摘要:
Embodiments of methods for scanning in a directive multi-gigabit network are generally described herein. An apparatus of a station may include processing circuitry configured to decode a sector sweep beacon received from an access point, encode for transmission a sector sweep feedback message to include a beam refinement protocol (BRP) request, and encode for transmission BRP responses to BRP signaling received from the access point. The processing circuitry may be further configured to decode a link margin feedback signal received from the access point to determine an access point link margin, measure signal information associated with the link margin feedback signal to determine a received link margin measurement, and encode signaling for association with the access point based on the access point link quality and the receive link quality.
摘要:
Some demonstrative embodiments include devices, systems and/or methods of communicating during an Association-Beamforming-Training (A-BFT). For example, a device may include a wireless communication unit to communicate a beacon frame during a beacon transmission interval (BTI), the beacon frame including a responder address field including a responder address representing one or more client devices, which are allowed to transmit during an A-BFT period following the BTI.
摘要:
Some demonstrative embodiments include devices, systems and/or methods of communicating aggregate data units. For example, a device may include a wireless communication unit to communicate an aggregate data unit including a plurality of data units in an increasing order of sequence numbers assigned to the data units, such that a first data unit having a first sequence number always precedes a second data unit having a second sequence number, greater than the first sequence number.
摘要:
Some demonstrative embodiments include devices, systems and/or methods of communicating aggregate data units. For example, a device may include a wireless communication unit to communicate an aggregate data unit including a plurality of data units in an increasing order of sequence numbers assigned to the data units, such that a first data unit having a first sequence number always precedes a second data unit having a second sequence number, greater than the first sequence number.
摘要:
Some demonstrative embodiments include devices, systems and/or methods of communicating during an allocated time period. For example, an apparatus may include a wireless communication unit to perform the functionality of a first station to communicate data with a second station during an allocated time period, wherein, when both the first and second stations do not have data ready for transmission, the wireless communication unit is to communicate frames between the first station and the second station to occupy the allocated time period until at least one of the first and second stations has data ready for transmission or until an end of the allocated time period.
摘要:
Some demonstrative embodiments include apparatuses, systems, devices and/or methods of wireless communication during a power save state. For example, a wireless network interface may be configured to interface between a wireless communication device and a wireless network. The wireless network interface may include a controller to receive an indication of a power save state of the wireless communication device, and to generate an Information Element (IE) including Transmit (Tx) filter setup information defining allowed frames, which are allowed to be transmitted to the wireless communication device during the power save state; and a transmitter to transmit the IE via the wireless network.
摘要:
Some demonstrative embodiments include devices, systems and/or methods of communicating during an allocated time period. For example, an apparatus may include a wireless communication unit to perform the functionality of a first station to communicate data with a second station during an allocated time period, wherein, when both the first and second stations do not have data ready for transmission, the wireless communication unit is to communicate frames between the first station and the second station to occupy the allocated time period until at least one of the first and second stations has data ready for transmission or until an end of the allocated time period.
摘要:
Some demonstrative embodiments include apparatuses, systems, devices and/or methods of wireless communication during a power save state. For example, a wireless network interface may be configured to interface between a wireless communication device and a wireless network. The wireless network interface may include a controller to receive an indication of a power save state of the wireless communication device, and to generate an Information Element (IE) including Transmit (Tx) filter setup information defining allowed frames, which are allowed to be transmitted to the wireless communication device during the power save state; and a transmitter to transmit the IE via the wireless network.
摘要:
Logic may allocate time slots in a schedule with consideration of thermal dissipation capacities of non-PCP devices. Logic may determine the failure to use a full time slot allocation by a non-PCP device when the non-PCP device has more data to transmit. Logic may determine an adjustment for a schedule based upon duty cycle information provided by a non-PCP device. Logic may receive an indication of a duty cycle. Logic may determine an adjustment to a schedule based upon entrance of the non-PCP device into a power save mode during an incomplete communication with time remaining in the allocated time slot. Logic may determine a duty cycle based upon a thermal measurement. Logic may request a reduced duty cycle based upon a risk of reaching an overheat limit for a non-PCP device. And logic may request an increase in the duty cycle in response to favorable thermal characteristics.
摘要:
This disclosure describes systems, methods, and devices related to a time division duplex (TDD) antenna sector switch. A device may determine one or more antenna sector configurations based on TDD beamforming, wherein the one or more antenna sector configurations are associated with first antenna sectors used to communicate with a first station device (STA). The device may initiate a TDD sector switch with the first STA to switch from the one or more first antenna sectors to one or more second antenna sectors. The device may cause to send, to the first STA, an action frame comprising TDD sector setting parameters associated with the TDD sector switch. The device may identify a response frame received from the first STA, wherein the response frame comprises the TDD sector setting parameters. The device may perform the TDD sector switch by switching from the one or more first antenna sectors to the one or more second antenna sectors.