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    • 4. 发明授权
    • Lock-up control system for automobile automatic power transmissions
    • 汽车自动变速器锁定控制系统
    • US4580671A
    • 1986-04-08
    • US574181
    • 1984-01-26
    • Toshihiro MatsuokaShizuo Sumida
    • Toshihiro MatsuokaShizuo Sumida
    • F16H45/02F16H61/14F16D47/06
    • F16H45/02F16H61/143Y10T477/635Y10T477/73
    • A control system for an automobile automatic power transmission provided with a hydraulic torque converter having a lock-up mechanism for directly connecting the input and output shafts of the torque converter. The control system uses a lock-up release data line and a lock-up engage data line which is positioned at the higher-engine speed side with respect to the lock-up release data line for controlling engagement of the lock-up mechanism. The system further provides a modified lock-up engage data line, which is between the lock-up engage and release lines, for use when the engine throttle valve is opened again after it has been completely closed, so that the lock-up mechanism is engaged as soon as the throttle valve is opened beyond the modified lock-up engage data line.
    • 一种用于汽车自动变速器的控制系统,其具有液压变矩器,该液力变矩器具有用于直接连接变矩器的输入和输出轴的锁定机构。 控制系统使用锁定释放数据线和锁定接合数据线,该数据线相对于锁定释放数据线位于较高发动机转速侧,用于控制锁定机构的接合。 该系统进一步提供一种在锁定接合和释放管线之间的改进的锁定接合数据线,用于当发动机节气门在完全关闭之后再次打开时使用,使得锁定机构是 一旦节气门打开超过修改后的锁定数据线就启动。
    • 5. 发明授权
    • Multiple clutch transmission having gear control device
    • 多档离合器变速器具有档位控制装置
    • US4519484A
    • 1985-05-28
    • US467846
    • 1983-02-18
    • Mitsuru NagaokaKazuya OdaShizuo Sumida
    • Mitsuru NagaokaKazuya OdaShizuo Sumida
    • F16H61/02F16H3/00F16H61/08F16H61/10F16H61/688F16H63/46B60K41/22F16H5/42F16H5/60
    • F16H3/006F16H2306/44F16H2306/48F16H2306/52F16H61/688Y10T74/19228Y10T74/1926
    • A multiple clutch type transmission including a plurality of input shafts, a plurality of clutch devices for releasably and alternately connecting respective ones of said input shafts with an engine output shaft. Each of the input shafts has two driving gears mounted thereon to rotate therewith, a countershaft having freely rotatable driven gears which are in meshing engagement with respective ones of the driving gears on the input shafts, connecting hubs provided on the countershaft for axial sliding movements for selectively connecting the driven gears with the countershaft, clutch actuators for controlling said clutch devices so that selected one of the input shafts is connected through selected one of the clutch devices with the engine output shaft. Hub actuators are provided for actuating the connecting hubs so that selected ones of the driven gears are connected with the countershaft, a control circuit being provided for producing a clutch engaging signal upon receipt of a gear engaging command to thereby engage disengaged one of the clutch devices to establish a substantially synchronized condition between the connecting hub and selected one of the driven gears, then a clutch disengaging signal for disengaging the same clutch device and thereafter a hub actuating signal to operate the hub actuator so that the connecting hub is actuated to thereby connect selected one of the driven gears with the countershaft.
    • 一种多离合器式变速器,包括多个输入轴,多个离合器装置,用于将各个所述输入轴与发动机输出轴可释放地和交替地连接。 每个输入轴具有安装在其上的两个驱动齿轮与其一起旋转,中间轴具有可自由旋转的从动齿轮,其与输入轴上的相应驱动齿轮啮合,连接毂设置在中间轴上用于轴向滑动运动 选择性地连接从动齿轮与中间轴,用于控制所述离合器装置的离合器致动器,使得所选择的一个输入轴通过选定的一个离合器装置与发动机输出轴连接。 轮毂致动器被设置用于致动连接毂,使得所选择的从动齿轮与中间轴连接;控制电路,用于在接收到齿轮接合命令时产生离合器接合信号,从而接合离合器件 以在连接毂和所选择的一个从动齿轮之间建立基本上同步的状态,然后用于离合器脱离信号,用于分离相同的离合器装置,然后是毂驱动信号以操作轮毂致动器,使得连接毂被致动从而连接 选择一个带中间轴的从动齿轮。
    • 8. 发明授权
    • Simulation model creation method and system, and storage medium
    • 仿真模型创建方法与系统,存储介质
    • US07260510B2
    • 2007-08-21
    • US10110408
    • 2001-08-24
    • Shizuo Sumida
    • Shizuo Sumida
    • G06F17/50
    • G06F17/5036G05B17/02
    • This invention systematically creates models that simulate operations from a component of a single function to a machine that combines many components and also to a system that combines a plurality of machines, which can be expressed by all physical systems such as an electric system and mechanical system, solid-state system and fluid system, and the like. The invention creates an overall function simulation model using a plurality of function simulation models which are independently provided for predetermined functions and are coupled via potential and flow variables. When respective function simulation models include linear characteristic elements A, B, C, E, F, and G and at least one function simulation model includes nonlinear characteristic elements X and Y, the nonlinear characteristic elements are separated from the linear characteristic elements by handling the nonlinear characteristics as functions in the function simulation model, the plurality of function simulation models are integrated as linear characteristic elements (integration process), and the nonlinear characteristic elements are linked to the functions in the integrated function simulation model (succession process).
    • 本发明系统地创建模拟从单个功能的组件到结合许多组件的机器的操作的模型,并且还结合组合多个机器的系统,其可以由诸如电气系统和机械系统的所有物理系统 ,固体系统和流体系统等。 本发明使用多个功能模拟模型创建一个整体功能模拟模型,这些模型独立地提供给预定的功能并通过电位和流量变量耦合。 当各功能模拟模型包括线性特征元素A,B,C,E,F和G,并且至少一个功能模拟模型包括非线性特征元素X和Y时,非线性特征元素通过处理线性特征元素与线性特征元素分离 非线性特征作为功能模拟模型的功能,将多个功能模拟模型集成为线性特征元素(集成过程),并将非线性特征元素与集成函数模拟模型(后继过程)中的函数相关联。
    • 9. 发明授权
    • Method and apparatus for identifying characteristic value
    • 用于识别特征值的方法和装置
    • US06920413B2
    • 2005-07-19
    • US10018754
    • 2001-05-22
    • Shizuo SumidaAkio NagamatsuHiroshi Takata
    • Shizuo SumidaAkio NagamatsuHiroshi Takata
    • G06F17/50G05B17/02G05B23/02H03F1/26
    • G05B17/02
    • A characteristic value identification method and an apparatus therefor which can develop each model to be integrated into an entire model, similar to a product in which individual parts are combined, are provided. A functional model of a part is prepared based on a potential quantity and a flow quantity representing a strength and a quantity of energy applied to the part, a steady internal characteristic value of the functional model in a steady state is identified, and a transient internal characteristic value of the functional model in a transient state is identified by using the identified steady internal characteristic value. Furthermore, the functional model having the characteristic value identified by such an identification apparatus is incorporated into a virtual testing system as a virtual prototype, an internal characteristic value of the virtual prototype is evaluated by providing a driving operation condition and an environment condition, actual machine test data obtained by the driving operation condition and the environment condition are compared with the internal characteristic value, and a re-identification is performed depending on the comparison result if necessary.
    • 提供了类似于组合各个部件的产品的特征值识别方法及其装置,其可以开发要整合到整个模型中的每个模型。 基于表示施加到部件的能量的强度和能量的潜在量和流量来准备零件的功能模型,识别在稳定状态下的功能模型的稳定的内部特征值,以及瞬态内部 通过使用识别的稳定内部特征值来识别瞬态中的功能模型的特征值。 此外,具有由这种识别装置识别的特征值的功能模型作为虚拟原型并入到虚拟测试系统中,通过提供驱动操作条件和环境条件来评估虚拟原型的内部特征值,实际机器 将通过驾驶操作条件和环境条件获得的测试数据与内部特征值进行比较,并且如果需要,则根据比较结果进行重新识别。