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    • 1. 发明授权
    • Antenna configuration and radar device including same
    • 天线配置和雷达设备包括相同
    • US07151482B2
    • 2006-12-19
    • US10765846
    • 2004-01-29
    • Kazuma NatsumeHiroshi Hazumi
    • Kazuma NatsumeHiroshi Hazumi
    • G01S13/06G01S7/40H01Q21/06G01S13/93H01Q1/32
    • G01S13/343H01Q3/24
    • A radar device (2) includes plural transmission antennas and plural reception antennas. The reception antennas constitute a reception-side antenna portion (20) and are arranged at an interval of d. The transmission antennas constitute a transmission-side antenna portion (18) and are arranged at an interval of d′=d×(n−1). The path length at which the electric wave is reflected from a target is identical between channels A9 and B1, and seventeen kinds of channels (A1 to A8, A9 or B1, B2 to B9) which are different in path length by every fixed distance are achieved. The data of the channels (A1 to A9 and B1 to B9) using different transmission antennas are respectively collected in different measuring cycles, and an error based on the time difference between the measuring cycles is corrected on the basis of a correction value calculated from the data of the channels A9, B1.
    • 雷达装置(2)包括多个发送天线和多个接收天线。 接收天线构成接收侧天线部(20),并以d间隔配置。 发送天线构成发送侧天线部(18),并且以d'= dx(n-1)的间隔配置。 电波从目标反射的路径长度在通道A 9和B 1之间相同,17种通道(A 1至A 8,A 9或B 1,B 2至B 9)不同 实现了每个固定距离的路径长度。 使用不同的发送天线的信道(A 1〜A 9和B 1〜B 9)的数据分别以不同的测量周期收集,并且基于校正周期之间的时间差的误差被校正 根据通道A 9,B 1的数据计算出的值。
    • 2. 发明授权
    • Distance calculating method and system
    • 距离计算方法和系统
    • US07271761B2
    • 2007-09-18
    • US10690843
    • 2003-10-23
    • Kazuma NatsumeHiroshi Hazumi
    • Kazuma NatsumeHiroshi Hazumi
    • G01S13/34G01S13/93
    • G01S13/34G01S13/343G01S13/931G01S2013/9321G01S2013/9325G01S2013/9346
    • In a system, a frequency-modulating unit is configured to frequency-modulate a radar wave signal within a predetermined frequency modulation range from bottom to top so that a frequency of the frequency-modulated radar wave changes in time. The rate of frequency change of the radar wave signal in time is set to F0/Tf. The F0 represents a center frequency in the frequency modulation range. The Tf represents the predetermined constant time. A mixing unit is configured to mix the transmitted frequency-modulated radar wave signal and the reflection signal to obtain a beat signal. The beat signal is based on a frequency difference between a frequency of the transmitted radar wave signal and that of the reflection signal. A sweeping unit is configured to sweep the beat signal within the frequency modulation range from one of the bottom and the top to the other thereof to obtain a frequency component of the beat signal. An obtaining unit is configured to obtain the prediction distance based on a relationship between the frequency component of the beat signal and the prediction distance.
    • 在一个系统中,频率调制单元被配置为在从下到上的预定频率调制范围内对雷达波信号进行频率调制,使得调频雷达波的频率随时间而变化。 雷达波信号在时间上的频率变化率设定为F0 / Tf。 F0表示频率调制范围内的中心频率。 Tf表示预定的恒定时间。 混合单元被配置为混合发射的调频雷达波信号和反射信号以获得拍频信号。 拍频信号基于发射的雷达波信号的频率与反射信号的频率之间的频率差。 扫描单元被配置为在频率调制范围内扫描从底部和顶部之一到另一个的频率信号,以获得拍频信号的频率分量。 获取单元被配置为基于拍子信号的频率分量与预测距离之间的关系来获得预测距离。
    • 4. 发明授权
    • Monopulse radar apparatus
    • 单脉冲雷达装置
    • US06337656B1
    • 2002-01-08
    • US09583534
    • 2000-06-01
    • Kazuma NatsumeHiroshi HazumiHiroaki Kumon
    • Kazuma NatsumeHiroshi HazumiHiroaki Kumon
    • G01S1300
    • G01S13/48G01S13/44G01S13/87
    • A radar apparatus is provided which is capable of discriminating between azimuth angles of two or more targets moving side by side close to each other. The radar apparatus provides antenna beams which partially overlap with each other to define a plurality of monopulse areas and processes input signals produced in each of the monopulse areas to obtain angular direction data. The radar apparatus determines a time-sequential variation in angular direction data in each of the monopulse areas and determines the angular direction data whose variation is within a preselected allowable range as being effective in determining the angular direction of each target correctly.
    • 提供了能够区分彼此靠近并排移动的两个以上的目标的方位角的雷达装置。 该雷达装置提供天线波束,其彼此部分重叠以限定多个单脉冲区域并处理在每个单脉冲区域中产生的输入信号以获得角度方向数据。 雷达装置确定每个单脉冲区域中的角度方向数据的时间顺序变化,并确定其变化在预选容许范围内的角度方向数据有效地确定每个目标的角度方向。
    • 7. 发明申请
    • Radar device
    • 雷达设备
    • US20100073216A1
    • 2010-03-25
    • US12584982
    • 2009-09-15
    • Mai SakamotoKazuma NatsumeYuu WatanabeHideki ShiraiChiharu Yamano
    • Mai SakamotoKazuma NatsumeYuu WatanabeHideki ShiraiChiharu Yamano
    • G01S13/42G01S13/00G01S13/08
    • G01S13/345G01S3/74G01S13/42G01S13/931G01S2013/9375
    • A FMCW-type radar device generates snapshot data from a beat signal that represents a received condition of the radar device every modulation period. Auto-correlation matrices generated by the snapshot data every modulation period are averaged every set of plural periods. The radar device calculates the target azimuth of a target object such as a preceding vehicle based on the averaged auto-correlation matrix based on MUSIC (MUltiple SIgnal Classification) method. This averaging is performed by weighting average based on an amount of mixed noise (or an interference amount) contained in the snapshot data in each modulation period. A weighting coefficient to be applied to the auto-correlation matrix in each modulation period is set to a value corresponding to the amount of mixed noise, namely, the interference amount of this modulation period. The weighting coefficient becomes large when the interference amount is small, and on the other hand, becomes small when it is large.
    • FMCW型雷达装置从表示每个调制周期的雷达装置的接收状态的拍子信号产生快照数据。 每个调制周期由快照数据生成的自相关矩阵在多个周期的集合中取平均值。 雷达装置基于基于MUSIC(多尺度分类)方法的平均自相关矩阵来计算诸如前一车辆的目标对象的目标方位角。 该平均化是通过基于每个调制周期中包含在快照数据中的混合噪声量(或干扰量)的加权平均来执行的。 将在每个调制周期中应用于自相关矩阵的加权系数设置为与混合噪声量即该调制周期的干扰量相对应的值。 当干扰量小时,加权系数变大,另一方面,当它大时变小。
    • 10. 发明授权
    • Apparatus for estimating direction of arrival wave
    • 用于估计到达波方向的装置
    • US07372404B2
    • 2008-05-13
    • US11390866
    • 2006-03-27
    • Hideki ShiraiKazuma Natsume
    • Hideki ShiraiKazuma Natsume
    • G01S5/02
    • G01S3/74G01S3/8006
    • Apparatus and method are disclosed for estimating direction of an arrival wave, such as radio or acoustic waves. A correlation matrix of an arrival wave is computed, and matrices for obtaining eigenvalues and eigenvectors are produced. Column norms of the matrix, which is subject to a Householder transformation, are computed. Whether a maximum value of the column norms is the same as or lower than a predetermined threshold is judged. A Householder transformation of the matrix is performed only if the maximum value of the column norms is determined to be greater than or equal to the threshold, and not when the maximum value of the column norms is less than the threshold. The eigenvectors and the eigenvalues of the correlation matrix are obtained by further implementing the Householder transformation. The number of arrival waves is judged from the number of times the Householder transformation is performed.
    • 公开了用于估计到达波的方向(诸如无线电或声波)的装置和方法。 计算到达波的相关矩阵,并产生用于获得特征值和特征向量的矩阵。 计算矩阵的列规范,这是由Householder转换进行的。 判断列规范的最大值是否等于或低于预定阈值。 仅当列范数的最大值被确定为大于或等于阈值时,而不是当列范数的最大值小于阈值时才执行矩阵的Householder变换。 相关矩阵的特征向量和特征值通过进一步实施Householder变换获得。 到达波数是从众议院转型次数来判断的。