Abstract:
System and techniques for multi-phase wireless sounding are described herein. A first set of stations may be selected by an access point from a plurality of stations known to the access point. The access point may then transmit a first sounding request to members of the first set of stations. The access point may receive a sounding report in response to the first sounding request from members of the first set of stations. The access point may then select a second set of stations from the plurality of stations based on the sounding report. This second set of stations is a proper subset of the first set of stations. The access point may then transmit a second sounding request to the second set of stations.
Abstract:
Architectures and techniques for power saving in densely deployed wireless networks are provided. An example system includes an access point device and devices wirelessly coupled to the access point device. The access point device may broadcast its availability schedule to the one or more devices, and the devices may transmit their availability schedule to the access point or to another device. The access point and the one or more devices may negotiate a short term and a long term availability schedule such that their sleep times and wake up times are synchronized, thereby saving power for the device as well as the access point. Each access point may be wirelessly connected to one or more devices, and each device may be wirelessly connected to one or more access points and/or one or more devices within a wireless network.
Abstract:
A wireless location information system, device, and method are presented that include location system components (LSCs) that perform location-based operations; one or more location work profiles (LWPs) associated with each of the LSCs, in which the LWPs include configuration information of the LSCs; and a controller that controls the configuration information exchanges between the LSCs. As such, the controller component provides, in advance, one or more LWPs to each LSC, in which each of the LWPs is designated with a unique identifier and, upon a change in operational status, the controller provides the LSCs with only the identifier of the LWP affected by the change.
Abstract:
An apparatus for a wireless network access device includes a first communication interface for wirelessly communicating with a wireless communication device. The apparatus includes a second communication interface for communicating with a network gateway device. The apparatus includes a control module configured to receive a first request for wireless uplink resources from the wireless communication device via the first communication interface. The control module is configured to provide a second request for wired uplink resources to the gateway device via the second communication interface based on the first request for wireless uplink resources. The second request for wired uplink resources is related to uplink resources of a wired uplink channel of the gateway device.
Abstract:
Embodiments of a station (STA) and method of communication are generally described herein. The STA may be included in a first plurality of STAs affiliated with a first multi-link logical entity (MLLE). A plurality of links may be established between the first MLLE and a second MLLE, wherein the second MLLE may be affiliated with a second plurality of STAs. The STA may receive a first subset of a sequence of MAC protocol data units (MPDUs). A second subset of the sequence of MPDUs may be transmitted by another STA of the first plurality of STAs. The STA may transmit a block acknowledgement (BA) frame that includes: a number of BA bitmaps, configurable to values greater than or equal to one; and BA control information for each of the BA bitmaps.
Abstract:
This disclosure generally relates to methods, systems, and devices for enhanced negotiation protocol for triggered peer to peer (P2P) communications. A device may send a downlink frame including a first indication of a triggered direct peer-to-peer capability. The device may identify an uplink frame received from a station device. The device may determine that the uplink frame includes a second indication of the triggered direct peer-to-peer capability. The device may send a trigger frame during a transmission opportunity associated with the device, the trigger frame including a third indication of the triggered direct peer-to-peer capability.
Abstract:
This disclosure relates to a method for primary channel selection by a first access point type communication device (AP) of a group of APs, the method comprising: detecting, by the first AP, a central frequency location and a bandwidth of a primary channel selected by at least one second AP of the group of APs; selecting, by the first AP, a central frequency location and a bandwidth of a primary channel for the first AP, wherein the selection of the central frequency location and bandwidth of the primary channel for the first AP is based on the detected central frequency location and bandwidth of the primary channel for the at least one second AP.
Abstract:
A transmission method based on Institute of Electrical and Electronics Engineers (IEEE) 802.11 Multi-User (MU) Multiple-Input and Multiple-Output (MIMO). The method includes transmitting, by a plurality of Virtual Access Points (VAPs), respective acknowledgement requests to stations, wherein at least two of the stations are associated with different VAPs of the plurality of VAPs; and transmitting, by the stations to the VAPs, respective block acknowledgements.
Abstract:
Methods, computer readable media, and apparatus for determining a receive (Rx) number of spatial streams (NSS) for different bandwidths (BWs) and modulation and control schemes (MCSs) are disclosed. An apparatus is disclosed comprising processing circuitry configured to decode a supported HE-MCS and a NSS set field, the supported HE-MSC and NSS set field received from an high-efficiency (HE) station. The processing circuitry may be further configured to determine a first maximum value of N receive (Rx) SS for a MCS and a bandwidth (BW), where the first maximum value of N Rx SS is equal to a largest number of Rx SS that supports the MCS for the BW as indicated by the supported HE-MCS and NSS set field; and, determine additional maximum values based on an operating mode (OM) notification frame, and a value of an OM control (OMC) field. Signaling for BW in 6 GHz is disclosed.
Abstract:
This disclosure relates to a method for primary channel selection by a first access point type communication device (AP) of a group of APs, the method comprising: detecting, by the first AP, a central frequency location and a bandwidth of a primary channel selected by at least one second AP of the group of APs; selecting, by the first AP, a central frequency location and a bandwidth of a primary channel for the first AP, wherein the selection of the central frequency location and bandwidth of the primary channel for the first AP is based on the detected central frequency location and bandwidth of the primary channel for the at least one second AP.