Abstract:
A communication control method comprising: setting at least part of downlink radio resources available in a first cell to a first resource at a first base station, wherein the first base station is configured to manage the first cell connected to a user terminal and restricts transmission in the first resource; sending information from the first base station to the user terminal, wherein the information indicates the first resource; performing measurement of received power and/or reception quality of a reference signal at the user terminal, wherein a second cell transmits the reference signal with using the first resource; transmitting a measurement report from the user terminal to the first base station, wherein the measurement report includes a result of the measurement; and determining whether or not the first cell is settable to a switch off mode, on the basis of the measurement report, at the first base station, wherein the switch off mode includes stopping the first cell from transmitting a signal.
Abstract:
A first radio base station counts a first handover number that is the number of handovers to a cell managed by the first radio base station and a second handover number that is the number of handovers from the cell in a predetermined period of time; and notifies a second radio base station or an operation, administration, and maintenance (OAM) apparatus of the first handover number and the second handover number.
Abstract:
In a cellular communication system, a coverage area configuration transition includes incrementally expanding a compensation service area to include at least a portion of an area covered by the energy saving service area. For example, the compensation service area can be expanded to cover a first cell edge of an energy saving service area, and any UE devices located within the first cell edge can be handed over to the compensation service area. After the UE devices in the first cell edge are handed over, the energy saving service area can be reduced such that a second cell edge is created. The process of handing over the additional UE devices to the compensation service area and reducing the energy saving service area can be repeated as many times as necessary to handover all of the UE devices being served by the energy saving service area.
Abstract:
A network apparatus according to one embodiment is provided in a radio access network of a mobile communication system. The network apparatus comprises: a storage configured to store content data delivered from a server outside the radio access network; and a controller configured to recognize content data requested by a radio terminal, and to determine whether or not the requested content data is stored in the storage. The controller is configured to, when the requested content data is stored in the storage, deliver the requested content data to the radio terminal on behalf of the server.
Abstract:
In a dual connectivity, the X2-GW collects operation information from a plurality of HeNBs. The X2-GW obtains a measurement result of radio quality reported by the UE to the MeNB from the MeNB. Based on the operation information of the HeNB and the measurement result, the X2-GW identifies transmission destination of a SeNB addition request message received from the MeNB, and sends the SeNB addition request message to the identified HeNB. Upon acquiring an acknowledgment message for the SeNB addition request message from the HeNB, the X2-GW sends the message to the MeNB.
Abstract:
A method of controlling a handover procedure of a user terminal from a source master base station to a target master base station, the user terminal being connected to the source master base station and a secondary base station in accordance with a dual connectivity scheme, includes: transmitting, by the source master base station, a handover request to the target master base station; and receiving, by the source master base station, information related to necessity to change the secondary base station from the target master base station.
Abstract:
A user terminal according to an embodiment is capable of executing dual connectivity. The user terminal comprises: a controller configured to execute the dual connectivity in which a first base station configured to establish an RRC connection with the user terminal and a second base station configured to provide an additional radio resource are used; and a transmitter configured to preferentially transmit, if a radio link failure is detected between the user terminal and the first base station, to the second base station, an RRC reestablishment request for reestablishing the RRC connection.
Abstract:
A base station according to an embodiment constitutes a mobile communication network. The base station comprises: a controller configured to perform at least either one of load distribution controls of a first control in which a parameter is set to a value by which switching from the mobile communication network to a wireless LAN is performed easier than a predetermined value or a second control in which a predetermined radio terminal, out of radio terminals subordinate to the base station, is allowed to perform handover; and a transmitter configured to transmit status information indicating whether or not the base station is performing the load distribution control, to a neighboring base station. The parameter is used for determining whether or not the radio terminal subordinate to the base station switches a standby target or a connection target between the mobile communication network and the wireless LAN.
Abstract:
UE (100) supports WLAN communication and WWAN communication. The WWAN communication includes WWAN direct communication which is inter-terminal direct communication in conformity to a WWAN communication standard. The UE (100) applies the WLAN communication to a user plane while applying the WWAN direct communication to a control plane. The UE (100) transmits and receives a control signal through the WWAN direct communication.
Abstract:
A first base station is configured to be connected with a second base station via an X2 interface. The first base station includes: a controller containing at least one processor and at least one memory, and configured to execute processes of transmitting a message, which includes a first identifier, coverage state information, and a second identifier, to the second base station before modifying a coverage of the first cell, the first identifier identifying the first cell, the coverage state information indicating that a state of the coverage after modification of the coverage, the second identifier identifying a second cell for compensating at least part of the coverage of the first cell; and modifying the coverage of the first cell after transmitting the message.