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    • 3. 发明授权
    • Radar device and target angle detection method
    • 雷达装置和目标角度检测方法
    • US08054216B2
    • 2011-11-08
    • US12320413
    • 2009-01-26
    • Motohide KinoshitaHisateru AsanumaJun TsunekawaMotomi IyodaTomoya Kawasaki
    • Motohide KinoshitaHisateru AsanumaJun TsunekawaMotomi IyodaTomoya Kawasaki
    • G01S13/93G01S7/02G01S13/00
    • G01S13/4454
    • A radar device has a plurality of receiving antennas which receive, as a reception wave, a radar wave sent in a predetermined reference direction and reflected by a target; a phase difference detection unit which detects a first phase difference of the reception wave received by a first receiving antenna pair that is spaced by a first gap, and a second phase difference of the reception wave received by a second receiving antenna pair that is spaced by a second gap smaller than the first gap; and an angle detection unit which performs a first process of determining, as a detection angle, an angle of the target relative to the reference direction being a mutually coincident angle from among a plurality of first angles corresponding to the first phase difference and a plurality of second angles corresponding to the second phase difference. The radar device allows expanding an angle detection range without reducing the resolution of the angle corresponding to the second phase difference.
    • 雷达装置具有多个接收天线,其接收以预定参考方向发送并由目标反射的雷达波作为接收波; 相位差检测单元,检测由第一接收天线对接收的与第一间隙间隔的接收波的第一相位差和由第二接收天线对接收的接收波的第二相位差, 第二间隙小于第一间隙; 以及角度检测单元,其执行第一处理,所述角度检测单元从对应于所述第一相位差的多个第一角度和多个第一相位角确定作为检测角度的所述目标相对于所述参考方向的角度是相互重合的角度 对应于第二相位差的第二角度。 雷达装置允许扩大角度检测范围而不降低对应于第二相位差的角度的分辨率。
    • 5. 发明授权
    • Load detecting sensor and collision detecting sensor using the same
    • 负载检测传感器和使用其的碰撞检测传感器
    • US07743669B2
    • 2010-06-29
    • US12218567
    • 2008-07-16
    • Akira SuzukiHiroyuki TakahashiMotomi IyodaYujiro Miyata
    • Akira SuzukiHiroyuki TakahashiMotomi IyodaYujiro Miyata
    • G01L1/24
    • B60R19/483B60R21/0136B60R2021/01095
    • A load detecting sensor includes a first member, a second member, and an optical fiber. The first member has a groove having a bottom portion and a column portion which defines the groove. The second member covers the groove of the first member so that a surrounded space is formed. The optical fiber is arranged in the surrounded space. At least one of the first member and the second member is made of an elastic body. The surrounded space is deformable when load is applied to at least one of the first and the second members. When load is applied to at least one of the first and the second members, the deformation of the optical fiber is caused following the deformation of the surrounded space. Hereby, the load detecting sensor, which can decrease the manufacturing cost and increase the detecting sensitivity by the optical fiber, can be obtained.
    • 负载检测传感器包括第一构件,第二构件和光纤。 第一构件具有凹槽,凹槽具有底部和限定凹槽的柱部分。 第二构件覆盖第一构件的凹槽,从而形成包围的空间。 光纤布置在包围的空间中。 第一构件和第二构件中的至少一个由弹性体制成。 当负载施加到第一和第二构件中的至少一个时,被包围的空间是可变形的。 当负载被施加到第一和第二构件中的至少一个时,光纤的变形在被包围的空间变形之后引起。 因此,可以获得能够降低制造成本并增加光纤的检测灵敏度的负载检测传感器。
    • 6. 发明申请
    • PASSENGER PROTECTION DEVICE
    • 乘客保护装置
    • US20090138160A1
    • 2009-05-28
    • US12282885
    • 2007-02-07
    • Motomi Iyoda
    • Motomi Iyoda
    • B60R21/01
    • B60R21/0134B60R21/0136B60R2021/0006
    • In a passenger protection device, an object detection unit detects a relative position of an object in a circumference of a vehicle to the vehicle. A side collision prediction unit predicts that the object is about to collide with a side face of the vehicle, based on the relative position detected by the object detection unit. An impact detection unit detects an impact of the object on the vehicle side face. A side collision judgment unit determines whether the object has collided with the vehicle side face, based on the impact detected by the impact detection unit. A passenger protection unit protects a passenger in the vehicle. When the side collision prediction unit predicts that the object is about to collide with the vehicle side face and the side collision judgment unit determines that the object has collided with the vehicle side face, the passenger protection unit is initiated.
    • 在乘客保护装置中,物体检测单元检测车辆周围的物体与车辆的相对位置。 侧面碰撞预测单元基于由对象检测单元检测到的相对位置来预测物体将要与车辆的侧面碰撞。 冲击检测单元检测物体对车辆侧面的冲击。 侧碰撞判断单元基于由冲击检测单元检测到的冲击来确定物体是否与车辆侧面相撞。 乘客保护单元保护车辆中的乘客。 当侧面碰撞预测单元预测物体将要与车辆侧面碰撞并且侧面碰撞判断单元确定物体已经与车辆侧面碰撞时,起动乘客保护单元。
    • 8. 发明申请
    • Vehicular Data Recording Apparatus
    • 车载数据记录装置
    • US20080234890A1
    • 2008-09-25
    • US11997814
    • 2006-07-31
    • Satoru OkadaMotomi Iyoda
    • Satoru OkadaMotomi Iyoda
    • G06F7/00
    • G01P1/14B60R2021/0002G01P1/127G07C5/085G07C5/0891
    • A vehicular data recording apparatus includes crash detection means (12) for detecting a crash of a vehicle, and recording process means (14) for recording and retaining output data of various vehicle-mounted sensors (20, 30, 40, 50) mounted in the vehicle, in a non-volatile memory (70), wherein if a crash is detected by the crash detection means (12), a data recording/retaining process relevant to the crash is performed by the recording process means. If a plurality of crashes different in the crash form are detected continually in a short time by the crash detection means, the recording process means performs the data recording/retaining process relevant to each crash in accordance with a predetermined order of priority based on the crash form of each crash.
    • 车辆数据记录装置包括用于检测车辆碰撞的碰撞检测装置(12),以及用于记录和保持安装在车辆上的各种车载传感器(20,30,40,50)的输出数据的记录处理装置(14) 所述车辆在非易失性存储器(70)中,其中如果所述碰撞检测装置(12)检测到碰撞,则由所述记录处理装置执行与所述碰撞有关的数据记录/保持处理。 如果通过碰撞检测装置在短时间内连续检测到碰撞形式不同的多个崩溃,则记录处理装置根据预先确定的优先顺序根据碰撞进行与每个碰撞相关的数据记录/保持处理 每次崩溃的形式。