Abstract:
Methods and apparatuses for improved uplink establishment in wireless networks are presented. For example, a method of mobile communication at a user equipment is presented that may include receiving, at a user equipment (UE) and from a network entity, configuration information associated with an enhanced uplink in CELL_FACH state protocol, wherein the UE is configured to transmit uplink transmissions according to the enhanced uplink in CELL_FACH state protocol. Additionally, the example method may include determining that the configuration information includes invalid configuration information. Moreover, the example method may include performing at least one remedial action to ensure that the UE is able to transmit the uplink transmissions based on determining that the configuration information includes invalid configuration information.
Abstract:
Aspects of the present disclosure provide for a method and an apparatus for wireless communications using an intelligent Random Access Channel (RACH) procedure that may increase the probability of obtaining an available E-DCH resource quickly in a Universal Mobile Telecommunication System.
Abstract:
Aspects of the present disclosure provide for a method and an apparatus for wireless communications using an intelligent Random Access Channel (RACH) procedure that may increase the probability of obtaining an available E-DCH resource quickly in a Universal Mobile Telecommunication System.
Abstract:
Aspects of controlling uplink transmissions on an enhanced dedicated channel in wireless communications include a user equipment configured to determine an unfavorable condition of an enhanced dedicated channel established with an enhanced network entity in response to failing to receive a threshold number of responses corresponding to uplink data transmissions on the enhanced dedicated channel, during an established connection with at least one non-enhanced network entity. Further, the aspects may include the UE suspending building of protocol data units for enhanced dedicated channel transmissions in response to determining the unfavorable condition of the enhanced dedicated channel. Additionally, the aspects may include the UE suspending uplink transmission on the enhanced dedicated channel in response to determining the unfavorable condition of the enhanced dedicated channel.
Abstract:
Aspects of the present disclosure provide for a method and an apparatus for wireless communications using an intelligent Random Access Channel (RACH) procedure that may increase the probability of obtaining an available E-DCH resource quickly in a Universal Mobile Telecommunication System.
Abstract:
Aspects of random access channel preamble transmission include transmitting a number of random access preamble transmissions in response to receiving a command to initiate a physical random access procedure, determining that the number of random access preamble transmissions meets an unacknowledged preamble transmission number threshold, determining whether a downlink channel quality exceeds a downlink channel quality threshold, and suspending the transmitting of subsequent random access preamble transmissions for a transmit hold duration.
Abstract:
Various aspects of the present disclosure enable a plurality of mobile devices (UEs) within a cell to spread out in time their respective transmissions of signaling messages, such as cell update messages, when the network enables or disables enhanced uplink (EUL, sometimes referred to as high-speed uplink packet access or HSUPA) while the UE is in the CELL_FACH state, by changing SIB5 or SIB5bis. In this way, the network load may be reduced, and a network blockage that otherwise might result from large numbers of UEs simultaneously transmitting the cell update message can be avoided. According to one example, a network node may be configured to distribute CELL_UPDATE messages or procedures to UEs when the network node enables or disables EUL in CELL_FACH by changing SIB5 or SIB5bis over time to reduce the network load. According to another example, a UE may be configured for utilizing a random timer or back-off timer to defer cell updates.
Abstract:
Embodiments include systems and methods for managing power resources of an Internet of Everything (IoE) device. A processor of the IoE device may monitor an uplink interference over time. The device processor may calculate wireless communication parameters based on the monitored uplink interference over time, and may store in a memory the calculated wireless communication parameters. The device processor may calculate a transmit power based on one or more stored wireless communication parameters associated with a transmit time, and may transmit to a communication network a request to establish a communication link using the calculated transmit power.
Abstract:
Aspects of the present disclosure provide for a method and an apparatus for wireless communications using an intelligent Random Access Channel (RACH) procedure that may increase the probability of obtaining an available E-DCH resource quickly in a Universal Mobile Telecommunication System.