摘要:
A system for compressing an Internet Protocol (IP) header for a multimedia broadcast multicast service (MBMS) is provided. The system includes an access gateway 110 and a plurality of cells 102, each of which has an enhanced node B (ENB) 20. When the quantity of cells 102 that will provide the MBMS is known to be one, execution of a packet data convergence protocol (PDCP)-based data compression function for the IP header occurs in the ENB 20 of the one cell 102. When the quantity of cells 102 that will provide the MBMS is not known to be one, execution of the PDCP-based data compression function occurs in the access gateway 110.
摘要:
A user equipment (UE) is disclosed. The UE includes a processor configured to transmit a rank indicator (RI) using one of an assigned periodic RI reporting resource that precisely aligns with the start on an on-duration of a discontinuous reception (DRX) operation mode of the UE and a first assigned periodic RI reporting resource after the start of the on-duration.
摘要:
A user equipment (UE) 10 is disclosed. The UE 10 includes a processor 502 configured to begin channel quality indicator (CQI) transmissions using an assigned periodic CQI reporting resource before the start of the on-duration 210 of a discontinuous reception (DRX) operation mode.
摘要:
A system for compressing an Internet Protocol (IP) header for a multimedia broadcast multicast service (MBMS) is provided. The system includes an access gateway 110 and a plurality of cells 102, each of which has an enhanced node B (ENB) 20. When the quantity of cells 102 that will provide the MBMS is known to be one, execution of a packet data convergence protocol (PDCP)-based data compression function for the IP header occurs in the ENB 20 of the one cell 102. When the quantity of cells 102 that will provide the MBMS is not known to be one, execution of the PDCP-based data compression function occurs in the access gateway 110.
摘要:
Methods of performing retransmissions in respect of communications, uplink and/or downlink, on semi-persistent resources are provided. Various embodiments include: the mobile device keeps its radio on for an additional period immediately following an awake period upon determining there will be a retransmission; the mobile device turning its radio on for an additional period separate and distinct from the awake period.
摘要:
Methods of combining semi-persistent resource allocation and dynamic resource allocation are provided. Packets, such as VoIP packets, are transmitted on the uplink and downlink using respective semi-persistent resources. For each mobile device, awake periods and sleep periods are defined. The semi-persistent resources are aligned with the awake periods so that most of the time the mobile device can turn off its wireless access radio during the sleep periods. In addition, signalling to request, and to allocate, resources for additional packets are transmitted during the awake periods, and the resources allocated for the additional packets are within the awake periods. Methods of extending the awake periods in various embodiments are also provided. Methods of determining the first on period are also provided.
摘要:
A network arrangement comprising a relay node (RN), wherein the RN is configured to assign a plurality of resource blocks (RBs) allocated by an enhanced node B (ENB) for at least one user equipment (UE). A network comprising an ENB, wherein the ENB is configured to allocate a plurality of RBs for an RN, wherein the RBs are assigned for at least one UE. Also disclosed is a method for communicating in a network, comprising selecting a time-division (TD) communication mode, and using resource scheduling based on the selected TD communication mode.
摘要:
Methods of combining semi-persistent resource allocation and dynamic resource allocation are provided. Packets, such as VoIP packets, are transmitted on the uplink and downlink using respective semi-persistent resources. For each mobile device, awake periods and sleep periods are defined. The semi-persistent resources are aligned with the awake periods so that most of the time the mobile device can turn off its wireless access radio during the sleep periods. In addition, signalling to request, and to allocate, resources for additional packets are transmitted during the awake periods, and the resources allocated for the additional packets are within the awake windows.
摘要:
A user equipment, UE, comprising a processor configured to control a receiver in the UE to have a periodic on-duration, the periodic on-duration associated with a discontinuous reception, DRX, operation mode of the UE; the processor further configured to receive a resource configuration, the resource configuration indicating a periodic reporting resource; the processor further configured to determine that data was not received properly; the processor further configured to determine a time period for one or more potential retransmissions of the data that was not received properly, the time period occurring after the start of one of the on-durations of the DRX operation mode of the UE; and the processor further configured to transmit precoding matrix indices, PMIs, using corresponding periodic reporting resources from at least a start of the time period for potential retransmissions until an end of the time period for potential retransmissions.
摘要:
Methods of combining semi-persistent resource allocation and dynamic resource allocation are provided. Packets, such as VoIP packets, are transmitted on the uplink and downlink using respective semi-persistent resources. For each mobile device, awake periods and sleep periods are defined. The semi-persistent resources are aligned with the awake periods so that most of the time the mobile device can turn off its wireless access radio during the sleep periods. In addition, signalling to request, and to allocate, resources for additional packets are transmitted during the awake periods, and the resources allocated for the additional packets are within the awake windows.