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    • 3. 发明授权
    • Image reconfiguration method for electro-magnetic tomography
    • 电磁层析成像的图像重构方法
    • US08824763B2
    • 2014-09-02
    • US13333280
    • 2011-12-21
    • Soon-Ik JeonSeong-Ho SonHyuk-Je Kim
    • Soon-Ik JeonSeong-Ho SonHyuk-Je Kim
    • G06K9/00A61B5/05
    • A61B5/0507A61B5/0522
    • Disclosed is an image reconfiguration method for electro-magnetic tomography. The image reconfiguration method for electro-magnetic tomography includes: measuring electric field values of each electro-magnetic wave for normal tissue, benign tumor tissue, and cancer tissue that are body tissue properties to perform signal processing on the electric field values of the electro-magnetic waves; calculating the electric field values of the electro-magnetic waves that are subjected to the signal processing as specific image reconfiguration data values; and comparing with the calculated specific image reconfiguration data value and applying to a nonlinear image transform function to convert into amplified image output data value, thereby outputting an image based on the image output data value, wherein the nonlinear image transform function is an exponential function or log function based nonlinear image transform function that selectively amplifies only a difference in the specific image reconfiguration data values between the body tissues.
    • 公开了一种用于电磁断层摄影的图像重新配置方法。 用于电磁断层摄影的图像重构方法包括:测量作为身体组织性质的正常组织,良性肿瘤组织和癌组织的每个电磁波的电场值,以对电 - 磁波; 计算经受信号处理的电磁波的电场值作为特定图像重配置数据值; 并与计算出的特定图像重配置数据值进行比较,并应用于非线性图像变换函数,将其转换为放大图像输出数据值,从而基于图像输出数据值输出图像,其中非线性图像变换函数是指数函数, 基于对数函数的非线性图像变换函数,其仅选择性地放大身体组织之间的特定图像重新配置数据值的差异。
    • 4. 发明授权
    • Electro-magnetic tomography using modulated signal
    • 电磁层析成像使用调制信号
    • US08841899B2
    • 2014-09-23
    • US13333176
    • 2011-12-21
    • Soon-Ik JeonHyuk-Je KimSeong-Ho Son
    • Soon-Ik JeonHyuk-Je KimSeong-Ho Son
    • G01R25/00G01V3/12
    • G01V3/12
    • Disclosed is an electro-magnetic tomography including: a modulator configured to modulate a generated transmit reference signal using a pseudo-noise signal; a transmitter configured to transmit the signal modulated by the modulator; a receiver configured to receive a signal transmitted from a transmitter; an amplitude detector configured to compare an amplitude magnitude between the signal received by the receiver and the transmit reference signal to measure a received amplitude; and a demodulator configured to demodulate the signal received by the receiver using the pseudo-noise signal to generate a cyclic signal, compare a phase between the transmit reference signal and the cyclic signal to measure the phase of the cyclic signal, and determine the phase of the received signal based on the phase of the measured cyclic signal.
    • 公开了一种电磁断层摄影,包括:调制器,被配置为使用伪噪声信号来调制所生成的发射参考信号; 发送器,被配置为发送由所述调制器调制的信号; 接收器,被配置为接收从发送器发送的信号; 振幅检测器,被配置为比较由接收机接收的信号与发射参考信号之间的幅度幅度,以测量接收到的振幅; 以及解调器,被配置为使用所述伪噪声信号来解调由所述接收机接收的信号以产生循环信号,比较所述发射参考信号和所述循环信号之间的相位,以测量所述循环信号的相位,并且确定所述循环信号的相位 基于所测量的循环信号的相位的接收信号。
    • 6. 发明申请
    • METHOD FOR DECIDING ARRAY SPACING OF ARRAY ANTENNA BY USING GENETIC ALGORITHM AND ARRAY ANTENNA HAVING SOFA STRUCTURE WITH IRREGULAR ARRAY SPACING
    • 使用遗传算法确定阵列天线的阵列间隔的方法和具有非正常阵列间隔的阵列天线阵列的方法
    • US20090012768A1
    • 2009-01-08
    • US11027933
    • 2004-12-30
    • Seong-Ho SonUng-Hee ParkSoon-Ik JeonChang-Joo Kim
    • Seong-Ho SonUng-Hee ParkSoon-Ik JeonChang-Joo Kim
    • G06F7/60
    • H01Q3/30
    • A method for determining an array space of an array antenna by using a genetic algorithm and an array antenna having a soft structure with irregular array spacing are disclosed. The array antenna having a sofa structure with irregular array spacing, includes: a plurality of radiation elements having an inclined angle based on a horizontal plane and arranged with irregular array spacing for radiating and receiving an radio wave; a plurality of phase shifters for amplifying radiation signals radiated from the plurality of radiation elements and receiving signals received from the plurality of radiation elements, and controlling phases of the radiation signals and the receiving signals; and a radio wave signal coupler for dividing a transmitting signal to the radiation signals, transferring the divided radiation signals to the plurality of phase shifters and coupling the receiving signals from the plurality of phase shifters.
    • 公开了一种使用遗传算法确定阵列天线的阵列空间的方法和具有不规则阵列间隔的软结构的阵列天线。 具有不规则阵列间隔的沙发结构的阵列天线包括:多个辐射元件,其具有基于水平面的倾斜角度,并且布置成具有用于辐射和接收无线电波的不规则阵列间隔; 多个移相器,用于放大从多个辐射元件辐射的辐射信号,并接收从多个辐射元件接收的信号,以及控制辐射信号和接收信号的相位; 以及无线电波信号耦合器,用于将发射信号分配到辐射信号,将分割的辐射信号传送到多个移相器并耦合来自多个移相器的接收信号。
    • 7. 发明申请
    • Low Profile Mobile Tri-Band Antenna System
    • 低调移动三频天线系统
    • US20080298298A1
    • 2008-12-04
    • US12094354
    • 2005-11-10
    • Soon-Young EomYoung-Bae JungSeong-Ho SonJae-Seung YunSoon-Ik Jeon
    • Soon-Young EomYoung-Bae JungSeong-Ho SonJae-Seung YunSoon-Ik Jeon
    • H04B7/185
    • H01Q3/04H01Q1/3275H01Q5/55H01Q19/19H01Q21/28H01Q25/007
    • Provided is a mobile tri-band antenna system having low profile. The antenna system includes a tri-band feeding unit for dividing a satellite broadcasting signal by a signal channel in an azimuth angle and an elevation angle, and transmitting/receiving the satellite communication signal through distinguishing the satellite communication signal; a beam shaping unit for dividing the satellite broadcasting signals into a first channel signal and a second channel signal, combined power thereof through channel switching; an antenna controlling unit for driving an antenna system in an azimuth and elevation angle to direct the satellite according to the power combined second channel signal from the beam shaping unit; a first triplexer unit for outputting the power combined first channel signal to a rotary joint unit; a second triplexer unit for converting the first channel signal inputted to a downlink frequency and providing the converted first channel signal to the indoor apparatus.
    • 提供了一种具有低轮廓的移动三频天线系统。 天线系统包括三频馈送单元,用于通过方位角和仰角的信号信道分割卫星广播信号,以及通过区分卫星通信信号来发送/接收卫星通信信号; 波束整形单元,用于通过信道切换将卫星广播信号划分为第一信道信号和第二信道信号,其组合功率; 天线控制单元,用于以方位和仰角驱动天线系统,以根据来自波束整形单元的功率组合的第二信道信号引导卫星; 第一三工器单元,用于将功率组合的第一通道信号输出到旋转接头单元; 第二三工器单元,用于转换输入到下行链路频率的第一信道信号,并将转换的第一信道信号提供给室内装置。
    • 8. 发明授权
    • Antenna system for satellite communication and method for tracking satellite signal using the same
    • 用于卫星通信的天线系统和用于跟踪卫星信号的方法
    • US06989787B2
    • 2006-01-24
    • US10744210
    • 2003-12-22
    • Ung-Hee ParkSoon-Ik JeonSeong-Ho SonJae-Seung Yun
    • Ung-Hee ParkSoon-Ik JeonSeong-Ho SonJae-Seung Yun
    • H01Q3/00
    • H01Q1/3275H01Q3/08H01Q3/26
    • Provided is an antenna system for satellite communication and a method for tracking satellite signals using the same, in which moving vehicles or vessels can perform a satellite multimedia communication. The method for tracking a satellite signal using the antenna system includes the steps of: a) setting a satellite signal reception environment by performing an electronic tracking in the elevation direction through an electronic beam steering control and performing a mechanical tracking for driving a rotating element in an azimuth direction; and b) stopping a drive of the rotating element in the azimuth direction, and setting a satellite signal transmission environment by using the satellite signal reception environment. According to the present invention, since both one-dimensional phase array control of the elevation and azimuth and one-dimensional mechanical control are used, it is possible to provide the economical and effective system compared with two-dimensional phase array antenna.
    • 提供了一种用于卫星通信的天线系统和用于跟踪使用其的卫星信号的方法,其中移动的车辆或船只可以执行卫星多媒体通信。 使用天线系统跟踪卫星信号的方法包括以下步骤:a)通过电子束转向控制执行在仰角方向上的电子跟踪并执行用于驱动旋转元件的机械跟踪来设置卫星信号接收环境 方位方向 以及b)在所述方位角方向停止所述旋转元件的驱动,并且通过使用所述卫星信号接收环境来设定卫星信号发送环境。 根据本发明,由于使用一维相位阵列的高程和方位角和一维机械控制,因此与二维相位阵列天线相比,可以提供经济有效的系统。
    • 9. 发明授权
    • Antenna system for tracking satellite
    • 用于跟踪卫星的天线系统
    • US08120541B2
    • 2012-02-21
    • US12096786
    • 2006-12-11
    • Young-Bae JungSoon-Young EomJae-Seung YunSeong-Ho SonSoon-Ik JeonChang-Joo Kim
    • Young-Bae JungSoon-Young EomJae-Seung YunSeong-Ho SonSoon-Ik JeonChang-Joo Kim
    • H01Q3/00
    • H01Q3/08H01Q1/1257H01Q1/288H01Q19/10
    • Provided is an antenna system for tracking a satellite which includes a fixed body and a rotating body. The antenna system includes a transmitting/receiving unit having a transmitting channel and a receiving channel for signal power, a driving unit for enabling mechanical motion of the rotating body for satellite tracking, and a control unit for monitoring and controlling the operation of the driving unit. Accordingly, the various kinds of the components of the antenna system mounted and operated on the movable body can be minimized and the output of the transmitted signal required in the antenna system can be simply replaced, thereby simplifying the configuration of the system and reducing the production cost of the system. In addition, the STR having the tracking signal processing function in the digital mode as well as the general analog mode is mounted on the antenna system, thereby improving accuracy of satellite tracking. Moreover, the posture of the antenna system can be stably maintained regardless of the motion of the movable body in the moving environment by using the driving unit and the control unit which are designed for stably controlling the elevation, azimuth and antenna rotating angle, thereby improving communication performance that is the intrinsic object of the antenna system.
    • 提供了一种用于跟踪包括固定体和旋转体的卫星的天线系统。 天线系统包括具有发射信道和用于信号功率的接收信道的发射/接收单元,用于使得用于卫星跟踪的旋转体的机械运动的驱动单元和用于监视和控制驱动单元的操作的控制单元 。 因此,可以将在移动体上安装和操作的天线系统的各种部件最小化,并且可以简单地更换天线系统所需的发射信号的输出,从而简化了系统的结构并降低了生产 系统成本。 此外,具有数字模式下的跟踪信号处理功能的STR和通用模拟模式安装在天线系统上,从而提高了卫星跟踪的准确性。 此外,通过使用设计用于稳定地控制仰角,方位角和天线旋转角的驱动单元和控制单元,移动体在移动环境中的运动如何,可以稳定地保持天线系统的姿态,从而改善 通信性能是天线系统的内在对象。