Patent classifications
H04W16/02
Network slice support of respective transport protocols
Techniques are described herein for network slice support of respective transport protocols. In one example, a session management function obtains, from a user equipment, a request for a network slice identifier in a network that includes a plurality of network slices each configured to support a respective transport protocol. In response to the request, the session management function identifies a first transport protocol of the respective transport protocols by which the user equipment is to communicate. Based on the first transport protocol, the session management function identifies a first network slice of the plurality of network slices by which the user equipment is to communicate. The first network slice is configured to support the first transport protocol. The session management function provides the network slice identifier to the user equipment. The network slice identifier corresponds to the first network slice.
Network slice support of respective transport protocols
Techniques are described herein for network slice support of respective transport protocols. In one example, a session management function obtains, from a user equipment, a request for a network slice identifier in a network that includes a plurality of network slices each configured to support a respective transport protocol. In response to the request, the session management function identifies a first transport protocol of the respective transport protocols by which the user equipment is to communicate. Based on the first transport protocol, the session management function identifies a first network slice of the plurality of network slices by which the user equipment is to communicate. The first network slice is configured to support the first transport protocol. The session management function provides the network slice identifier to the user equipment. The network slice identifier corresponds to the first network slice.
Baseband Processing Capability Handling in Split Deployment
In a process for adding a base station as a secondary base station, and for example in 5 response to a UE Context Setup Request or a UE Context Modification Request, a distributed unit of a base station selects a feature set, and informs a central unit of the base station of the selected feature set.
Baseband Processing Capability Handling in Split Deployment
In a process for adding a base station as a secondary base station, and for example in 5 response to a UE Context Setup Request or a UE Context Modification Request, a distributed unit of a base station selects a feature set, and informs a central unit of the base station of the selected feature set.
APPARATUS AND METHOD FOR REDUCING POWER CONSUMPTION OF RECEIVING DATA IN WIRELESS COMMUNICATION SYSTEM
A wireless communication method of a receiver, including performing a first determination of whether to decode a control channel of a current time transmission interval (TTI) based on control channel information of a previous TTI; decoding the control channel of the current TTI based on a result of the first determination; performing a second determination of whether a data channel is included in the current TTI based on a result of the decoding; and performing a third determination of whether to deactivate a communication interface configured to process a received signal based on a result of the second determination
APPARATUS AND METHOD FOR REDUCING POWER CONSUMPTION OF RECEIVING DATA IN WIRELESS COMMUNICATION SYSTEM
A wireless communication method of a receiver, including performing a first determination of whether to decode a control channel of a current time transmission interval (TTI) based on control channel information of a previous TTI; decoding the control channel of the current TTI based on a result of the first determination; performing a second determination of whether a data channel is included in the current TTI based on a result of the decoding; and performing a third determination of whether to deactivate a communication interface configured to process a received signal based on a result of the second determination
COMMUNICATION DEVICE, CONTROL METHOD, AND COMPUTER-READABLE STORAGE MEDIUM
A communication device, which forms a first Basic Service Set (BSS), decides, based on a negotiation with a first other communication device to transmit a radio frame to a second other communication device cooperatively with the first other communication device, whether to set a BSS color in the first BSS to a first BSS color corresponding to the first BSS or to a second BSS color corresponding to a second BSS formed by the first other communication device, and sets the BSS color in the first BSS based on the decision.
COMMUNICATION DEVICE, CONTROL METHOD, AND COMPUTER-READABLE STORAGE MEDIUM
A communication device, which forms a first Basic Service Set (BSS), decides, based on a negotiation with a first other communication device to transmit a radio frame to a second other communication device cooperatively with the first other communication device, whether to set a BSS color in the first BSS to a first BSS color corresponding to the first BSS or to a second BSS color corresponding to a second BSS formed by the first other communication device, and sets the BSS color in the first BSS based on the decision.
5G NETWORK SLICE PRE-CONFIGURATION
The described technology is generally directed towards network slice pre-configuration for cellular communication systems, including 5G and subsequent generation cellular communication systems. Network equipment can be preconfigured to identify whether a network slice identifier included in a network communication belongs to a group of network slice identifiers. If so, the network equipment can process the network communication either according to a network slice rule that corresponds specifically to the network slice identifier, or according to a default group network slice rule for the group to which the network slice identifier belongs. Different groups of network slice identifiers can be associated with different sets of group network slice rules which can be arranged to reduce the work of setting up network slice identifiers in various network slicing scenarios.
5G NETWORK SLICE PRE-CONFIGURATION
The described technology is generally directed towards network slice pre-configuration for cellular communication systems, including 5G and subsequent generation cellular communication systems. Network equipment can be preconfigured to identify whether a network slice identifier included in a network communication belongs to a group of network slice identifiers. If so, the network equipment can process the network communication either according to a network slice rule that corresponds specifically to the network slice identifier, or according to a default group network slice rule for the group to which the network slice identifier belongs. Different groups of network slice identifiers can be associated with different sets of group network slice rules which can be arranged to reduce the work of setting up network slice identifiers in various network slicing scenarios.