Abstract:
A mobile communication system including: a first and second radio base stations apparatuses; and a terminal apparatus, wherein radio communication is performed between the first and second base station apparatuses and the terminal apparatus, and the first radio base station apparatus includes: a first control unit configured to control whether or not operation of the first radio base station apparatus is caused to be dormant based on a message exchanged between the second radio base station apparatus adjacent to the first radio base station apparatus and the first radio base station apparatus.
Abstract:
A method and apparatus are disclosed for DL-UL (Downlink-Uplink) interference management and traffic adaptation. The method includes a UE (User Equipment) being connected with an eNB (evolved Node B), and is configured with a Discontinuous Reception (DRX) operation and an eIMTA operation (705). The method also includes the UE monitors Physical Downlink Control Channel (PDCCH) in a subframe for a potential scheduling from the eNB when a DRX timer associated with the DRX operation is running, and the UE increments the running DRX timer by one (710). The method further includes the UE monitors PDCCH in the subframe when the DRX timer is running, and does not increment the DRX timer by one when the subframe is a DL subframe as indicated by an explicit signaling associated with the eIMTA operation (715).
Abstract:
A 3GPP monitoring architecture framework provides monitoring event configuration, detection, and reporting for machine-type and other mobile data applications using a machine type communication interworking function (MTC-IWF) that communicates monitoring event configuration, detection, and reporting messages through existing interfaces, such as Tsp, T4, and T5 interfaces.
Abstract:
A 3GPP monitoring architecture framework provides monitoring event configuration, detection, and reporting for machine-type and other mobile data applications using a machine type communication interworking function (MTC-IWF) that communicates monitoring event configuration, detection, and reporting messages through existing interfaces, such as Tsp, T4, and T5 interfaces.
Abstract:
The apparatus (302) has a receiving circuit system (322) to receive data representative of radio link failure reports having information relating to disconnection of user equipment (314) of Evolved universal mobile telecommunication system (UMTS) Terrestrial Radio Access Network (E-UTRAN). Coverage analysis circuit system (324) identifies a hole in a network coverage area partially based on one of the reports. A corrective action circuit system (326) executes an automated action of coverage optimization and capacity to reconfigure resources of a network cell based on the hole. Independent claims are also included for the following: (1) a system for identifying a coverage hole (2) a method for adjusting coverage executable by a network management apparatus (3) an evolved node associated with E-UTRAN.
Abstract:
The apparatus (302) has a receiving circuit system (322) to receive data representative of radio link failure reports having information relating to disconnection of user equipment (314) of Evolved universal mobile telecommunication system (UMTS) Terrestrial Radio Access Network (E-UTRAN). Coverage analysis circuit system (324) identifies a hole in a network coverage area partially based on one of the reports. A corrective action circuit system (326) executes an automated action of coverage optimization and capacity to reconfigure resources of a network cell based on the hole. Independent claims are also included for the following: (1) a system for identifying a coverage hole (2) a method for adjusting coverage executable by a network management apparatus (3) an evolved node associated with E-UTRAN.
Abstract:
A method and apparatus are disclosed for DL-UL (Downlink-Uplink) interference management and traffic adaptation. The method includes a UE (User Equipment) being connected with an eNB (evolved Node B), and is configured with a Discontinuous Reception (DRX) operation and an eIMTA operation (705). The method also includes the UE monitors Physical Downlink Control Channel (PDCCH) in a subframe for a potential scheduling from the eNB when a DRX timer associated with the DRX operation is running, and the UE increments the running DRX timer by one (710). The method further includes the UE monitors PDCCH in the subframe when the DRX timer is running, and does not increment the DRX timer by one when the subframe is a DL subframe as indicated by an explicit signaling associated with the eIMTA operation (715).
Abstract:
A method, an apparatus, and a computer program product for wireless communication are provided. The apparatus may be an eNB. In one configuration the eNB may establish a connection to a remote apparatus, receive a message from the remote apparatus indicating that the connection is supporting one of background traffic or active traffic, determine whether the connection is supporting the background traffic or the active traffic using the message, and set a time value for a state timer related to an operating state of the remote apparatus based on whether the connection is supporting the background traffic or the active traffic. In another configuration the eNB may establish a connection to a remote apparatus and disable one or more modes of communication based on whether the connection is supporting the background traffic or the active traffic.
Abstract:
The present invention relates to a wireless communication system, and more specifically, disclosed are a method and an apparatus for accessing a channel in a WLAN system. A method for accessing the channel from a station (STA) in the wireless communication system, according to one embodiment of the present invention, comprises a step of transmitting a power save-poll (PS-poll) for channel accessing from a listening interval to an access point, wherein the station operates in a non-traffic indication map (TIM) mode which is not limited by a TIM element that is transmitted from the access point, and wherein the time of transmission of the PS-poll is not limited by the TIM element.
Abstract:
A method for synchronizing the discovery of wireless services or applications in a wireless network using a recurring time interval T in which wireless devices within the wireless network can be in one of a predetermined plurality of time states. The method includes selecting a time state from amongst the plurality of time states, performing discovery by a first wireless device supporting a given service or application once during the recurring time interval T at the selected time state, and repeating the above steps in successive ones of the recurring time interval T until all of the predetermined plurality of time states have been selected.