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    • 1. 发明公开
    • 위성 항법 시스템에서 신호 획득 장치 및 방법
    • 用于在全球导航卫星系统中接收信号的装置和方法
    • KR1020110018216A
    • 2011-02-23
    • KR1020090075901
    • 2009-08-17
    • 한국전자통신연구원
    • 주인원김재현최승현신천식이상욱김재훈
    • G01S5/14G01S3/46
    • G01S5/14G01S3/46G01S11/00G01S11/02
    • PURPOSE: Signal acquiring apparatus and method in a global positioning system are provided to obtain satellite signals without an additional hardware by detecting the identifier of a satellite and calculating a code phase and Doppler. CONSTITUTION: A signal acquiring apparatus in a global positioning system includes a first calculating part(420) and a second calculating part(430). The first calculating part detects the identifier of a satellite from a signal from the satellite. A code phase and Doppler are calculated, and a time required for calculation is measured. A second calculating part corrects the code phase and the Doppler using the carrier frequency and the code frequency of the satellite and the calculated values of the first calculating part.
    • 目的:提供全球定位系统中的信号采集装置和方法,通过检测卫星的标识符和计算码相位和多普勒来获得卫星信号,无需额外的硬件。 构成:全球定位系统中的信号获取装置包括第一计算部分(420)和第二计算部分(430)。 第一计算部分从卫星的信号中检测卫星的标识符。 计算码相位和多普勒频率,测量计算所需的时间。 第二计算部分使用载波频率和卫星的码频率和第一计算部分的计算值来校正码相位和多普勒。
    • 2. 发明授权
    • 역호환 모드를 지원하는 고속 디지털 송수신 장치 및 방법
    • 用于支持后向兼容模式的高速数字收发器及其发送/接收方法
    • KR100887764B1
    • 2009-03-12
    • KR1020070109009
    • 2007-10-29
    • 한국전자통신연구원
    • 최승현신천식이상욱김재훈
    • H04L27/18H04L27/20
    • H04L27/20H04L1/0042H04L25/03834
    • A high speed digital transceiver and a transmitting and receiving method thereof are provided to increase a transmission channel capacity by using high order hierarchical modulation method. A high speed digital transmission device includes a header insertion unit(130), a hierarchical modulation mapping unit(140), and a transmission unit(170). A header insertion unit inserts the header into a first stream. The hierarchical modulation mapping unit modulates a first stream and a second stream hierarchically and generates the transmission stream. The transmission stream includes an I channel signal and a Q channel signal. The transmission unit transmits the transmission stream. The high order hierarchical modulation method includes a non-uniform 16 APSK(Amplitude Phase Shift Keying) method.
    • 提供高速数字收发器及其发送和接收方法,以通过使用高阶分层调制方法来增加传输信道容量。 高速数字传输装置包括标题插入单元(130),分层调制映射单元(140)和传输单元(170)。 报头插入单元将报头插入第一个流。 分层调制映射单元分层调制第一流和第二流,并生成传输流。 传输流包括I信道信号和Q信道信号。 发送单元发送发送流。 高阶分层调制方法包括非均匀16 APSK(幅相移键控)方法。
    • 3. 发明公开
    • 디지털 방송 송수신장치 및 송수신방법
    • 数字广播传输/接收的装置和方法
    • KR1020080052205A
    • 2008-06-11
    • KR1020070049956
    • 2007-05-22
    • 한국전자통신연구원
    • 이인기김태훈최승현장대익
    • H04N21/236H04N7/015H04L27/34
    • H04N19/37H03M13/255H04H2201/11H04L27/2273H04N21/4382
    • A digital broadcasting transmitting and receiving apparatus and a transmitting and receiving method therefor are provided to offer an inverse compatible function on the basis of a current system, improve transmission quality or increase transmission capacity. A first encoding unit(300) performs the first encoding of the first digital broadcasting data. A second encoding unit(310) performs the second encoding of the second digital broadcasting data. A hierarchical mapping unit(320) sets the first encoded signal as high order, sets the second encoded signal as low order, and maps the set signals to an IQ signal. A modulation unit(330) performs the orthogonal modulation of the hierarchical mapped IQ signal by a high order modulation type.
    • 提供了一种数字广播发送和接收装置及其发送和接收方法,用于基于当前系统提供逆兼容功能,提高传输质​​量或增加传输容量。 第一编码单元(300)执行第一数字广播数据的第一编码。 第二编码单元(310)执行第二数字广播数据的第二编码。 分层映射单元(320)将第一编码信号设置为高阶,将第二编码信号设置为低阶,并将设置的信号映射到IQ信号。 调制单元(330)通过高阶调制类型执行分层映射IQ信号的正交调制。
    • 4. 发明公开
    • 위성항법시스템 수신기의 비동기 누적 장치 및 방법
    • 全球导航卫星系统接收机非均匀整合的装置和方法
    • KR1020120051854A
    • 2012-05-23
    • KR1020100113170
    • 2010-11-15
    • 한국전자통신연구원
    • 최승현주인원이상욱
    • G01S19/35
    • PURPOSE: An apparatus and a method for non-coherent integration in a receiver of a global navigation satellite system are provided to perform capable of performing non-coherent integration and coherent integration in real time by considering code phase change according to the influence of a signal acquisition time and a doppler. CONSTITUTION: An apparatus for non-coherent integration in a receiver of a global navigation satellite system comprises a signal acquisition unit(110), a storing unit(120), a signal acquisition time measuring unit(130), a code phase compensating unit(140), and non-coherent integration unit(150). The signal acquisition unit performs a signal acquisition algorithm and obtains a signal acquisition result value of K and a signal acquisition result value of K+1. The storing unit stores the signal acquisition result value of the K and the signal acquisition result value of the K+1 in memory. The signal acquisition time measuring unit measures signal acquisition time necessary for obtaining the saved the signal acquisition result value of the K. The code phase compensating unit calculates the code phase shift amount of the signal acquisition result value of the K based on the measured signal acquisition time. The code phase compensating unit compensates for the signal acquisition result value of the K as much as the code phase shift amount. The non-coherent integration unit performs non-coherent integration the compensated signal acquisition result value of the K with the signal acquisition result value of the K+1.
    • 目的:提供一种用于在全球导航卫星系统的接收机中进行非相干整合的装置和方法,以通过考虑根据信号的影响的码相位变化来执行能够实时执行非相干积分和相干积分 采集时间和多普勒。 构成:用于在全球导航卫星系统的接收机中非相干集成的装置包括信号获取单元(110),存储单元(120),信号采集时间测量单元(130),码相位补偿单元 140)和非相干整合单元(150)。 信号采集单元执行信号采集算法,获得K的信号采集结果值和K + 1的信号采集结果值。 存储单元将K的信号获取结果值和K + 1的信号获取结果值存储在存储器中。 信号获取时间测量单元测量获得K的信号获取结果值所需的信号获取时间。码相位补偿单元基于测量的信号采集计算K的信号获取结果值的码相位量 时间。 代码相位补偿单元补偿K的信号获取结果值与代码相移量一样多。 非相干积分单元用K + 1的信号采集结果值对K的补偿信号采集结果值进行非相干积分。
    • 6. 发明公开
    • 주변 항법 정보를 이용하는 항법 장치 및 방법
    • 使用相邻导航信息的装置和导航方法
    • KR1020110068129A
    • 2011-06-22
    • KR1020090124972
    • 2009-12-15
    • 한국전자통신연구원
    • 주인원최승현김재현신천식이상욱김재훈
    • G01C21/28G01C21/24G01C21/04
    • PURPOSE: A navigation system using neighboring navigation information and a method thereof are provided to improve TTFF(Time To First Fix) performance, the time required for calculating the current position from the power turned on. CONSTITUTION: A navigation system using neighboring navigation information comprises: a short-distance wireless communication module(350) receiving neighboring navigation information from a navigation system located on the circumference; a navigation module(310) obtaining navigation signals from a navigation satellite by utilizing the received neighboring navigation information, and processing the obtained navigation signals, thereby calculating the own position; a mobile communication module(330) receiving the mobile communication time information from a base station(200); and a code phase synchronous signal generation module(320) calculating code phase synchronous signals on the basis of the mobile communication time information and the measuring time of a measuring data, received from the neighboring navigation system, and transferring to the navigation module, wherein the navigation module obtains the navigation signals on the basis of the code phase synchronous signals and processes into the obtained navigation signals to calculate the down position.
    • 目的:提供使用相邻导航信息的导航系统及其方法,以改善TTFF(Time to First Fix)时间性能,即从打开的电源计算当前位置所需的时间。 构成:使用相邻导航信息的导航系统包括:短距离无线通信模块(350),其从位于所述圆周的导航系统接收相邻的导航信息; 导航模块(310),通过利用所接收的相邻导航信息从导航卫星获取导航信号,并处理所获得的导航信号,由此计算其自身位置; 从基站(200)接收移动通信时间信息的移动通信模块(330); 以及代码相位同步信号生成模块,根据来自相邻导航系统的移动通信时间信息和测量数据的测量时间,计算码相位同步信号,并传送给导航模块,其中, 导航模块基于代码相位同步信号获取导航信号,并将其处理成所获得的导航信号,以计算下降位置。
    • 7. 发明公开
    • 신호 획득 장치와 방법 및 신호 획득 장치의 파라미터 설정 방법
    • 信号检测装置及方法及信号检测装置的参数设定方法
    • KR1020110068128A
    • 2011-06-22
    • KR1020090124971
    • 2009-12-15
    • 한국전자통신연구원
    • 최승현주인원신천식김재현손승호이상욱김재훈
    • G01S19/13G01S19/30
    • PURPOSE: An apparatus and a method for acquiring signals and a method for setting the parameter of the apparatus are provided to reduce the processing amount of a correlation operation by controlling the frequency resolution of a signal acquired from a satellite navigation receiver. CONSTITUTION: A sampling module(110) samples a signal, received from a satellite, and a pre-set PRN code according to pre-set signal acquiring frequency. A correlation operator(120) implements a correlation operation with respect to the signal and the PRN code. A Fourier transformer(140) implements a Fourier transformation operation with respect to the frequency resolution of the correlation operated result according to a pre-set Fourier transformation point. A peak detector(170) detects the peak of an energy value based on the Fourier transformed result.
    • 目的:提供用于获取信号的装置和方法以及用于设置装置的参数的方法,以通过控制从卫星导航接收机获取的信号的频率分辨率来减少相关操作的处理量。 构成:采样模块(110)根据预先设定的信号获取频率对从卫星接收的信号和预设PRN码进行采样。 相关运算符(120)对信号和PRN码进行相关运算。 傅里叶变换器(140)根据预设的傅立叶变换点对相关运算结果的频率分辨率进行傅立叶变换运算。 峰值检测器(170)基于傅里叶变换结果检测能量值的峰值。