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    • 2. 发明申请
    • VEHICLE TRAVEL CONTROL DEVICE AND VEHICLE TRAVEL CONTROL METHOD
    • 车辆行驶控制装置和车辆行驶控制方法
    • US20090118958A1
    • 2009-05-07
    • US12278462
    • 2007-03-23
    • Kyoichi Abe
    • Kyoichi Abe
    • G06F19/00
    • F02D29/02B60T7/12B60T7/22B60T2201/02B60W30/16B60W40/107B60W2420/52B60W2720/106
    • Target acceleration of a subject vehicle is set; a reference limit value is obtained based on the set target acceleration; actual acceleration of the subject vehicle is obtained; a limit value magnification is calculated so that a limit value for limiting a change of the target acceleration becomes larger as a difference between the set target acceleration and the detected actual acceleration becomes larger; the limit value is calculated; the set target acceleration is limited based on the set limit value; a braking driving force is calculated based on the limited target acceleration; and the calculated braking driving force is generated by a selected braking driving force generating unit. Smooth acceleration and deceleration of the vehicle can be performed according to a travel state of the vehicle, and followability to the set target deceleration can be improved.
    • 设定目标车辆的目标加速度; 基于设定的目标加速度获得基准极限值; 获得本车辆的实际加速度; 计算极限值倍率,使得用于限制目标加速度的变化的极限值随着设定目标加速度和检测到的实际加速度之间的差变大而变大; 计算极限值; 基于设定的限制值限制设定的目标加速度; 基于受限目标加速度来计算制动驱动力; 并且所计算的制动驱动力由选择的制动驱动力产生单元产生。 可以根据车辆的行驶状态进行车辆的平滑加减速,能够提高对设定目标减速度的追随性。
    • 4. 发明申请
    • Object detection system and method of detecting object
    • 物体检测系统及物体检测方法
    • US20060139204A1
    • 2006-06-29
    • US10560307
    • 2004-09-09
    • Kyoichi AbeSetsuo TokoroKoji Suzuki
    • Kyoichi AbeSetsuo TokoroKoji Suzuki
    • G01S13/86G01S13/93
    • G01S17/936G01S13/865G01S13/867G01S13/931G01S17/023G01S17/48G01S2013/9375
    • An object detection system is provided with radar detection means (2), image detection means (3), and collating means (4). The collating means (4) detects a combination of an object detected by the radar detection means (2) and an object selected among those detected by the image detection means (3), which is the closest to the object detected by the radar detection means (S1, S2), detects a combination of an object detected by the image detection means (3) and an object selected among those detected by the radar detection means (2), which is the closest to the object detected by the image detection means (S3, S4), and determines when there is a coincidence between the combination of the object detected by the radar detection means (2) and the selected object as being closest thereto and the combination of the object detected by the image detection means (3) and the selected object as being closest thereto, that the object detected by the radar detection means (2) is the same as the object detected by the image detection means (S5).
    • 物体检测系统具有雷达检测装置(2),图像检测装置(3)和对照装置(4)。 对照装置(4)检测由雷达检测装置(2)检测到的物体与由图像检测装置(3)检测到的物体中选择的物体的组合,该物体最接近雷达检测装置检测到的物体 (S 1,S 2)检测由图像检测装置(3)检测到的物体与由雷达检测装置(2)检测到的物体中选择的物体的组合,该雷达检测装置(2)最接近由图像检测到的物体 检测装置(S 3,S 4),并且确定由雷达检测装置(2)检测到的物体的组合与所选择的对象最接近的对象之间的重合以及由图像检测到的对象的组合 检测装置(3)和所选择的对象最接近,由雷达检测装置(2)检测到的物体与由图像检测装置检测到的物体相同(S 5)。
    • 6. 发明授权
    • Running control device for vehicle
    • 车辆运行控制装置
    • US07634346B2
    • 2009-12-15
    • US11814971
    • 2006-03-23
    • Kyoichi Abe
    • Kyoichi Abe
    • B60T8/32B60T7/12
    • B60K31/0066B60T7/22B60T2201/02B60W30/16B60W40/072B60W40/076B60W2520/10B60W2520/14
    • A curve-travel target acceleration calculator calculates a curve-travel target acceleration. A first curve-travel target acceleration calculator calculates a first target acceleration corresponding to a gentle curve, and a second curve-travel target acceleration calculator calculates a second target acceleration corresponding to a sharp curve. The curve-travel target acceleration is set to the smaller of the first target acceleration and the second target acceleration. A follow-up target acceleration calculator calculates a follow-up target acceleration and a constant-speed target acceleration calculator calculates a constant-speed target acceleration. An arbitrator selects as a target acceleration the minimum out of the curve-travel target acceleration, the constant-speed target acceleration, and the follow-up target acceleration.
    • 曲线行进目标加速度计算器计算曲线行驶目标加速度。 第一曲线行进目标加速度计算器计算对应于平缓曲线的第一目标加速度,第二曲线行驶目标加速度计算器计算与锐利曲线对应的第二目标加速度。 曲线行进目标加速度被设定为第一目标加速度和第二目标加速度的较小者。 后续目标加速度计算器计算跟踪目标加速度,而恒速目标加速度计算器计算恒定速度目标加速度。 仲裁员将曲线行进目标加速度,恒速目标加速度和后续目标加速度中的最小值作为目标加速度。
    • 7. 发明申请
    • RUNNING CONTROL DEVICE FOR VEHICLE
    • 车辆行驶控制装置
    • US20090018744A1
    • 2009-01-15
    • US11814971
    • 2006-03-23
    • Kyoichi Abe
    • Kyoichi Abe
    • B60W10/18
    • B60K31/0066B60T7/22B60T2201/02B60W30/16B60W40/072B60W40/076B60W2520/10B60W2520/14
    • A curve-travel target acceleration calculator calculates a curve-travel target acceleration. A first curve-travel target acceleration calculator calculates a first target acceleration corresponding to a gentle curve, and a second curve-travel target acceleration calculator calculates a second target acceleration corresponding to a sharp curve. The curve-travel target acceleration is set to the smaller of the first target acceleration and the second target acceleration. A follow-up target acceleration calculator calculates a follow-up target acceleration and a constant-speed target acceleration calculator calculates a constant-speed target acceleration. An arbitrator selects as a target acceleration the minimum out of the curve-travel target acceleration, the constant-speed target acceleration, and the follow-up target acceleration.
    • 曲线行进目标加速度计算器计算曲线行驶目标加速度。 第一曲线行进目标加速度计算器计算对应于平缓曲线的第一目标加速度,第二曲线行驶目标加速度计算器计算与锐利曲线对应的第二目标加速度。 曲线行进目标加速度被设定为第一目标加速度和第二目标加速度的较小者。 后续目标加速度计算器计算跟踪目标加速度,而恒速目标加速度计算器计算恒定速度目标加速度。 仲裁员将曲线行进目标加速度,恒速目标加速度和后续目标加速度中的最小值作为目标加速度。
    • 8. 发明授权
    • Object detection system and object detection method
    • 物体检测系统和物体检测方法
    • US07417580B2
    • 2008-08-26
    • US10571427
    • 2004-09-09
    • Kyoichi AbeSetsuo TokoroKoji Suzuki
    • Kyoichi AbeSetsuo TokoroKoji Suzuki
    • G01S13/00
    • G01S13/931G01S11/12G01S13/726G01S13/867G01S2013/9321G01S2013/9375
    • An object detection system includes a radar detection means (2), an image detection means (3), and a collating means (4). The collating means (4) performs a collation between an object detected by the radar detection means (2) in a present collation and an object that has been determined as being detected by the radar detection means (2) and the image detection means (3) in a previous collation (S 10, S 11), further performs a collation between an object detected by the image detection means (3) in a present collation and an object that has been determined as being detected by the radar detection means (2) and the image detection means (3) in the previous collation (S 12, S 13) when it is determined that the identical object is detected by the radar detection means (2) and the image detection means (3) in the previous collation. Then the collating means (4) determines whether the radar detection means (2) and the image detection means (3) detect the identical object based on the collations (S 14).
    • 物体检测系统包括雷达检测装置(2),图像检测装置(3)和对照装置(4)。 对照装置(4)在当前对照中由雷达检测装置(2)检测到的物体与由雷达检测装置(2)和图像检测装置(3)检测到的物体之间进行核对 )(S 10,S 11)中,还进行在本次对照中由图像检测单元(3)检测出的物体与由雷达检测单元(2)检测出的物体之间的核对 )和图像检测装置(3)中,当确定由雷达检测装置(2)和图像检测装置(3)在先前核对中检测到相同的对象时,在先前核对(S12,S13) 。 然后,对照装置(4)基于排序确定雷达检测装置(2)和图像检测装置(3)是否检测相同的对象(S14)。
    • 9. 发明授权
    • Wave motion simulator
    • 波动模拟器
    • US3964316A
    • 1976-06-22
    • US535504
    • 1974-12-23
    • Kyoichi Abe
    • Kyoichi Abe
    • G01M10/00B63B9/08G01N3/32
    • G01M10/00
    • An apparatus to generate a wave-like pattern of forces on a surface effect ship utilizes a flexible membrane which undulates in a water wave-like manner, the crests of the waves transferring forces to the surface effect ship. The membrane is undulated in its sine wave configuration by means of a series of linkages, one link of which is pinned to the underside of the membrane. That link is reciprocally actuated and the combined movements of the various linkages cause the membrane to undulate as would water waves. The main drive motor drives a primary shaft to which are connected a series of gear boxes which in turn drive secondary drive shafts. By controlling or varying the speed of the primary drive motor, the frequency of the generated waves may be varied. At each linkage station there is a crank and the connecting rod is adjustably connected to the crank. The amplitude of the waves can be varied as desired by adjustably positioning the connecting rod along the crank.
    • 在表面效应船上产生波浪状图案的装置利用以水波方式波动的柔性膜,波浪的波峰将力传递到表面效应船。 膜通过一系列连接件以其正弦波构造起伏,其中一个链节固定在膜的下侧。 该连杆相互致动,并且各种连杆的组合运动导致膜像水波一样波动。 主驱动电机驱动主轴,连接有一系列齿轮箱,其又驱动副驱动轴。 通过控制或改变主驱动电动机的速度,可以改变产生的波的频率。 在每个联动站处有曲柄,连杆可调节地连接到曲柄。 可以根据需要通过沿着曲柄可调节地定位连杆来改变波的振幅。