Abstract:
Disclosed are a system and a method for interference coordination between communication nodes. A first-type wireless transceiver apparatus of the system is configured to report status information by sending first-type signaling to a second-type wireless transceiver apparatus, and perform data transmission and/or to perform measurement according to second-type signaling. The second-type wireless transceiver apparatus is configured to allocate resources according to the first-type signaling, and indicate the resource allocation by sending the second-type signaling to the first-type wireless transceiver apparatus. The method comprises: reporting status information by sending first-type signaling to a second-type wireless transceiver apparatus, and peforming data transmission and/or performing measurement according to second-type signaling; and allocating resources by sending the second-type signaling to a first-type wireless transceiver apparatus. By using the embodiments of the present invention, the problem of interference between adjacent communication nodes of a variety of base stations in a dense deployment network is solved, and the problem of interference to a user due to the interference between the communication modes is solved, thereby ensuring reliable reception of downlink data.
Abstract:
A method for gateway relocation, an MME and a DeNB are disclosed. The method includes: in a process of an MRN performing handover of the DeNB, the MME of the MRN judging whether it is required to execute a relocation of a gateway serving the MRN according to the current location of the MRN.
Abstract:
The present disclosure describes methods, system, and devices for applying dynamic codebooks for hybrid automatic repeat request acknowledgement (HARQ-ACK) feedback. One method includes transmitting, by a wireless communication device, HARQ-ACK based on more than one dynamic HARQ-ACK codebooks, wherein each dynamic HARQ-ACK codebook corresponds to a timing advance group (TAG). Another method includes receiving, by a wireless communication node from a wireless communication device, HARQ-ACK based on more than one dynamic HARQ-ACK codebooks, wherein each dynamic HARQ-ACK codebook corresponds to a TAG.
Abstract:
System, apparatus and methods for wireless communication are described. One example method includes receiving, by a wireless device, a higher layer message carrying a radio configuration information that provides multiple mappings between one carrier and multiple carrier frequencies, wherein the higher layer message is received at or above a radio link layer; and operating in response to receiving a lower layer message, the wireless device according to a mapping indicated in the lower layer message.
Abstract:
The present disclosure describes methods, system, and devices for mapping multiple transport blocks (TBs) in a time domain. The method includes transmitting a set of transport blocks (TBs) between a first wireless device and a second wireless device by: mapping the set of TBs in a resource space comprising a time unit in a time domain and a frequency unit in a frequency domain, wherein: each TB mapped to a same codeword in the set of TBs is separated in time domain; the set of TBs comprises n TBs mapped to the same codeword, and n is an integer larger than 1; and each TB in the set of TBs is capable of being packaged separately at a transmitting end, and capable of being delivered separately to an upper layer at a receiving end.
Abstract:
The present disclosure describes methods, system, and devices for configuring a user equipment (UE) for minimization of drive test (MDT). One method includes receiving, by a radio access network (RAN) node, a start message from a core network (CN) or an operation and maintain system (OAM). The start message comprising at least one MDT configuration item and optional non-access stratum (NAS) information, the at least one MDT configuration item comprising at least one of the following MDT configuration information: an expected position, an expected mobility profile, an expected velocity, an expected direction, an expected service profile, or an indicator for the UE to sense and report local surroundings; and sending, by the RAN node, a configuration message to the UE, the configuration message, so that the UE performs according to the at least one MDT configuration item and the optional NAS information and reports a MDT measurement result.
Abstract:
Disclosed are a network access method and apparatus, a resource maintenance method and apparatus, a device, and a storage medium. The network access method includes receiving the system message of a first cell sent by a second node, where the system message of the first cell includes the configuration information of a second cell; and accessing the second cell based on the configuration information of the second cell.
Abstract:
Methods, apparatus and systems for wireless communication capability confirmation are described. In one embodiment, a method performed by a wireless communication node to confirm a capability of a wireless communication device, includes: determining there is a problem with a first capability of a first wireless communication device; transmitting a first capability confirmation enquiry message to the first wireless communication device to enquire about the first capability; receiving a capability confirmation reply message from the first wireless communication device, the capability confirmation reply message containing information about the first capability; determining that at least a portion of the first capability is a fake capability based on the information about the first capability; and providing a network resource configuration so as to avoid using or involving the fake capability of the first wireless communication device.
Abstract:
Presented are systems and methods for identifying radio communication services. A wireless communication device may determine a transmission control indication state identifier (TCI) according to at least one transmission from a wireless communication node. The wireless communication device may determine an identity of a domain. The wireless communication device may identify a transmission control indication state within the domain according to the TCI and the identity.
Abstract:
This disclosure generally relates configuration of transmission profile of data flows in communication networks and particularly relates to configuration of Quality of Service (QoS) profile for QoS flows. In some implementations, a first network element in the communication network may be configured to determine a plurality of transmission profiles for a data flow and transmit these profiles to a second network element. The second network element may adaptively select an active transmission profile from the plurality of transmission profiles for configuring the transmission of the data flow. The second network element may further modify the active transmission profile from the plurality of transmission profiles during an active transmission of the data flow without involving additional decision by the first network element.