Abstract:
Apparatus, systems, articles of manufacture, and methods for processing video in virtual reality environments are disclosed. An example virtual reality display device to process video in a virtual reality environment includes a video analyzer to detect unsmooth video data in the stream of video data and a video library to provide alternative video data. The example device also includes a selector to receive the stream of video data, an indication of the unsmooth video data, and the alternative video data. The selector is to select the alternative video data to replace the unsmooth video data based on the indication of the unsmooth video data and output a modified stream of video data including the stream of video data with the alternative video data in place of the unsmooth video data. The example device also includes an output display to display the modified stream of video data.
Abstract:
Methods and apparatus relating to handling unaligned transactions for inline encryption are described. In an embodiment, cryptographic logic circuitry receives a plurality of incoming packets and store two or more incoming packets from the plurality of incoming packets in memory. The cryptographic logic circuitry is informs software in response to detection of the two or more incoming packets. Other embodiments are also disclosed and claimed.
Abstract:
Some demonstrative embodiments include apparatuses, systems and/or methods of controlling data flow over a wireless communication link with credit allocation. For example, an apparatus may include controller to control a data flow of a stream of data from a first device to a second device over a wireless communication link, the stream of data including data to be delivered to a plurality of endpoints, wherein the controller is to provide to the first device a plurality of credit allocations corresponding to the plurality of endpoints, wherein the controller is to determine a particular credit allocation corresponding to a particular end point based at least on an estimated link delay of the wireless communication link, and an estimated delivery rate of delivering data from a buffer of the second device to the particular endpoint.
Abstract:
In a recognition method, movement characteristics of an object are determined based on sensor information; image information of the object is determined based on the sensor information; and one or more gesture recognition operations are performed based on the movement characteristics and the image information to generate gesture recognition information. The recognition method may further include determining one or more physical characteristics of the object based on the image information; performing one or more physical characteristic pattern recognition operations based on the one or more physical characteristics to generate pattern recognition information; and generating a recognition output signal based on the gesture recognition information and the pattern recognition information.
Abstract:
Examples are disclosed for a first device to wirelessly dock to a second device. In some examples, a first device may receive identification from the second device for wirelessly docking. The first device may determine whether the second device is allowed to wirelessly dock and if allowed an authentication process may be implemented. The first device may then wirelessly dock to the second device based on a successful authentication. Other examples are described and claimed.
Abstract:
Some demonstrative embodiments include devices, systems and/or methods of communicating during an allocated time period. For example, an apparatus may include a wireless communication unit to perform the functionality of a first station to communicate data with a second station during an allocated time period, wherein, when both the first and second stations do not have data ready for transmission, the wireless communication unit is to communicate frames between the first station and the second station to occupy the allocated time period until at least one of the first and second stations has data ready for transmission or until an end of the allocated time period.
Abstract:
Some demonstrative embodiments include devices, systems and/or methods of communicating during an Association-Beamforming-Training (A-BFT). For example, a device may include a wireless communication unit to communicate a beacon frame during a beacon transmission interval (BTI), the beacon frame including a responder address field including a responder address representing one or more client devices, which are allowed to transmit during an A-BFT period following the BTI.
Abstract:
This disclosure describes systems, methods, and computer-readable media related to cross indication of queue size in a reverse direction protocol. In some embodiments, a reverse direction (RD) grantor may transmit a frame to an RD responder. The RD responder may identify data to be transmitted to the RD grantor based on the received frame. The RD responder may generate a frame that may comprise a plurality of sub-frames. The RD responder may set a sub-field in each of the sub-frames indicating whether there is data to transmit. The RD responder may also set a second sub-field that may indicate a priority or traffic stream associated with the data to be transmitted. The RD responder may transmit the frame (and associated sub-frames) to the RD grantor.
Abstract:
Some demonstrative embodiments include apparatuses, devices, systems and/or methods for controlling an antenna scheme of one or more antennas. For example, a controller may be configured to control an antenna scheme of one or more antennas of a mobile device for wireless communication based on a position of a lid of the mobile device relative to a base of the mobile device.
Abstract:
Some demonstrative embodiments include devices, systems and/or methods of communicating aggregate data units. For example, a device may include a wireless communication unit to communicate an aggregate data unit including a plurality of data units in an increasing order of sequence numbers assigned to the data units, such that a first data unit having a first sequence number always precedes a second data unit having a second sequence number, greater than the first sequence number.