Abstract:
Certain aspects of the present disclosure relate to methods and apparatus for coordinating UE capabilities across RATs. In some cases, a UE may provide an indication of one or more first sets of capabilities of the UE to operate in a first RAT network that are compatible with one or more second sets of capabilities of the UE to operate in a second RAT network. Indicating the sets of capabilities may require less signaling overhead than explicitly signaling all possible combinations of capabililites.
Abstract:
Certain aspects of the present disclosure relate to methods and apparatus for improving buffer size setting for one or more buffer status reports, such as one or more extended buffer status reports (eBSRs) in a wireless communication system. According to certain aspects, a method is provided herein for wireless communications performed by a user equipment (UE). The method generally includes determining a first amount of data stored in a buffer at the UE; and if the first amount of the data satisfies (e.g., is equal to or greater than) a threshold, sending a first BSR indicating a second amount of buffered data at the UE greater than the first amount. As a result, the UE may be scheduled by the base station for a greater amount uplink resources for transmitting the buffered data.
Abstract:
An apparatus for receiving data over a communications link is provided. The apparatus includes a processing system configured to support a protocol stack comprising a first layer and a second layer. The processing system is configured to receive a plurality of data packets. Each of the data packets includes a first segment for processing at the first layer. Each of the first segments includes a first header and a first payload. Each of the first payloads includes a second segment having a second header and a second payload. The processing system is also configured to determine, at the first layer, whether to reorder the second segments for in-sequence delivery to the second layer based on information in one or more of the second headers or one or more configuration information from the processing system.
Abstract:
Certain aspects of the present disclosure relate to methods and apparatus for adjusting flow rate of transmissions received at a device. A user equipment (UE) determines, in response to detecting a trigger condition, a proposal to adjust feedback provided to a base station (BS) in order to adjust a flow rate of transmissions received at the UE from the BS. The UE adjusts the feedback based on the proposal and at least one additional condition and transmits the adjusted feedback to the BS.
Abstract:
Methods, systems, and devices are described for passively and dynamically determining network timeout (NTO) values. The method may include adjusting an amount of delay applied to transmissions on an existing connection to a device in a network and determining how long the existing connection is allowed to remain idle before the existing connection expires based on the adjusting of the amount of delay applied to the transmissions on the existing connection.
Abstract:
Methods and apparatuses are provided for synchronizing security parameters between access terminals and a wireless network. An access terminal and network entity can conduct a security mode procedure where the access terminal sends a security mode complete message to the network entity. On receipt of the security mode complete message, the network entity may update to new security parameters. The access terminal may initiate a mobility procedure while the security mode procedure is ongoing and may, as a result, abort the security mode procedure and revert back to the old security parameters. The access terminal can send a mobility update message to the network entity including a dedicated status indicator adapted to inform the network entity that the access terminal has reverted back to the old security parameters. In response to the mobility update message, the network entity may revert back to the old security parameters.
Abstract:
Aspects of the present disclosure provide an apparatus for wireless communications. The apparatus generally includes at least one processor configured to associate with a wireless IP network, transmit to a base station, from the mobile device, a first routable address, establish a tunnel between the mobile device and the base station over a first data connection using the first routable address, and receive, packets from the base station over the wireless network using the tunnel; and a memory coupled to the processor.
Abstract:
A method, an apparatus, and a computer program product for wireless communication are provided. The apparatus determines an observed bit rate based on uplink transmissions of the UE, estimates an available link capacity for the UE, selects an estimate factor, and estimates available uplink throughput for future uplink transmissions of the UE as a function of the observed bit rate, the estimated available link capacity, and the estimate factor.
Abstract:
Cell reselection for transitioning a user device from a macro cell to a small cell may be performed by comparing a first reselection candidate small cell and a second reselection candidate small cell based on reselection criteria, and selecting a final reselection candidate based on the comparison.
Abstract:
Apparatus and methods are described for identifying candidate cells on at least one frequency, where each of the candidate cells is associated with a cell quality, storing information related to each of the candidate cells in a candidate list, sorting the candidate list, and decoding a master information block (MIB) and one or more system information blocks (SIBs) for a subset of the candidate cells based on the sorting.