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    • 4. 发明申请
    • CYLINDER CHARACTERISTIC VARIATION SENSING DEVICE
    • 气缸特性变化传感装置
    • US20090107225A1
    • 2009-04-30
    • US12258750
    • 2008-10-27
    • Koji IshizukaKenichiro Nakata
    • Koji IshizukaKenichiro Nakata
    • G01M15/04F02D41/30
    • F02D41/403F02D41/12F02D41/1498F02D41/2438F02D41/247F02D2250/04Y02T10/44
    • A cylinder characteristic variation sensing device has a small injection controlling section that performs small injections sequentially in respective cylinders, a torque increase amount sensing section that senses an increase amount of output torque caused in connection with the small injection for each cylinder, an injection quantity sensing section that senses an actual injection quantity of the small injection for each cylinder, and a cylinder characteristic variation calculating section that calculates a variation in a cylinder characteristic among the cylinders (i.e., a cylinder characteristic variation) based on a variation in the sensing value of the injection quantity sensing section among the cylinders (i.e., an injection quantity variation) and a variation in the sensing value of the torque increase amount sensing section among the cylinders (i.e. a torque increase amount variation).
    • 气缸特性变化检测装置具有小型喷射控制部分,其在各个气缸中顺序地进行小喷射;扭矩增加量感测部分,其感测与每个气缸的小喷射相关联的输出转矩增加量;喷射量感测 感测每个气缸的小喷射的实际喷射量的气缸部分,以及气缸特性变化计算部分,其基于感测值的变化来计算气缸之间的气缸特性变化(即气缸特性变化) 气缸之间的喷射量感测部(即喷射量变化)和转矩增加量感测部的感测值的变化(即,转矩增加量变化)。
    • 7. 发明申请
    • FUEL INJECTION DEVICE AND FUEL INJECTION SYSTEM
    • 燃油喷射装置和燃油喷射系统
    • US20090056676A1
    • 2009-03-05
    • US12189376
    • 2008-08-11
    • Kenichiro NAKATAKoji Ishizuka
    • Kenichiro NAKATAKoji Ishizuka
    • F02M51/06
    • F02D41/40F02D41/221F02D41/2435F02D41/2467F02D41/3836F02D2200/0602F02D2250/04F02M57/005F02M2200/24Y02T10/44
    • A fuel injection device includes a fuel injection valve for injecting fuel, which is distributed from a pressure-accumulation vessel. A pressure sensor is located in a fuel passage, which extends from the pressure-accumulation vessel to a nozzle hole, and configured to detect pressure of the fuel. The pressure sensor is located closer to the nozzle hole than the pressure-accumulation vessel. A storage unit stores individual difference information, which indicates an injection characteristic of the fuel injection valve, the injection characteristic being obtained by an examination. The individual difference information is related to a fluctuation pattern of a portion of the fluctuation in detected pressure waveform of the pressure sensor. The fluctuation is attributed to one fuel injection through the nozzle hole. The portion of the fluctuation is subsequent to an end of the fuel injection.
    • 燃料喷射装置包括从蓄压容器分配的用于喷射燃料的燃料喷射阀。 压力传感器位于从蓄压容器延伸到喷嘴孔的燃料通道中,并构造成检测燃料的压力。 压力传感器比压力蓄积容器更靠近喷嘴孔。 存储单元存储指示燃料喷射阀的喷射特性的各个差异信息,通过检查获得的喷射特性。 个体差异信息与压力传感器的检测压力波形的波动的一部分的波动模式相关。 波动归因于通过喷嘴孔的一次燃料喷射。 波动的一部分在燃料喷射结束之后。
    • 8. 发明授权
    • Rotation angle sensing device
    • 旋转角度检测装置
    • US07284538B2
    • 2007-10-23
    • US11508280
    • 2006-08-23
    • Koji IshizukaKenichiro Nakata
    • Koji IshizukaKenichiro Nakata
    • F02D31/00F02D41/30
    • F02D41/009F02D41/042F02D41/123F02D41/22G01M15/046
    • A rotation angle sensing device calculates an average value of calculation values of time necessary for rotation of each one of sections provided by equally dividing one rotation of a crankshaft. The device calculates an average value of the average values of the entire sections to calculate an entire section average value. The device calculates ratios of the average values of the respective sections to the entire section average value. The device eliminates an influence of rotation fluctuation of the crankshaft from the ratios by using reference ratios, which are calculated as ratios of the average values of the respective sections to the entire section average value in the case where there is no structural error. Thus, the device calculates learning values for compensating for the structural error.
    • 旋转角度检测装置计算通过使曲轴的一次旋转等分而提供的每个部分的旋转所需的时间的计算值的平均值。 该装置计算整个部分的平均值的平均值以计算整个部分平均值。 该装置计算各部分的平均值与整个部分平均值的比率。 该装置通过使用在不存在结构错误的情况下以各部分的平均值与整个截面平均值的比率计算的参考比来消除曲轴的旋转波动对比率的影响。 因此,该装置计算用于补偿结构误差的学习值。
    • 9. 发明授权
    • Fuel-injector-replacement determining device
    • 燃油喷射器更换判定装置
    • US09267459B2
    • 2016-02-23
    • US13161740
    • 2011-06-16
    • Kenichiro NakataKoji Ishizuka
    • Kenichiro NakataKoji Ishizuka
    • F02D41/20F02D41/24
    • F02D41/2096F02D41/2441F02D2041/2086
    • A fuel-injector-replacement device obtains a learning value of characteristic data of an injector while an engine is running. The learning value stored in an ECU is updated into the learning value. When the engine is stopped, the characteristic data stored in an INJ-EEPROM are updated into the characteristic data stored in the ECU. When the engine is started, it is determined whether the characteristic data stored in the ECU agrees with the characteristic data stored in the INJ-EEPROM. When these data do not agree with each other, it is determined that the fuel-injector is improperly replaced without updating the characteristic data stored in the ECU.
    • 燃料喷射器更换装置在发动机运行时获得喷射器的特征数据的学习值。 存储在ECU中的学习值被更新为学习值。 当发动机停止时,存储在INJ-EEPROM中的特征数据被更新为存储在ECU中的特征数据。 当发动机启动时,确定存储在ECU中的特征数据是否与存储在INJ-EEPROM中的特征数据一致。 当这些数据彼此不一致时,确定在不更新存储在ECU中的特征数据的情况下不正确地更换燃料喷射器。