Abstract:
Embodiments described herein relate generally to delaying the transmission of a plurality of data packets. A device may enter a packet-delay mode based on an absence of detected user activity and an idle state of a radio. In the packet-delay mode, the device may queue data packets in a buffer so that transmission of those data packets is delayed. The buffered data packets may be released and transmitted upon the occurrence of a predetermined event, such as detection of user activity, exceedance of a buffer threshold, or expiration of a countdown timer. Other embodiments may be described and claimed.
Abstract:
Embodiments for signaling quality of service (QoS) requirements and user equipment (UE) power preference in LTE-A networks are generally described herein. In some embodiments, a power preference indication (PPI) is received at an eNB from a UE to set a power saving preference for the UE. A communication session is established using radio resource control (RRC) messages between the UE and the eNB to identify a preference for QoS configuration for handling traffic provided to the UE by the eNB. The QoS for traffic provided by the eNB to the UE is managed by the eNB based on the identified preference for QoS configuration for handling traffic provided to the UE.
Abstract:
Disclosed in some examples are methods, systems, eNodeBs, UEs, and machine readable mediums which coordinate one or more wireless protocol properties between an anchor base station and an assisting base station.
Abstract:
Systems and techniques for traffic splitting based on latency between cells are herein described. At an eNodeB, a transmission path latency for a portion of a transmission path between the eNodeB and a user equipment (UE) may be measured via a secondary eNodeB when the UE is dually connected to both the eNodeB and the secondary eNodeB. The transmission path latency may be compared to a threshold. A layer in a transmission stack to split traffic to the UE may be determined based on the comparison of the transmission path latency to the threshold, the traffic being split between the eNodeB and the secondary eNodeB.
Abstract:
Embodiments of wireless communication devices and method for discontinuous reception (DRX) mode in wireless communication are generally described herein. Some of these embodiments describe a wireless communication device having processing circuitry arranged to determine to use an extended paging discontinuous reception (DRX) value to increase a paging cycle length above a value and select a first periodicity, based on the extended paging DRX value, at which the UE is to perform evaluation of a parameter of a network in which the UE is opera. The wireless communication device may have physical layer circuitry arranged to transmit a message to the network, indicating that the UE desires to perform evaluation of the parameter at the first periodicity. Other methods and apparatuses are also described.
Abstract:
Embodiments of the present disclosure describe devices, methods, computer-readable media and systems configurations for managing state transitions of communication circuitries in wireless networks. Embodiments manage radio resource control (RRC) state transitions and/or discontinuous reception (DRX) state transitions. Other embodiments may be described and/or claimed.
Abstract:
The present disclosure presents embodiments of a system and method for improved uplink transmission management in a network that includes one or more machine-type communication (MTC) devices. For example, in an aspect, the present disclosure presents a method of cluster head selection for a MTC device cluster, the method comprising transmitting a polling message from an eNodeB to one or more MTC devices of the MTC cluster, receiving one or more polling responses at the eNodeB from the one or more MTC devices, and determining the set of cluster heads based on the one or more polling responses; and transmitting cluster head information associated with each cluster head of the set of cluster heads to the one or more MTC devices.
Abstract:
Measurement requirements for user equipment may be reduced or eliminated where the user equipment is a fixed device. In such case, the measurement requirement may be less useful. In machine-to-machine communications, bandwidth may be increased and power consumption may be reduced in some embodiments.
Abstract:
Techniques are described that can be used to communicate congestion information concerning a downlink or uplink. In response to congestion on a link, a device can attempt to receive traffic on another network, scan for another node, or enter sleep mode for a time. In some cases, determination of congestion can be made based on an amount of time a packet is enqueued as well as the number of packets that experience a similar amount of enqueuing delay.
Abstract:
In one embodiment, a method is provided. The method of this embodiment provides detecting by a network controller a flush occurring on a host bus of a DM (“direct messaging”) packet to a memory from a first cache line associated with a first processor; obtaining and storing the DM packet at a second cache line associated with the network controller; and sending the DM packet over a network to a third cache line associated with a second processor.