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    • 1. 发明授权
    • Target detection device, target detection control program, and target detection method
    • 目标检测装置,目标检测控制程序和目标检测方法
    • US08654609B2
    • 2014-02-18
    • US13127667
    • 2009-11-05
    • Yoshiaki TsurugayaToshiaki Kikuchi
    • Yoshiaki TsurugayaToshiaki Kikuchi
    • G01S15/00
    • G01S11/14G01S7/5273G01S7/53G01S7/54G01S15/003G01S15/04G01S15/101G01S15/876
    • A target detection device includes: a sound source which projects a sound pulse; a transducer array disposed in a region for receiving a forward scattered wave from an object in the propagation environment; an addition processing unit which extracts only a signal of the forward scattered wave by applying vector addition processing on a reference signal in a reference sound field received when an obstacle exists in the propagation environment and a mixed signal in a mixed sound field received when the target exists with the obstacle; a phase conjugation determination unit which checks whether a phase conjugacy is established by receiving the signal of the extracted forward scattered wave and employing a passive phase conjugation for determining the reference sound field; and a time reversal processing unit which generates a time reversal signal on condition that the phase conjugation determination unit judges that the phase conjugacy is established.
    • 目标检测装置包括:投射声脉冲的声源; 换能器阵列,设置在用于从传播环境中的物体接收前向散射波的区域中; 一个加法处理单元,其仅当在传播环境中存在障碍物时接收到的参考声场中的参考信号上施加矢量相加处理,并且当目标物体接收到混合声场时的混合信号时,仅提取前向散射波的信号 存在障碍; 相位共轭确定单元,其通过接收所提取的前向散射波的信号和采用用于确定参考声场的被动相位共轭来检查相位共轭度是否被建立; 以及时间反转处理单元,其在相位共轭确定单元判断相位共轭性被建立的条件下产生时间反转信号。
    • 2. 发明申请
    • TARGET DETECTION DEVICE, TARGET DETECTION CONTROL PROGRAM, AND TARGET DETECTION METHOD
    • 目标检测装置,目标检测控制程序和目标检测方法
    • US20120000289A1
    • 2012-01-05
    • US13127667
    • 2009-11-05
    • Yoshiaki TsurugayaToshiaki Kikuchi
    • Yoshiaki TsurugayaToshiaki Kikuchi
    • G01N29/00
    • G01S11/14G01S7/5273G01S7/53G01S7/54G01S15/003G01S15/04G01S15/101G01S15/876
    • A target detection device includes: a sound source which projects a sound pulse; a transducer array disposed in a region for receiving a forward scattered wave from an object in the propagation environment; an addition processing unit which extracts only a signal of the forward scattered wave by applying vector addition processing on a reference signal in a reference sound field received when an obstacle exists in the propagation environment and a mixed signal in a mixed sound field received when the target exists with the obstacle; a phase conjugation determination unit which checks whether a phase conjugacy is established by receiving the signal of the extracted forward scattered wave and employing a passive phase conjugation for determining the reference sound field; and a time reversal processing unit which generates a time reversal signal on condition that the phase conjugation determination unit judges that the phase conjugacy is established.
    • 目标检测装置包括:投射声脉冲的声源; 换能器阵列,设置在用于从传播环境中的物体接收前向散射波的区域中; 一个加法处理单元,其仅当在传播环境中存在障碍物时接收到的参考声场中的参考信号上施加矢量相加处理,并且当目标物体接收到混合声场时的混合信号时,仅提取前向散射波的信号 存在障碍; 相位共轭确定单元,其通过接收所提取的前向散射波的信号和采用用于确定参考声场的被动相位共轭来检查相位共轭度是否被建立; 以及时间反转处理单元,其在相位共轭确定单元判断相位共轭性被建立的条件下产生时间反转信号。
    • 3. 发明申请
    • DETECTION DEVICE, DETECTION PROGRAM AND DETECTION METHOD
    • 检测装置,检测程序和检测方法
    • US20080239873A1
    • 2008-10-02
    • US12055819
    • 2008-03-26
    • YOSHIAKI TSURUGAYAToshiaki Kikuchi
    • YOSHIAKI TSURUGAYAToshiaki Kikuchi
    • G01S15/04
    • G01S7/52004G01S11/14G01S15/876
    • An object is detected without being constrained by the positional relationship between the object and the detecting position. A detection device includes a pseudo sound source and a monitoring unit. The pseudo sound source generates a scanning sound wave of a phase-conjugate wave in the time domain based on an acoustic signal by performing active phase conjugation, and causes the scanning sound wave to converge on the detection object from the above thereof within the propagation space by utilizing a feature that the scanning sound wave converges on the pseudo sound source which is the generation source of the acoustic signal. The monitoring unit extracts a reflected sound wave which is reflected at the detection object from the sound wave in the propagation space by performing passive phase conjugation. The detection object is detected based on presence or absence of the extracted reflected wave.
    • 检测对象不受物体与检测位置之间的位置关系的约束。 检测装置包括伪声源和监视单元。 伪声源通过执行主动相位共轭而基于声学信号在时域中产生相位共轭波的扫描声波,并且使得扫描声波从其上方在传播空间内会聚在检测对象上 通过利用扫描声波会聚在作为声信号的产生源的伪声源上的特征。 监视单元通过执行无源相位共轭,从传播空间中的声波提取在检测对象物上反射的反射声波。 基于提取的反射波的存在或不存在来检测检测对象。
    • 4. 发明申请
    • TARGET SEARCHING DEVICE, TARGET SEARCHING PROGRAM, AND TARGET SEARCHING METHOD
    • 目标搜索设备,目标搜索计划和目标搜索方法
    • US20090323473A1
    • 2009-12-31
    • US12491678
    • 2009-06-25
    • Yoshiaki TsurugayaToshiaki Kikuchi
    • Yoshiaki TsurugayaToshiaki Kikuchi
    • G01S15/00
    • G01S1/72G01S7/5273G01S7/53G01S7/54G01S11/14G01S15/003G01S15/04G01S15/101G01S15/876G01S15/8977
    • The target searching device includes: a sound source which transmits a sound wave into a propagation space; a transducer array placed in an area to receive a forward scattering wave which scatters forward from the target within the propagation space; a subtraction processing device which subtracts a traveling wave directly traveling towards the transducer array from a mixed wave of the forward scattering wave and the traveling wave so as to separate the forward scattering wave; a passive-phase conjugate processing device which performs passive-phase conjugate processing on the forward scattering wave separated by the subtraction processing device so as to generate a passive-phase conjugated signal of the forward scattering wave; an autocorrelation processing device which performs autocorrelation processing on the traveling wave to generate an autocorrelation processed signal of the traveling wave; and a correlation device which judges a similarity between the autocorrelation processed signal and the passive-phase conjugated signal.
    • 目标搜索装置包括:将声波传播到传播空间中的声源; 放置在区域中的换能器阵列,以接收从传播空间内的目标向前散射的前向散射波; 减法处理装置,从前向散射波和行波的混合波中减去直接向换能器阵列行进的行波,以分离前向散射波; 无源相位共轭处理装置,对由减法处理装置分离的前向散射波进行无源相位共轭处理,生成前向散射波的无源相位共轭信号; 对所述行波进行自相关处理以生成所述行波的自相关处理信号的自相关处理装置; 以及相关装置,其判断自相关处理信号和无源相位共轭信号之间的相似度。
    • 5. 发明授权
    • Object probing device, object probing program, and object probing method
    • 物体探测装置,物体探测程序和物体探测方法
    • US08897095B2
    • 2014-11-25
    • US13127884
    • 2009-11-05
    • Yoshiaki TsurugayaToshiaki Kikuchi
    • Yoshiaki TsurugayaToshiaki Kikuchi
    • G01S3/80G01S15/46G01S7/526
    • G01S7/526G01S15/46
    • An object probing device includes: a sound source which projects a sound pulse within a propagation environment; a transducer array disposed in a region for receiving the forward scattered wave scattered forward from the object existing in the propagation environment; an addition processing unit which extracts only a signal of the forward scattered wave by applying vector addition processing on a reference signal in a reference sound field received by the transducer array when the object does not exist in the propagation environment and a mixed signal in a probe sound field received when the object exists; a time reversal processing unit which generates a time-reversed sound pulse by applying time reversal processing on the extracted forward scattered wave; and a phase conjugation determination unit which checks whether or not a phase conjugacy is established in the propagation environment by employing a passive phase conjugation to the time-reversed sound pulse.
    • 物体探测装置包括:在传播环境中投射声音脉冲的声源; 换能器阵列,设置在用于接收从传播环境中存在的物体向前散射的前向散射波的区域; 加法处理单元,当对象在传播环境中不存在时,通过对由换能器阵列接收到的参考声场中的参考信号施加矢量相加处理,并且在探头中混合信号,仅提取前向散射波的信号 对象存在时收到的声场; 时间反转处理单元,对所提取的前向散射波进行时间反演处理,生成时间反转声音脉冲; 以及相位共轭确定单元,其通过对时间反转的声音脉冲采用无源相位共轭来检查在传播环境中是否建立相位共轭。
    • 6. 发明授权
    • Target searching device, target searching program, and target searching method
    • 目标搜索设备,目标搜索程序和目标搜索方法
    • US08649244B2
    • 2014-02-11
    • US12491678
    • 2009-06-25
    • Yoshiaki TsurugayaToshiaki Kikuchi
    • Yoshiaki TsurugayaToshiaki Kikuchi
    • G01S3/80G01S1/72
    • G01S1/72G01S7/5273G01S7/53G01S7/54G01S11/14G01S15/003G01S15/04G01S15/101G01S15/876G01S15/8977
    • The target searching device includes: a sound source which transmits a sound wave into a propagation space; a transducer array placed in an area to receive a forward scattering wave which scatters forward from the target within the propagation space; a subtraction processing device which subtracts a traveling wave directly traveling towards the transducer array from a mixed wave of the forward scattering wave and the traveling wave so as to separate the forward scattering wave; a passive-phase conjugate processing device which performs passive-phase conjugate processing on the forward scattering wave separated by the subtraction processing device so as to generate a passive-phase conjugated signal of the forward scattering wave; an autocorrelation processing device which performs autocorrelation processing on the traveling wave to generate an autocorrelation processed signal of the traveling wave; and a correlation device which judges a similarity between the autocorrelation processed signal and the passive-phase conjugated signal.
    • 目标搜索装置包括:将声波传播到传播空间中的声源; 放置在区域中的换能器阵列,以接收从传播空间内的目标向前散射的前向散射波; 减法处理装置,从前向散射波和行波的混合波中减去直接向换能器阵列行进的行波,以分离前向散射波; 无源相位共轭处理装置,对由减法处理装置分离的前向散射波进行无源相位共轭处理,生成前向散射波的无源相位共轭信号; 对所述行波进行自相关处理以生成所述行波的自相关处理信号的自相关处理装置; 以及相关装置,其判断自相关处理信号和无源相位共轭信号之间的相似度。
    • 7. 发明申请
    • OBJECT PROBING DEVICE, OBJECT PROBING PROGRAM, AND OBJECT PROBING METHOD
    • 对象探测器,对象探测程序和对象探测方法
    • US20110261653A1
    • 2011-10-27
    • US13127884
    • 2009-11-05
    • Yoshiaki TsurugayaToshiaki Kikuchi
    • Yoshiaki TsurugayaToshiaki Kikuchi
    • G01S15/46
    • G01S7/526G01S15/46
    • An object probing device includes: a sound source which projects a sound pulse within a propagation environment; a transducer array disposed in a region for receiving the forward scattered wave scattered forward from the object existing in the propagation environment; an addition processing unit which extracts only a signal of the forward scattered wave by applying vector addition processing on a reference signal in a reference sound field received by the transducer array when the object does not exist in the propagation environment and a mixed signal in a probe sound field received when the object exists; a time reversal processing unit which generates a time-reversed sound pulse by applying time reversal processing on the extracted forward scattered wave; and a phase conjugation determination unit which checks whether or not a phase conjugacy is established in the propagation environment by employing a passive phase conjugation to the time-reversed sound pulse.
    • 物体探测装置包括:在传播环境中投射声音脉冲的声源; 换能器阵列,设置在用于接收从传播环境中存在的物体向前散射的前向散射波的区域; 加法处理单元,当对象在传播环境中不存在时,通过对由换能器阵列接收到的参考声场中的参考信号施加矢量相加处理,并且在探头中混合信号,仅提取前向散射波的信号 对象存在时收到的声场; 时间反转处理单元,对所提取的前向散射波进行时间反演处理,生成时间反转声音脉冲; 以及相位共轭确定单元,其通过对时间反转的声音脉冲采用无源相位共轭来检查在传播环境中是否建立相位共轭。
    • 8. 发明授权
    • Detection device, detection program and detection method
    • 检测装置,检测程序和检测方法
    • US07894303B2
    • 2011-02-22
    • US12055819
    • 2008-03-26
    • Yoshiaki TsurugayaToshiaki Kikuchi
    • Yoshiaki TsurugayaToshiaki Kikuchi
    • G01S15/00
    • G01S7/52004G01S11/14G01S15/876
    • An object is detected without being constrained by the positional relationship between the object and the detecting position. A detection device includes a pseudo sound source and a monitoring unit. The pseudo sound source generates a scanning sound wave of a phase-conjugate wave in the time domain based on an acoustic signal by performing active phase conjugation, and causes the scanning sound wave to converge on the detection object from the above thereof within the propagation space by utilizing a feature that the scanning sound wave converges on the pseudo sound source which is the generation source of the acoustic signal. The monitoring unit extracts a reflected sound wave which is reflected at the detection object from the sound wave in the propagation space by performing passive phase conjugation. The detection object is detected based on presence or absence of the extracted reflected wave.
    • 检测对象不受物体与检测位置之间的位置关系的约束。 检测装置包括伪声源和监视单元。 伪声源通过执行主动相位共轭而基于声学信号在时域中产生相位共轭波的扫描声波,并且使得扫描声波从其上方在传播空间内会聚在检测对象上 通过利用扫描声波会聚在作为声信号的产生源的伪声源上的特征。 监视单元通过执行无源相位共轭,从传播空间中的声波提取在检测对象物上反射的反射声波。 基于提取的反射波的存在或不存在来检测检测对象。
    • 9. 发明授权
    • Inductive element and manufacturing method of the same
    • 感应元件及其制造方法相同
    • US07212095B2
    • 2007-05-01
    • US10773318
    • 2004-02-09
    • Shinichi SatoHitoshi OhkuboToshiaki Kikuchi
    • Shinichi SatoHitoshi OhkuboToshiaki Kikuchi
    • H01F5/00
    • H01F5/00H01F17/0033H01F2017/004
    • Conductor layers 2A and insulating layers 4A are alternately stacked so as to prepare a base material 17. A plurality of grooves 18 having a predetermined width are formed in a surface of the base material 17 in such a manner that these plural grooves 18 are located parallel to each other along a stacking layer direction in order to form a coil inner peripheral portion. Embedding materials 5 are filled into the grooves 18. Surfaces 16 of the base material into which the embedding materials 5 have been filled are flattened by polishing. The conductor layers 2A located adjacent to each other are connected to each other, so that helical coils which constitute inductive elements are constructed. Then, both the front plane and the rear plane of the resultant base material are covered by an insulating layer, which is cut so as to obtain respective chips.
    • 交替层叠导体层2A和绝缘层4A以制备基材17。 为了形成线圈内周部,在基材17的表面上形成多个具有预定宽度的槽18,使得这些多个槽18沿层叠层方向彼此平行地定位。 嵌入材料5被填充到凹槽18中。 嵌入材料5填充到其中的基材的表面16通过抛光而变平。 彼此相邻的导体层2A彼此连接,从而构成构成感应元件的螺旋线圈。 然后,所得基材的前平面和后平面被绝缘层覆盖,绝缘层被切割以获得各自的芯片。