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    • 93. 发明申请
    • Method and system for 60 GHZ location determination and coordination of WLAN/WPAN/GPS multimode devices
    • WLAN / WPAN / GPS多模设备60 GHZ位置确定与协调方法与系统
    • US20080311851A1
    • 2008-12-18
    • US11924814
    • 2007-10-26
    • Christopher J. HansenJeyhan Karaoguz
    • Christopher J. HansenJeyhan Karaoguz
    • H04B7/00G01S1/04H04Q7/00
    • H04W72/048H04W64/00H04W84/18
    • Within a local region, information may be communicated between two or more wireless multimode communication devices (WMCD) comprising 60 GHz band and lower frequency band wireless interfaces, wherein spatial relationships between devices may vary. The 60 GHz interface may handle location determination operations and data transfers. The lower frequency band may support WPAN, WLAN and may handle coordination of communications and data transfers. The WMCDs may be coupled with a network. Antennas may be directional. Moreover, the spatial orientation of the antennas may be dynamically modified or swept across a specified angle. Furthermore, intelligent and/or adaptive antenna systems may be utilized. The WMCDs may utilize a position and/or time reference system to aid in location determination operations.
    • 在本地区域内,可以在包括60GHz频带和较低频带无线接口的两个或更多个无线多模通信设备(WMCD)之间传送信息,其中设备之间的空间关系可以变化。 60 GHz接口可以处理位置确定操作和数据传输。 较低的频带可以支持WPAN,WLAN,并且可以处理通信和数据传输的协调。 WMCD可以与网络耦合。 天线可能是定向的。 此外,天线的空间取向可以被动态修改或扫过特定的角度。 此外,可以利用智能和/或自适应天线系统。 WMCD可以利用位置和/或时间参考系来帮助位置确定操作。
    • 95. 发明申请
    • RADAR DETECTION CIRCUIT FOR A WLAN TRANSCEIVER
    • WLAN收发器的雷达检测电路
    • US20070281638A1
    • 2007-12-06
    • US11607488
    • 2006-12-01
    • Christopher J. Hansen
    • Christopher J. Hansen
    • H04B1/04G01S7/40
    • G01S7/021H04B1/1027H04B15/02H04K3/226H04K3/822H04K2203/18H04W16/14
    • A single chip radio transceiver includes circuitry that enables detection of radar signals to enable the radio transceiver to halt communications in overlapping communication bands to avoid interference with the radar transmitting the radar pulses. The radio transceiver is operable to evaluate a number of most and second most common pulse interval values to determine whether a traditional radar signal is present. The radio transceiver also is operable to FM demodulate an incoming signal to determine whether a non-traditional radar signal, such as a bin-5 radar signal, is present. After. FM demodulation, the signal is averaged wherein a substantially large value is produced for non-traditional radar signals and a value approximately equal to zero is produced for a communication signal that is not FM modulated with a continuously increasing frequency signal. Gain control is used to limit incoming signal magnitude to a specified range of magnitudes.
    • 单芯片无线电收发器包括能够检测雷达信号以使得无线电收发器能够在重叠通信频带中停止通信以避免干扰雷达发射雷达脉冲的电路。 无线电收发器可操作以评估多数和最多次最常用的脉冲间隔值,以确定传统的雷达信号是否存在。 无线电收发机还可操作以对解调输入信号进行FM解调,以确定是否存在诸如bin-5雷达信号的非传统雷达信号。 后。 FM解调,信号被平均,其中对于非传统雷达信号产生基本上大的值,并且对于不以连续增加的频率信号FM调制的通信信号产生大约等于零的值。 增益控制用于将输入信号幅度限制在指定的幅度范围内。
    • 96. 发明授权
    • Method and system for 60 GHz location determination and coordination of WLAN/WPAN/GPS multimode devices
    • WLAN / WPAN / GPS多模设备的60 GHz位置确定与协调方法与系统
    • US08320877B2
    • 2012-11-27
    • US13404230
    • 2012-02-24
    • Christopher J. HansenJeyhan Karaoguz
    • Christopher J. HansenJeyhan Karaoguz
    • H04M11/04
    • H04W72/048H04W64/00H04W84/18
    • Within a local region, information may be communicated between two or more wireless multimode communication devices (WMCD) comprising 60 GHz band and lower frequency band wireless interfaces. Spatial relationships between devices may vary. The 60 GHz interface may handle location determination operations and data transfers. The lower frequency band may support WPAN, WLAN and may handle coordination of communications and data transfers. The WMCDs may be coupled with a network. Antennas may be directional. Moreover, the spatial orientation of the antennas may be dynamically modified or swept across a specified angle. Furthermore, intelligent and/or adaptive antenna systems may be utilized. The WMCDs may utilize a position and/or time reference system to aid in location determination operations.
    • 在本地区域内,可以在包括60GHz频带和较低频带无线接口的两个或多个无线多模通信设备(WMCD)之间传送信息。 设备之间的空间关系可能会有所不同。 60 GHz接口可以处理位置确定操作和数据传输。 较低的频带可以支持WPAN,WLAN,并且可以处理通信和数据传输的协调。 WMCD可以与网络耦合。 天线可能是定向的。 此外,天线的空间取向可以被动态修改或扫过特定的角度。 此外,可以利用智能和/或自适应天线系统。 WMCD可以利用位置和/或时间参考系来帮助位置确定操作。
    • 98. 发明申请
    • Method And System For 60 GHZ Antenna Adaptation And User Coordination Based On Base Station Beacons
    • 基于基站信标的60 GHZ天线适配和用户协调的方法与系统
    • US20120057580A1
    • 2012-03-08
    • US13232697
    • 2011-09-14
    • Christopher J. HansenJeyhan Karaoguz
    • Christopher J. HansenJeyhan Karaoguz
    • H04W84/02
    • H04B7/02G01S1/02G01S1/44G01S5/0226H04W84/10
    • A first device wirelessly transmits and/or receives swept 60 GHz beacon signals to and/or from other devices. Beacon signals indicate angle of reception and/or relative direction with respect to other devices. Knowing reception angle and/or relative direction enables beamforming of adaptive and/or steered antennas for communication. 60 GHz beacons are swept over one or more angles. Identity information, configuration information, timing information and/or spatial information are communicated via 60 GHz beacons. Control and/or coordination information are transmitted and/or received. Reception angle, relative direction and/or distance between devices are determined based on 60 GHz beacons. Adaptive and/or steered antennas used for communication are initialized and/or undergo beamforming for 60 GHz, based on the angle, direction and/or distance between devices. Devices are mobile and/or stationary. Devices comprise mobile stations, base stations, wireless phones, access points, set-top-boxes, computers, game consoles, video servers, video recorders, video playback devices, residential gateways and internet browsing devices.
    • 第一设备向和/或从其他设备无线地发送和/或接收扫描的60GHz信标信号。 信标信号表示相对于其他设备的接收角和/或相对方向。 知道接收角度和/或相对方向使自适应和/或转向天线的波束成形能够进行通信。 60GHz信标被扫过一个或多个角度。 身份信息,配置信息,定时信息和/或空间信息通过60GHz信标通信。 发送和/或接收控制和/或协调信息。 基于60GHz信标确定设备之间的接收角度,相对方向和/或距离。 基于设备之间的角度,方向和/或距离,用于通信的自适应和/或转向天线被初始化和/或经历60GHz的波束成形。 设备是移动和/或静止的。 设备包括移动台,基站,无线电话,接入点,机顶盒,计算机,游戏机,视频服务器,录像机,视频播放设备,住宅网关和因特网浏览设备。