会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明授权
    • Internal combustion engine control apparatus
    • 内燃机控制装置
    • US06644273B1
    • 2003-11-11
    • US10308077
    • 2002-12-03
    • Hideki HagariYasuyoshi HoriAkira FurutaTatsuhiko TakahashiShiro Yonezawa
    • Hideki HagariYasuyoshi HoriAkira FurutaTatsuhiko TakahashiShiro Yonezawa
    • F02P515
    • F02D41/009F02D41/222
    • An internal combustion engine control apparatus can reliably detect abnormality in a crank angle position signal to ensure a fail safe function upon occurrence of the abnormally. A fuel injection signal and an ignition signal is generated based on the result of cylinder identification performed by a cylinder identification part and the crank angle position of the crank angle position signal. An abnormality determination part determines whether the crank angle position signal is abnormal. The cylinder identification part includes a cylinder identification resetting part for resetting the current content of the cylinder identification performed by the cylinder identification part upon determination of abnormality. The cylinder identification resetting part includes a fuel injection and ignition signal stopping part for stopping the fuel injection signal and the ignition signal, and a cylinder identification information clearing part for clearing previous cylinder identification information earlier than the last crank angle position signal upon determination of abnormality.
    • 内燃机控制装置可以可靠地检测曲柄角位置信号的异常,以确保异常发生时的故障安全功能。 基于由气缸识别部执行的气缸识别结果和曲柄角位置信号的曲柄角位置,产生燃料喷射信号和点火信号。 异常判定部判定曲柄角位置信号是否异常。 气缸识别部件包括气缸识别复位部件,用于在异常确定时复位由气缸识别部件执行的气缸识别的当前内容。 气缸识别复位部分包括用于停止燃料喷射信号和点火信号的燃料喷射和点火信号停止部分,以及用于在确定异常时清除比最后的曲柄角位置信号更早的先前气缸识别信息的气缸识别信息清除部分 。
    • 3. 发明授权
    • Apparatus for identification of cylinders in an internal combustion engine
    • 用于识别内燃机中的气缸的装置
    • US06776033B2
    • 2004-08-17
    • US10307939
    • 2002-12-03
    • Yasuyoshi HoriShiro YonezawaAkira FurutaHideki HagariTatsuhiko Takahashi
    • Yasuyoshi HoriShiro YonezawaAkira FurutaHideki HagariTatsuhiko Takahashi
    • G01M1500
    • G01M15/06
    • A cylinder identifying apparatus has a generator which generates a cylinder discrimination signal, a generator which generates a crank angle position signal, and a control unit which obtains the number of detections of the crank angle position signal, the number of detections of the cylinder discrimination signal, the number of detections of the crank angle position signal at the time of detection of the cylinder discrimination signal, etc. The control unit sets a cylinder discrimination period B35° to B75° CA if the present reference crank position is a first-time detection result after startup, sets a cylinder discrimination period B75° to B75° CA if the present reference crank position is a second-time or some other subsequent detection result, obtains the number of detections of the cylinder discrimination signal, and identifies a cylinder on the basis of the number of pulse dropouts and the number of detections of the cylinder discrimination signal.
    • 气缸识别装置具有产生气缸判别信号的发电机,产生曲柄角位置信号的发电机,以及获取曲柄角位置信号的检测次数,气缸识别信号的检测次数的控制单元 ,检测气缸识别信号时的曲柄角位置信号的检测次数等。如果本参考曲柄位置是第一次检测,则控制单元将气缸鉴别周期B35°设定为B75°CA 启动后的结果,如果本参考曲柄位置是第二次或其他后续检测结果,则将气缸鉴别周期B75°设置为B75°CA,获得气缸鉴别信号的检测次数,并且识别 脉冲丢失次数的基数和气缸判别信号的检测次数。
    • 6. 发明授权
    • Control apparatus for internal combustion engine
    • 内燃机控制装置
    • US07853400B2
    • 2010-12-14
    • US12496189
    • 2009-07-01
    • Yuhei MatsushimaHideki HagariKeitaro EzumiTomokuni Kusunoki
    • Yuhei MatsushimaHideki HagariKeitaro EzumiTomokuni Kusunoki
    • F02P5/15
    • G01L23/225F02D35/027F02D2041/286F02D2041/288F02P5/152Y02T10/46
    • A knock control apparatus includes: a knock sensor for detecting knock of an internal combustion engine; a signal processing section for calculating a knock intensity; and knock determination level setting sections: for calculating an average value of the knock intensity; for calculating, based on the average value, an overall variance of the knock intensity of an entirety of a frequency distribution, a higher variance of the knock intensity above the average value, and a lower variance of the knock intensity below the average value; for calculating a standard deviation of the knock intensity from the overall variance; for presetting a value allowing the frequency distribution of the knock intensity to be a predetermined confidence interval as a confidence coefficient; and for setting a sum of the average value and a value obtained by multiplying the standard deviation by the corrected confidence coefficient as a knock determination level.
    • 爆震控制装置包括:用于检测内燃机的爆震的爆震传感器; 用于计算爆震强度的信号处理部分; 爆震判定等级设定部分:计算爆震强度的平均值; 用于基于平均值计算整个频率分布的敲击强度的总体方差,高于平均值的爆震强度的较高方差和低于平均值的爆震强度的较低方差; 用于计算爆震强度与总方差的标准偏差; 用于将允许爆震强度的频率分布设定为预定置信区间的值作为置信系数; 并且通过将标准偏差乘以校正的置信系数作为爆震判定水平来设置平均值和值。
    • 7. 发明授权
    • Control apparatus for an internal combustion engine
    • 一种用于内燃机的控制装置
    • US07305967B1
    • 2007-12-11
    • US11705427
    • 2007-02-13
    • Hideki HagariHideki Nishimura
    • Hideki HagariHideki Nishimura
    • F02D9/08B60T7/12
    • F02D9/02F02D11/105F02D41/0002F02D41/18F02D41/2448F02D41/2464F02D2200/0404F02D2200/0406F02D2200/0414F02D2200/703F02M35/10052F02M35/10295F02M35/1038F02M35/10386Y02T10/42
    • In throttle control, a throttle opening is set with sufficient control accuracy in accordance with the operating state of an engine despite variations in a throttle body and various kinds of sensors. A target effective opening area is calculated from a target amount of intake air, an atmospheric pressure, an intake pipe internal pressure and an intake air temperature by using a flow rate formula for a throttle type flow meter. A target throttle opening is calculated from a correlation map. An actual effective opening area is calculated from the amount of intake air, the atmospheric pressure, the intake pipe internal pressure, and the intake air temperature by using the above-mentioned flow rate formula, and a learning throttle opening is calculated from the correlation map. The target throttle opening is corrected by a throttle opening learning value calculated from a deviation between the target throttle opening and the learning throttle opening.
    • 在节气门控制中,尽管节气门体和各种传感器有变化,但是根据发动机的操作状态,节气门开度被设定为具有足够的控制精度。 通过使用节气门式流量计的流量公式,从进气的目标量,大气压,进气管内压和进气温度计算出目标有效开口面积。 从相关图计算目标节气门开度。 通过使用上述流量公式,根据进气量,大气压,进气管内压和进气温度计算实际有效开口面积,并根据相关图计算学习节气门开度 。 通过从目标节气门开度和学习节气门开度之间的偏差计算的节气门开度学习值来校正目标节气门开度。
    • 8. 发明授权
    • Control apparatus for an internal combustion engine
    • 一种用于内燃机的控制装置
    • US07171960B1
    • 2007-02-06
    • US11411807
    • 2006-04-27
    • Hideki Hagari
    • Hideki Hagari
    • F02D41/14F02M33/04
    • F02M25/0827F02D41/0037F02D41/004F02D41/0042F02D41/0045F02D41/06F02D41/10F02D41/12F02D41/1454F02D41/187F02D41/2454F02D2041/1431
    • A control apparatus for an internal combustion engine prevents variation of an air fuel ratio even upon introduction of purge air. A delay time occurring until the intake air detected, after having arrived at the combustion chamber through a surge tank, influences an air fuel ratio sensor, a delay time occurring until purge air containing evaporated fuel generated upon purging a canister, after having arrived at the combustion chamber through the surge tank, influences the air fuel ratio sensor, and a delay time occurring until fuel supplied by an injector, after having arrived at the combustion chamber, influences the air fuel ratio sensor, are represented by simplified physical models. A purge rate in the combustion chamber or in the neighborhood of the air fuel ratio sensor is calculated by using the physical models, and a purge air concentration and a fuel correction amount are calculated based on the purge rate thus obtained.
    • 用于内燃机的控制装置即使在引入吹扫空气时也可防止空燃比的变化。 在通过缓冲罐到达燃烧室之后,直到进入空气检测到的延迟时间影响空燃比传感器,直到在吹扫罐之后产生的蒸发燃料的吹扫空气到达之后才产生延迟时间 通过缓冲罐的燃烧室影响空燃比传感器,并且在通过喷射器供应的燃料在到达燃烧室之后影响空燃比传感器的时间内发生的延迟时间由简化的物理模型表示。 通过使用物理模型计算燃烧室或空燃比传感器附近的吹扫速率,并且基于由此获得的吹扫速率计算吹扫空气浓度和燃料校正量。
    • 10. 发明授权
    • Control apparatus for an internal combustion engine
    • 一种用于内燃机的控制装置
    • US08392094B2
    • 2013-03-05
    • US12965329
    • 2010-12-10
    • Tomokazu MakinoHideki HagariKeitaro EzumiTomokuni Kusunoki
    • Tomokazu MakinoHideki HagariKeitaro EzumiTomokuni Kusunoki
    • F02D43/00F02P5/152
    • F02D35/021F02D13/0234F02D13/0238F02D35/027F02D35/028F02D41/0002F02D41/22F02D2041/001F02D2041/227G01M15/11Y02T10/40
    • A control apparatus for an internal combustion engine includes: an abnormal combustion detection unit for detecting an abnormal combustion due to self-ignition occurring; a pre-ignition determination unit for detecting abnormal combustion occurrence timing based on abnormal combustion detection information to determine whether or not the abnormal combustion is the pre-ignition based on comparison between pre-ignition determination timing and the abnormal combustion occurrence timing; a heat-source pre-ignition determination unit for determining whether the pre-ignition is the heat-source pre-ignition or the compression pre-ignition based on comparison between the abnormal combustion occurrence timing set by the pre-ignition determination timing and heat-source pre-ignition determination timing; a first avoidance unit for avoiding the heat-source pre-ignition in a case where the pre-ignition is determined as the heat-source pre-ignition; and a second avoidance unit for avoiding the compression pre-ignition in a case where the pre-ignition is determined as the compression pre-ignition.
    • 一种用于内燃机的控制设备包括:异常燃烧检测单元,用于检测由于自点火发生的异常燃烧; 预燃点确定单元,用于基于异常燃烧检测信息检测异常燃烧发生定时,以基于预燃点确定时刻和异常燃烧发生定时之间的比较来确定异常燃烧是否是点火前的; 基于通过预先点火判定时刻设定的异常燃烧发生时刻与热点预测时刻之间的比较来判定预热点是否为热源预点火或压缩预点火的热源预先点火判定单元, 源点火确定时机; 在预先点火被确定为热源预点火的情况下避免热源预点火的第一回避单元; 以及在预先点火被确定为压缩预点火的情况下避免压缩预点火的第二回避单元。