Abstract:
Techniques to control paging cycles for machine-to-machine (M2M) devices are described. An apparatus may comprise a processor circuit, a connection manager component arranged for execution by the processor circuit to establish a wireless connection with a device, and a paging component arranged for execution by the processor circuit to select a paging class for the device from among multiple paging classes, each paging class associated with a different paging cycle and paging class parameter, with at least one of the multiple paging classes comprising a M2M paging class associated with a M2M paging cycle and a M2M paging class parameter. Other embodiments are described and claimed.
Abstract:
A machine-to-machine-type (M2M-type) device and technique comprising a transceiver at an M2M-type device that receives from a base station a paging message designating the M2M-type device to be a delegate for a group of M2M-type devices. In response, a processor of the M2M-type device generates an acknowledgement and/or an M2M-type group-based reentry communication for the transceiver to send to the base station. The base station is part of wireless network that can comprise one of a Bluetooth-based standard wireless network, an IEEE 802.11-based standard wireless network, an IEEE 802.16-based standard wireless network, an IEEE 802.18-based wireless network standard, a 3GPP LTE-based wireless network standard, a 3GPP-based protocol wireless network, a 3GPP2 Air Interface Evolution (3GPP2 AIE) based wireless network standard, a UMTS-based protocol wireless network, a CDMA2000-based protocol wireless network, a GSM-based protocol wireless network, a cellular-digital-packet-data-based (CDPD-based) protocol wireless network, or a Mobitex-based protocol wireless network.
Abstract:
An apparatus may comprise a radio-frequency (RF) transceiver and a message aggregation module arranged to intercept multiple messages from one or more mobile data applications during an idle mode of a device, one or more of the multiple messages operable to trigger a transition of the device from the idle mode to a connected mode by causing a radio resource control message to be sent from the device to a radio access network, the message aggregation module to store the multiple messages in a buffer associated with the one or more mobile data applications in order to maintain the device in the idle mode, and schedule for transmission by the RF transceiver the stored messages at a defined time instance based on a delay tolerance for the one or more mobile data applications when the device is in the connected mode. Other embodiments are disclosed and claimed.
Abstract:
This disclosure relates to one or more computer-readable media having instructions stored thereon, that when executed by one or more processors of a user equipment (UE), cause the UE to obtain, from an evolved Node B (eNB) of a wireless communication network, a time domain averaging indicator having a single bit to indicate whether the UE is to restrict interference measurement to a number of recently received CSI-IM resources in a single subframe or not; derive an interference measurement based on said indicated number of recently received CSI-IM resources in said single subframe; compute a channel quality indicator (CQI) value based on the derived interference measurement; and report the CQI value to the eNB. Furthermore this disclosure relates to an apparatus comprising one or more processors and one or more of the computer-readable media.
Abstract:
At least one neighbor cell is identified by a base station by detecting a synchronization signal of the at least one neighbor cell. A received signal power, such as a Reference Signal Received Power (RSRP) or a Reference Signal Received Quality (RSRQ), or a combination thereof, is also measured from the at least one neighbor cell. Identifying information and the received signal power of the at least one neighbor cell is then communicated to a network entity of the wireless network. Information is received from the network entity indicating whether the base station can enable a reconfiguration of the allocation of uplink and downlink subframes used in the cell of the base station. Based on the information received from the network entity, the base station enables a reconfiguration of the allocation of uplink and downlink subframes used in the cell.
Abstract:
A group paging method is disclosed for efficient machine-to-machine communication in a wireless network. The group paging method enables M2M-capable base stations to group M2M-capable mobile stations according to their traffic properties, assign them a group paging ID, and thereafter page the M2M device, whether the mobile station is asleep or not, by way of a paging channel. The group paging method mitigates traffic congestion on the wireless network.
Abstract:
Embodiments of the present disclosure describe device, methods, computer-readable media and system configurations for establishing a reentry procedure for a machine-to-machine (“M2M”) device to reenter a wireless communication network based on traffic pattern characteristics or mobility characteristics associated with the M2M device. In various embodiments, a wireless communication device may include a processor, a wireless communication interface, memory coupled to the processor, and a control module. The control module may be operated by the processor and configured to establish a reentry procedure for a machine-to-machine (“M2M”) device to reenter a wireless communication network based on traffic pattern characteristics or mobility characteristics associated with the M2M device. Other embodiments may be described and/or claimed.
Abstract:
Die Offenbarung bezieht sich auf eine Verarbeitungsschaltung für eine Benutzerausrüstung, UE, wobei die UE einen Hochfrequenzempfänger, HF-Empfänger, umfasst, wobei die Verarbeitungsschaltung konfiguriert ist, eine Leistungsumschaltungsstruktur des HF-Empfängers für UE-Leistungseinsparung im IDLE-Modus für Funkressourcensteuerung, RRC, für unterbrochenem Empfang, DRX, basierend auf einer Paginggelegenheit, PO, und einem Signalblock, der mit der PO assoziiert ist, einzustellen.
Abstract:
Die Offenbarung betrifft eine Benutzerausrüstungs (User Equipment, UE)-Schaltung, die umfasst: eine Hochfrequenz (HF)-Schaltung, die dafür konfiguriert ist, HF-Signale von einer bedienenden Zelle zu empfangen, wobei die HF-Signale Referenzsignale und einen Burst von Paging-Gelegenheiten (Paging Occasions, POs) innerhalb eines Discontinuous Reception (DRX)-Zyklus umfassen; und eine Basisbandschaltung, die konfiguriert ist zum: Auswählen eines Kandidatensatzes von POs aus dem Burst von POs auf der Grundlage einer Prioritätsmessgröße in Bezug auf die Referenzsignale, die den POs zugewiesen sind, und Einstellen eines Leistungsumschaltmusters der HF-Schaltung auf der Grundlage des ausgewählten Kandidatensatzes von POs.