Abstract:
Some demonstrative embodiments include apparatuses, systems and/or methods of performing a wireless association. For example, a mobile device may include a radio to receive from a wireless communication station a frame including an association capability indication, the association capability indication to indicate a capability of the wireless communication station to perform a wireless association; and a controller to initiate an association procedure with the wireless communication station based on the capability information.
Abstract:
Some demonstrative embodiments include apparatuses, systems and/or methods of Fine Timing Measurement (FTM). For example, an apparatus may include circuitry and logic configured to cause an initiator station to transmit an FTM request message to a responder station, the FTM request message comprising a challenge token; process an FTM measurement frame received from the responder station, the FTM measurement frame comprising a security token, which is based on the challenge token; and authenticate the responder station based on the security token.
Abstract:
An apparatus, a system and a method for configuring a User Equipment (UE) position. For example, a UE may be configured to receive a cell ID parameter and a cell size parameter, to configure a cell position based on the cell ID, and to configure the UE position based on the cell size. The UE may be configured, for example, to connect to Access points (APs) of a Wireless local Area Network (WLAN) in its close vicinity, e.g., based on the determined position of the UE.
Abstract:
Some demonstrative embodiments include apparatuses, systems and/or methods of performing a Fine Timing Measurement (FTM) procedure with a responder station. For example, an apparatus may include logic and circuitry configured to cause a responder station to transmit an information element including FTM availability information, the FTM availability information including an indication of a plurality of channels and, for a channel of the plurality of channels, one or more FTM availability windows; and to be available to perform one or more operations of an FTM procedure on the channel during the FTM availability windows corresponding to the channel.
Abstract:
Some demonstrative embodiments include apparatuses, systems and/or methods of estimating a location of a mobile station. For example, a mobile station may be configured to transmit to a wireless station a request for sensor-based position information corresponding to a change in a position of the wireless station; to process a response from the wireless station, the response comprising the sensor-based position information corresponding to the change in the position of the wireless station; and to estimate a location of the mobile station based at least on a Time of Flight (ToF) measurement between the mobile station and the wireless station, and the sensor-based position information corresponding to the change in the position of the wireless station.
Abstract:
The disclosure relates to time-of-flight (TOF) positioning and device location within a wireless networks using a hybrid combination of Bluetooth Low Energy (BLE) and Wi-Fi signaling. In one exemplary embodiment, a hybrid responder engages in BLE discovery and negotiation with a mobile device seeking its location. The hybrid responder may engage its WiFi platform only to conduct the FTM procedure. By keeping the WiFi platform in deep sleep or Off mode, the hybrid responder can gain significant power savings.
Abstract:
Examples are disclosed for techniques for a new method of calculating multiple locations of a wireless communication device based on the same or a subset of the same raw data measurements (such as WiFi Time-Of-Flight/Fine-Time-Measurements or RSSI) and client specific fixed location device locations sources and/or database. Additionally, new APIs and implementation methods to support the new method are disclosed.
Abstract:
Some demonstrative embodiments include apparatuses, systems and/or methods of communication between wireless networks having different coordinate domains. For example, a first wireless communication device may include a radio to communicate over a first wireless network having a first coordinate domain, the radio to receive a message from a second wireless device of a second wireless network having a second coordinate domain, the message including coordinate information of the second coordinate domain; and a controller to determine, based on the coordinate information, a usage of the second coordinate domain by the first wireless communication device, and to publish the usage to the second wireless communication device.
Abstract:
The disclosure generally relates to a method, system and apparatus for autonomous Wi-Fi location determination by using information from neighboring access points (APs) along with an optional range measurements. In one embodiment, a root AP determines its location as a function of neighboring AP's location and the distance measured between the root AP and each of the corresponding neighbors. The location information can be stored internally or reported to external resource.
Abstract:
Some demonstrative embodiments include apparatuses, systems and/or methods of performing a wireless association. For example, a mobile device may include a radio to receive from a wireless communication station a frame including an association capability indication, the association capability indication to indicate a capability of the wireless communication station to perform a wireless association; and a controller to initiate an association procedure with the wireless communication station based on the capability information.