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    • 4. 发明授权
    • Controller for automatic transmission
    • 自动变速箱控制器
    • US06754574B2
    • 2004-06-22
    • US10347765
    • 2003-01-22
    • Takaaki TokuraKatsumi KonoNorimi AsaharaRyoichi HibinoHiroyuki NishizawaMasataka Osawa
    • Takaaki TokuraKatsumi KonoNorimi AsaharaRyoichi HibinoHiroyuki NishizawaMasataka Osawa
    • F16H6108
    • B60W10/06B60W10/04B60W10/11B60W10/115B60W30/18B60W30/1819B60W2530/16B60W2710/0666F16H61/061F16H61/686F16H2306/44F16H2306/52Y02T10/56
    • When changing gear, engagement side clutch coupling force of an automatic transmission (32) is controlled in response to an engagement side clutch coupling force control amount set in advance in an engagement side clutch coupling force control amount storage section (36). A disengagement side clutch coupling force control amount calculating block (40) has a physical model of the automatic transmission (32) internally. This disengagement side clutch coupling force control amount calculating block (40) then calculates disengagement side clutch coupling force control amount from a transmission input torque estimation value estimated by a transmission input torque estimation block (34), a running resistance estimation value from a running resistance estimation block (38) and engagement side clutch coupling force control amount using the physical model, and controls the automatic transmission (32) using the calculated disengagement side clutch coupling force control amount. Since disengagement side clutch coupling force control amount is calculated using a physical model, it is easy to adjust the disengagement side clutch coupling amount. It is also suitable to control engine torque at the time of gear shift, and this engine torque can also be determined using a physical equation.
    • 当换档时,响应于在接合侧离合器联接力控制量存储部分(36)中预先设定的接合侧离合器联接力控制量来控制自动变速器(32)的接合侧离合器联接力。 分离侧离合器联接力控制量计算块(40)在内部具有自动变速器(32)的物理模型。 然后,该脱离侧离合器联接力控制量计算块(40)根据由变速器输入扭矩推定块(34)估计的变速器输入转矩估计值,来自行驶阻力的行驶阻力估计值,计算分离侧离合器联接力控制量 估计块(38)和使用该物理模型的接合侧离合器联接力控制量,并且使用计算出的分离侧离合器联接力控制量来控制自动变速器(32)。 由于使用物理模型计算分离侧离合器联接力控制量,因此容易调节脱离侧离合器联接量。 也适用于在变速时控制发动机转矩,也可以使用物理方程来确定发动机转矩。
    • 7. 发明授权
    • Weight identification method and feedback control method
    • 重量识别方法和反馈控制方法
    • US06807448B1
    • 2004-10-19
    • US09596067
    • 2000-06-16
    • Toshinari SuzukiKatsumi KonoRyoichi HibinoMasataka OsawaEiichi OnoShu Asami
    • Toshinari SuzukiKatsumi KonoRyoichi HibinoMasataka OsawaEiichi OnoShu Asami
    • G05B1302
    • F16H61/66254G05B13/024
    • An instruction value Duty for bringing a slip rotation speed Nslip to a target rotation speed is feedback-controlled based on a difference e between the slip rotation speed Nslip and the target rotation speed, and a weight &thgr; from a parameter map. Weights &thgr; are assigned individually to a plurality of models, each of which includes a group of parameters and which are used to form a control model that represents a slip control system. Based on a weight that is assigned to one of the plurality of models, a weight that is assigned to at least one model that is other than the one of the plurality of models is specified. Thus, the amount of calculation required can be reduced by estimating weights for the models including the groups of parameters, which contain parameters that are used to construct the control model, instead of directly estimating the control model-constructing parameters.
    • 基于滑移转速Nslip与目标转速之间的差e和来自参数图的权重θ来反馈控制用于使滑移转速Nslip达到目标转速的指令值。 权重θ被分别分配给多个模型,每个模型包括一组参数,并且用于形成表示滑移控制系统的控制模型。 基于分配给多个模型中的一个模型的权重,指定分配给除了多个模型中的一个以外的至少一个模型的权重。 因此,通过估计包括参数组的模型的权重,可以减少所需的计算量,该参数组包含用于构建控制模型的参数,而不是直接估计控制模型构建参数。