Abstract:
Some demonstrative embodiments include devices, systems and methods of offloading traffic at a User Equipment (UE) based on a mobility state of a Wireless Local Area Network (WLAN) Access Point (AP). For example, a UE may include a WLAN transceiver to communicate with a WLAN AP; a cellular transceiver to communicate with a cellular network; and an offloading module to determine a mobility of the WLAN AP, and to route traffic between the cellular network and the WLAN AP, based at least on the mobility of the WLAN AP and a mobility state of the UE.
Abstract:
A remote radio head as part of a small cell or home gateway communication system, comprising a baseband module and a radio unit, the baseband module and the radio unit being configured to be placed on opposing sides of a lossy medium, such as a window. The baseband module is configured to receive and transmit an information signal from a user equipment inside of a structure and the radio unit configured to receive and transmit an information signal from a user equipment or a base station node outside of the structure. The baseband module is further configured to perform signal modulation and demodulation and up-conversion and down-conversion, and the radio unit is configured to perform up-conversion and down-conversion. The baseband module and the radio unit are capable of receiving and transmitting wireless intermediate frequency signals through a lossy medium, so as to avoid signal attenuation, particularly for mmWave wireless signals.
Abstract:
Some demonstrative embodiments include apparatuses, devices, systems and methods of beamforming. For example, a first wireless station may be configured to communicate a plurality of Sector Level Sweep (SLS) frames with a second wireless station over a first channel; and to communicate a plurality of Beam Refinement Protocol (BRP) frames with the second wireless station over a bonded channel comprising the first channel and at least a second channel.
Abstract:
Embodiments of the present disclosure describe systems, devices, and methods for self-organized multi-hop millimeter wave backhaul links. Various embodiments may include a relay node receiving discovery signal information from an eNB and measuring millimeter wave discovery signals of other relay nodes based on the information. Measurements may be fed back to the eNB and used to create a millimeter wave backhaul link. Other embodiments may be described or claimed.
Abstract:
Some demonstrative embodiments include devices, systems and methods of Wireless Local Area Network (WLAN) setting of a User Equipment (UE). For example, a UE may include a Wireless Local Area Network (WLAN) transceiver to communicate with a WLAN; a cellular transceiver to communicate with a cellular network; a user interface to provide a user with a plurality of WLAN setting options and to receive an indication of a selected WLAN setting from the plurality of WLAN setting options; and a connection manager to cause the WLAN transceiver to operate according to the selected WLAN setting.
Abstract:
Embodiments of a high-efficiency WLAN (HEW) master station and method for communicating in accordance with a scheduled OFDMA technique on secondary channels are generally described herein. An access point is configured to operate as part of a basic-service set (BSS) that includes a plurality of high-efficiency WLAN (HEW) stations and a plurality of legacy stations. The BSS operates on a primary channel and one or more secondary channels. In accordance with some embodiments, the access point may communicate with one or more of the HEW stations on one or more of the secondary channels in accordance with a scheduled OFDMA communication technique when the primary channel is utilized for communication with one or more of the legacy devices.
Abstract:
Described are mechanisms for eNB support of DRS in LA A, in which DRS is transmitted at one or more DRS occasions within a DMTC window, subject to LBT. In some embodiments, an eNB may include hardware processing circuitry comprising an antenna port, a first circuitry, a second circuitry, and a third circuitry. The first circuitry may be operable to determine a DMTC window of a wireless communication channel. The second circuitry may be operable to initiate one or more CCA checks through an antenna coupled to the antenna port prior to a DRS occasion within a DMTC time window. The third circuitry may be operable to initiate a DRS transmission through the antenna within the DMTC window upon a CCA check of the set of one or more CCA checks sensing that the wireless communication channel is idle. Also described are mechanisms for proactive support of DRS in LAA.
Abstract:
Some demonstrative embodiments include an apparatus, method and/or system of terminating a docking session between a mobile device and a docking device. For example, a mobile device may include a radio to communicate over a docking session via a wireless communication link between the mobile device and a wireless docking device; and an event classifier to determine a classification of an event of connectivity loss of the wireless communication link as an intentional disconnection or an unintentional disconnection, based on a comparison between at least one acceleration metric of the mobile device and at least one acceleration threshold, and to send to the wireless docking device an indication of the classification of the event of connectivity loss.
Abstract:
Embodiments of the present disclosure describe methods, systems, and devices for modulation and coding scheme signaling for a common control channel. Various embodiments may include restricting transmit block size selection for downlink control information format 1A having a cyclic-redundancy check scrambled by a paging radio network temporary identifier, a system information radio network temporary identifier, or a random access radio network temporary identifier. Other embodiments may be described or claimed.
Abstract:
Techniques described herein may provide for device discovery of direct communication paths, to enable direct mode communication, between communication devices. The discovery of the communication paths may be based on identifiers that may be defined at the application level and included in device discovery requests. In one implementation, the identifiers may be SIP- URIs (session initiation protocol (SlP)-uniform resource identifiers (URIs)).