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    • 11. 发明申请
    • RADAR DEVICE
    • 雷达设备
    • US20130135140A1
    • 2013-05-30
    • US13814712
    • 2011-08-16
    • Takaaki KishigamiYoichi NakagawaHirohito Mukai
    • Takaaki KishigamiYoichi NakagawaHirohito Mukai
    • G01S13/28
    • G01S13/284G01S7/282G01S13/288G01S13/582G01S13/931G01S2007/2886
    • A high-frequency transmission signal is transmitted from a transmission antenna with a predetermined transmission period, and a signal of a reflected wave reflected from a target is received by a reception antenna. A code generator generates a first code sequence and second code sequence that constitute a pair of complementary codes. A first modulator modulates the first code sequence to generate a first transmission signal. A second modulator modulates the second code sequence to generate a second transmission signal. A quadrature modulator performs quadrature modulation by using the generated first and second transmission signals. The high-frequency transmission signal is generated from a signal that is quadrature modulated, and transmitted from the transmission antenna.
    • 从发送天线以预定的发送期间发送高频发送信号,由接收天线接收从目标反射的反射波的信号。 代码生成器生成构成一对补码的第一代码序列和第二代码序列。 第一调制器调制第一代码序列以产生第一传输信号。 第二调制器调制第二代码序列以产生第二传输信号。 正交调制器通过使用所产生的第一和第二传输信号来执行正交调制。 高频传输信号是从正交调制信号产生的,并从发射天线发射。
    • 12. 发明授权
    • Radar device
    • 雷达设备
    • US09239378B2
    • 2016-01-19
    • US13824585
    • 2011-09-29
    • Takaaki KishigamiYoichi NakagawaHirohito Mukai
    • Takaaki KishigamiYoichi NakagawaHirohito Mukai
    • G01S13/08G01S13/28G01S7/02G01S13/22G01S13/91
    • G01S13/284G01S7/023G01S13/222G01S13/288G01S13/91
    • A radar device is provided, which includes a first sector radar and a second sector radar, each including a code generator that generates two code sequences, a multiplier that multiplies the two code sequences by a coefficient sequence, wherein the two coefficient sequences of the first and second sector radars, respectively, are orthogonal to each other, a transmission signal generator that modulates the orthogonalized two code sequences, and an RF transmitter that transmits the modulated signal including the two orthogonalized two code sequences. At least one of the two orthogonal coefficient sequences for the first and second sector radars, respectively, includes one or more negative coefficients. The two orthogonal coefficient sequences include coefficients, which are identical to each other, in a first transmission cycle, and include coefficients, which are different from each other, in a second transmission cycle different from the first transmission cycle.
    • 提供了一种雷达装置,其包括第一扇区雷达和第二扇区雷达,每个雷达包括生成两个码序列的码发生器,乘以乘以两个码序列的系数序列,其中第一 和第二扇区雷达彼此正交,调制正交化的两个码序列的发送信号发生器和发送包括两个正交化的两个码序列的调制信号的RF发射机。 第一和第二扇区雷达的两个正交系数序列中的至少一个分别包括一个或多个负系数。 两个正交系数序列包括在第一传输周期中彼此​​相同的系数,并且在与第一传输周期不同的第二传输周期中包括彼此不同的系数。
    • 14. 发明授权
    • Radar apparatus
    • 雷达装置
    • US09194939B2
    • 2015-11-24
    • US13812124
    • 2011-06-03
    • Hirohito MukaiTakaaki KishigamiYoichi Nakagawa
    • Hirohito MukaiTakaaki KishigamiYoichi Nakagawa
    • G01S13/42G01S7/34G01S7/28G01S13/02G01S7/292
    • G01S7/34G01S7/28G01S7/2922G01S13/0209G01S13/42
    • A pulse signal is produced in a pulse generating section, and repetitively transmitted from an antenna at constant time intervals. A reception signal, received through an antenna and including a reflective wave from an object, is amplified and gain-adjusted. Thereafter, a distance detecting section detects a reception pulse of the reflected wave, and calculates the distance to the object. The variable attenuator attenuates the reception signal by a gain adjusted in accordance with a gain control signal. The gain of the variable attenuator is controlled so as to be maximum immediately after the pulse signal is transmitted, and to be reduced with elapse of time. Based on a gain adjustment timing signal, a gain adjustment timing when the attenuation amount is changed is made different for each transmission of the pulse signal.
    • 在脉冲发生部产生脉冲信号,从天线以恒定的时间间隔反复发送。 通过天线接收并包括来自对象的反射波的接收信号被放大和增益调整。 此后,距离检测部分检测反射波的接收脉冲,并计算到物体的距离。 可变衰减器通过根据增益控制信号调节的增益来衰减接收信号。 可变衰减器的增益被控制为在脉冲信号传输之后立即最大,并且随着时间的流逝而减小。 基于增益调整定时信号,对于脉冲信号的每次发送,使衰减量改变时的增益调整定时不同。
    • 15. 发明授权
    • Radar device
    • 雷达设备
    • US09182478B2
    • 2015-11-10
    • US13818194
    • 2011-09-12
    • Hirohito MukaiTakaaki KishigamiYoichi Nakagawa
    • Hirohito MukaiTakaaki KishigamiYoichi Nakagawa
    • G01S13/10G01S7/292G01S7/282G01S7/285G01S13/00
    • G01S13/103G01S7/282G01S7/285G01S13/106
    • A radar device includes a signal generator that generates an intermittent signal having a prescribed signal width and signal interval, a transmission signal position adjuster that outputs a transmission signal while adjusting positions of the intermittent signal on the time axis, an RF transmitter that transmits the transmission signal, an RF receiver that receives a reception signal including reflection waves reflected from an object in a measurement subject space, an AD converter that converts the reception signal into a digital signal, and an object detector that detects the object based on the reception signal. The transmission signal position adjuster outputs a transmission signal in which positions of respective signal units of the intermittent signal on the time axis are adjusted in units of a time adjustment amount that is shorter than a sampling interval of the AD converter.
    • 雷达装置包括产生具有规定的信号宽度和信号间隔的间歇信号的信号发生器,在调整时间轴上的间歇信号的位置的同时输出发送信号的发送信号位置调整器,发送发送的RF发送器 信号,RF接收器,其接收包括从测量对象空间中的对象反射的反射波的接收信号,将接收信号转换为数字信号的AD转换器,以及基于接收信号检测对象的对象检测器。 发送信号位置调整器输出以与AD转换器的采样间隔相比较的时间调整量为单位来调整时间轴上的间歇信号的各信号单元的位置的发送信号。
    • 18. 发明申请
    • RADAR DEVICE
    • 雷达设备
    • US20130176166A1
    • 2013-07-11
    • US13824585
    • 2011-09-29
    • Takaaki KishigamiYoichi NakagawaHirohito Mukai
    • Takaaki KishigamiYoichi NakagawaHirohito Mukai
    • G01S13/28
    • G01S13/284G01S7/023G01S13/222G01S13/288G01S13/91
    • A first sector radar generates signals which are obtained by modulating a first code sequence at a first transmission cycle, obtained by modulating a second code sequence at a second transmission cycle, obtained by modulating the first code sequence at a third transmission cycle, and obtained by modulating the second code sequence at a fourth transmission cycle respectively. A second sector radar generates signals which are obtained by modulating the second code sequence at the first transmission cycle, obtained by modulating, at the second transmission cycle, a third code sequence having the opposite polarity to the first code sequence, obtained by modulating, at the third transmission cycle, a fourth code sequence having the opposite polarity to the second code sequence, and obtained by modulating the first code sequence at the fourth transmission cycle respectively.
    • 第一扇区雷达产生通过以第一传输周期调制第一码序列获得的信号,所述第一码序列是通过以第三传输周期调制第一码序列而获得的第二传输周期的第二码序列获得的,并且由第 在第四传输周期分别调制第二代码序列。 第二扇区雷达产生通过在第一传输周期调制第二代码序列获得的信号,该第二代码序列通过在第二传输周期调制具有与第一代码序列相反的极性的第三代码序列,该第三代码序列通过在 第三传输周期,具有与第二代码序列相反的极性的第四代码序列,并且分别通过在第四传输周期调制第一代码序列获得。
    • 19. 发明授权
    • Radar apparatus
    • 雷达装置
    • US09134405B2
    • 2015-09-15
    • US13811641
    • 2011-07-14
    • Takaaki KishigamiYoichi NakagawaHirohito Mukai
    • Takaaki KishigamiYoichi NakagawaHirohito Mukai
    • G01S13/28G01S7/28G01S7/285
    • G01S13/284G01S7/2813G01S7/285G01S13/288
    • A radar apparatus transmits a radio frequency transmission signal from a transmitter antenna in a given transmission period, and receives a signal of a reflected wave reflected by a target via a receiver antenna. The radar apparatus includes a transmission signal generator that generates a first transmission signal obtained by modifying a code having a third sub-code sequence and a fourth sub-code sequence coupled to each other in a first transmission period, and generates a second transmission period obtained by modifying a code having a fifth sub-code sequence and a sixth sub-code sequence coupled to each other in a second transmission period, and a transmitter RF unit that converts the first and second transmission signals into radio frequency transmission signals, and transmits the radio frequency transmission signals from the transmitter antenna.
    • 雷达装置在给定的传输周期内从发射机天线发射射频信号,并通过接收机天线接收由目标反射的反射波的信号。 雷达装置包括:发送信号发生器,其生成通过在第一发送周期中修改具有彼此耦合的第三子码序列和第四子码序列的码而获得的第一发送信号,并且生成获得的第二发送周期 通过在第二发送周期中修改具有彼此耦合的第五子码序列和第六子码序列的码,以及将第一和第二发送信号转换为射频发送信号的发送器RF单元, 来自发射机天线的射频传输信号。
    • 20. 发明申请
    • RADAR DEVICE
    • 雷达设备
    • US20130113653A1
    • 2013-05-09
    • US13807189
    • 2011-07-01
    • Takaaki KishigamiHirohito MukaiYoichi Nakagawa
    • Takaaki KishigamiHirohito MukaiYoichi Nakagawa
    • G01S7/35
    • G01S7/35G01S7/285G01S7/4021G01S13/42G01S13/931
    • The disclosed technique includes transmitting a signal intermittently according to a transmission cycle having a predetermined transmission period and a non-transmission period; receiving the signal reflected from a target with reception antennas; and detecting the target from the reflected signal. A high-frequency transmission signal attenuated during the transmission period and a receipt signal received during the non-transmission period are combined together. A correlation value between a reference transmission signal and the receipt signal in the combined signal is calculated, and the amount of phase shift in an arbitrarily selected reception antenna is calculated from the correlation value of a reference reception antenna, and the correlation values of the other reception antennas. The phase component of the correlation value of the arbitrarily selected reception antenna is corrected on the basis of the amount of phase shift.
    • 所公开的技术包括根据具有预定发送周期和非发送周期的发送周期间歇地发送信号; 用接收天线接收从目标反射的信号; 并从反射信号中检测目标。 在发送期间衰减的高频发送信号和在非发送期间接收的接收信号组合在一起。 计算组合信号中的参考传输信号和接收信号之间的相关值,并根据参考接收天线的相关值计算任意选择的接收天线中的相移量,另一个的相关值 接收天线。 基于相移量来校正任意选择的接收天线的相关值的相位分量。