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    • 2. 发明申请
    • Color Mixing Light Source and Color Control Data System
    • 彩色混合光源和色彩控制数据系统
    • US20120176424A1
    • 2012-07-12
    • US13424312
    • 2012-03-19
    • Gang ChenRonen RapaportMichael J. Schabel
    • Gang ChenRonen RapaportMichael J. Schabel
    • G09G5/02
    • H04N9/3129
    • Apparatus including a color mixing light source having a first laser configured to lase at one or a plurality of light emission wavelengths of 459 nanometers or less and a second laser configured to lase at one or a plurality of light emission wavelengths of 470 nanometers or more; and a controller having a color control data input and a color control data output configured to cause the color mixing light source to generate a perceptual mixture of light having a perceptual color, the perceptual mixture including light emissions from the first and second light sources. System configured to map first color control data to second color control data. Method of forming a perceptual mixture of light having a perceptual color. Method of converting color control data.
    • 一种装置,包括具有第一激光器的混色光源,所述第一激光器被配置为在一个或多个459纳米或更少的发光波长下发光,以及第二激光器,被配置为在470纳米或更多的一个或多个发光波长处发光; 以及具有颜色控制数据输入和颜色控制数据输出的控制器,所述颜色控制数据输出被配置为使得所述混色光源产生具有感知颜色的光的感知混合,所述感知混合物包括来自所述第一和第二光源的光发射。 系统被配置为将第一颜色控制数据映射到第二颜色控制数据。 形成具有感知色的光感知混合物的方法。 转换颜色控制数据的方法
    • 4. 发明申请
    • METHOD AND APPARATUS FOR IMPOSING PREFERENCES ON BROADCAST/MULTICAST SERVICE
    • 用于实现广播/多媒体服务优先权的方法和装置
    • US20110149992A1
    • 2011-06-23
    • US12642099
    • 2009-12-18
    • Ranjan SharmaRamesh Pattabhiraman
    • Ranjan SharmaRamesh Pattabhiraman
    • H04J3/26
    • H04H60/46H04H20/26H04H60/73
    • An apparatus for imposing preferences on broadcast/multicast service for an end-user is described herein. The apparatus includes a first tuner that receives a first set of data transmitted from a currently selected broadcast/multicast station, wherein the first set of data includes time, station identification, and program information; a second tuner that receives a second set of data from a plurality of broadcast/multicast stations, wherein the second set of data includes individually, for each broadcast/multicast station that is available, time, station identification, and program information; a decoder that decodes the first and second sets of data received by the first and second tuners and sends this decoded data to a decision engine for further processing; and a persona database that stores a plurality of user preference profiles. Further, the decision engine is periodically operative to evaluate the currently selected station, and choose a different station if applicable, based on a preference profile selected by the end-user.
    • 本文描述了一种用于对最终用户的广播/多播服务施加偏好的装置。 该设备包括:第一调谐器,其接收从当前选择的广播/多播站发送的第一组数据,其中第一组数据包括时间,站标识和节目信息; 第二调谐器,从多个广播/多播站接收第二组数据,其中所述第二组数据对于可用的每个广播/多播站单独地包括时间,站标识和节目信息; 解码器,其对由第一和第二调谐器接收的第一和第二组数据进行解码,并将该解码的数据发送到用于进一步处理的判定引擎; 以及存储多个用户偏好简档的人物数据库。 此外,决策引擎周期性地操作以评估当前选择的站,并且基于由最终用户选择的偏好简档来选择不同站(如果适用)。
    • 5. 发明申请
    • LIGHT-EMITTING CRYSTAL STRUCTURES
    • 发光晶体结构
    • US20100304516A1
    • 2010-12-02
    • US12852877
    • 2010-08-09
    • Hock Min Ng
    • Hock Min Ng
    • H01L33/04H01L33/00
    • H01L33/24H01L33/0075H01L33/18H01L33/20H01L33/32
    • A method of manufacturing an apparatus, comprising forming a light-emitting crystalline structure. Forming the light-emitting crystalline structure includes forming a first barrier region on a substrate, the first barrier region having one or more inclined surfaces relative to a planar surface of the substrate. Forming the light-emitting crystalline structure also includes forming a second barrier region over the first barrier region, to form a junction at the inclined surfaces, wherein the first barrier region comprises one of an n-type or p-type semiconductor crystal, and the second barrier region comprises the other of the n-type or p-type semiconductor crystal.
    • 一种制造装置的方法,包括形成发光晶体结构。 形成发光晶体结构包括在基板上形成第一势垒区域,第一势垒区域相对于基板的平面表面具有一个或多个倾斜表面。 形成发光晶体结构还包括在第一势垒区域上形成第二势垒区域,以在倾斜表面形成结,其中第一势垒区域包括n型或p型半导体晶体中的一种,并且 第二阻挡区域包括n型或p型半导体晶体中的另一个。
    • 9. 发明申请
    • Audio Noise Cancellation System
    • 音频噪声消除系统
    • US20100054490A1
    • 2010-03-04
    • US12201853
    • 2008-08-29
    • Aref Chowdhury
    • Aref Chowdhury
    • G10K11/16
    • G10K11/178G10K2210/106G10K2210/128G10K2210/3221
    • System including signal processor in communication with sound detector and with sound-emitting device. Sound detector and sound-emitting device are in audio communication with occupant compartment. Signal processor is configured for receiving input signal from sound detector being indicative of background audio noise in occupant compartment, and for causing sound-emitting device to emit output sound that partially cancels background audio noise in manner responsive to received input signal. Another system, including array of sound detectors and array of sound-emitting devices. Method includes providing signal processor in communication with sound detector and sound-emitting device, where sound detector and sound-emitting device are in communication with occupant compartment. Further in method, signal processor is caused to receive input signal from sound detector being indicative of background audio noise in occupant compartment. Additionally in method, signal processor is induced to cause sound-emitting device to emit output sound that partially cancels background audio noise in manner responsive to received input signal.
    • 系统包括与声音检测器和声发射设备通信的信号处理器。 声音探测器和发声装置与乘员隔间进行音频通信。 信号处理器被配置为从声音检测器接收指示乘员舱内的背景音频噪声的输入信号,并且用于使声发射设备以响应于接收的输入信号的方式发出部分地抵消背景音频噪声的输出声音。 另一个系统,包括声音检测器阵列和声发射设备阵列。 方法包括提供与声音检测器和发声装置通信的信号处理器,其中声音检测器和发声装置与乘员隔间通信。 另外,在方法中,使得信号处理器从声音检测器接收指示乘员舱内的背景音频噪声的输入信号。 另外,在方法中,感应信号处理器使声发射装置以响应于接收到的输入信号的方式发出部分地抵消背景音频噪声的输出声音。
    • 10. 发明申请
    • Latency Equalization for Interactive Network Applications
    • 互动网络应用的延迟均衡
    • US20100046527A1
    • 2010-02-25
    • US12194601
    • 2008-08-20
    • Li LiMarina K. ThottanMinlan Yu
    • Li LiMarina K. ThottanMinlan Yu
    • H04L12/28H04L12/56
    • H04L45/00H04L43/0852H04L45/121H04L45/24H04L45/56H04L45/60
    • A network configuration that supports latency-equalization (LEQ) routing by effectively “storing” packets on communication links, rather than at end points. A suitable network configuration is found by (i) identifying a candidate pool of routers through which the participating client terminals and application servers can exchange packets intended for LEQ routing and (ii) analyzing the delay inventory corresponding to the network paths connecting the client terminals and application servers, through those routers. Based on the analysis, M routers from the candidate pool are selected to serve as hub nodes. Each participating client terminal is assigned m of these M hub nodes and, thereafter, directs and receives its packets intended for LEQ routing through one of these m hub nodes.
    • 通过在通信链路而不是端点上有效地“存储”分组来支持延迟均衡(LEQ)路由的网络配置。 通过以下方式找到合适的网络配置:(i)识别参与的客户终端和应用服务器可以通过其交换旨在用于LEQ路由的分组的路由器的候选池,以及(ii)分析与连接客户终端的网络路径相对应的延迟库存,以及 应用服务器,通过这些路由器。 基于分析,选择来自候选池的M个路由器作为集线器节点。 每个参与的客户端被分配到这些M个集线器节点的m个,之后,通过这些m个集线器节点中的一个引导并接收用于LEQ路由的分组。