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    • 1. 发明申请
    • Radar
    • 雷达
    • US20060109168A1
    • 2006-05-25
    • US10519642
    • 2003-06-10
    • Motoi NakanishiToru IshiiTetsu Nishimura
    • Motoi NakanishiToru IshiiTetsu Nishimura
    • G01S13/42
    • G01S13/06G01S3/16G01S13/345G01S13/426G01S13/584G01S13/931
    • A radar can detect target azimuths located outside and adjacent to a scanning angular range of a beam determining changes in received signal strength (a signal-strength profile) in the azimuthal direction as a function of a beam azimuth in a predetermined scanning angular range, and estimating the target azimuth causing the signal-strength profile from the signal-strength profile, which is a portion of a convex located adjacent to the outermost angle in the scanning angular range. For example, the target azimuth is estimated by a ratio between the received signal strength at the outermost angle of about 10.0° and the received signal strength at about 9.5°, which is one beam inside the outermost position.
    • 雷达可以检测位于光束的扫描角度范围外并与扫描角度范围相邻的目标方位角,确定方位角方向上的接收信号强度(信号强度分布)的变化,作为预定扫描角度范围内的波束方位角的函数,以及 估计从信号强度分布中引起信号强度分布的目标方位角,该信号强度分布是位于与扫描角度范围内的最外角相邻的凸部的一部分。 例如,目标方位通过在最外角度约10.0°处的接收信号强度与在最外侧位置处的一束之间的约9.5°处的接收信号强度之间的比率来估计。
    • 3. 发明授权
    • Radar
    • 雷达
    • US07034743B2
    • 2006-04-25
    • US10516924
    • 2003-05-22
    • Motoi NakanishiToru IshiiTetsu Nishimura
    • Motoi NakanishiToru IshiiTetsu Nishimura
    • G01S13/34G01S13/93
    • G01S7/354G01S13/345G01S13/42G01S13/584G01S13/931G01S2007/356G01S2013/9353
    • An FM-CW radar detects at least one of the relative distance and the relative speed of a predetermined object based on the frequencies of projection portions observed in the frequency spectrums of beat signals in an ascending-modulation section and a descending-modulation section, where the projection portions are generated by one and the same object. The radar determines the moving speed of a predetermined moving object such as a vehicle or the like having the radar mounted thereon, and the frequency difference between the projection portions observed in the frequency spectrums of the beat signals in the ascending-modulation section and the descending-modulation section is inversely calculated, where the frequency difference corresponds to the stationary object, and a predetermined pair corresponding to the frequency difference is extracted on a priority basis.
    • FM-CW雷达基于在上行调制部分和下行调制部分中的拍频信号的频谱中观察到的投影部分的频率来检测预定对象的相对距离和相对速度中的至少一个,其中 突出部分由同一个物体产生。 雷达确定安装有雷达的车辆等预定移动物体的移动速度,以及上升调制部中的拍频信号的频谱中观察到的投射部之间的频率差, 调制部分被反算,其中频差对应于静止对象,并且基于优先级提取对应于频差的预定对。
    • 5. 发明授权
    • Radar
    • 雷达
    • US06686870B2
    • 2004-02-03
    • US10356476
    • 2003-02-03
    • Tetsu NishimuraMotoi NakanishiToru Ishii
    • Tetsu NishimuraMotoi NakanishiToru Ishii
    • G01S728
    • G01R23/14G01S7/354G01S13/345G01S13/42G01S13/584G01S13/931G01S2007/356
    • A radar device precisely detects a target in short time intervals by detecting a true peak frequency with high accuracy via a calculation which does not require a large amount of computation. A discrete frequency spectrum of a beat signal multiplied by a window function is determined, and values of signal strength at two discrete frequencies which are, respectively, higher and lower than a peak frequency of the discrete frequency spectrum of the beat signal and which are adjacent to the peak frequency. The frequency difference between the discrete peak frequency of the beat signal and the peak frequency of the window function is then determined from the ratio between the values of signal strength at those two discrete frequencies adjacent to the peak frequency. Thus, the true peak frequency of the beat signal is determined with a high frequency resolution.
    • 雷达装置通过不需要大量计算的计算,以高精度检测真正的峰值频率,以短时间间隔精确地检测目标。 确定乘以窗口函数的拍频信号的离散频谱,以及两个离散频率处的信号强度值,分别高于和低于拍频信号的离散频谱的峰值频率并且相邻的频率 到峰值频率。 然后,从与峰值频率相邻的那两个离散频率处的信号强度的值之间的比率确定差拍信号的离散峰值频率与窗口函数的峰值频率之间的频率差。 因此,以高频分辨率确定拍频信号的真峰值频率。
    • 6. 发明授权
    • Radar
    • 雷达
    • US06856278B2
    • 2005-02-15
    • US10334898
    • 2003-01-02
    • Motoi NakanishiToru IshiiTetsu Nishimura
    • Motoi NakanishiToru IshiiTetsu Nishimura
    • B60R21/00G01S7/292G01S13/34G01S13/42G01S13/58G01S13/93G08G1/16G01S13/32
    • G01S13/426G01S13/345G01S13/584G01S13/931
    • A radar performs accurate and appropriate pairing even if peaks of approximately identical signal intensities or even if a plurality of peak groups having identical representative beam bearings exist in the frequency spectrum. First, the peak frequency of a peak which appears in the frequency spectrum is determined for each of an up-modulating interval and a down-modulating interval in predetermined beam bearings, and signal-intensity profiles in the beam bearings are extracted with regard to a plurality of beam portions which are adjacent to the beam bearings. Next, the correlation level between the signal-intensity profiles at the up-modulating interval and the down-modulating interval is determined, and pairing is performed in sequence starting from the profiles having a higher correlation level.
    • 即使在频谱中存在大致相同信号强度的峰值,或者即使在频谱中存在具有相同的代表性波束轴承的多个峰组,雷达也执行准确和适当的配对。 首先,对于预定的波束轴承中的上调制间隔和下调制间隔中的每一个,确定出现在频谱中的峰值的峰值频率,并且关于a轴提取梁轴承中的信号强度分布 与梁轴承相邻的多个梁部分。 接下来,确定在上调制间隔和下调制间隔处的信号强度分布之间的相关电平,并且从具有较高相关电平的分布开始依次执行配对。
    • 8. 发明授权
    • Radar system
    • 雷达系统
    • US06707416B2
    • 2004-03-16
    • US10359720
    • 2003-02-07
    • Toru IshiiTetsu NishimuraMotoi Nakanishi
    • Toru IshiiTetsu NishimuraMotoi Nakanishi
    • G01S728
    • G01S13/931G01S7/003G01S13/345G01S13/42G01S13/584
    • A radar system is capable of transmitting necessary information through a very small amount of data from a radar device to a host device via a bus with a limited bandwidth. A radar sensor generates a beat signal between a transmission signal and a reflected signal from a target. A signal processor determines a spectrum of the beat signal and compresses the data indicating the spectrum. The resultant compressed data is transmitted to the host device via a bus. The host device decompresses the received data thereby reproducing the spectrum data. The host device then detects the target on the basis of the reproduced spectrum data.
    • 雷达系统能够通过具有有限带宽的总线从雷达装置通过非常少量的数据传送必要的信息到主机设备。 雷达传感器在发射信号和来自目标的反射信号之间产生拍频信号。 信号处理器确定拍频信号的频谱并压缩指示频谱的数据。 所得到的压缩数据通过总线传输到主机设备。 主机设备解压接收的数据,从而再现频谱数据。 然后主机设备基于再现的频谱数据检测目标。
    • 9. 发明授权
    • Radar
    • 雷达
    • US07230565B2
    • 2007-06-12
    • US10519642
    • 2003-06-10
    • Motoi NakanishiToru IshiiTetsu Nishimura
    • Motoi NakanishiToru IshiiTetsu Nishimura
    • G01S13/42
    • G01S13/06G01S3/16G01S13/345G01S13/426G01S13/584G01S13/931
    • A radar can detect target azimuths located outside and adjacent to a scanning angular range of a beam by determining changes in received signal strength (a signal-strength profile) in the azimuthal direction as a function of a beam azimuth in a predetermined scanning angular range, and estimating the target azimuth causing the signal-strength profile from the signal-strength profile, which is portion of a convex located adjacent to the outermost angle in the scanning angular range. For example, the target azimuth is estimated by a ratio between the received signal strength at the outermost angle of about 10.0° and the received signal strength at about 9.5°, which is one beam inside the outermost position.
    • 雷达可以通过在方位角方向上确定作为预定扫描角度范围内的波束方位角的函数的接收信号强度(信号强度分布)的变化来检测位于波束的扫描角度范围外部并与波束的扫描角度范围相邻的目标方位角, 并且从信号强度分布估计导致信号强度分布的目标方位角,所述信号强度分布是位于与扫描角度范围内的最外角相邻的凸部的一部分。 例如,目标方位通过在最外角度约10.0°处的接收信号强度与在最外侧位置处的一束之间的约9.5°处的接收信号强度之间的比率来估计。