摘要:
A radio access network (20) comprises a radio network controller (26) and a radio base station (28). The radio network controller (26) is configured to perform admission control and to allocate resources of a cell. The radio base station (28) is configured to determine load/congestion on a high speed shared channel and to generate an indication of the load/congestion for transmission to the radio network controller. In some example embodiments and modes, at least one of the radio network controller and the radio base station is configured to allocate at least some of the resources for the high speed shared channel to support a guaranteed service and also to allocate at least some resources to support a non-guaranteed service. In some example implementations of this aspect, a user(s) of the non-guaranteed service is permitted to use the resources up to a reserved resource level of resources. According to another non-limiting aspect of the technology, the radio base station is further configured to generate a recommended action for dealing with the load/congestion.
摘要:
A method for dynamic allocation of radio UL Physical Resource Block pairs of a plurality of subframes in a cell of an FDMA RAN. For each of the plurality of subframes, using a bandwidth layout in frequency domain for an UL bandwidth of the cell, in which the bandwidth layout has an inner region for a PUSCH positioned between outer regions for a PUCCH. For each of the outer regions, a PUCCH layout comprises an innermost section for PUCCH Format 1 and a middle section and an outermost section are PUCCH Formats 2 and 3. Depending on the traffic load of the cell, dynamically allocating, contiguously inwards, PRB pairs to Scheduling Requests in the outer regions and contiguously extending the inner region as allowed by the dynamic allocation of PRB pairs in the outer regions in each of the plurality of subframes.
摘要:
A radio access network (20) comprises a radio network controller (26) and a radio base station (28). The radio network controller (26) is configured to perform admission control and to allocate resources of a cell. The radio base station (28) is configured to determine load/congestion on a high speed shared channel and to generate an indication of the load/congestion for transmission to the radio network controller. In some example embodiments and modes, at least one of the radio network controller and the radio base station is configured to allocate at least some of the resources for the high speed shared channel to support a guaranteed service and also to allocate at least some resources to support a non-guaranteed service. In some example implementations of this aspect, a user(s) of the non-guaranteed service is permitted to use the resources up to a reserved resource level of resources. According to another non-limiting aspect of the technology, the radio base station is further configured to generate a recommended action for dealing with the load/congestion.
摘要:
When a serving Node B has deactivated Continuous Packet Connectivity and the UE then is reconfigured with a RRC reconfiguration message, it can happen that the UE acts as though CPC is activated whereas the serving Node B, on the other hand, acts as though CPC functionality is still deactivated. In several embodiments of techniques for addressing this problem, previously known signaling messages and/or user plane frame headers are modified to include new indicators/parameters, which are used to signal that a given UE should be expected to have non-uniform behavior with respect to remembering CPC activation status after acting on a RRC Reconfiguration message, because it is a Release 7 or Release 8 mobile station. These new indicators/parameters may also be used by a Node B, in some embodiments, to acknowledge the receipt of an indication from an RNC that non-uniform behavior should be anticipated for a given UE.
摘要:
A method for dynamic allocation of radio UL Physical Resource Block pairs of a plurality of subframes in a cell of an FDMA RAN. For each of the plurality of subframes, using a bandwidth layout in frequency domain for an UL bandwidth of the cell, in which the bandwidth layout has an inner region for a PUSCH positioned between outer regions for a PUCCH. For each of the outer regions, a PUCCH layout comprises an innermost section for PUCCH Format 1 and a middle section and an outermost section are PUCCH Formats 2 and 3. Depending on the traffic load of the cell, dynamically allocating, contiguously inwards, PRB pairs to Scheduling Requests in the outer regions and contiguously extending the inner region as allowed by the dynamic allocation of PRB pairs in the outer regions in each of the plurality of subframes.
摘要:
When a serving Node B has deactivated Continuous Packet Connectivity and the UE then is reconfigured with a RRC reconfiguration message, it can happen that the UE acts as though CPC is activated whereas the serving Node B, on the other hand, acts as though CPC functionality is still deactivated. In several embodiments of techniques for addressing this problem, previously known signaling messages and/or user plane frame headers are modified to include new indicators/parameters, which are used to signal that a given UE should be expected to have non-uniform behavior with respect to remembering CPC activation status after acting on a RRC Reconfiguration message, because it is a Release 7 or Release 8 mobile station. These new indicators/parameters may also be used by a Node B, in some embodiments, to acknowledge the receipt of an indication from an RNC that non-uniform behavior should be anticipated for a given UE.