Abstract:
A method of wireless communication in a single radio device supporting multiple radio access technologies includes adjusting measurement gap allocations for inter radio access technology (IRAT) and inter-frequency measurements. The adjustment may be based on a service type of one or more services that are running on the single radio device. The measurement gap allocation may be adjusted by increasing IRAT measurements when the service type is a voice call supported by a non-serving RAT, by increasing inter-frequency measurements when the service type is a high throughput service type and a serving RAT provides higher throughput than a non-serving RAT or other adjustments.
Abstract:
A method of wireless communication at a user equipment (431) includes determining (502) whether a user equipment (431) is traveling faster than a predetermined speed and determining whether a current serving frequency is dedicated (504), based on whether the UE is traveling faster than the predetermined speed and/or whether a highspeed flag is set in a received message. The method also includes periodically searching (508) a dedicated frequency from a dedicated frequency list to detect a dedicated cell with a signal quality above a predetermined threshold and switching to the dedicated cell, when the signal quality of the dedicated cell is above the predetermined threshold.
Abstract:
A method for configuring a classifier includes operating the classifier to classify an input. The method also includes determining a confidence metric based on classification of the input. The method further includes dynamically updating a complexity of the classifier based on the confidence metric. The confidence metric may be computed based on a posterior probability. The complexity may be updated when the confidence metric is below a threshold value.
Abstract:
A method of address translation of images and filters to virtual matrices to perform a convolution by matrix multiplication includes receiving an image and a filter. Each image and filter has a memory address. The method also includes mapping the memory addresses to virtual matrix addresses based on a calculated linearized image and a calculated linearized filter. The method further includes converting data in the virtual matrix to a predefined internal format. The method still further includes convolving the image by matrix multiplication of the data in the predefined internal format based on the virtual matrix addresses.
Abstract:
Direct device-to-device (D2D) communications may be coordinated to reduce interference to the sets of radios involved in the individual device-to-base station or device-to-access point communications for the individual devices of the D2D communications. Coexistence management plans for the individual devices may be used to determine a D2D coexistence management plan to reduce interference among the many communications, both for the D2D communications and for non-D2D communications of the individual devices.
Abstract:
A computer-implemented method of generating a spatio-temporal pattern model for spatio-temporal pattern recognition includes receiving one or more training trajectories. Each of the training trajectories includes diverse data points that represent a spatio-temporal pattern. The received training trajectories define an area that is partitioned into one or more observed clusters, and a non-observed complementary cluster. The spatio-temporal pattern model is generated so as to include both of the observed clusters and the non-observed complementary cluster.
Abstract:
A method of wireless communication includes a user equipment determining a current transmit power. The method also includes the user equipment disabling a request for an increased data rate when the current transmit power is greater than or equal to a power threshold. In some cases, the request for the increased data rate includes transmitting an event 4A measurement report.
Abstract:
A method of event-based down sampling includes receiving multiple sensor events corresponding to addresses and time stamps. The method further includes spatially down sampling the addresses based on the time stamps and the addresses. The method may also include updating a pixel value for each of the multiple sensor events based on the down sampling.
Abstract:
A user equipment (UE) quickly reselects from a first radio access technology (RAT) to a third RAT. The first RAT does not provide neighbor frequencies of the third RAT. Therefore, the user equipment first starts reselection to a second RAT. The user equipment then collects system information from the second RAT. The system information includes one or more frequencies of the third RAT. The user equipment searches for one or more frequencies of the third RAT and measures one or more detected cells corresponding to the one or more frequencies of the third RAT. The user equipment bypasses camping on the second RAT and directly camps on the third RAT when a signal quality of a detected cell corresponding to the one or more frequencies is above an absolute threshold.
Abstract:
A magnetic tunnel junction (MTJ) device (300) includes a pinned layer (314), a tunnel barrier layer (310) on the pinned layer, and a free layer (308) on the tunnel barrier layer. The MTJ device also includes a perpendicular magnetic anisotropic (PMA) enhancement layer (306) on the free layer, a capping layer (302) on the PMA enhancement layer, and a conductive path (304, 305) electrically shorting the capping layer, the PMA enhancement layer and the free layer.