Abstract:
A technique includes maintaining a signal-to-noise ratio of the transmitted reference signals to be less than a lower signal-to-noise ratio threshold for a first period of time that is a sufficient length of time to allow a correctly operating user device to detect an out-of-sync status and subsequently declare a radio link failure with respect to the connection, increasing, after the maintaining, the signal-to-noise ratio of the reference signals transmitted to the user device from the second signal-to-noise ratio to a third signal-to-noise ratio, wherein the third signal-to-noise ratio is greater than an upper signal-to-noise ratio threshold, after the increasing, sending, by the network device to the user device, an uplink resource grant, and confirming that the network device does not receive an uplink transmission from the user device in response to the uplink resource grant within a second period of time.
Abstract:
Various communication systems may benefit from improved measurement performance. For example, it may be helpful to manage intra-frequency and inter-frequency allocation in a measurement gap. A method may include receiving at a user equipment a signal comprising a measurement gap usage indication from a network entity. The measurement gap usage indication may include a prioritization of at least one carrier type. The method may also include allocating the measurement gap to grant the prioritized at least one carrier type a percentage of the measurement gap based on the measurement gap usage indication.
Abstract:
An approach is provided for receiving and transmitting data over a wireless network, while minimizing power consumption. A determination is made, as part of a discontinuous communication mechanism defining an on-period for permitting transmission of data over a network, whether a resource allocation has been made to a user equipment for communicating over the network. If the resource allocation has been made, generating a keep-awake message to instruct the user equipment to extend the on-period.
Abstract:
A method and apparatus can be configured to receive, by the apparatus, a configuration for a carrier. The carrier deploys at least one cell to be used for carrier aggregation. The method can also include detecting the at least one cell. The method can also include determining that the at least one cell is a secondary cell for carrier aggregation based on the at least one cell being detected.
Abstract:
Various communication systems may benefit from insight regarding when a device is performing power saving operations. For example, wireless communication systems may benefit from secondary cell state activation and deactivation of measurement gaps. A method can include determining, by a user equipment, whether a secondary cell is in an activated state or an inactivated state. The method can also include selectively enabling or disabling measurement gaps for the user equipment based on the determined state of the secondary cell.
Abstract:
Various methods are provided for reducing uplink transmissions. One example method may comprise causing operation of use equipment in a uplink synchronized state, wherein updates are received periodically in a on duration period, on duration periods are related to discontinuous reception (DRX) short cycle timer, receiving instruction to disable uplink transmission during one or more on duration periods related to short cycle timer of DRX, and causing disablement of uplink transmission in accordance with instruction.
Abstract:
Methods and apparatus, including computer program products, are provided for determining whether a user equipment is in an inactive connected mode, i.e. applies discontinuous reception DRX mode, during a period of inactive data reception; and disabling a timer for triggering a measurement report at the user equipment, when the user equipment applies DRX mode, wherein the disabled timer inhibits the measurement report related to a target cell from being sent by the user equipment. Related apparatus, systems, methods, and articles are also described.