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    • 2. 发明申请
    • ACCELERATOR PEDAL FORCE CONTROL DEVICE
    • 加速踏板力控制装置
    • US20120304800A1
    • 2012-12-06
    • US13578882
    • 2011-01-13
    • Shigeyuki SakaguchiMasao ShiomiMasahiro Omori
    • Shigeyuki SakaguchiMasao ShiomiMasahiro Omori
    • G05G1/38
    • B60K26/021F02D11/02Y10T74/20534
    • When an accelerator opening exceeds an opening threshold value, a base pedaling force of an accelerator pedal is increased. An increment to a pedaling force is changed in accordance with the accelerator opening in a manner to make the pedaling force approach a characteristic that the pedaling force increases at a constant rate with respect to increase of the accelerator opening. For example, when a mechanism is employed which has a convex-up characteristic wherein the rate of increase of base pedaling force decreases as the accelerator opening increases, the increment is set to increase as the accelerator opening increases. Conversely, when a mechanism is employed which has a convex-down characteristic wherein the rate of base pedaling force increases as the accelerator opening increases, the increment is set to decrease as the accelerator opening increases.
    • 当加速器开度超过打开阈值时,加速踏板的基础踏力增加。 踏力的增量根据加速器开度而改变,以使踏力相对于加速器开度的增加以蹬力以恒定速度增加的特性。 例如,当采用具有凸起特征的机构时,其中基础踏力的增加速率随着加速器开度的增加而减小,增量被设定为随着油门开度的增加而增加。 相反,当采用具有凸起下降特性的机构时,其中基础踏力的速率随着加速器开度的增加而增加,所以增量随着加速器开度的增加而减小。
    • 5. 发明申请
    • Idle rotation control of an internal combustion engine
    • 内燃机的空转控制
    • US20050257770A1
    • 2005-11-24
    • US11114186
    • 2005-04-26
    • Yoichiro NakaharaShigeyuki Sakaguchi
    • Yoichiro NakaharaShigeyuki Sakaguchi
    • F02D11/10F02D31/00F02D41/16
    • F02D31/003F02D11/105F02D41/16
    • A controller 21 controls an intake air flow rate via an electronic throttle 14 based on a feedback correction amount set so that a rotation speed (NE) of an internal combustion engine (11) during idle running gradually approaches a target value (tNE). When the deviation (ΔNE) between the rotation speed (NE) and the target value (tNE) becomes equal to or greater than a predetermined value (XNE), increase correction of the intake air flow rate is performed according to the deviation (ΔNE). When the deviation (ΔNE) falls below the predetermined value (XNE), a value corresponding to the increase correction amount at that time is added to the feedback correction amount, and subsequent increase correction amounts are set to zero, so the decreased engine rotation speed (NE) can be returned to the target value (tNE) with a rapid response, and future drops of the returned engine rotation speed (NE) are prevented.
    • 控制器21基于设定的反馈校正量,经由电子节气门14控制进气流量,使得空转运行中的内燃机(11)的转速(NE)逐渐接近目标值(tNE)。 当旋转速度(NE)与目标值(tNE)之间的偏差(DeltaNE)变得等于或大于预定值(XNE)时,根据偏差(DeltaNE)来进行进气量的校正, 。 当偏差(DeltaNE)下降到预定值(XNE)以下时,与反馈修正量相对应的增加校正量的值相加,随后的增加校正量被设定为零,因此发动机转速降低 (NE)可以快速响应返回到目标值(tNE),并且防止返回的发动机转速(NE)的将来下降。
    • 8. 发明授权
    • Accelerator-pedal reaction force control apparatus
    • 加速踏板反作用力控制装置
    • US09464578B2
    • 2016-10-11
    • US12999426
    • 2009-07-31
    • Masao ShiomiShigeyuki Sakaguchi
    • Masao ShiomiShigeyuki Sakaguchi
    • G06F7/70F02D11/02B60K26/02
    • F02D11/02B60K26/021
    • A control apparatus includes a means for detecting a position and a means for adjusting a reaction force of the accelerator, wherein the means for adjusting increases the reaction force of the accelerator by an increase amount in addition to a basic reaction force when the position of the accelerator is increased to satisfy a predetermined condition associated with a specific fuel consumption of the vehicle, the means for adjusting sets the increase amount to a first amount when the position of the accelerator is increased from a first accelerator position in a preload area to a second accelerator position that satisfies the predetermined condition, the means for adjusting sets the increase amount to a second amount when the position of the accelerator position is increased from an intermediate accelerator position that exceeds the preload area to the second position, and the first amount is greater than the second amount.
    • 控制装置包括用于检测位置的装置和用于调节加速器的反作用力的装置,其中用于调节的装置除了基本反作用力之外还增加了加速器的反作用力, 加速器被增加以满足与车辆的特定燃料消耗相关联的预定条件,当加速器的位置从预加载区域中的第一加速器位置增加到第二加速器时,用于调节的装置将增加量设置为第一量 加速器位置满足预定条件的情况下,当加速器位置的位置从超过预加载区域的中间加速器位置增加到第二位置时,用于调节的装置将增加量设置为第二量,并且第一量更大 比第二数量。
    • 9. 发明授权
    • Device to control force required to depress accelerator pedal
    • 控制踩下加速踏板所需力的装置
    • US08712661B2
    • 2014-04-29
    • US13522844
    • 2010-12-14
    • Shigeyuki SakaguchiMasao ShiomiMasahiro Omori
    • Shigeyuki SakaguchiMasao ShiomiMasahiro Omori
    • B60K26/02
    • B60K26/021B60K2026/023Y10T74/20534
    • In an accelerator pedal effort control apparatus which increases a pedal effort of an accelerator pedal 2 when an accelerator opening angle is larger than a predetermined accelerator opening angle threshold value, in a case where a steering angle of a steering wheel when a vehicle driver starts to increase an opening angle of accelerator pedal 2 is small, a pedal effort increment is a reference pedal effort increment (ΔF) and, in a case where the steering angle is large, is a relatively small pedal effort increment (ΔF−β). Thus, when the vehicle turns right or left from a stopped state, pedal effort increment (ΔF−β) is set to relatively be small so that a smooth acceleration becomes possible.
    • 在加速器踏板力控制装置中,当加速器开度大于预定的加速器开度阈值时,加速踏板2的踏板力增加,在车辆驾驶员开始时的方向盘的转向角度的情况下 增加加速器踏板2的打开角度小,踏板力量增量是参考踏板力量增量(&Dgr; F),并且在转向角大的情况下,是相对较小的踏板力增量(&Dgr; F- &bgr;)。 因此,当车辆从停止状态向右或向左转时,踏板踏力增量(&Dgr; F-&bgr)被设定为相对较小,从而平滑加速成为可能。