Abstract:
A wireless transmit/receive unit (WTRU) may detect another WTRU over bluetooth. The WTRU may send to the another WTRU a message to transfer selected media. The WTRU may transfer the selected media to the another WTRU over WiFi.
Abstract:
Systems, methods, and instrumentalities are provided to implement a method for radio environment, measurement (REM) scheduling, information extraction, storage and processing to generate terrain and object mapping/identification using higher frequency radio signals, directional transmission techniques and external database information. Described are wireless transmit/receive units (WTRUs) comprising a processor configured to, when the WTRU is in an idle state, receive a common control channel from a millimeter wave base station (mB), decode a measurement schedule included in the common control channel, wherein the measurement schedule includes one or more slots during which sounding signals will be sent, and, determine a slot during which the WTRU is available to measure a sounding signal, and, when the WTRU is in a connected state, receive a dedicated control channel from a millimeter wave base station (mB), decode a measurement schedule and a receiver configuration included in the dedicated control channel, wherein the measurement schedule and the receiver configuration are specific to the WTRU, and wherein the measurement schedule includes one or more slots during which sounding signals will be sent, and determine a slot during which the WTRU is available to measure a sounding signal.
Abstract:
A wireless transmit/receive unit (WTRU) may detect another WTRU over bluetooth. The WTRU may send to the another WTRU a message to transfer selected media. The WTRU may transfer the selected media to the another WTRU over WiFi.
Abstract:
Detecting wireless transmit/receive units (WTRUs), by a WTRU over Bluetooth, is disclosed. An input from a multi-touch display to select a target WTRU from the detected WTRUs is processed. The WTRU transfers to the selected target WTRU over WiFi a selected media.
Abstract:
A method of data transfer between wireless transmit/receive units (WTRUs) is described. The WTRUs may be within a given geographic area of each other or in communication with the same network. Location information relating to the WTRUs may be determined. The location information may be presented to a user of the WTRU. Data may be transferred from one WTRU to a target WTRU based on user input. The WTRU may determine the target WTRU based on user input and/or location information. The user input may be a gestural input. The gestural input may be received via a display or touchscreen. The user input may identify a given action or identify a particular file for transfer. The WTRU may receive data from the target WTRU.
Abstract:
A wireless transmit/receive unit (WTRU) may detect, with bluetooth, devices in proximity to the WTRU. The WTRU may send a message to transfer selected multi-media to a selected device. The WTRU may receive confirmation to transfer the selected multi-media to the selected device. The selected multi-media is transferred to the selected device.
Abstract:
A wireless transmit/receive unit (WTRU) may determine, from an input, pressure on a visual depiction of media on a touch display and a push across the touch display. Another WTRU may be detected with use of bluetooth. The media may be transferred to the another WTRU with use of WiFi.
Abstract:
Detecting, with Bluetooth, wireless transmit/receive units (WTRUs) in proximity to a WTRU is disclosed. The WTRU may send a message to transfer of a selected media to a selected WTRU. The WTRU may receive an acceptance to transfer the selected media to the selected WTRU. The selected media is transferred to the selected WTRU.