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    • 7. 发明授权
    • Control apparatus for internal combustion engine
    • 内燃机控制装置
    • US08918269B2
    • 2014-12-23
    • US14364500
    • 2012-10-19
    • Honda Motor Co., Ltd.
    • Seiichiro IrieHisashi ItoHideharu TakamiyaHirotaka KomatsuYasuhiro Motohashi
    • F02D37/02F02P5/152F02M25/08
    • F02M25/08F02D41/0042F02D41/0045F02D41/0052F02D41/0062F02D41/0072F02D41/18F02D41/2445F02D41/2454F02D2041/001F02D2200/0402F02D2200/0414F02M26/00F02P5/1516F02P5/152Y02T10/46Y02T10/47
    • A control apparatus for an internal combustion engine having a throttle valve disposed in an intake passage of the engine is provided. A wide-open intake air amount, which is an intake air amount corresponding to a state where the throttle valve is fully opened, is calculated, and a theoretical intake air amount, which is an intake air amount corresponding to a state where no exhaust gas of the engine is recirculated to a combustion chamber of the engine, is calculated according to the wide-open intake air amount and the intake pressure. An air-fuel ratio correction amount and a learning value thereof are calculated according to the detected air-fuel ratio, and a reference intake air amount is calculated using the intake pressure, the engine rotational speed, the air-fuel ratio correction amount, and the learning value. A lower limit value of the detected intake air amount is set according to the reference intake air amount, and a limit process is performed for limiting the detected intake air amount within a range of values which are equal to or greater than the lower limit value. An amount of the evaporative fuel/air mixture supplied to the intake passage is calculated, and the limit-processed intake air amount is corrected using the evaporative fuel/air mixture amount to calculate an intake gas amount. An exhaust gas recirculation ratio is calculated using the theoretical intake air amount and the intake gas amount.
    • 提供一种具有设置在发动机的进气通道中的节流阀的内燃机的控制装置。 计算作为与节气门完全打开的状态相对应的吸入空气量的大开放吸入空气量,以及理论吸入空气量,其为不排气 的发动机再循环到发动机的燃烧室,根据大气开放量和进气压力来计算。 根据检测到的空燃比计算空燃比校正量和学习值,并且使用进气压力,发动机转速,空燃比校正量和 学习价值。 根据基准进气量设定检测出的进气量的下限值,并且在检测到的进气量限制在等于或大于下限值的值的范围内进行限位处理。 计算供给到进气通道的蒸发燃料/空气混合物的量,并且使用蒸发燃料/空气混合物量来校正限制进入空气量,以计算进气量。 使用理论进气量和进气量计算排气再循环比。
    • 10. 发明申请
    • LEARNING DEVICE
    • 学习设备
    • US20100324702A1
    • 2010-12-23
    • US12817266
    • 2010-06-17
    • Naoyuki YAMADAKoji Ishizuka
    • Naoyuki YAMADAKoji Ishizuka
    • G05B13/02G05B17/00G05B15/00
    • G05B13/0265F02D41/2445F02M47/027F02M2200/24
    • A learning device learns a control parameter (e.g., injection start response delay), which is used for deciding a control content of an injector (controlled object), in relation to a criterion variable (e.g., fuel pressure). The learning device has a storing section for storing a learning vector consisting of the control parameter and the criterion variable. The learning device has a measurement vector obtaining section for obtaining a measurement vector consisting of a measurement value of the control parameter and a measurement value of the criterion variable. The learning device has a correcting section for correcting the learning vector based on the measurement vector and for performing storing and updating of the learning vector in the storing section.
    • 学习装置相对于标准变量(例如,燃料压力)学习用于确定喷射器(受控对象)的控制内容的控制参数(例如,喷射开始响应延迟)。 学习装置具有用于存储由控制参数和标准变量组成的学习向量的存储部。 该学习装置具有:测量矢量获取部,用于获得由该控制参数的测量值和标准变量的测量值组成的测量矢量。 学习装置具有校正部,用于基于测量矢量校正学习向量,并且用于在存储部中执行学习向量的存储和更新。