Abstract:
Paging load and/or registration load in a network is reduced by using different types of identifiers to specifying which nodes page an access terminal in the network. In some aspects, the network maintains a list that specifies that certain individual nodes (e.g., cells or sectors) are to page a given access terminal and/or that one or more zones (e.g., tracking areas) are to page the access terminal. In some aspects, an access terminal in a network may be configured to provide a forward-looking paging list to the network. The list provided by an access terminal may specify different types of node identifiers (e.g., individual node identifiers, subscriber groups, etc.). The network may then use the list to determine which nodes are to page a given access terminal such that when the access terminal moves to a different node, that node may already be configured to page the access terminal. In some aspect paging load and registration load are managed in a deployment that includes different types of access points. For example, access points of a first type (e.g., macro nodes) may provide service over relatively large coverage areas and access points of a second type (e.g., femto nodes) may provide service over smaller coverage areas and/or provide restricted service.
Abstract:
Techniques for supporting operation on multiple carriers are described. In an aspect, a carrier indicator (CI) field may be used to support cross-carrier assignment. The CI field may be included in a grant sent on one carrier and may be used to indicate another carrier on which resources are assigned. In one design, a cell may determine a first carrier on which to send a grant to a UE, determine a second carrier on which resources are assigned to the UE, set a CI field of the grant based on the second carrier and a CI mapping for the first carrier, and send the grant to the UE on the first carrier. The UE may receive the grant on the first carrier from the cell and may determine the second carrier on which resources are assigned to the UE based on the CI field of the grant and the CI mapping for the first carrier.
Abstract:
Techniques for femtocell message delivery and network planning are described herein. A mobile device sends a registration request to an access point, such as a femtocell access point. If denied registration, the mobile device may return to service by a macro cell access point. A network entity, such as a femtocell gateway serving the access point, may determine an identification of the mobile device. The network entity may send the identification of mobile device and an identifier of the access point to an application server. The application server may create and send a targeted message to the mobile device based on the identification of mobile device and the identifier of the access point. The application server may determine a user count for the access point and facilitate network planning based on the user count.
Abstract:
A cell cancellation method for improved spectrum sharing is provided. The cell cancellation method includes detecting interference from a cell. The method also includes cancelling a signal from the cell when a physical cell identifier corresponding to the cell is indicated in a cancellation list. An adaptive radio link failure (RLF) trigger method for improved spectrum sharing is disclosed. The RLF trigger method includes detecting interference from a cell. The RLF trigger method also includes adjusting a radio link failure trigger according to a cell identity of an interferer associated with the cell.
Abstract:
Methods, systems, and devices are described for assisting discovery of a wireless local area network (WLAN). A timing reference originating from a first radio technology is identified by a user equipment (UE). A WLAN receiver of the UE is woken up according to a beacon transmission schedule to listen for a beacon on the WLAN. The first radio technology is a non-WLAN radio technology, and the beacon transmission schedule is based at least in part on the timing reference. The timing reference originating from the first radio technology is identified by a Wireless Access Point (WAP). The WAP broadcasts a beacon on the WLAN according to the beacon transmission schedule.
Abstract:
A method, an apparatus, and a computer program product for wireless communication where a macro eNB or similar device may be configured to adjust an ABS configuration that is used for designating ABS subframes are provided to provide a VoLTE service to a UE. The ABS configuration may be adjusted by imposing one or more restrictions, such as alignment of the DRX OnDuration of a UE with some offset to the serving cell non-ABS subframes, and imposing restrictions on the ABS subframe settings at the macro eNB. The method or apparatus may initiate or terminate a wireless communication feature for a UE, and may adjust an ABS configuration based on the wireless communication feature, such that a maximum limit is set on a number of ABS subframes or a minimum limit is set on a number of non-ABS subframes based on the wireless communication feature.
Abstract:
A method operable by an access point for using white space (WS) bandwidth in wireless communication service includes receiving a request to establish a connection from a mobile entity. The method further includes forwarding the request to a service authentication entity to authenticate the mobile entity for the service, and obtaining authorization for service and white space (WS) parameters for the mobile entity from the service authentication entity. The method further includes determining the connection is operating in WS; and authenticating the mobile entity for the service in the WS based at least in part on the received WS parameters. A complementary method is performed by a service authentication entity. Wireless communication apparatus are configured to perform the methods by executing instructions stored on a computer-readable medium.
Abstract:
A method, an apparatus, and a computer program product for wireless communication are provided. The apparatus preserves a state of a user equipment (UE) in an anchor evolved node B (eNB), wherein the anchor eNB is one of a set of connected cells, the UE being in a connected mode. Each cell of the connected set has a corresponding coverage area. The apparatus then maintains the state of the UE in the anchor eNB when the UE moves from a coverage area of the anchor eNB to a coverage area of another one of the cells from the set of connected cells.
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:
Methods, systems, and devices are described for assessing the quality of end-to-end connectivity for a wireless communication device. Data generated from at least one of existing traffic and networking operations caused by existing traffic of the wireless communication device may be monitored to obtain information related to connectivity quality. One or more values of one or more metrics may be determined using the obtained information. The quality of end-to-end connectivity for the wireless communication device may be assessed using the value(s) of the metric(s). Based at least in part on a result of the assessment, an action may be performed to improve connectivity quality for the wireless communication.