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    • 83. 发明授权
    • Traffic constraints in a mmWAVE wireless network
    • mmWAVE无线网络中的流量限制
    • US08428518B2
    • 2013-04-23
    • US12584783
    • 2009-09-11
    • Carlos Cordeiro
    • Carlos Cordeiro
    • H04B1/00H04B15/00
    • H04W72/1231H04W48/08
    • A network controller may schedule directional communications between two devices in its own network in such a way as to avoid potential interference from anticipated transmissions from another device. In some instances, the network controller may be one of the two devices using the directional communications. The timing of the anticipated transmissions may be determined by the network controller based on its own observations, or it may be informed of that timing in a transmission from a device in its own network. A possible format is given for transmitting that information to the network controller.
    • 网络控制器可以以这样的方式调度其自身网络中的两个设备之间的定向通信,以避免来自另一设备的预期传输的潜在干扰。 在一些情况下,网络控制器可以是使用定向通信的两个设备之一。 预期传输的定时可以由网络控制器基于其自己的观察来确定,或者可以从其本身网络中的设备的传输中通知该定时。 给出了将该信息发送到网络控制器的可能格式。
    • 84. 发明申请
    • NATIVE MEDIUM ACCESS CONTROL SUPPORT FOR BEAMFORMING
    • 用于波束形成的本质接入控制支持
    • US20120250670A1
    • 2012-10-04
    • US13494014
    • 2012-06-11
    • Carlos Cordeiro
    • Carlos Cordeiro
    • H04W84/02
    • H04B7/0617H04B7/0491H04L1/1607
    • Apparatuses, systems, and methods that enable native MAC support of beamforming are contemplated. An embodiment may comprise a mobile computing device, such as a laptop, with wireless communications capabilities, such as an integrated wireless networking card. The networking card of the laptop may transmit and receive various types of frame data using one or more beamforming techniques. Upon establishing a link with another wireless device, the laptop may sense that the link quality is degrading. Instead of having to reestablish a new link using dedicated BF frames and the conventional BF protocol, embodiments described herein may instead transmit beamforming information in various types of frames which enable the wireless communication devices to adjust the beamforming parameters in a more efficient manner. For example, the devices may include beamforming information in control frames and data frames and transmit the frames in a sweeping sector fashion.
    • 预期能够实现波束成形的本机MAC支持的装置,系统和方法。 实施例可以包括具有无线通信能力的诸如膝上型计算机的移动计算设备,诸如集成无线网络卡。 笔记本电脑的网卡可以使用一个或多个波束成形技术来发送和接收各种类型的帧数据。 在建立与另一无线设备的链接之后,笔记本电脑可能感觉到链路质量下降。 而不是必须使用专用BF帧和常规BF协议来重新建立新链路,本文所描述的实施例可以替代地以各种类型的帧发送波束成形信息,使得无线通信设备能够以更有效的方式调整波束成形参数。 例如,设备可以在控制帧和数据帧中包括波束成形信息,并以扫描扇区方式发送帧。
    • 86. 发明申请
    • NATIVE MEDIUM ACCESS CONTROL SUPPORT FOR BEAMFORMING
    • 用于波束形成的本质接入控制支持
    • US20110149842A1
    • 2011-06-23
    • US12646965
    • 2009-12-23
    • Carlos Cordeiro
    • Carlos Cordeiro
    • H04W4/00
    • H04B7/0617H04B7/0491H04L1/1607
    • Apparatuses, systems, and methods that enable native MAC support of beamforming are contemplated. An embodiment may comprise a mobile computing device, such as a laptop, with wireless communications capabilities, such as an integrated wireless networking card. The networking card of the laptop may transmit and receive various types of frame data using one or more beamforming techniques. Upon establishing a link with another wireless device, the laptop may sense that the link quality is degrading. Instead of having to reestablish a new link using dedicated BF frames and the conventional BF protocol, embodiments described herein may instead transmit beamforming information in various types of frames which enable the wireless communication devices to adjust the beamforming parameters in a more efficient manner. For example, the devices may include beamforming information in control frames and data frames and transmit the frames in a sweeping sector fashion.
    • 预期能够实现波束成形的本机MAC支持的装置,系统和方法。 实施例可以包括具有无线通信能力的诸如膝上型计算机的移动计算设备,诸如集成无线网络卡。 笔记本电脑的网卡可以使用一个或多个波束成形技术来发送和接收各种类型的帧数据。 在建立与另一无线设备的链接之后,笔记本电脑可能感觉到链路质量下降。 而不是必须使用专用BF帧和常规BF协议来重新建立新链路,本文所描述的实施例可以替代地以各种类型的帧发送波束成形信息,使得无线通信设备能够以更有效的方式调整波束成形参数。 例如,设备可以在控制帧和数据帧中包括波束成形信息,并以扫描扇区方式发送帧。
    • 90. 发明申请
    • Method for Improving Self-Coexistence of Wireless Communication Networks
    • 改善无线通信网络自身共存的方法
    • US20080253341A1
    • 2008-10-16
    • US12066860
    • 2006-09-16
    • Carlos CordeiroKiran Challapali
    • Carlos CordeiroKiran Challapali
    • H04Q7/24
    • H04W16/14H04W72/1257
    • Self-coexistence of first and second wireless communication networks (200) is improved by transmitting a coexistence beacon from a first station (210, 220) of the first wireless communication network (200) to a first station (210, 220) of the second wireless communication network (200. The coexistence beacon includes information about a traffic reservation of the first station (210, 220) of the first wireless communication network (200). The first station (210, 220) of the second wireless communication network (200) may then use this information in a variety of ways to reduce data collisions between the two networks (200). It can communicate this information to a base station (210) of the second wireless communication network (200). The base station (210) of the second wireless communication network (200) can then use this information to more efficiently allocate frequency channels and/or time slots for future traffic reservations of the first station (220) of the second wireless communication network (200).
    • 通过将来自第一无线通信网络(200)的第一站(210,220)的共存信标发送到第二无线通信网络(200)的第一站(210,220)来改善第一和第二无线通信网络(200)的自共存 无线通信网络(200)。共存信标包括关于第一无线通信网络(200)的第一站(210,220)的业务预留的信息,第二无线通信网络(200)的第一站(210,220) )可以以各种方式使用该信息来减少两个网络(200)之间的数据冲突,它可以将该信息传送到第二无线通信网络(200)的基站(210),基站(210) 然后可以使用该信息来更有效地分配用于第一站(220)的未来业务预留的频率信道和/或时隙, 的第二无线通信网络(200)。