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    • 1. 发明申请
    • Photonic RF distribution system
    • 光子射频分配系统
    • US20050201759A1
    • 2005-09-15
    • US11054832
    • 2005-02-10
    • Wenshen WangDavid ScottThomas JungJoseph Morais
    • Wenshen WangDavid ScottThomas JungJoseph Morais
    • H04B10/04H04B10/12H04B10/155
    • H04B10/25751
    • The present photonic RF generation and distribution system provides a system and method for distributing an RF output signal. The photonic RF distribution system includes two optical sources for generating optical signals. A first optical source (42) is operable to generate a first optical signal having an operating frequency. A second optical source (44) is operable to generate a second optical signal having an operating frequency. A modulator (46) is operable to impress an RF modulation signal on a tapped portion of the first optical signal such that a modulated signal is generated. A first coupler (52) combines the modulated signal with a tapped portion of the second optical signal, thereby forming a combined signal having a difference frequency component. A control photodetector (50) is responsive to the combined signal to generate a tone signal. An offset locking circuit (56), responsive to the tone signal, controls the operating frequency of the optical sources (42 and 44) such that the first optical signal and the second optical signal are frequency locked.
    • 本发明的光子射频发生和分配系统提供了用于分配RF输出信号的系统和方法。 光子射频分配系统包括用于产生光信号的两个光源。 第一光源(42)可操作以产生具有工作频率的第一光信号。 第二光源(44)可操作以产生具有工作频率的第二光信号。 调制器(46)可操作以在第一光信号的抽头部分上施加RF调制信号,使得产生调制信号。 第一耦合器(52)将调制信号与第二光信号的抽头部分组合,从而形成具有差频分量的组合信号。 控制光电检测器(50)响应于组合信号以产生音调信号。 响应于音调信号的偏移锁定电路(56)控制光源(42和44)的工作频率,使得第一光信号和第二光信号被频率锁定。
    • 3. 发明申请
    • Slow wave optical waveguide for velocity matched semiconductor modulators
    • 用于速度匹配半导体调制器的慢波光波导
    • US20050094917A1
    • 2005-05-05
    • US10700245
    • 2003-11-03
    • Wenshen WangDavid ScottElizabeth Kunkee
    • Wenshen WangDavid ScottElizabeth Kunkee
    • G02B6/26G02B6/42G02F1/025G02F1/295
    • B82Y20/00B82Y10/00G02F1/025G02F2201/127G02F2201/307G02F2202/32
    • A PIN electro-optical traveling wave modulator (10) including diffraction gratings (34, 36) positioned at opposing sides of an optical waveguide (20) that act to change the propagation pattern of the waveguide (20). The modulator (10) includes an N-type layer (14), a P-type layer (18) and an intrinsic layer (16) acting as the waveguide (20). A metal electrode (26) is in electrical contact with the N-type layer (14), and a metal electrode (30) is in electrical contact with the P-type layer (18). The electrodes (26, 30) define an RF transmission line. An optical wave (22) propagates along the waveguide (20) and interacts with the gratings (34, 36) which slow the optical wave (22) to match its speed to the speed of the RF wave in the transmission line. In one embodiment, the gratings (34, 36) are 2-D gratings formed by vertical holes (38) in the waveguide (20).
    • 一种PIN电光行波调制器(10),其包括位于光波导(20)的相对侧的衍射光栅(34,36),其用于改变波导(20)的传播图案。 调制器(10)包括N型层(14),P型层(18)和用作波导(20)的本征层(16)。 金属电极(26)与N型层(14)电接触,金属电极(30)与P型层(18)电接触。 电极(26,30)限定RF传输线。 光波(22)沿着波导(20)传播并与光栅(34,36)相互作用,光栅(34,36)使光波(22)的速度与传输线中的RF波的速度相匹配。 在一个实施例中,光栅(34,36)是由波导(20)中的垂直孔(38)形成的2-D光栅。
    • 7. 发明申请
    • SYSTEM AND METHOD FOR SEPARATING HIGH MOLECULAR WEIGHT GASES FROM A COMBUSTION SOURCE
    • 从燃烧源分离高分子量气体的系统和方法
    • US20120141352A1
    • 2012-06-07
    • US13314110
    • 2011-12-07
    • Jerry LangDavid Scott
    • Jerry LangDavid Scott
    • C01D7/07B01D53/30B01D53/74B01D53/24
    • C01D7/07B01D53/24B01D53/62B01D2251/304B01D2257/504B01D2258/0283Y02C10/04Y02P20/152
    • High molecular weight (HMW) gases are separated from an exhaust gas of a combustion source using a blower and an interior vent within the exhaust stack. The interior vent includes a vent wall having a top portion attached to the interior surface of the exhaust stack along the entire inner perimeter of the exhaust stack and a lower portion that extends downward into the exhaust stack to form an annular space or gap between the vent wall and the interior surface of the exhaust stack, and at least one opening in the interior surface of the exhaust stack between the top and bottom portions of the vent wall. The blower creates a tangential flow of the exhaust gas with sufficient centrifugal force to concentrate substantially all of the HMW gases along the inner surface of the exhaust stack. A transfer pipe removes the HMW gases from the interior vent.
    • 使用鼓风机和排气叠层内的内部通风口将高分子量(HMW)气体与燃烧源的废气分离。 内部排气口包括排气壁,排气壁具有沿着排气叠层的整个内周边连接到排气叠层的内表面的顶部部分,以及向下延伸到排气叠层中的下部,以在排气口之间形成环形空间或间隙 壁和排气叠层的内表面,以及排气叠层的内表面中至少一个开口,其位于排气壁的顶部和底部之间。 鼓风机以足够的离心力产生废气的切向流,以基本上将所有的HMW气体沿着排气叠层的内表面进行浓缩。 输送管从内部通风口去除HMW气体。
    • 9. 发明申请
    • ALLOCATING VIRTUAL MACHINES ACCORDING TO USER-SPECIFIC VIRTUAL MACHINE METRICS
    • 根据用户特定的虚拟机量具分配虚拟机
    • US20120089980A1
    • 2012-04-12
    • US12902542
    • 2010-10-12
    • Richard SharpDavid Scott
    • Richard SharpDavid Scott
    • G06F9/455G06F15/173
    • G06F3/0481G06F9/45558G06F11/3438G06F11/3495G06F2009/45562G06F2009/4557G06F2009/45591G06F2201/815G06F2201/865H04L67/10
    • The performance monitoring system allocates virtual machines to users or user sessions according to a user categorization that is determine using user session information and virtual machine metrics. A session monitor of the performance monitoring system is notified that a user session terminated, where the user session accessed a virtual machine. The session monitor responsively records the user session information and obtains virtual machine metrics for the virtual machine from a virtual machine performance monitor. The performance monitoring system updates a user workload profile using the user session information and the virtual machine metrics, and categorizes the user of the user session according to the user workload profile. Upon receiving a request from a user for a virtual machine, a virtual desktop infrastructure requests a virtual machine from a virtual machine manager. The virtual machine manager responsively allocates a virtual machine to the user according to the user's categorization.
    • 性能监视系统根据使用用户会话信息和虚拟机度量确定的用户分类,将虚拟机分配给用户或用户会话。 通知性能监视系统的会话监视器,用户会话终止,用户会话访问虚拟机。 会话监视器响应式记录用户会话信息,并从虚拟机性能监视器获取虚拟机的虚拟机度量。 性能监视系统使用用户会话信息和虚拟机度量来更新用户工作负载配置文件,并根据用户工作负载配置文件对用户会话的用户进行分类。 在从用户接收虚拟机的请求时,虚拟桌面基础设施从虚拟机管理器请求虚拟机。 虚拟机管理器根据用户的分类响应性地为用户分配虚拟机。