Abstract:
A method and apparatus for wireless transmit receive unit (WTRU) to transmit a time transmission interval (TTI) bundle. The TTI bundle conflicts with a measurement gap, and the WTRU is configured to construct TTI bundle comprising a plurality of sub-frames, determine at least one of the plurality of sub-frames is in conflict with a measurement gap, determine a first of the plurality of sub-frames not in conflict with the measurement gap, associate the first of the plurality of sub-frames not in conflict with the measurement gap with a first redundancy version (RV), and transmit the first of the plurality of sub- frames in association with the first RV.
Abstract:
A method and an apparatus for performing a handover in an evolved universal terrestrial radio access network (E-UTRAN) are disclosed. A wireless transmit/receive unit (WTRU) sends a measurement report to a source evolved Node B (eNB), and receives a handover command from the source eNB. The WTRU initiates reception and processing of a primary broadcast channel (P-BCH) at the target cell after receiving the handover command. The WTRU then sends a random access preamble to the target eNB, receives a random access response from the target eNB, and sends a handover complete message to the target eNB. The reception and processing of the P-BCH may be initiated immediately after receiving the handover command or after sending the handover complete message. The WTRU may apply default configuration or source cell configuration in the target cell until a target cell SFN and/or P-BCH information are acquired.
Abstract:
A method and apparatus for providing emergency information to a wireless transmit receive unit (WTRU). The WTRU is configured to receive a system information message including an emergency message notification and emergency system information messages, wherein the system information messages are segmented and overlap non-emergency system information messages or are located between non-emergency system information messages. The WTRU is further configured to process the emergency information messages.
Abstract:
A method and apparatus for supporting uplink Transmission Time Interval (TTI) bundling in Long Term Evolution (LTE) is provided. Described are related method and apparatus for signaling, activation/deactivation and wireless transmit/receive unit (WTRU) behavior.
Abstract:
A method and apparatus for a wireless transmit receive unit (WTRU) to receive system information updates. This includes the WTRU aligning a discontinuous reception (DRX) on-duration with a system information update cycle such that the system information update cycle is a multiple of a DRX cycle.
Abstract:
The present application describes an apparatus including a non-transitory memory including instructions stored thereon. The apparatus also includes a processor operably coupled to the non-transitory memory configured to execute a set of instructions. The instructions include sensing plural devices in a group to provide sidelink coordination. The instructions also include evaluating a coordination type of each of the plural devices, where the coordination type is scheduled and/or assisted. The instructions also include obtaining transmission and reception resources for the plural devices. The instruction further include determining the transmission and reception resources are dedicated or shared among the plural devices based on the coordination type. The instructions even further include determining a signaling type for each of the plural devices based on the coordination type.
Abstract:
A wireless transmit/receive unit (WTRU) communicating in a wireless local area network (WLAN) system may use efficient acknowledgement (ACK) setup and transmission procedures in conjunction with other transmission and power saving techniques, such as target wake time / restricted access window (TWT/RAW), power save multi-poll (PSMP) and/or transmission opportunity (TXOP) mechanisms. In an example, a WTRU may transmit a frame including an indication that a TWT/RAW (or TXOP) period is scheduled, an indication that multi-WTRU acknowledgement (ACK)/ block ACK (BA) will be used for acknowledgement, and/or targeted transmission time(s) for the transmission of multi-WTRU ACK/BA frame(s). The WTRU may trigger the start of the TWT/RAW period, and may receive at least one data frame from another WTRU(s). The WTRU may transmit multi-WTRU ACK/BA frame(s) during the targeted transmission time(s) to acknowledge the at least one data frame received from the other WTRU(s).
Abstract:
Systems, methods, and instrumentalities are disclosed for SIG Design for OFDMA in WLAN Systems. A protocol data unit (PDU), e.g. , a medium access control (MAC) PDU, may be transmitted. Data may be mapped to a plurality of OFDM symbols of the PDU. Each of the plurality of OFDM symbols may be associated with a first duration and a first length of data. A second length of data to be transmitted in a last OFDM symbol of the plurality of OFDM symbols may be determined to be less than the first length of data. The last OFDM symbol may be modified, for example, based on the second length of data, from the first duration to a second duration. The second duration may be ¼, ½, or ¾ of the first duration. An indication of the second duration of the last OFDM symbol may be sent.
Abstract:
Systems and methods are provided for transmitting a relay search request frame from a source relay edge directional multigigabit (DMG) station STA (REDS) to the AP and receiving a relay search response frame including a list of at least a first and second relay DMG STA (RDS) in a wireless network. Systems and methods are further provided for transmitting over a first data stream through a direct link between the source REDS and the destination REDS, transmitting over a second data stream through the first RDS between the source REDS and the destination REDS, and transmitting over a third data stream through the second RDS between the source REDS and the destination REDS. Directional-band relay in wireless communications may be used in range extension where two wireless nodes may set up a relayed link without first forming a direct link between them.
Abstract:
Systems, methods, and instrumentalities are provided to implement a method of interference mitigation for an access point (AP). The AP may determine that a station (STA) associated with the AP is a sticky client. The determination may be associated with the STA having an undesirable transmission characteristic or an undesirable reception characteristic. The AP may associate a reassociation delay time with the sticky client. The reassociation delay time may be a time during which the AP will not reassociate with the sticky client. The AP may reassociate with the sticky client and determine that the sticky client has an undesirable transmission characteristic or an undesirable reception characteristic. The AP may assign the sticky client a resource. The resource may be associated with reduced access to a medium.