Abstract:
Embodiments of a LP-WUR (low-power wake-up radio) negotiation procedure are generally described herein. A first wireless device encodes a request frame for transmission to a second wireless device, requesting to enable a LP-WUR mode and negotiate parameters for LP-WUR transmission between the first wireless device and the second wireless device. The first wireless device decodes a response action frame responsive to the request frame, indicating acceptance or rejection of the request. If the response action frame indicates acceptance of the request, the first wireless device: encodes an acknowledgement frame for transmission to the second wireless device, the acknowledgement frame to configure the second wireless device to enable the LP-WUR mode.
Abstract:
Some demonstrative embodiments include apparatuses, systems and/or methods of awareness networking communications over a Sub 1 Gigahertz Band. For example, an apparatus may include logic and circuitry configured to cause a wireless station to determine a timing of a plurality of Discovery Windows (DWs) according to a Neighbor Awareness Networking (NAN) Protocol; and communicate one or more NAN messages over a Sub 1 Gigahertz (GHz) (S1G) band during one or more of the DWs.
Abstract:
Logic may implement a restricted access window association scheme that uses information provided in traffic indication map (TIM) bitmap and restricted access window (RAW) parameter set (PS) to determine stations associated with RAWs. The TIM information element (IE) may comprise a bitmap indicating paged and unpaged stations. The RAW PS IE may comprise a range of station association identifiers (AIDs) and possibly other station selection data. Logic may determine a range of stations associated with a RAW based upon AIDs for the first and last stations in the range based upon a position for the station in the TIM bitmap. And the range of stations associated with a RAW may be independent of block associations of the first and last stations in the TIM bitmap.
Abstract:
Embodiments of a LP-WUR (low-power wake-up radio) negotiation procedure are generally described herein. A first wireless device encodes a request frame for transmission to a second wireless device, requesting to enable a LP-WUR mode and negotiate parameters for LP-WUR transmission between the first wireless device and the second wireless device. The first wireless device decodes a response action frame responsive to the request frame, indicating acceptance or rejection of the request. If the response action frame indicates acceptance of the request, the first wireless device: encodes an acknowledgement frame for transmission to the second wireless device, the acknowledgement frame to configure the second wireless device to enable the LP-WUR mode.
Abstract:
Techniques for packet classification for IEEE 802.11ax capable devices are provided. Specifically, methods are presented, that when taken alone or together, provide a device or group of devices with a means for determining the modulation and coding scheme used, through robust bit indication in a WLAN 802.11ax frame.
Abstract:
Techniques are disclosed using Sync Beacons in neighbor awareness networking (NAN) in wireless networks, wherein the Sync Beacon frames use Public Action frames for the Sync Beacon. Such networks include (but are not limited to) IEEE 802.11 networks.
Abstract:
This disclosure describes methods, apparatus, and systems related to a multicast mechanism. A device may determine a multicast session with one or more multicast devices. The device may determine one or more multicast data frames. The device may determine a conditional block acknowledgment request associated with the one or more multicast data frames. The device may cause to send the one or more data frames to at least one of the one or more multicast devices. The device may cause to send the conditional block acknowledgment request to the one or more multicast devices.
Abstract:
Some demonstrative embodiments include apparatuses, systems and/or methods of communicating over a data path. For example, an apparatus may include logic and circuitry configured to cause a Neighbor Awareness Networking (NAN) device to generate a message including an indication of a plurality of communication resources and one or more availability type indications corresponding to the plurality of communication resources, an availability type indication corresponding to a communication resource is configured to indicate an availability mode of the NAN device to communicate data over a data path using the communication resource; and to transmit the message.
Abstract:
A wireless communication device comprises a transceiver configured to communicate information with one or more neighbor devices in accordance with a sync mode of a WiFi communication protocol, and a controller. The controller is configured to monitor for reception of at least one of a response frame or a beacon frame sent by any neighbor device, determine whether to schedule transmission of a service frame, and change operation to a background scan mode when the at least one of the response frame or the beacon frame sent by any neighbor device is undetected for a specified time duration and the transmission of a service frame is unscheduled.
Abstract:
Some demonstrative embodiments include apparatuses, systems and/or methods of discovering a wireless communication device. For example, a first wireless device may include a radio to communicate over a wireless communication medium according to a discovery scheme including a plurality of contention-based discovery windows (DWs), the radio to communicate with a second wireless device a discovery frame during a first discovery process, the discovery frame including an indication of one or more selected DWs of the plurality of DWs; and a controller to switch the first wireless device between a power save state and an active state, the controller to switch the first wireless device to operate in the active state in the one or more selected discovery windows to discover the second wireless device during a second discovery process, subsequent to the first discovery process.