Abstract:
A mobile communication device includes a receiver system configured to receive unicast data packets and non-unicast data packets. The receiver system may include a hardware packet filter. The mobile communication device further includes a processor coupled to the receiver system. The processor may be configured to detect a power state change and activate the hardware packet filter at the receiver system in response to the power state change indicating a power-conservation state being entered. When the hardware packet filter is activated, the unicast data packets received at the receiver system may be provided to the processor to be filtered and the non-unicast data packets received at the receiver system are dropped at the receiver system. When the hardware packet filter is not activated, the unicast data packets and the non-unicast data packets received at the receiver system may be provided to the processor.
Abstract:
Systems and methods are disclosed for wireless communication including transmitting a beacon comprising group traffic information indicating whether group traffic is buffered for transmission and multicast/broadcast (MB) information indicating a type of the buffered group traffic with a first node. The beacon may be received by a second node, allowing the type of the buffered group traffic to be determined from the MB information. Types of buffered group traffic include multicast data, broadcast data and both multicast and broadcast data. As desired, the second node may enter a power save mode of operation upon determining that the type of buffered group data is not currently of interest.
Abstract:
Systems and methods are disclosed for wireless communication including transmitting a beacon comprising group traffic information indicating whether group traffic is buffered for transmission and multicast/broadcast (MB) information indicating a type of the buffered group traffic with a first node. The beacon may be received by a second node, allowing the type of the buffered group traffic to be determined from the MB information. Types of buffered group traffic include multicast data, broadcast data and both multicast and broadcast data. As desired, the second node may enter a power save mode of operation upon determining that the type of buffered group data is not currently of interest.
Abstract:
Certain aspects of the present disclosure provide methods and apparatus for polling for data by a wireless device. Certain aspects of the present disclosure providing a method performed by the wireless device. The method generally includes receiving a polling frame from at least one wireless device. The polling frame can include an indication of a service period during which the access point may deliver multiple protocol data units (PDUs) to the wireless device in response to the polling frame. The indication of the service period is provided as a value relative to a local clock synchronized between the wireless device and the access point. The method generally also includes transmitting the multiple PDUs to the wireless device during the service period, in response to the polling frame. The access point can receive the polling frame and transmit the multiple PDUs during the service period, in response to the polling frame.
Abstract:
Systems and methods are disclosed for a first WiFi Direct device to receive a machine-readable label from a second WiFi Direct device to provide information on the P2P WiFi capability of the second WiFi Direct device to aid the two devices in establishing a WiFi Direct connection. The machine-readable label may include the display of a QR code by the second WiFi Direct device to the first WiFi Direct device. The information on the WiFi capability of the second WiFi Direct device may include the identity of the listen channel, the operating channel, whether the device is a P2P group owner or not (e.g., a P2P client device), and other service and/or configuration information. Because the first WiFi Direct device knows whether the second WiFi Direct device is a group owner or not, the first WiFi Direct device may take the appropriate connection to establish the WiFi Direct connection.
Abstract:
Systems and methods are disclosed for wireless communication including transmitting a beacon comprising group traffic information indicating whether group traffic is buffered for transmission and multicast/broadcast (MB) information indicating a type of the buffered group traffic with a first node. The beacon may be received by a second node, allowing tire type of the buffered group traffic to be determined from the MB information. Types of buffered group traffic include multicast data, broadcast data and both multicast and broadcast data. As desired, the second node may enter a power save mode of operation upon determining that the type of buffered group data is not currently of interest.
Abstract:
Embodiments relate to systems and methods for enabling stations to connect to wireless hotspots using non-Unicode service set identification information. A WiFi™ wireless router or other access point can broadcast beacon information to smart phones or other stations within wireless range of that device. In existing access point implementations, the character set in which the access point broadcasts this information, including a service set identification indicating the connection services available from the access point, are assumed to be encoded in Unicode format, specifically, UTF-8 format. While English-language options are properly displayed, character sets and/or languages which are not encoded in Unicode (UTF-8) format are translated into unintelligible characters using this approach. According to embodiments, access point hardware can be configured to broadcast the type of character set encoding in the beacon information itself, for instance, in existing SSID information elements, vendor-specific information elements, and/or other locations in the beacon data.
Abstract:
Methods, systems, and devices are provided that reduce delay in establishing connectivity between wireless devices when either device detects a session overlap condition during a wireless network setup. In response to detecting the session overlap condition at a first node, the first node made transmit a notification to a second node to switch from the first setup procedure to a second setup procedure using a vendor specific information element.