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    • 3. 发明授权
    • Fuel injection system for internal combustion engine
    • 内燃机燃油喷射系统
    • US08812215B2
    • 2014-08-19
    • US13399008
    • 2012-02-17
    • Kouichi SugiyamaKoji Ishizuka
    • Kouichi SugiyamaKoji Ishizuka
    • F02M37/00
    • F02D41/406F02D41/2096F02D41/3845F02D41/3863F02D2200/0602F02D2200/0606Y02T10/44
    • A fuel injection system for an internal combustion engine is provided which calculates the quantity of fuel required to bring the pressure in a fuel accumulator into agreement with a target pressure and then control an operation of a high-pressure pump based on the required quantity. Even in the absence of a change in pressure in the accumulator, the system controls the high-pressure pump based on the required quantity. Specifically, the system calculates a feedback fuel quantity required to compensate for a difference between the required quantity and a quantity of the fuel actually supplied to the accumulator, in other words, leans such a quantity difference to correct the required quantity, thus resulting in an enhanced response of the system to control the high-pressure pump to a change in pressure in the accumulator.
    • 提供一种用于内燃机的燃料喷射系统,其计算使燃料蓄压器中的压力与目标压力一致所需的燃料量,然后基于所需量控制高压泵的操作。 即使在蓄能器没有压力变化的情况下,系统根据所需的量控制高压泵。 具体地说,系统计算补偿所需量与实际供给蓄能器的燃料量之间的差异所需的反馈燃料量,换句话说,倾斜这样的数量差以校正所需量,从而导致 增强了系统对高压泵的控制,使蓄能器的压力发生变化。
    • 5. 发明授权
    • Fuel injection detecting device
    • 燃油喷射检测装置
    • US08566005B2
    • 2013-10-22
    • US12731431
    • 2010-03-25
    • Naoyuki YamadaKoji Ishizuka
    • Naoyuki YamadaKoji Ishizuka
    • F02D41/30F02M63/00
    • F02D41/401F02D2200/0602F02D2250/04F02M47/027F02M63/0225Y02T10/44
    • An actual maximum fuel injection rate is computed based on a falling waveform and a rising waveform of the fuel pressure. The falling waveform represents the fuel pressure detected by a fuel sensor during a period in which the fuel pressure increases due to a fuel injection rate decrease. The rising waveform represents the fuel pressure detected by the fuel sensor during a period in which the fuel pressure decreases due to a fuel injection rate increase. The falling waveform and the rising waveform are modeled by modeling functions. A reference pressure is computed based on pressure during a specified time period before the falling waveform is generated. An intersection pressure is computed, at which the straight lines expressed by the modeling functions intersect to each other. The maximum fuel injection rate is computed based on a fuel pressure drop from the reference pressure to the intersection pressure.
    • 基于下降波形和燃料压力的上升波形来计算实际的最大燃料喷射率。 下降波形表示在燃料压力由于燃料喷射速率降低而增加的时段期间由燃料传感器检测到的燃料压力。 上升波形表示燃料传感器在由于燃料喷射率增加而燃料压力降低的时段期间检测到的燃料压力。 下降波形和上升波形由建模功能建模。 基于在产生下降波形之前的指定时间段内的压力来计算参考压力。 计算交叉压力,在该交点压力下,由建模功能表达的直线彼此相交。 基于从参考压力到交叉口压力的燃料压降来计算最大燃料喷射速率。
    • 7. 发明授权
    • Learning device and fuel injection system
    • 学习装置和燃油喷射系统
    • US08306719B2
    • 2012-11-06
    • US12486038
    • 2009-06-17
    • Koji Ishizuka
    • Koji Ishizuka
    • G06F19/00
    • F02D43/02F02D41/2448F02D41/2474F02D41/2477F02D41/2483
    • A learning device changes each of multiple parameters to an increased side and to a decreased side with respect to a reference value set for each of the multiple parameters. The learning device calculates an approximation degree for each combination of the changes of the multiple parameters. The learning device performs update by using the combination of the changes providing the highest approximation degree among the approximation degrees as the combination of the updated reference values when an update end condition is not satisfied. The update end condition is a condition that the approximation degree at the reference values is higher than any of the approximation degrees after the change. The learning device decides the reference values as learning values of the multiple parameters when the update end condition is satisfied.
    • 学习装置将多个参数中的每一个相对于针对多个参数中的每个参数设置的参考值将增加的一侧和减小的一侧改变。 学习装置计算多个参数的变化的每个组合的近似度。 当更新结束条件不满足时,学习装置通过使用提供近似度之间的最高近似度的变化的组合作为更新的参考值的组合来执行更新。 更新结束条件是参考值的近似度高于变化后的任何近似度的条件。 当满足更新结束条件时,学习装置将参考值确定为多个参数的学习值。
    • 9. 发明授权
    • Fuel injection control device
    • 燃油喷射控制装置
    • US07865293B2
    • 2011-01-04
    • US12179235
    • 2008-07-24
    • Koji IshizukaKenichiro Nakata
    • Koji IshizukaKenichiro Nakata
    • F02M51/00F02M51/06
    • F02D41/40F02D2200/0602F02M57/005Y02T10/44
    • A fuel injection control device (ECU) for controlling injection supply of fuel to a target engine includes a program for sequentially sensing fuel pressure fluctuating with injection of a predetermined injector of each cylinder of a multi-cylinder engine based on an output of a fuel pressure sensor, a program for detecting a diagram as a profile of a transition of a fuel quantity injected from the injector per unit time (i.e., an injection rate) at a present time based on the sequentially sensed fuel pressure transition, and a program for varying an injection command to the injector based on the diagram that is the profile of the injection rate transition and that is detected by the latter program and a predetermined basic diagram such that the diagram as the actual profile of the injection rate transition belongs to the basic diagram.
    • 一种用于控制向目标发动机的燃料喷射供应的燃料喷射控制装置(ECU)包括用于根据燃料压力的输出依次感测燃料压力波动的程序,其中喷射多气缸发动机的每个气缸的预定喷射器 传感器,用于基于依次感测到的​​燃料压力转换,将当前时间内从喷射器喷射的燃料量的过渡(即,喷射速率)的曲线图检测到的程序,以及用于变化的程序 基于作为喷射速率转换的轮廓的图并且由后一程序检测的喷射指令和预定的基本图,使得作为喷射率转换的实际轮廓的图属于基本图 。
    • 10. 发明申请
    • FUEL TEMPERATURE SENSING DEVICE
    • 燃油温度传感装置
    • US20100319443A1
    • 2010-12-23
    • US12817286
    • 2010-06-17
    • Kenichiro NAKATAKoji Ishizuka
    • Kenichiro NAKATAKoji Ishizuka
    • F02M65/00F02D41/30
    • F02D41/28F02D41/008F02D2200/0602F02D2200/0606F02D2400/08F02M57/005
    • A fuel temperature sensing device has fuel temperature sensors provided to respective cylinders for sensing fuel temperature. Each fuel temperature sensor is arranged in a position closer to an injection hole than to a pressure accumulator in a fuel passage extending from the pressure accumulator to the injection hole. The device has an average value calculating section for calculating an average value of fuel temperature sensing values sensed with the fuel temperature sensors of the respective cylinders. The device has a deviation calculating section for calculating deviations between the average value and the fuel temperature sensing values of the respective fuel temperature sensors. The device has a correcting section for correcting the fuel temperature sensing value of each fuel temperature sensor to approximate the deviation to zero for each fuel temperature sensor.
    • 燃料温度感测装置具有设置在各个气缸上的用于检测燃料温度的燃料温度传感器。 每个燃料温度传感器布置在比从蓄压器延伸到喷射孔的燃料通道中的压力蓄积器更靠近喷射孔的位置。 该装置具有用于计算用各个气缸的燃料温度传感器感测的燃料温度感测值的平均值的平均值计算部。 该装置具有用于计算各个燃料温度传感器的平均值和燃料温度感测值之间的偏差的偏差计算部。 该装置具有用于校正每个燃料温度传感器的燃料温度感测值以将每个燃料温度传感器的偏差近似为零的校正部分。