Abstract:
A method of service level traffic differentiation at a radio access network, a wireless network system and a radio access network (RAN) access node are provided. The method of service level traffic differentiation at the radio access network includes the following steps: A core network transmits a data flow information including a flow ID to a RAN access node via a user plane packet. The RAN access node sets up a data connection to a user equipment according to the data flow information.
Abstract:
A congestion management method is provided. The radio access node detects and determining a congestion. The radio access node performs a process of a congestion mitigation decision if the congestion is detected and determined. The radio access node performs a congestion mitigation process based on a result of the congestion mitigation decision. The radio access node detects and determines a congestion relief The radio access node stops the congestion mitigation process, and the congestion control process according to the congestion is stopped accordingly.
Abstract:
A method of group based machine type communications (MTC) and apparatuses using the same are proposed to minimize unexpected network response by the way of group based MTC function translations and adjustments. According to the method and the apparatus performing the method, grouping and re-grouping in both in the network level and the application server level could be performed to minimize functional discrepancies among required functions for a MTC service, functions supported by a network, and functions available for MTC UEs. Functional discrepancies after the initial grouping may be solved by performing functional adjustment and translation. By using this group based method and apparatuses, not only control signal overheads are saved but the likelihood of network congestion or overload due to error signals could be lowered.
Abstract:
A heterogeneous radio access network system includes a mobile device and a first base station operated in a first wireless access network. The mobile device is wireless communicated with the first base station. One of the mobile device and the first base station sends a traffic steering initial message to request a traffic steering operation, the traffic steering initial message including a plurality of traffic flows. The other one of the mobile device and the first base station decides whether to accept or reject the traffic steering initial message. If the other one of the mobile device and the first base station accepts the traffic steering initial message, the mobile device performs a selective traffic steering, wherein the selective traffic steering comprises traffic flow(s), and the traffic flow(s) in the selective traffic steering are selected among the traffic flows of the traffic steering initial message.
Abstract:
The disclosure is directed to a method of radio resource scheduling in an unlicensed spectrum and related apparatuses using the same method. In one of the exemplary embodiments, the method would include not limited to transmitting a node control information which may include an occupancy pattern of a radio resource of the unlicensed spectrum before receiving an occupancy notification; transmitting an equipment control information which comprises the occupancy pattern of the radio resource of the unlicensed spectrum before receiving the occupancy notification; transmitting a packet data by using the radio resource of the unlicensed spectrum before receiving the occupancy notification; and receiving the occupancy notification which informs an availability of the radio resource of the unlicensed spectrum.
Abstract:
The disclosure is directed to a method of radio resource scheduling in an unlicensed spectrum and related apparatuses using the same method. In one of the exemplary embodiments, the method would include not limited to transmitting a node control information which may include an occupancy pattern of a radio resource of the unlicensed spectrum before receiving an occupancy notification; transmitting an equipment control information which comprises the occupancy pattern of the radio resource of the unlicensed spectrum before receiving the occupancy notification; transmitting a packet data by using the radio resource of the unlicensed spectrum before receiving the occupancy notification; and receiving the occupancy notification which informs an availability of the radio resource of the unlicensed spectrum.