Abstract:
Apparatuses, methods, and systems are presented for sensing scene-based occurrences. Such an apparatus may comprise a vision sensor system comprising a first processing unit and dedicated computer vision (CV) computation hardware configured to receive sensor data from at least one sensor array comprising a plurality of sensor pixels and capable of computing one or more CV features using readings from neighboring sensor pixels. The vision sensor system may be configured to send an event to be received by a second processing unit in response to processing of the one or more computed CV features by the first processing unit. The event may indicate possible presence of one or more irises within a scene.
Abstract:
Systems, methods, and apparatuses for enriched local advertising for small cells are described. A small cell or its components may host an advertising engine on an edge computing device that may be co-located with the small cell. The small cell may determine local information regarding an operating context of the mobile device in the small cell. The small cell may transmit advertising content to the mobile device based on the local information regarding the mobile device. The small cell may physically augment an output device in the small cell. The small cell may also serve a richer version of the advertising content to the mobile device based on local information regarding the mobile device, which may include physical location data for the mobile device. The small cell may be a small cell base station or wireless access point in close physical proximity to the mobile device.
Abstract:
An example method may include receiving, by a computing device, control plane signaling associated with a first service to be performed by a first communication device, wherein the computing device is within a radio access network (RAN) and is in limited communication with a core network via a backhaul connection that is constrained due to a backhaul bottleneck condition. The example method may include conditionally permitting, by the computing device, a first feature of the first service based at least in part on the backhaul bottleneck condition. Another example method may include receiving, by a computing device, control plane signaling associated with a service to be performed by a first communication device, wherein the computing device is within a RAN and is in limited communication with a core network via a backhaul connection that is constrained due to a backhaul bottleneck condition.
Abstract:
Methods, systems, and devices are provided for system information management in a wireless communications. A user equipment (UE) may identify a first value of a value tag in a first carrier, read a system information block (SIB) on the first carrier associated with the value tag, and identify a second value of the value tag in a second carrier. The UE may compare the first value with the second value and determine whether the read SIB on the first carrier may be utilized on the second carrier. Other techniques may include identifying a first value of a value tag for a first carrier linked with a SIB transmitted over the first carrier. The techniques may include determining a second value of the value tag for a second carrier indicating whether the SIB transmitted over the first carrier may be utilized on the second carrier.
Abstract:
Methods, systems, and devices are provided for system information management in a wireless communications. A user equipment (UE) may identify a first value of a value tag in a first carrier, read a system information block (SIB) on the first carrier associated with the value tag, and identify a second value of the value tag in a second carrier. The UE may compare the first value with the second value and determine whether the read SIB on the first carrier may be utilized on the second carrier. Other techniques may include identifying a first value of a value tag for a first carrier linked with a SIB transmitted over the first carrier. The techniques may include determining a second value of the value tag for a second carrier indicating whether the SIB transmitted over the first carrier may be utilized on the second carrier.
Abstract:
Disclosed are systems and techniques for transferring device content using radio frequency (RF) sensing. For instance, a first wireless device can identify a first user of the first wireless device based on a first radio frequency (RF) signature associated with the first user. The first wireless media device can determine a disengagement of the first user from the first wireless media device. In response to the disengagement, content information associated with usage of the first wireless device by the first user can be captured.
Abstract:
Certain aspects of the present disclosure provide techniques for kernel expansion. An input data tensor is received at a first layer in a neural network, and a first convolution is performed for a first kernel, where the first kernel has a size greater than a preferred size. Performing the first convolution comprises generating a plurality of intermediate tensors by performing a plurality of intermediate convolutions using a plurality of intermediate kernels with a size of the preferred size, and accumulating the plurality of intermediate tensors to generate an output tensor for the first convolution.
Abstract:
An example image capture device includes memory configured to store display content and image information received from a camera sensor, the camera sensor being configured to receive light through at least a portion of a display. The image capture device includes one or more processors coupled to the memory. The one or more processors are configured to determine a camera sensor blanking period. The one or more processors are configured to control the display to display content via one or more of a plurality of pixels in the at least a portion of the display during the camera sensor blanking period. The one or more processors are configured to control the display to not display content via the one or more of the plurality of pixels outside of the camera sensor blanking period.
Abstract:
Disclosed is a method and apparatus for operating a first device. The first device obtains environment information in proximity to the first device and receives one or more communication messages from a second device and the message(s) includes relevance criteria, wherein the relevance criteria indicates one or more devices, one or more sets of device characteristics, one or more lanes, one or more intersections or areas, one or more pedestrian paths or bicycle paths, one or more signal characteristics from the second device or any combination thereof. The first device determines whether the one or more communication messages are relevant to the first device based on the relevance criteria and the environment information and performs an operation in response to the determination of whether the one or more communication messages are relevant.
Abstract:
Methods, systems, and devices for change detection are described. The methods, systems, and devices relate to monitoring a field of view of an image sensor via a first pixel associated with a group of pixels of the image sensor, where a dimension of the first pixel exceeds a dimension of at least one pixel of the group of pixels of the image sensor, detecting a change in the field of view of the image sensor based on the monitoring, and activating a second pixel of the image sensor based on detecting the change in the field of view of the image sensor.