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    • 81. 发明授权
    • Apparatus and method aggregation at one or more layers
    • 一层或多层装置和方法聚集
    • US09306866B2
    • 2016-04-05
    • US13841807
    • 2013-03-15
    • Aruba Networks, Inc.
    • Gautam BhanageSathish Damodaran
    • H04L12/56H04L12/863H04L12/805
    • H04W28/065H04L43/0882H04L47/36H04L47/6215H04L47/625H04W84/12
    • A method for performing aggregation at one or more layers starts with an AP placing at a first layer one or more received frames in a queue at the AP. When a transmit scheduler is ready to transmit an aggregated frame corresponding to the queue, the AP may iteratively select a plurality of frames selected from the one or more received frames, and aggregate at the first layer the plurality of frames into the aggregated frame. The number of frames included in an aggregated frame may be based on at least one of: a dynamically updated rate of transmission associated with a size of the frames, a class of the frames, a transmission opportunity value associated with the class of the frames and a total projected airtime for transmitting the aggregated frame. Other embodiments are also described.
    • 用于在一个或多个层执行聚合的方法从在AP处的队列中放置在第一层的一个或多个接收帧的AP开始。 当发送调度器准备好发送对应于队列的聚合帧时,AP可以迭代地选择从一个或多个接收到的帧中选出的多个帧,并且将第一层的多个帧聚合成聚合帧。 包括在聚合帧中的帧的数量可以基于以下中的至少一个:动态更新的与帧的大小相关联的传输速率,帧的类别,与帧的类别相关联的传输机会值,以及 用于传输聚合帧的总预计播放时间。 还描述了其它实施例。
    • 86. 发明申请
    • LOCATION DRIVEN ASSOCIATION OF CLIENT DEVICES TO ACCESS POINTS
    • 位置驱动客户端设备访问点的协调
    • US20160037427A1
    • 2016-02-04
    • US14445674
    • 2014-07-29
    • Aruba Networks, Inc.
    • Jiwoong Lee
    • H04W36/32H04W36/36H04W36/08
    • H04W36/32H04W36/08H04W36/36H04W48/20H04W64/00
    • A method may determine the location and/or motion of a client device. Based on these determinations, the method may 1) delay a potential move of the client device to a new access point until the client device reaches a non-transitional or less dense area or is stationary, 2) delay a potential move of the client device to a new access point while the client device is on the edge of the network environment, 3) compute a probable destination of the client device and wait until this destination is reached before triggering movement to a new access point, 4) reduce the effects caused by shadowing, 5) guide the client device to more proximate access points, and 6) guide the client device to dedicated proximate access points when client devices are relatively motionless. Accordingly, the method dynamically leverages client device location and motion to intelligently assign client devices to access points.
    • 方法可以确定客户端设备的位置和/或运动。 基于这些确定,该方法可以将客户端设备的潜在移动延迟到新的接入点,直到客户端设备达到非过渡或不太密集的区域或者是静止的为止; 2)延迟客户端设备的潜在移动 到客户端设备处于网络环境边缘的新接入点; 3)计算客户端设备的可能目的地,并在触发移动到新的接入点之前等待到达目的地,4)减少引起的影响 通过阴影,5)将客户端设备引导到更接近的接入点,以及6)当客户端设备相对不动时,将客户端设备引导到专用的接近接入点。 因此,该方法动态地利用客户端设备位置和运动来智能地将客户端设备分配给接入点。
    • 89. 发明申请
    • System and Methods for Location Determination in MIMO Wireless Networks
    • MIMO无线网络中位置确定的系统与方法
    • US20160033617A1
    • 2016-02-04
    • US14446480
    • 2014-07-30
    • Aruba Networks, Inc.
    • Dongwoon HahnSubburajan Ponnuswamy
    • G01S5/10
    • G01S5/0215
    • Disclosed herein, one embodiment of the disclosure is directed to a system, apparatus, and method for location estimation in the presence of multipath/non-line-of-sight (NLOS) conditions. Various methods have been contemplated to detect the level of multipath/NLOS propagation between two devices. A SNR variation method determines how the SNR of each chain/stream is varying over a time window in order to detect the chain/stream with least local scattering or multipath. A measure of coherence SNR is defined to measure the level of multipath/N LOS per-chain/stream. Moreover, since per-subcarrier SNR information is available at the one or both nodes, the coherence methods can be used on a per-subcarrier basis to detect multipath/NLOS for the entire channel, for the specific spatial stream or for the specific frequencies occupied by the subcarriers. Furthermore, a coherence bandwidth estimation method uses the SNR variation over subcarriers to detect the coherence bandwidth of the spatial stream. The amount of multipath/NLOS is inversely proportional to the coherence bandwidth.
    • 本文公开了本公开的一个实施例涉及在存在多路径/非视距(NLOS)条件的情况下进行位置估计的系统,装置和方法。 已经考虑了各种方法来检测两个装置之间的多径/ NLOS传播的水平。 SNR变化方法确定每个链/流的SNR如何在时间窗口上变化,以便检测具有最少局部散射或多径的链/流。 定义了相干SNR的度量来测量每条链/多径的多路径/ N LOS的水平。 此外,由于每个子载波SNR信息在一个或两个节点处可用,所以可以在每个子载波的基础上使用相干方法来检测整个信道的多路径/ NLOS,对于特定空间流或对于特定频率占用 由子载波。 此外,相干带宽估计方法使用在子载波上的SNR变化来检测空间流的相干带宽。 多径/ NLOS的数量与相干带宽成反比。
    • 90. 发明申请
    • LOCATION APPROXIMATION AND DISCOVERY OF WIRED SERVERS
    • 有线服务器的位置近似和发现
    • US20160021214A1
    • 2016-01-21
    • US14332517
    • 2014-07-16
    • Aruba Networks, Inc.
    • Sandeep UnnimadhavanSudeepto Kumar RoyDeepak Parasar
    • H04L29/08
    • H04L67/18H04L67/16
    • The present disclosure discloses a method and network device for providing location approximation and discovery of wired servers in a network. Specifically, a network device can store information indicating that a first client device, with a first set of one or more characteristics, selected a particular shared device from a plurality of shared devices of a first type. The network device then receives, from a second client device, a request for a shared device of the first type. Subsequently, the network device determines that the second client device is associated with the same first set of characteristics as the first client device that selected the particular shared device. Responsive to such determination, the network device presents the particular shared device as an option for selection by the second client device.
    • 本公开公开了一种用于在网络中提供有线服务器的位置近似和发现的方法和网络设备。 具体地,网络设备可以存储指示具有第一组一个或多个特性的第一客户端设备从第一类型的多个共享设备中选择特定共享设备的信息。 网络设备然后从第二客户端设备接收对第一类型的共享设备的请求。 随后,网络设备确定第二客户端设备与选择特定共享设备的第一客户端设备相同的第一特征集相关联。 响应于这种确定,网络设备将特定共享设备呈现为第二客户端设备的选择。