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    • 3. 发明专利
    • Control method for deceleration of hybrid vehicle
    • 混合车辆减速控制方法
    • JP2006020457A
    • 2006-01-19
    • JP2004197074
    • 2004-07-02
    • Toyota Motor Corpトヨタ自動車株式会社
    • MURATA HIROKIHASHIMOTO YOSHINOBUYONEDA OSAMU
    • B60L11/14B60W20/00B60K6/48B60K6/547B60L7/20B60W10/02B60W10/06B60W10/08B60W10/18
    • Y02T10/6221Y02T10/6286Y02T10/7077
    • PROBLEM TO BE SOLVED: To provide a control method for deceleration of a hybrid vehicle which can suppress a sudden change in the engine brake amount during deceleration of a vehicle to reduce a torque shock.
      SOLUTION: The control method for deceleration of a hybrid vehicle is switchably constituted between an E mode (first mode) for decelerating by increasing the regeneration amount of a motor generator by automatically cutting off a clutch during deceleration without applying an engine brake, and an M mode (second mode) for decelerating by applying an engine brake while the clutch is engaged, and for regenerating with the motor generator. Travelling information is read (S10) and, when a mode is switched from one mode to another (S12 affirmation) at the time of deceleration of a vehicle (S11 affirmation), an actual engine brake torque Tenga is calculated (S13 to S15) from a clutch stroke Cst, an actual engine torque Teng and a given map, to gradually change the regeneration torque Tmg in view of the magnitude thus calculated.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种能够抑制车辆减速期间的发动机制动量的突然变化以减少转矩冲击的混合动力车辆的减速控制方法。 解决方案:混合动力车辆的减速控制方法通过在不施加发动机制动的情况下通过在减速期间自动切断离合器来增加电动发电机的再生量的E模式(第一模式)进行切换, 以及用于通过在离合器接合时施加发动机制动而减速的M模式(第二模式),并且用于通过电动发电机再生。 读取行驶信息(S10),并且当在车辆减速时(S11确认)中将模式从一种模式切换到另一模式(S12确认)时,计算实际的发动机制动转矩Tenga(S13至S15),从 离合器行程Cst,实际发动机转矩Teng和给定的映射,以便根据如此计算的大小逐渐改变再生转矩Tmg。 版权所有(C)2006,JPO&NCIPI
    • 7. 发明专利
    • Motor generator control method in parallel hybrid vehicle
    • 并联混合动力汽车发电机控制方法
    • JP2005110461A
    • 2005-04-21
    • JP2003343879
    • 2003-10-02
    • Toyota Motor Corpトヨタ自動車株式会社
    • MURATA HIROKIHASHIMOTO YOSHINOBUAOYAMA TAROYOSHIZAKI KOJISASAKI SHIZUOINAGAKI KAZUHISA
    • B60W20/00B60K6/485B60K6/54B60L11/14B60W10/08F02D29/02F02D45/00B60K6/04
    • Y02T10/7077
    • PROBLEM TO BE SOLVED: To suppress the change of a driving force by adjusting the driving force to a desired value and by absorbing the change of engine torque, even if change occurs in the engine torque. SOLUTION: This motor generator control method is for a parallel hybrid vehicle provided with an engine that has a cylinder internal pressure sensor and a motor generator that assists power generation by an engine output or the engine output by battery electric power. Based on the detected opening of an accelerator, engine revolutions, and preset demanded torque map, driver-demanding torque is calculated (Steps S10, S11). Using the output value of the cylinder internal pressure sensor, the change of the cylinder internal pressure is detected (Step S12). Based on this detected cylinder internal pressure, the predicted amount of change of the engine torque or the predicted amount of change of the driving force is calculated (Steps S13, S14, S15). According to the predicted amount of change of the engine torque, the assist amount or the regeneration amount of the motor generator is feedback-controlled (Step S16). COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:即使发动机转矩发生变化,为了通过将驱动力调节到期望值并且通过吸收发动机转矩的变化来抑制驱动力的变化。 解决方案:该电动发电机控制方法是用于具有发动机的并联混合动力车辆,该发动机具有气缸内部压力传感器和电动发电机,其通过发动机输出或发动机通过电池电力输出来发电。 基于检测到的加速器的开度,发动机转数和预设的要求扭矩图,计算出驱动器要求转矩(步骤S10,S11)。 使用气缸内部压力传感器的输出值,检测气缸内部压力的变化(步骤S12)。 基于该检测到的气缸内部压力,计算出发动机扭矩的预测变化量或驱动力的预测变化量(步骤S13,S14,S15)。 根据预测的发动机转矩变化量,对电动发电机的辅助量或再生量进行反馈控制(步骤S16)。 版权所有(C)2005,JPO&NCIPI