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    • 1. 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。
    • 2. 发明申请
    • 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
    • US20050093743A1
    • 2005-05-05
    • US10744210
    • 2003-12-22
    • Ung-Hee ParkSoon-Ik JeonSeong-Ho SonJae-Seung Yun
    • Ung-Hee ParkSoon-Ik JeonSeong-Ho SonJae-Seung Yun
    • H01Q3/04H01Q1/32H01Q3/08H01Q3/26H01Q3/34H01Q21/08H04B7/155H01Q3/00
    • 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. Further, the satellite tracking speed performance is improved compared with the two-dimensional mechanically controlled 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。 此外,与二维机械控制天线相比,卫星跟踪速度性能得到改善。
    • 3. 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。
    • 5. 发明授权
    • Method for deciding array spacing of array antenna by using genetic algorithm and array antenna having sofa structure with irregular array spacing
    • 利用具有不规则阵列间距的沙发结构的遗传算法和阵列天线决定阵列天线阵列间距的方法
    • US07502764B2
    • 2009-03-10
    • US11027933
    • 2004-12-30
    • Seong-Ho SonUng-Hee ParkSoon-Ik JeonChang-Joo Kim
    • Seong-Ho SonUng-Hee ParkSoon-Ik JeonChang-Joo Kim
    • G06F7/60G06F15/18G06N3/00G06N3/12H01Q3/24H01Q1/00H01Q15/02
    • 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
    • Sensor signal estimator and motor controller for stabilization of tracking antenna
    • 用于稳定跟踪天线的传感器信号估计器和电机控制器
    • US07888903B2
    • 2011-02-15
    • US12095719
    • 2006-11-09
    • Seong-Ho SonSoon-Young EomYoung-Bae JungJae-Seung YunSoon-Ik Jeon
    • Seong-Ho SonSoon-Young EomYoung-Bae JungJae-Seung YunSoon-Ik Jeon
    • G01S5/02H01Q3/00
    • H01Q1/185H01Q1/27
    • Provided is an apparatus and method for estimating sensor signals to stabilize a posture of a mobile satellite tracking antenna. The apparatus includes: an angular velocity estimating unit for estimating an angular velocity signal by removing an error signal generated from an input angular velocity sensor signal through a first low frequency band filtering operation; and an inclination angle estimating unit for estimating an inclination angle signal by receiving an inclination angle sensor signal, extracting low frequency component of inclination angle signal through performing a second low frequency band filtering operating on the received inclination angle sensor signal, obtaining an inclination angle integrating signal through integrating the estimated angular velocity signal, extracting high frequency component of inclination angle signal through performing a high frequency band filtering operation on the inclination angle integrating signal, and adding the extracted low frequency component and high frequency component of inclination angle signal.
    • 提供了一种用于估计传感器信号以稳定移动卫星跟踪天线的姿势的装置和方法。 该装置包括:角速度估计单元,用于通过去除通过第一低频带滤波操作从输入角速度传感器信号产生的误差信号来估计角速度信号; 以及倾斜角估计单元,用于通过接收倾斜角传感器信号来估计倾斜角信号,通过对接收的倾斜角度传感器信号执行第二低频带滤波来提取倾斜角信号的低频分量,获得倾斜角积分 信号通过对估计的角速度信号进行积分,通过对倾斜角积分信号进行高频带滤波操作,提取倾斜角信号的高频分量,并将提取的低频分量和倾斜角信号的高频分量相加。
    • 9. 发明授权
    • Pedestal apparatus and satellite tracking antenna having the same
    • 具有相同的基座装置和卫星跟踪天线
    • US07663565B2
    • 2010-02-16
    • US12090713
    • 2006-09-25
    • Seong-Ho SonJae-Seung YunYoung-Bae JungSoon-Young EomSoon-Ik Jeon
    • Seong-Ho SonJae-Seung YunYoung-Bae JungSoon-Young EomSoon-Ik Jeon
    • H01Q3/02
    • H01Q3/08H01Q1/125H01Q19/10
    • Provided are a pedestal apparatus and a satellite-tracking antenna having the same. The pedestal apparatus includes: a fixing unit fixed at a moving object; a connecter for forming a first rotating axis vertically to the fixing unit; a first rotation supporter having a bottom fixed at the fixing unit and a Y-shaped top for rotating the tracking antenna around the first rotating axis; a second connecter connected to ends of the Y-shaped top for forming a second rotating axis; a second rotation supporter having both ends connected to the both ends of the second connecter for rotating the tracking antenna around the second rotating axis; a third connecter for forming a third rotating axis at a center of the second rotation supporter; and a supporter connected to the third connecter in a predetermined shape for supporting the tracking antenna, wherein the first, second and third rotating axes are not crossed one another.
    • 提供了一种基座装置和具有该基座装置的卫星跟踪天线。 基座装置包括:固定在移动物体上的固定单元; 连接器,用于垂直于所述定影单元形成第一旋转轴; 具有固定在所述固定单元上的底部的第一旋转支撑件和用于围绕所述第一旋转轴线旋转所述跟踪天线的Y形顶部; 连接到所述Y形顶部的端部以形成第二旋转轴线的第二连接器; 第二旋转支撑件,其两端连接到第二连接器的两端,用于围绕第二旋转轴线旋转跟踪天线; 第三连接器,用于在所述第二旋转支撑件的中心处形成第三旋转轴; 以及以预定形状连接到第三连接器的支撑器,用于支撑跟踪天线,其中第一,第二和第三旋转轴线彼此不相交。