Abstract:
Systems, methods, and computer readable mediums for authenticating a device perform a method of receiving, at a second device, a first authentication protocol reauthentication response for the device, the authentication response including a reauthentication master session key (rMSK), transmitting, at the second device, a second first authentication protocol reauthentication response to a first access point based on the reauthentication master session key, generating, at the second device, a first pairwise master key (PMK) based on the reauthentication master session key, generating, at the second device, a key message to include the first pairwise master key, and transmitting, at the second device, the key message to the second access point.
Abstract:
Systems, methods, and devices for wireless communication are provided. In an embodiment, a method of wireless communication includes receiving, at an access point, a probe request, decoding the probe request to determine shared wireless device state information, storing the shared wireless device state information for at least a timeout period, transmitting a probe response indicating the timeout period; and receiving an association request omitting the wireless device state information within the timeout period.
Abstract:
Methods, devices, and computer program products for transmitting and receiving discovery and paging messages are described herein. In one aspect, an apparatus operable in a wireless communication system includes a receiver and transmitter. The receiver receives a registration packet from a first device. The registration packet indicates interest in a service provided by another device in a wireless communications network. The receiver further receives a discovery packet from a second device during a first discovery interval of a plurality of discovery intervals. The discovery packet advertises a service provided by the second device, and the plurality of discovery intervals include recurring time intervals when a plurality of devices are configured to transmit and receive discovery packets in the wireless communications network. The transmitter transmits a notification packet configured to enable the first device and the second device to communicate directly.
Abstract:
Systems, methods, and devices for compressing block acknowledgment (ACK) frames/packets are described herein. In some aspects, a method of communicating in a wireless network includes a compressed block acknowledgment frame including a bitmap, the bitmap indicating receipt of a plurality of fragments of a single data unit. The method further includes transmitting the compressed block acknowledgment frame.
Abstract:
A method includes generating a first path request message and a second path request message at a first device of a data link group. The first device is configured to communicate via a plurality of wireless channels. The first path request message indicates a first media access control (MAC) address corresponding to a first wireless interface of the first device. The second path request message indicates a second MAC address corresponding to a second wireless interface of the first device. The method includes transmitting, via a first wireless channel, the first path request message from the first wireless interface to a second device of the data link group. The method further includes transmitting, via a second wireless channel, the second path request message from the second wireless interface to the second device. A path between devices of the data link group may span multiple wireless channels.
Abstract:
Apparatuses and methods of power save for wireless access point and multi-hop relays are disclosed. In one innovation, an apparatus comprises a memory unit configured to store latency information received from the at least one communication device and a processor operationally coupled to the memory unit and configured to retrieve the latency information from the memory unit and determine a sleep-cycle for the apparatus based on the latency information, the sleep-cycle indicating a time period when the apparatus will not receive signals and will not send signals.
Abstract:
Systems and methods reduce latency associated with establishing communication on a wireless network. In one aspect, an access point determines interface identifiers for associated stations. Because the access point can ensure interface identifiers are not duplicated across associated stations, the need for duplicate address detection by the stations is reduced. In another aspect, an access point provides domain name system server network address information to a station. By providing the network address information of the DNS server, the need for the station to perform separate signaling to obtain the information is reduced. In another aspect, an access point transmits a mapping of a first station's network address to the first station's medium access control address to one or more associated stations. This may reduce the need for an associated station to perform address resolution signaling when attempting to communicate with the first station.
Abstract:
A method of managing a wireless device includes receiving location information via a wireless wide area network interface and identifying a set of access points within connection range of the wireless device via a wireless local area network interface using the location information. The method also includes transmitting information associated with the set of access points to the wireless device via the wireless wide area network interface and transmitting station information associated with the wireless device to an access point within connection range of the wireless device. The method further includes initiating a handoff of the wireless device from the wireless wide area network interface to the wireless local area network interface via the access point based on the information and the station information.
Abstract:
Systems, methods, and devices for reducing collisions in a wireless communications network are described herein. In one aspect an apparatus for wireless communication is provided. The apparatus includes a transmitter configured to transmit a first message over a communication medium to a plurality of nodes configured to be selectively at least partially powered down during time periods in which the first message is not expected to be transmitted. The first message indicates a subset of the plurality of nodes for which data is available for transmission. The apparatus further includes a controller configured to initiate a process for transmitting the data available to the subset of the plurality of nodes after the first message is transmitted.
Abstract:
Methods, systems, and devices related to wireless communication via a mesh network are described. In particular, the disclosure is directed to selecting a path between two nodes in a wireless mesh network based on consideration of type of data requested and a determination whether an intermediate node, within a predetermined range of the requesting node, is actively broadcasting the requested data. Such opportunistic consideration in selecting a path between two nodes may avoid unnecessary activation of additional broadcasting nodes and reduce the risk of triggering interference between multiple nodes broadcasting duplicate data.