Abstract:
A receiving device re-establishing a packet data convergence protocol (PDCP) entity. The receiving device resets a robust header compression (ROHC) context. The receiving device receives packet retransmissions having header compression based on the ROHC. The receiving device performs decompression of the packet retransmissions. The receiving device discards duplicate packets after performing the decompression of the packet retransmissions.
Abstract:
Methods, systems, and devices for wireless communications are described. A wireless node may receive one or more data messages which may include a set of packets that may each be associated with a sequence number. The set of packets may be received with a gap in the set of sequence numbers, indicating missing packets. The wireless node may forward the set of packets to a processing layer of the wireless node. The wireless node may then accept, from the processing layer of the wireless node, a set of duplicate (DUP) acknowledgment (ACK) messages based on the set of packets being forwarded to the processing layer while having the gap in the set of sequence numbers. The wireless node may transmit, a subset of the set of DUP ACKs rather than all of the set of DUP ACKs to another wireless node, such as a base station.
Abstract:
Method and apparatus are provided for timing advance (TA) in RACH. In accordance with some implementation, a UE may override an already running TA value with a received TA value even when the received TA is received in a RACH message 2 as part of contention based RACH procedure while a timer associated with the already running TA value has not expired.
Abstract:
Aspects are provided allowing a MSIM UE to transmit a controlled pattern of fake HARQ-ACK and a controlled RLC status report in response to un-decoded data transmissions from a base station, while suspending SRS antenna switching during performance of an activity in a different network subscription, in order to relieve MCS penalties in response to such suspension while minimizing RLC holes. The UE sends a plurality of SRSs to a base station in a first network using a first SIM of the UE, where each of the SRSs is sent using a different antenna. The UE suspends SRS transmission from the different antennas while performing an activity in a second network using a second SIM of the UE. The UE sends a HARQ-ACK to the base station while the SRS transmission is suspended in response to at least one of a plurality of un-decoded data transmissions from the base station.
Abstract:
This disclosure relates to an organic solar cell and an organic light emitting diode stack. The stack comprises a solar cell portion having a substrate, an electrode, an active layer, and a second electrode. The stack also comprises a light emitting diode portion having a substrate, an electrode, an active layer, and a second electrode. The solar cell portion is laminated to the light emitting diode portion to form a stack.
Abstract:
Methods, systems, and devices for wireless communications are disclosed by the present application. A request to establish a call using a first connection may be received, the first connection using a first radio access technology to communicate with a radio access network. During execution of a procedure to establish the call, a command to handover communications from the first connection to a second connection that uses a second radio access technology to communicate with the radio access network may be received. The second connection may be established in response to the command, and a message indicating that the request to establish the call was successfully received may be transmitted over the second connection. Also, a message indicating that an alert of the call is being issued may be transmitted over the second connection.
Abstract:
Example implementations include a method, apparatus and computer-readable medium for wireless communication at a user equipment (UE), comprising detecting an empty condition of data to be transmitted associated with sending a buffer status report (BSR) that would transition the UE from a BSR condition or active bandwidth part (BWP) or RRC active state to a schedule request (SR) condition or default BWP or RRC inactive state having relatively increased transmission latency. The implementations further include identifying a data-to-be-available condition associated with one or more protocol layer entities having data pending to be available for transmission. Additionally, the implementations further include determining a non-zero buffer size value in response to the empty condition and the data-to-be-available condition. Additionally, the implementations further include transmitting the BSR with the non-zero buffer size value.