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    • 1. 发明授权
    • Variable valve timing control apparatus for internal combustion engine
    • 内燃机可变气门正时控制装置
    • US08297240B2
    • 2012-10-30
    • US12787853
    • 2010-05-26
    • Masaomi InoueYuichi Takemura
    • Masaomi InoueYuichi Takemura
    • F01L1/00
    • F02D41/263F01L1/3442F01L2001/34453F01L2001/34463F01L2820/041F02D41/0002F02D41/2464F02D2041/001
    • A variable valve timing control apparatus for an internal combustion engine having a crankshaft and a camshaft, the variable valve timing control apparatus including a hydraulic variable valve timing device, an intermediate lock mechanism, and an oil pressure control device. The control apparatus learns an intermediate lock position to obtain a learning value of the intermediate lock position when the intermediate lock mechanism locks the VCT phase at the intermediate lock position. The control apparatus computes an actual VCT phase based on the learning value of the intermediate lock position. The control apparatus computes a target VCT phase in accordance with an operational condition of the engine based on the learning value of the intermediate lock position. The control apparatus controls a control amount of the oil pressure control device such that the actual VCT phase becomes the target VCT phase.
    • 一种具有曲轴和凸轮轴的内燃机的可变气门正时控制装置,所述可变气门正时控制装置包括液压可变气门正时装置,中间锁定机构和油压控制装置。 当中间锁定机构将VCT相位锁定在中间锁定位置时,控制装置学习中间锁定位置以获得中间锁定位置的学习值。 控制装置基于中间锁定位置的学习值来计算实际VCT相位。 控制装置基于中间锁定位置的学习值,根据发动机的运转状况来计算目标VCT相位。 控制装置控制油压控制装置的控制量,使得实际VCT相位成为目标VCT相位。
    • 3. 发明申请
    • VARIABLE VALVE TIMING CONTROL APPARATUS FOR INTERNAL COMBUSTION ENGINE
    • 用于内燃机的可变阀定时控制装置
    • US20100305835A1
    • 2010-12-02
    • US12787853
    • 2010-05-26
    • Masaomi InoueYuichi Takemura
    • Masaomi InoueYuichi Takemura
    • F02D41/26F01L1/34
    • F02D41/263F01L1/3442F01L2001/34453F01L2001/34463F01L2820/041F02D41/0002F02D41/2464F02D2041/001
    • A variable valve timing control apparatus for an internal combustion engine having a crankshaft and a camshaft, the variable valve timing control apparatus including a hydraulic variable valve timing device, an intermediate lock mechanism, and an oil pressure control device. The control apparatus learns an intermediate lock position to obtain a learning value of the intermediate lock position when the intermediate lock mechanism locks the VCT phase at the intermediate lock position. The control apparatus computes an actual VCT phase based on the learning value of the intermediate lock position. The control apparatus computes a target VCT phase in accordance with an operational condition of the engine based on the learning value of the intermediate lock position. The control apparatus controls a control amount of the oil pressure control device such that the actual VCT phase becomes the target VCT phase.
    • 一种具有曲轴和凸轮轴的内燃机的可变气门正时控制装置,所述可变气门正时控制装置包括液压可变气门正时装置,中间锁定机构和油压控制装置。 当中间锁定机构将VCT相位锁定在中间锁定位置时,控制装置学习中间锁定位置以获得中间锁定位置的学习值。 控制装置基于中间锁定位置的学习值来计算实际VCT相位。 控制装置基于中间锁定位置的学习值,根据发动机的运转状况来计算目标VCT相位。 控制装置控制油压控制装置的控制量,使得实际VCT相位成为目标VCT相位。
    • 9. 发明授权
    • Knocking state determination device
    • 敲击状态判定装置
    • US07424820B2
    • 2008-09-16
    • US11475231
    • 2006-06-27
    • Kiyoshi IwadeNobuyuki MurateShuhei OeRihito KanekoKenji KasashimaYuichi Takemura
    • Kiyoshi IwadeNobuyuki MurateShuhei OeRihito KanekoKenji KasashimaYuichi Takemura
    • G01L23/22F01P5/14
    • G01L23/225
    • An engine ECU executes a program including a step of calculating intensity values LOG(V) based on signals transmitted from a knock sensor; a step of deciding a maximum value V(MAX) in frequency distribution of intensity values LOG(V) for N cycles (N is a natural number); a step of calculating a knock determination level V(KD) based on the frequency distribution; a step of, when the knock determination level V(KD) is smaller than the maximum value V(MAX), removing V(MAX) from the frequency distribution; and a step of counting the total frequency of removed maximum values V(MAX) as knock occupancy KC. Maximum values V(MAX) are removed until the knock determination level V(KD) and the maximum value V(MAX) coincide, and the knock determination level V(KD) is recalculated.
    • 发动机ECU执行包括基于从爆震传感器发送的信号来计算强度值LOG(V)的步骤的程序; 在N个周期(N是自然数)中确定强度值LOG(V)的频率分布的最大值V(MAX)的步骤; 基于频率分布计算爆震判定电平V(KD)的步骤; 当爆震判定电平V(KD)小于最大值V(MAX)时,从频率分布中去除V(MAX)的步骤; 以及将去除的最大值V(MAX)的总频率计数为敲击占有率KC的步骤。 去除最大值V(MAX),直到爆震判定水平V(KD)和最大值V(MAX)重合为止,并重新计算爆震判定水平V(KD)。