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    • 1. 发明授权
    • Phoneme dividing method using multilevel neural network
    • 使用多级神经网络的音素分割方法
    • US5963904A
    • 1999-10-05
    • US746981
    • 1996-11-19
    • Young Jik LeeYoung Joo SuhJae Woo Yang
    • Young Jik LeeYoung Joo SuhJae Woo Yang
    • G06F15/18G10L15/02G10L15/04G10L25/30G10L7/08
    • G10L15/04G10L25/30
    • A phoneme dividing method using a multilevel neural network applied to a phoneme dividing apparatus having a voice input portion, a preprocessor, a multi-layer perceptron (MLP) phoneme dividing portion, and a phoneme border outputting portion includes the steps of: (a) sequentially segmenting and framing voice with digitalized voice samples, extracting characteristic vectors by vocal frames, and extracting an inter-frame characteristic vector of the difference between nearby frames of the characteristic vectors by frames, to thereby normalize the maximum and minimum of the characteristics; (b) storing information on the weight obtained through learning and the standard of the MLP; and (c) reading the weight obtained in the step (b), receiving the characteristic vectors, performing an operation of phoneme border discrimination to generate an output value, discriminating the phoneme border according to the output value, and if the current analyzed frame arrives two frames preceding the final frame of incoming voice, outputting a frame number indicative of the border of phoneme as a final result.
    • 应用于具有语音输入部分,预处理器,多层感知器(MLP)音素分割部分和音素边界输出部分的音素分割装置的多级神经网络的音素分割方法包括以下步骤:(a) 用数字化语音样本顺序分割和构成语音,通过声乐帧提取特征向量,并通过帧提取特征向量的附近帧之间的差异的帧间特征向量,从而归一化特征的最大和最小值; (b)存储通过学习获得的重量和MLP标准的信息; 以及(c)读取在步骤(b)中获得的权重,接收特征矢量,执行音素边界识别的操作以产生输出值,根据输出值识别音素边界,以及当前分析帧到达时 在进入语音的最后帧之前的两帧,输出表示音素边界的帧号作为最终结果。
    • 4. 发明授权
    • Optical network terminal and wavelength division multiplexing based optical network having the same
    • 光网络终端和基于波分复用的光网络具有相同的性能
    • US07539416B2
    • 2009-05-26
    • US11005758
    • 2004-12-06
    • Byoung Whi KimJae Woo YangHyeong Ho Lee
    • Byoung Whi KimJae Woo YangHyeong Ho Lee
    • H04J14/00
    • H04J14/02H04B10/2587H04J14/0226H04J14/0246H04J14/025H04J14/0282
    • Disclosed is a loop-back optical network terminal using a Febry-Perot laser diode as an active type optical modulator in a wavelength division multiplexing based optical network. In addition, a wavelength division multiplexing based optical network having the same is disclosed. The optical network terminal comprises a modulation timing control signal generator receiving a downstream optical signal transmitted from a central office and generating a timing control signal designating a start timing and an end timing for modulating an upstream optical signal to be transmitted from a user to the central office; an upstream data control circuit generating upstream data according to the timing control signal and controlling modulation of the upstream optical signal according to the timing control signal in response to generation of the upstream data; and a modulator receiving the upstream data and directly modulating the upstream data with loop-backing the downstream optical signal to produce the upstream optical signal and then output it to the central office.
    • 公开了一种在基于波分复用的光网络中使用Febry-Perot激光二极管作为有源型光调制器的环回光网络终端。 此外,公开了具有该波分复用的光网络。 光网络终端包括接收从中心局发送的下行光信号的调制定时控制信号发生器,并产生一个定时控制信号,该定时控制信号指定开始定时和结束定时,用于调制从用户发送到中央的上行光信号 办公室; 上游数据控制电路根据定时控制信号产生上行数据,并响应于上行数据的产生,根据定时控制信号控制上行光信号的调制; 以及调制器,接收上游数据,并通过环回下行光信号直接调制上行数据,产生上行光信号,然后将其输出到中心局。
    • 7. 发明授权
    • Wallpaper having thermochromic material layer and manufacturing method thereof
    • 具有热变色材料层的壁纸及其制造方法
    • US07632554B2
    • 2009-12-15
    • US11428766
    • 2006-07-05
    • Wan Soo KimSung Il WooSi Jae KimJong Heon LeeJae Woo Yang
    • Wan Soo KimSung Il WooSi Jae KimJong Heon LeeJae Woo Yang
    • B41M5/26B41M5/28B41M5/34
    • B41M5/28B41M3/18B44F1/10Y10S428/913Y10T428/10Y10T428/24802
    • A wallpaper having a thermochromic material layer and a manufacturing method thereof are disclosed where colors of a wallpaper having a thermochromic material layer change by a surrounding or human body temperature so information concerning surrounding temperature or human body health state is provided, and a user does not feel tedious about colors of a wallpaper. The manufacturing method of a wallpaper having a thermochromic material layer comprises forming a wallpaper substrate; forming at least one plane heater on the wallpaper substrate; forming at least one thermochromic material layer on the wallpaper substrate or the plane heater; forming at least one protection layer on the wallpaper substrate so that the thermochromic material layer and the plane heater are substantially covered; and forming a power supply and control means on the wallpaper substrate for supplying power to the plane heater and controlling temperature.
    • 公开了具有热致变色材料层的壁纸及其制造方法,其中具有热变色材料层的壁纸的颜色由周围或人体温度改变,从而提供关于周围温度或人体健康状态的信息,并且用户不 对墙纸的颜色感到乏味。 具有热变色材料层的壁纸的制造方法包括:形成壁纸基材; 在壁纸基板上形成至少一个平面加热器; 在壁纸基板或平面加热器上形成至少一个热变色材料层; 在所述壁纸基板上形成至少一个保护层,使得所述热致变色材料层和所述平面加热器基本上被覆盖; 以及在所述壁纸基板上形成供电和控制装置,以向所述平面加热器供电并控制温度。
    • 8. 发明申请
    • PASSIVE ENTRY SYSTEM AND METHOD FOR PERFORMING FUNCTION THEREOF
    • 被动进入系统及其功能的执行方法
    • US20090261945A1
    • 2009-10-22
    • US12179215
    • 2008-07-24
    • Jae Pyung KOYoung Tak KimKyoung Moon LeeDong Seok KangAe Kyoung KoJae Woo Yang
    • Jae Pyung KOYoung Tak KimKyoung Moon LeeDong Seok KangAe Kyoung KoJae Woo Yang
    • G07C9/00
    • B60R25/245G07C9/00309G07C2009/00373
    • Provided are a passive entry system for changing a scan method to reduce battery consumption of a smart key and a method for performing a function thereof. In the passive entry system, a smart key ECU periodically transmits a low-frequency scan signal for detecting the smart key. When the smart key being in a slip state is located within a receiving radius of the scan signal, the smart key receives the scan signal and is converted into an active state. Battery consumption of the smart key can be reduced because the smart key normally being in the slip state is converted into the active state when receiving the scan signal from the smart key ECU. Furthermore, the smart key is converted into the active state only within the low-frequency scan signal receiving radius formed near an automobile and requests the smart key ECU to perform a function of the automobile, for example, a function of closing/opening doors. Accordingly, a reliable passive entry system can be achieved.
    • 提供了一种用于改变扫描方法以减少智能钥匙的电池消耗的被动进入系统以及用于执行其功能的方法。 在被动进入系统中,智能钥匙ECU周期性地发送用于检测智能钥匙的低频扫描信号。 当处于滑动状态的智能钥匙位于扫描信号的接收半径内时,智能钥匙接收扫描信号并转换成活动状态。 当从智能钥匙ECU接收到扫描信号时,通常处于滑动状态的智能钥匙被转换成活动状态,可以减少智能钥匙的电池消耗。 此外,智能钥匙仅在形成在汽车附近的低频扫描信号接收半径内被转换为有效状态,并请求智能钥匙ECU执行汽车的功能,例如关闭/打开车门的功能。 因此,可以实现可靠的被动进入系统。
    • 10. 发明授权
    • WDM-PON system based on wavelength-tunable external cavity laser light source
    • 基于波长可调谐外腔激光光源的WDM-PON系统
    • US07471899B2
    • 2008-12-30
    • US10968423
    • 2004-10-18
    • Byoung Whi KimHyeong Ho LeeJae Woo Yang
    • Byoung Whi KimHyeong Ho LeeJae Woo Yang
    • H04J14/00
    • H04J14/0282H04J14/0226H04J14/0246H04J14/025
    • Provided is a WDM-PON system based on a wavelength-tunable ECL. A method of controlling an upstream optical wavelength of an ONT in WDM-PON system, the method comprises: determining upstream optical wavelength information of the ONT corresponding to a downstream optical wavelength predetermined to the ONT newly installed by being connected to a network; in an OLT, loading the determined upstream optical wavelength information onto the downstream optical wavelength assigned to the ONT and transmitting the loaded upstream optical wavelength information to the ONT; in the ONT, generating an upstream optical wavelength based on the upstream optical wavelength information transmitted by being loaded on the downstream optical wavelength from the OLT; and in the ONT, loading upstream data onto the generated upstream optical wavelength and transmitting the loaded upstream data to the OLT.
    • 提供了一种基于波长可调ECL的WDM-PON系统。 一种在WDM-PON系统中控制ONT的上行光波长的方法,该方法包括:通过连接到网络,确定新安装的ONT对应于下行光波长的上行光波长信息; 在OLT中,将确定的上行光波长信息加载到分配给ONT的下行光波长,并将加载的上行光波长信息发送到ONT; 在ONT中,基于通过从OLT向下游光波长加载而发送的上行光波长信息生成上行光波长; 并且在ONT中,将上行数据加载到生成的上行光波长上,并将加载的上行数据传送到OLT。