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    • 1. 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。
    • 3. 发明授权
    • Radar device
    • 雷达设备
    • US07907083B2
    • 2011-03-15
    • US12584982
    • 2009-09-15
    • Mai SakamotoKazuma NatsumeYuu WatanabeHideki ShiraiChiharu Yamano
    • Mai SakamotoKazuma NatsumeYuu WatanabeHideki ShiraiChiharu Yamano
    • G01S13/42
    • 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。
    • 5. 发明申请
    • ELECTRONIC SCANNING RADAR APPARATUS
    • 电子扫描雷达设备
    • US20080036645A1
    • 2008-02-14
    • US11676741
    • 2007-02-20
    • Chiharu YamanoKazuma NatsumeYuu WatanabeMai Sakamoto
    • Chiharu YamanoKazuma NatsumeYuu WatanabeMai Sakamoto
    • G01S7/02H01Q3/26
    • G01S7/4021G01S7/023G01S7/352G01S13/931G01S2007/356
    • A sampled beat signal is cut out into two or more short time data in a time direction concerning each antenna component. From a frequency spectrum of the short time data, an interference element frequency of an interference wave is detected. From the interference element frequency of the interference wave, two or more candidates of the frequency before aliasing of the interference wave are produced, and phase correction is executed on each candidate. Digital Beamforming is executed on the corrected frequency so as to extract maximum peaks of the power of an azimuth direction, and the frequency candidate showing the maximum peak power is selected and the arrival azimuth of the interference element is estimated. A filter for suppressing the interference element is applied on the short time data from the estimated arrival azimuth of the interference element so as to suppress the interference element.
    • 在每个天线部件的时间方向上将采样的拍频信号切成两个以上的短时间数据。 根据短时间数据的频谱,检测干扰波的干扰要素频率。 根据干扰波的干扰要素频率,产生干扰波混叠前的频率的两个以上候选,对每个候选进行相位校正。 在校正后的频率上执行数字波束成形,以提取方位方向的功率的最大峰值,并且选择表示最大峰值功率的频率候选,并估计干扰要素的到达方位角。 用于抑制干扰要素的滤波器从干扰要素的预计到达方位施加在短时间数据上,以便抑制干扰要素。
    • 8. 发明授权
    • Electronic scanning radar apparatus
    • 电子扫描雷达装置
    • US07495604B2
    • 2009-02-24
    • US11676741
    • 2007-02-20
    • Chiharu YamanoKazuma NatsumeYuu WatanabeMai Sakamoto
    • Chiharu YamanoKazuma NatsumeYuu WatanabeMai Sakamoto
    • G01S13/58
    • G01S7/4021G01S7/023G01S7/352G01S13/931G01S2007/356
    • A sampled beat signal is cut out into two or more short time data in a time direction concerning each antenna component. From a frequency spectrum of the short time data, an interference element frequency of an interference wave is detected. From the interference element frequency of the interference wave, two or more candidates of the frequency before aliasing of the interference wave are produced, and phase correction is executed on each candidate. Digital Beamforming is executed on the corrected frequency so as to extract maximum peaks of the power of an azimuth direction, and the frequency candidate showing the maximum peak power is selected and the arrival azimuth of the interference element is estimated. A filter for suppressing the interference element is applied on the short time data from the estimated arrival azimuth of the interference element so as to suppress the interference element.
    • 在每个天线部件的时间方向上将采样的拍频信号切成两个以上的短时间数据。 根据短时间数据的频谱,检测干扰波的干扰要素频率。 根据干扰波的干扰要素频率,产生干扰波混叠前的频率的两个以上候选,对每个候选进行相位校正。 在校正后的频率上执行数字波束成形,以提取方位方向的功率的最大峰值,并且选择表示最大峰值功率的频率候选,并且估计干扰要素的到达方位角。 用于抑制干扰要素的滤波器从干扰要素的预计到达方位施加在短时间数据上,以便抑制干扰要素。
    • 9. 发明申请
    • Arrival direction estimation apparatus
    • 到达方向估计装置
    • US20070147482A1
    • 2007-06-28
    • US11645754
    • 2006-12-27
    • Hideki ShiraiChiharu YamanoKazuma NatsumeYasuyuki Miyake
    • Hideki ShiraiChiharu YamanoKazuma NatsumeYasuyuki Miyake
    • H04B1/00H04L27/06
    • H04L27/12G01S3/40G01S3/48G01S3/74G01S3/8006G01S3/8055G01S3/808
    • A technology for providing an arrival direction estimation apparatus which can greatly reduce the calculation amount in spectrum calculation and can perform precise direction estimation without setting short frequency division in spectrum calculation is disclosed. According to the technology, there is provided the arrival direction estimation apparatus including an antenna, a complex digital signal converting means, a real number correlation matrix calculating means, a real number weight matrix calculating means, a spectrum calculating means, and a spectrum peak detecting means, wherein the spectrum calculating means has a real number matrix storing means which stores a real number matrix, a multiplying means which multiplies part of elements of the real number matrix by part of elements of a real number weight matrix, a result storing means which stores the multiplication processing result, a calculating means which performs at least one or more processing of matrix element inversion processing and matrix element sign change processing for the stored processing result, an adding means which adds the processing result by the calculating means, part of the processing result stored in the result storing means, and part of the elements of the real number weight matrix, and a spectrum calculating means which calculates a spectrum with the use of the processing result.
    • 公开了一种用于提供能够大大减少频谱计算中的计算量并且可以执行精确方向估计而不在频谱计算中设置短分频的到达方向估计装置的技术。 根据该技术,提供了包括天线,复数数字信号转换装置,实数相关矩阵计算装置,实数权重矩阵计算装置,频谱计算装置和频谱峰值检测的到达方向估计装置 其中频谱计算装置具有存储实数矩阵的实数矩阵存储装置,将实数矩阵的部分元素乘以实数权重矩阵的元素的一部分的乘法装置,结果存储装置, 存储乘法处理结果的计算装置,对所存储的处理结果进行矩阵元素反演处理和矩阵元素符号变更处理的至少一个以上处理的计算单元,将计算单元的处理结果相加的加法单元, 存储在结果存储装置中的处理结果,以及真实元素的一部分 数量权重矩阵,以及使用处理结果来计算频谱的频谱计算装置。
    • 10. 发明授权
    • Arrival direction estimation apparatus
    • 到达方向估计装置
    • US07843388B2
    • 2010-11-30
    • US11645754
    • 2006-12-27
    • Hideki ShiraiChiharu YamanoKazuma NatsumeYasuyuki Miyake
    • Hideki ShiraiChiharu YamanoKazuma NatsumeYasuyuki Miyake
    • G01S5/04H04B7/216
    • H04L27/12G01S3/40G01S3/48G01S3/74G01S3/8006G01S3/8055G01S3/808
    • A technology for providing an arrival direction estimation apparatus which can greatly reduce the calculation amount in spectrum calculation and can perform precise direction estimation without setting short frequency division in spectrum calculation is disclosed. According to the technology, there is provided the arrival direction estimation apparatus including an antenna, a complex digital signal converting means, a real number correlation matrix calculating means, a real number weight matrix calculating means, a spectrum calculating means, and a spectrum peak detecting means, wherein the spectrum calculating means has a real number matrix storing means which stores a real number matrix, a multiplying means which multiplies part of elements of the real number matrix by part of elements of a real number weight matrix, a result storing means which stores the multiplication processing result, a calculating means which performs at least one or more processing of matrix element inversion processing and matrix element sign change processing for the stored processing result, an adding means which adds the processing result by the calculating means, part of the processing result stored in the result storing means, and part of the elements of the real number weight matrix, and a spectrum calculating means which calculates a spectrum with the use of the processing result.
    • 公开了一种用于提供能够大大减少频谱计算中的计算量并且可以执行精确方向估计而不在频谱计算中设置短分频的到达方向估计装置的技术。 根据该技术,提供了包括天线,复数数字信号转换装置,实数相关矩阵计算装置,实数权重矩阵计算装置,频谱计算装置和频谱峰值检测的到达方向估计装置 其中频谱计算装置具有存储实数矩阵的实数矩阵存储装置,将实数矩阵的部分元素乘以实数权重矩阵的元素的一部分的乘法装置,结果存储装置, 存储乘法处理结果的计算装置,对所存储的处理结果进行矩阵元素反演处理和矩阵元素符号变更处理的至少一个以上处理的计算单元,将计算单元的处理结果相加的加法单元, 存储在结果存储装置中的处理结果,以及真实元素的一部分 数量权重矩阵,以及使用处理结果来计算频谱的频谱计算装置。