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    • 5. 发明授权
    • Millimeter-wave communication station and method for multiple-access beamforming in a millimeter-wave communication network
    • 毫米波通信站和毫米波通信网络中多址波束成形的方法
    • US08625565B2
    • 2014-01-07
    • US12574140
    • 2009-10-06
    • Carlos CordeiroAssaf KasherSolomon B. Trainin
    • Carlos CordeiroAssaf KasherSolomon B. Trainin
    • H04W80/04H04W84/12H04W88/06H04W84/18H04B1/50H04B1/56
    • H04W72/0446H04B7/0617H04B7/0619
    • Embodiments of a millimeter-wave communication station and method for multiple-access beamforming in a millimeter-wave network are generally described herein. In some embodiments, an initiating station performs multiple-access beamforming with one or more responding stations by announcing a number of sector-sweep (SS) slots of a beamforming training (BFT) period and a number of SS frames of each SS slot. One or more SS frames are received from one or more of the responding stations within one of the SS slots of the BFT period. The initiating station transmits one or more SS feedback frames to the responding stations within the one SS slot to indicate an antenna configuration to the responding stations for communication with the initiating station. The responding stations transmit a limited number of SS frames per SS slot based on the number of SS frames announced by the initiating station and transmit any additional SS frames in a next SS slot of the beamforming training period. Each SS frame contains an indication to the initiating station of an antenna configuration for communication with the responding station.
    • 毫米波通信站的实施例和毫米波网络中的多址波束形成方法在本文中通常被描述。 在一些实施例中,发起站通过通知波束形成训练(BFT)周期的数量扇区扫描(SS)时隙和每个SS时隙的多个SS帧来执行与一个或多个响应站的多址波束形成。 从BFT周期的SS时隙之一内的一个或多个响应站接收一个或多个SS帧。 发起站向一个SS时隙内的响应站发送一个或多个SS反馈帧,以向响应站指示天线配置以与发起站通信。 响应站基于由发起站公布的SS帧的数量,每SS个时隙发送有限数量的SS帧,并在波束形成训练周期的下一个SS时隙中发送任何附加的SS帧。 每个SS帧包含用于与响应站通信的天线配置的发起站的指示。
    • 7. 发明申请
    • MILLIMETER-WAVE COMMUNICATION STATION AND METHOD FOR MULTIPLE-ACCESS BEAMFORMING IN A MILLIMETER-WAVE COMMUNICATION NETWORK
    • 毫米波通信网络中的多路访问波束通信站和方法
    • US20140161105A1
    • 2014-06-12
    • US14097356
    • 2013-12-05
    • Carlos CordeiroAssaf KasherSolomon B. Trainin
    • Carlos CordeiroAssaf KasherSolomon B. Trainin
    • H04W72/04
    • H04W72/0446H04B7/0617H04B7/0619
    • Embodiments of a millimeter-wave communication station and method for multiple-access beamforming in a millimeter-wave network are generally described herein. In some embodiments, an initiating station performs multiple-access beamforming with one or more responding stations by announcing a number of sector-sweep (SS) slots of a beamforming training (BFT) period and a number of SS frames of each SS slot. One or more SS frames are received from one or more of the responding stations within one of the SS slots of the BFT period. The initiating station transmits one or more SS feedback frames to the responding stations within the one SS slot to indicate an antenna configuration to the responding stations for communication with the initiating station. The responding stations transmit a limited number of SS frames per SS slot based on the number of SS frames announced by the initiating station and transmit any additional SS frames in a next SS slot of the beamforming training period. Each SS frame contains an indication to the initiating station of an antenna configuration for communication with the responding station,
    • 毫米波通信站的实施例和毫米波网络中的多址波束形成方法在本文中通常被描述。 在一些实施例中,发起站通过通知波束形成训练(BFT)周期的数量扇区扫描(SS)时隙和每个SS时隙的多个SS帧来执行与一个或多个响应站的多址波束形成。 从BFT周期的SS时隙之一内的一个或多个响应站接收一个或多个SS帧。 发起站向一个SS时隙内的响应站发送一个或多个SS反馈帧,以向响应站指示天线配置以与发起站通信。 响应站基于由发起站公布的SS帧的数量,每SS个时隙发送有限数量的SS帧,并在波束形成训练周期的下一个SS时隙中发送任何附加的SS帧。 每个SS帧包含用于与响应站通信的天线配置的发起站的指示,
    • 8. 发明申请
    • MILLIMETER-WAVE COMMUNICATION STATION AND METHOD FOR MULTIPLE-ACCESS BEAMFORMING IN A MILLIMETER-WAVE COMMUNICATION NETWORK
    • 毫米波通信网络中的多路访问波束通信站和方法
    • US20110080898A1
    • 2011-04-07
    • US12574140
    • 2009-10-06
    • Carlos CordeiroAssaf KasherSolomon B. Trainin
    • Carlos CordeiroAssaf KasherSolomon B. Trainin
    • H04W72/00
    • H04W72/0446H04B7/0617H04B7/0619
    • Embodiments of a millimeter-wave communication station and method for multiple-access beamforming in a millimeter-wave network are generally described herein. In some embodiments, an initiating station performs multiple-access beamforming with one or more responding stations by announcing a number of sector-sweep (SS) slots of a beamforming training (BFT) period and a number of SS frames of each SS slot. One or more SS frames are received from one or more of the responding stations within one of the SS slots of the BFT period. The initiating station transmits one or more SS feedback frames to the responding stations within the one SS slot to indicate an antenna configuration to the responding stations for communication with the initiating station. The responding stations transmit a limited number of SS frames per SS slot based on the number of SS frames announced by the initiating station and transmit any additional SS frames in a next SS slot of the beamforming training period. Each SS frame contains an indication to the initiating station of an antenna configuration for communication with the responding station,
    • 毫米波通信站的实施例和毫米波网络中的多址波束形成方法在本文中通常被描述。 在一些实施例中,发起站通过通知波束形成训练(BFT)周期的数量扇区扫描(SS)时隙和每个SS时隙的多个SS帧来执行与一个或多个响应站的多址波束形成。 从BFT周期的SS时隙之一内的一个或多个响应站接收一个或多个SS帧。 发起站向一个SS时隙内的响应站发送一个或多个SS反馈帧,以向响应站指示天线配置以与发起站通信。 响应站基于由发起站公布的SS帧的数量,每SS个时隙发送有限数量的SS帧,并在波束形成训练周期的下一个SS时隙中发送任何附加的SS帧。 每个SS帧包含用于与响应站通信的天线配置的发起站的指示,
    • 9. 发明授权
    • Selective 40 MHz operation in 2.4 GHz band
    • 2.4 GHz频段的40 MHz操作选择
    • US07890061B2
    • 2011-02-15
    • US11768330
    • 2007-06-26
    • Assaf KasherGal BassonSolomon B. Trainin
    • Assaf KasherGal BassonSolomon B. Trainin
    • H04B17/00
    • H04W16/14H04W72/08
    • Methods and apparatuses enable selective operation in an extended bandwidth channel of a wireless communication band. For example, a client station can be selectively authorized to operate on a 40 MHz channel in a 2.4 GHz band. The client station or an access point or both can determine whether interference exists in the wireless communication band. If potential interference exists, the client station may operate on a non-extended bandwidth channel. If potential interference does not exist, the client station may operate on an extended bandwidth channel. Operation between the two channels can be dynamic based on continued monitoring of the wireless communication band for potential interference.
    • 方法和装置使得能够在无线通信频带的扩展带宽信道中进行选择性操作。 例如,可以选择性地授权客户端站在2.4GHz频带中的40MHz信道上操作。 客户站或接入点或两者都可以确定无线通信频带中是否存在干扰。 如果存在潜在的干扰,则客户端站可以在非扩展带宽信道上操作。 如果不存在潜在的干扰,则客户端站可以在扩展的带宽信道上操作。 基于继续监测无线通信频段的潜在干扰,两个信道之间的操作可以是动态的。
    • 10. 发明申请
    • METHODS AND ARRANGEMENTS FOR TIME-SHARING IN A DENSE ENVIRONMENT
    • 在DENSE环境中进行时间分配的方法和安排
    • US20150282186A1
    • 2015-10-01
    • US14229792
    • 2014-03-28
    • Solomon B. TraininTom HarelIgor Brainman
    • Solomon B. TraininTom HarelIgor Brainman
    • H04W72/08H04L1/00H04W74/00H04W72/04
    • H04L1/0009H04L1/0003H04W74/002H04W74/0816
    • Logic may enable communication between stations in the presence of interference. Logic may communicate with the station in the presence of interference, the interference from a communication between other stations comprising a first network allocation vector (NAV) reminder, by entering a mode in which a Control Physical layer (PHY) modulation and coding scheme (MCS) is enabled and a Single Carrier PHY MCS is disabled. Logic may enable the Single Carrier PHY MCS in response to receipt of a clear-to-send (CTS) or an expiration of a CTS timeout. Logic may determine an active time remainder during a Contention-based access period. Logic may determine a time to access a channel in response to receipt of the Denial to Send and based upon a predefined, maximum inactivity time. Logic may remain beamformed while the apparatus is in the Control PHY mode.
    • 在存在干扰的情况下,逻辑可以实现站之间的通信。 逻辑可以在存在干扰的情况下与站通信,通过进入其中控制物理层(PHY)调制和编码方案(MCS)的模式,来自包括第一网络分配向量(NAV)提醒的其他站之间的通信的干扰 )被启用,并且单载波PHY MCS被禁用。 响应于接收到清除发送(CTS)或CTS超时的到期,逻辑可使单载波PHY MCS成为可能。 在基于竞争的访问期间,逻辑可以确定活动时间余数。 逻辑可以确定响应于接收拒绝发送而且基于预定义的最大不活动时间来访问频道的时间。 当设备处于控制PHY模式时,逻辑可能保持波束形成。