Abstract:
A method of processing asynchronous event-driven input samples of a continuous time signal, includes calculating a convolutional output directly from the event-driven input samples. The convolutional output is based on an asynchronous pulse modulated (APM) encoding pulse. The method further includes interpolating output between events.
Abstract:
A user equipment (UE) receives a circuit switched page from a first base station of a first radio access technology (RAT) and a command instructing the UE to redirect from the first base station to a second RAT. The UE identifies a second base station of the second RAT in response to receiving the command. The second base station is the strongest base station in the second RAT and has a location area code. The UE determines whether the location area code corresponds to a location area code associated with a previous successful redirection attempt from the first base station. The UE redirects to the second RAT based at least in part on the determining.
Abstract:
A method of operating a neural network includes determining a complexity, such as a number) of separable filters approximating a filter. The method further includes selectively applying a decomposed convolution to the filter based on the determined number of separable filters.
Abstract:
A method of wireless communication includes dynamically determining whether to perform single cell channel estimation or multi-cell channel estimation. The method further includes performing channel estimation in accordance with the aforementioned determination.
Abstract:
A method of wireless communication with a multi subscriber identity module (SIM) multi standby UE includes tuning away from a data call on a first SIM to perform an activity for a second SIM. The method also includes tuning back to the data call on the first SIM and delaying, for a predetermined time period, a layer 2 message after tuning back. The layer 2 message can be a protocol data unit (PDU) status transmission in response to receiving a polling bit, a radio link control (RLC) protocol data unit (PDU) polling bit transmission, or a data re-transmission.
Abstract:
A method of learning a model includes receiving model updates from one or more users. The method also includes computing an updated model based on a previous model and the model updates. The method further includes transmitting data related to a subset of the updated model to the a user(s) based on the updated model.
Abstract:
A multi-subscriber identity module (SIM) multi-standby user equipment (UE) improves recovery of an original operation of a first radio access technology (RAT) when the UE tunes away from the first RAT. In some instances, the UE communicates with the first RAT on a transmit chain and a receive chain and then tunes to a second RAT on the receive chain to monitor downlink communications or activities of the second RAT. The UE transmits on the first RAT over the transmit chain, while tuned to the second RAT. Thus, the UE continues to perform uplink transmission when the UE tunes away, which allows a base station of the first RAT to track the UE for downlink beam-forming.
Abstract:
A user equipment (UE) determines which neighbor cell frequencies and radio access technologies (RATs) to measure based on the UE's recorded history of measurement results and searches. In one instance, the UE determines a set of neighbor cells for each of multiple serving cells. The UE records measurement results and search history for each of the set of neighbor cells, and the corresponding multiple serving cells. In another instance, the UE determines a measurement schedule for neighbor cells, including neighbor RATs and/or frequencies, based on the recorded measurement results, search history and the current serving cell.
Abstract:
An integrated circuit device includes a substrate. The integrated circuit device also includes a first conductive stack including a back-end-of-line (BEOL) conductive layer at a first elevation with reference to the substrate. The integrated circuit device also includes a second conductive stack including the BEOL conductive layer at a second elevation with reference to the substrate. The second elevation differs from the first elevation.
Abstract:
An anti-fuse device includes a first electrode, an insulator on the first electrode, a second electrode on the insulator, and selector logic coupled to the second electrode. The device also includes a conductive path between the first and second electrodes. The conductive path may be configured to provide a hard breakdown for one-time programmable non-volatile data storage.