摘要:
A system is provided for concurrently connecting a user equipment to a plurality of packet data network gateways via a radio access network and a serving gateway. The system includes a processor configured to evaluate an operational parameter related to a set of network components to which the user equipment, the radio network, the serving gateway and the packet data network gateways belong. The operational parameter is used to control a user equipment to multiple packet data networks, subject to resource limitation, and QoS and PCC rules.
摘要:
A macrotechnology-based system, comprising: a processor (582) configured to promote macrotechnology-based transmission to a multi-mode user equipment (10) of a signal having a plurality of data portions (110) and a plurality of gaps (120) between ones of the plurality of data portions (110), wherein at least one of the gaps (120) is used by the multi-mode user equipment (10) for measurement of a first signal strength of a first macrotechnology-based network (30), wherein the processor (582) is further configured to use a gap (120) previously designated for the first macrotechnology-based signal strength measurement to perform a second microtechnology-based signal strength measurement.
摘要:
Systems and methods for performing MCS adaptation are provided. In some cases, the network (20-3) performs (5-3) MCS adaptation based on received ACKs.
摘要:
A macrotechnology-based system including a processor (582) configured to promote macrotechnology-based transmission to a multi-mode user equipment (10) of a signal having a plurality of data portions (110) and a plurality of gaps (120) between ones of the plurality of data portions (110), wherein at least one of the gaps (120) is used by the multi-mode user equipment (10) for measurement of a first signal strength of a first macrotechnology-based network (30), wherein the processor (582) is further configured to increase the size of a previously existing gap to form an increased-size gap, wherein the previously existing gap is in the plurality of gaps, and wherein the increased-size gap allows for both the first signal strength measurement and a second signal strength measurement of a second microtechnology-based network (20).
摘要:
A macrotechnology-based system is provided. The system includes a processor 582 configured to promote macrotechnology-based transmission to a multi-mode user equipment 10 of a signal including a plurality of data portions 110 and a plurality of gaps 120 between one or more of the plurality of data portions 110, at least one of the gaps 120 used by the multi-mode user equipment 10 for measurement of a signal strength of a microtechnology-based network.
摘要:
A system is provided that includes a user equipment 10 configured to attempt a quality measure of a signal from a home local network 20 only when the user equipment 10 is within range of the home local network 10.
摘要:
A method and apparatus for recovery from discontinuous reception desynchronization, the method having the steps of: determining a most recent time that an explicit message indicating a change from an old discontinuous reception period to a new discontinuous reception period was sent; adding to the most recent time that the explicit message was sent the old discontinuous reception period multiplied by an integer, where the integer is selected to ensure the results of the adding step occur after a present time; and sending a continuous reception command at the time found in the adding step.
摘要:
Systems and methods for performing MCS adaptation are provided. In one embodiment, the network (20-3) performs (5-3) MCS adaptation based on received ACKs. In another embodiment, the MCS adaptation is based on the number of received ACKs.
摘要:
Systems and methods for performing MCS adaptation are provided. In some cases, the network performs MCS adaptation based on received NACKs. In other cases, the mobile station determines an MCS based on channel quality measurements, and feeds back the MCS adaptation decision to the network. In either case, NACK-only feedback may be implemented to reduce interference.