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    • 6. 发明申请
    • Method And System For An Analog Crossbar Architecture
    • 模拟交叉结构的方法和系统
    • US20160330139A1
    • 2016-11-10
    • US15212994
    • 2016-07-18
    • Maxlinear, Inc.
    • Curtis Ling
    • H04L12/933
    • H04L49/101H03M1/42H04L5/26H04L49/206H04Q11/0001
    • Methods and systems for an analog crossbar may comprise, in a wireless device comprising a receiver path with an analog crossbar: receiving a digital signal comprising a plurality of channels; amplifying the received signal; converting the amplified signal to an analog signal; separating the analog signal into a plurality of separate channels; routing the plurality of separate channels to desired signal paths utilizing the analog crossbar; and converting the routed plurality of separate channels to a plurality of digital signals. The analog crossbar may comprise an array of complementary metal-oxide semiconductor (CMOS) transistors. The analog crossbar may comprise a plurality of differential pair signal lines, and a plurality of single-ended signal lines. The received signal may be amplified utilizing a low-noise amplifier (LNA), where a gain level of the LNA may be configurable. The analog signal may be separated into separate channels using a channelizer.
    • 用于模拟交叉开关的方法和系统可以包括在包括具有模拟交叉开关的接收机路径的无线设备中:接收包括多个信道的数字信号; 放大接收信号; 将放大的信号转换成模拟信号; 将模拟信号分离成多个单独的通道; 使用模拟交叉开关将多个单独的通道路由到期望的信号路径; 以及将路由的多个单独信道转换成多个数字信号。 模拟交叉开关可以包括互补金属氧化物半导体(CMOS)晶体管的阵列。 模拟交叉开关可以包括多个差分对信号线和多个单端信号线。 接收的信号可以利用低噪声放大器(LNA)进行放大,其中LNA的增益电平可以是可配置的。 模拟信号可以使用信道化器分离成单独的信道。
    • 8. 发明申请
    • PROVIDING NETWORK MANAGEMENT BASED ON MONITORING QUALITY OF SERVICE (QOS) CHARACTERISTICS OF WEB REAL-TIME COMMUNICATIONS (WEBRTC) INTERACTIVE FLOWS, AND RELATED METHODS, SYSTEMS, AND COMPUTER-READABLE MEDIA
    • 提供网络管理基于监控服务质量(QOS)网络实时通信(WEBRTC)交互流程的特征以及相关方法,系统和计算机可读介质
    • US20150089046A1
    • 2015-03-26
    • US14037440
    • 2013-09-26
    • Avaya Inc.
    • Harvey S. WaxmanJohn H. Yoakum
    • H04L12/931H04L12/911
    • H04L49/206H04L41/0823H04L41/5025H04L43/0852H04L43/0888
    • Embodiments include providing network management based on monitoring Quality of Service (QoS) characteristics of Web Real-Time Communications (WebRTC) interactive flows, and related methods, systems, and computer-readable media. In one embodiment, a method for providing network management based on monitoring QoS characteristics of WebRTC interactive flows is provided. The method comprises obtaining, by a QoS acquisition agent of a WebRTC client executing on a computing device, a WebRTC interactive flow QoS characteristic that indicates a quality of a WebRTC interactive flow over a network. The method further comprises communicating, by the QoS acquisition agent, the WebRTC interactive flow QoS characteristic to a QoS monitoring agent external to the WebRTC client. The method additionally comprises initiating, by the QoS monitoring agent, a network management task based on the WebRTC interactive flow QoS characteristic. In this manner, QoS characteristics may be collected and correlated in order to optimize a user's WebRTC experience.
    • 实施例包括基于监视Web实时通信(WebRTC)交互流的服务质量(QoS)特性以及相关方法,系统和计算机可读介质提供网络管理。 在一个实施例中,提供了一种基于监视WebRTC交互流的QoS特性来提供网络管理的方法。 该方法包括通过在计算设备上执行的WebRTC客户端的QoS获取代理获得指示网络上的WebRTC交互流的质量的WebRTC交互流QoS特性。 该方法还包括由Web采集代理将WebRTC交互流QoS特征传送到WebRTC客户端外部的QoS监视代理。 该方法还包括由QoS监控代理基于WebRTC交互流QoS特性启动网络管理任务。 以这种方式,可以收集和相关的QoS特性以优化用户的WebRTC体验。