and tissue position corresponding to a certain movement, position, and/or pose of a user's hand may be detected. An electromyographic (EMG) sensor coupled to the user's skin can also be used to determine gestures made by the user. These sensors can be coupled to a camera that can be used to capture images, based on recognized gestures, of a device. The device can then be identified and controlled.
Abstract:
Systems, methods, devices, and apparatuses for associating a user emotion with electronic media are described. Contact between a user of a device and a biopotential electrode array that is integrated with the device is detected. Electrodermal data of the user is acquired via the biopotential electrode array. The user emotion is derived based at least in part on the acquired electrodermal data. The user emotion is then associated with the electronic media.
Abstract:
Aspects of the disclosure relate to a handheld device equipped with arrays of force sensors located along both sides of the device that can provide a novel user interface for operating the device. The sensors can be configured to recognize various grip patterns, gestures, and biometric information of a user operating the device. Using the arrays of force sensors in addition to a touchscreen, a new paradigm for operating a handheld device is provided.
Abstract:
Systems, methods, devices, and apparatuses for associating a user emotion with electronic media are described. Contact between a user of a device and a biopotential electrode array that is integrated with the device is detected. Electrodermal data of the user is acquired via the biopotential electrode array. The user emotion is derived based at least in part on the acquired electrodermal data. The user emotion is then associated with the electronic media.
Abstract:
A collaborative method for a node includes forming a local network with at least one other node using a lower power subsystem; selecting a master node from among the local network based on a first set of criteria; and communicating with a back end server over a wireless wide area network (WWAN) using a higher power subsystem. An apparatus may include a first subsystem for communicating with a local network; and a second subsystem having an active mode and an inactive mode, the second subsystem for communicating with a wireless wide area network (WWAN) when in the active mode, the apparatus selecting the active mode or inactive mode based on a set of criteria.