Abstract:
Methods and apparatus, including computer program products, are provided for measurement delivery. In some example embodiments, there is provided a method. The method may include receiving information to configure a user equipment to perform one or more measurements and to configure the user equipment to report, when requested by a network, the one or more measurements; receiving a request from the network to report the one or more measurements configured based on the received information; and reporting, in response to the request from the network, the one or more measurements to the network, without regard to measurement event reporting. Related apparatus, systems, methods, and articles are also described.
Abstract:
Methods, apparatuses, and computer program products are provided to facilitate load based changes in data offloading thresholds. In the context of a method, the method includes causing measurement of a reference signal received power of a serving cell in the first network to be performed; causing measurement of a reference signal received quality of a serving cell in the first network to be performed; and causing one or more network metrics for a second network to be acquired. The method further includes determining, by a processor, whether the measured reference signal received quality is lower than a reference signal received quality threshold; determining, by the processor, whether the measured reference signal received power is lower than a reference signal received power threshold; and in the case where the measured reference signal received quality is lower than the reference signal received quality threshold: cause the reference signal received power threshold to be adjusted; determine whether each of the acquired network metrics for the second network meet an associated network metric condition; and if all the associated network metric conditions are met, data offloading can be performed from the first network to the second network; and in the case where the measured reference signal received power is lower than the reference signal received power threshold: cause the reference signal received quality threshold to be adjusted; determine whether each of the acquired network metrics for the second network meet an associated network metric condition; and if all the associated network metric conditions are met, data offloading can be performed from the first network to the second network. A corresponding apparatus and a computer program product are also provided.
Abstract:
Methods and apparatus, including computer program products, are provided for limiting connection setup after a failure. In one aspect there is provided a method. The method may include disconnecting, at a user equipment, a first radio resource control connection due to a failure; and determining, based on a state of at least one of the user equipment or an application included at the user equipment, whether to inhibit, after the failure, a connection setup by the user equipment. Related apparatus, systems, methods, and articles are also described.
Abstract:
A network node in a wireless network sends a selected BWP toward a UE, the selected BWP to be used by the UE during a connection procedure used to connect the UE to the wireless network after the UE enters an idle or inactive state. The selected BWP is different from an initial BWP that would have been used by the UE during the connection procedure. The network node receives from the user equipment a message for connection to the wireless network using the selected BWP. The UE receives the selected BWP and uses the selected BWP to send, while in one of an idle state or an inactive state, a message for connection to the wireless network using the selected BWP (e.g., and not the initial BWP).
Abstract:
The method includes conducting communications with a first group of cells, and receiving a first indicator, the first indicator notifying the user equipment (UE) to enable scheduling with at least one second group of cells. The method further includes starting a first inactivity timer associated with the at least one second group of cells based on the first indicator, and scheduling communications with the at least one second group of cells following the starting of the first inactivity timer. The network node performs the method.
Abstract:
A technique of accounting for the difference in required output power reduction or required duty cycle when selecting the RO in addition to the DL RS. Both output power reduction and duty cycle are independently determined by UE itself (i.e., UE needs to be able to determine itself required power backoff and/or duty cycle in order to meet RF exposure requirements). Advantageously, a RACH procedure in which the UE determines both output power reduction and duty cycle independently enables better choices of output power reduction and duty cycle, enhancing data activity and coverage.
Abstract:
In accordance with an example embodiment, there is disclosed a method comprising: receiving, by a user equipment in a wireless network, beam information from a serving cell and each neighboring cell; assessing a beam quality of the serving cell and each neighboring cell from the information; determining a subset of the serving cell and neighboring cells comprising the serving cell and each neighboring cell with a beam quality within a first offset of the serving cell and each neighboring cell with a highest quality beam; ranking each cell of the subset in descending order from highest to lowest quality.
Abstract:
According to an example embodiment, a method may include transmitting, by a wireless node in a wireless network, a sidelink synchronization signal (S-SSB) block, including a sidelink primary synchronization signal (S-PSS), a sidelink secondary synchronization signal (S-SSS), a physical sidelink broadcast channel (PSBCH), and a demodulation reference signal (DM-RS), wherein the demodulation reference signal is based on at least a sidelink demodulation reference signal initialization value for the sidelink synchronization signal block to provide sidelink priority-related information for the sidelink synchronization signal block.
Abstract:
According to an example aspect of the present invention, there is provided a method that includes receiving at a user equipment configuration for M active transmission configuration indication states; selecting, according to one or more pre-defined rules, based on the configured M active transmission configuration indication states, a subset of N of the set of M transmission configuration indication states, where N
Abstract:
A network node in a wireless network sends a selected BWP toward a UE, the selected BWP to be used by the UE during a connection procedure used to connect the UE to the wireless network after the UE enters an idle or inactive state. The selected BWP is different from an initial BWP that would have been used by the UE during the connection procedure. The network node receives from the user equipment a message for connection to the wireless network using the selected BWP. The UE receives the selected BWP and uses the selected BWP to send, while in one of an idle state or an inactive state, a message for connection to the wireless network using the selected BWP (e.g., and not the initial BWP).