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    • 2. 发明授权
    • Misfire detection method based on a change in crankshaft rotation
    • 基于曲轴旋转变化的失火检测方法
    • US5506778A
    • 1996-04-09
    • US157160
    • 1994-02-03
    • Takuya MatsumotoToru HashimotoMitsuhiro MiyakeYasuhisa YoshidaMitsuhiko YanagisawaHiroyuki NakajimaKoichi Namiki
    • Takuya MatsumotoToru HashimotoMitsuhiro MiyakeYasuhisa YoshidaMitsuhiko YanagisawaHiroyuki NakajimaKoichi Namiki
    • F02D41/14G01M15/11F01L25/00
    • G01M15/11F02D41/1498F02D2200/1015
    • A misfire detection method is provided, which method makes it possible to accurately detect the occurrence/absence of misfire by eliminating a detection error in misfire detection. This error is caused by a vibrational increase or decrease of the rotational changing rate of a crankshaft after a misfire state occurs. A processor, which receives pulse outputs from a crank angle sensor, calculates in sequence angular accelerations D.omega..sub.n-2, D.omega..sub.n-1, D.omega..sub.n, and D.omega..sub.n+1 in crank angle areas which correspond to a preceding cylinder, two cylinders checked for misfire, and a succeeding cylinder, respectively. If the values D.omega..sub.n-1 and D.omega..sub.n n significantly decrease in comparison with the values D.omega..sub.n-2 and D.omega..sub.n-1, respectively, then it is tentatively determined that misfire has occurred in both cylinders checked. Then If the value D.omega..sub.n+1 significantly increases compared to the value D.omega..sub.n, then the restoration to the normal combustion state is confirmed, and the occurrence of misfire in the two cylinders checked is definitely determined.
    • PCT No.PCT / JP93 / 00766 Sec。 371日期:1994年2月3日 102(e)1994年2月3日PCT PCT 1993年6月8日PCT公布。 出版物WO93 / 25811 PCT 日期:1993年12月23日。提供了一种失火检测方法,该方法使得能够通过消除失火检测中的检测误差来准确地检测失火的发生/不存在。 该误差是由发生失火状态后曲轴的旋转变化率的振动增加或减小引起的。 接收来自曲柄角传感器的脉冲输出的处理器根据先前的圆柱体的曲轴角度区域中的角加速度D omega n-2,D omega n-1,D omega n和D omega n + ,两个气瓶分别检查失火,和一个后续的气缸。 如果值D omega n-1和D omega n n分别与值Dωn-2和Dωn-1相比显着降低,则暂时确定在检查的两个气缸中都发生失火。 那么如果值D omega n + 1与值D omega n相比显着增加,则确认到正常燃烧状态的恢复,并且确定了检查的两个气缸中失火的发生。
    • 3. 发明授权
    • Misfire detecting method
    • 失火检测方法
    • US5587909A
    • 1996-12-24
    • US150063
    • 1993-11-18
    • Takuya MatsumotoToru HashimotoKoichi NamikiYasuhisa YoshidaSatoshi Kasai
    • Takuya MatsumotoToru HashimotoKoichi NamikiYasuhisa YoshidaSatoshi Kasai
    • F02D45/00G01L9/00G01M15/11G01M15/00
    • G01M15/11G01L19/147F02D2200/702
    • A misfire detecting method is provided for preventing erroneous detection by prohibiting misfire detection when it is judged that an internal combustion engine is operating in a particular operating condition in which load on the engine can suddenly change, wherein a processor for repeatedly executing a misfire detection process immediately ends the present cycle of the misfire detection process when it is judged that the engine has just been started (S3), when it is judged that the igniton key has just been turned off (S4), or when it is judged that the engine is decelerating, that the transmission is performing a shift operation, or that the vehicle is running on a rough road (S5-7), to thereby avoid erroneous detection which is liable to occur during rough-road travel etc.
    • PCT No.PCT / JP93 / 00764 Sec。 371日期:1993年11月18日 102(e)日期1994年1月18日PCT提交1993年6月8日PCT公布。 公开号WO93 / 25809 日期:1993年12月23日提供一种失火检测方法,用于当判断内燃机在发动机的负荷突然变化的特定运行状态下运行时,通过禁止失火检测来防止错误检测,其中,重复处理器 当判断出发动机刚刚起动时,执行失火检测处理立即结束当前的失火检测处理的周期(S3),当判断为点火钥匙刚刚被关闭(S4)时,或当 判断发动机正在减速,变速器正在进行变速操作,或车辆在粗糙的道路上行驶(S5-7),从而避免在粗车行驶期间容易发生的错误检测。
    • 5. 发明授权
    • Method for determining a failure of an EGR apparatus
    • 用于确定EGR装置的故障的方法
    • US5513616A
    • 1996-05-07
    • US202161
    • 1994-02-25
    • Takuya MatsumotoToru HashimotoKoichi NamikiKazutoshi NomaYasuhisa Yoshida
    • Takuya MatsumotoToru HashimotoKoichi NamikiKazutoshi NomaYasuhisa Yoshida
    • F02B1/04F02D41/00F02D41/22F02M25/07
    • F02D41/0055F02M26/49F02B1/04F02D2200/0406F02M26/57Y02T10/47
    • A method for determining a failure of an exhaust gas recalculation (EGR) apparatus in which a failure of the EGR apparatus is determined by determining whether a difference between an intake manifold pressure developed when an EGR valve is open and that developed when the EGR valve is closed falls within a specified range, the EGR valve being temporarily opened and closed while failure determination is being implemented. The failure determination is aborted so as to prevent erroneous determination, if a variation of the engine speed exceeds a specified value during the failure determination, or if a variation of the opening degree of an idling speed control (ISC) valve, disposed in a bypass passage installed in an intake passage of an engine in a manner bypassing a throttle valve, exceeds a specified value during the failure determination, or if a fuel control mode changes during the failure determination. Alternatively, to prevent erroneous determination, an intake manifold pressure difference is corrected in accordance with a variation of the engine speed or a variation of the ISC valve opening degree during the failure determination, or the ISC valve opening degree is fixed during the failure determination.
    • 一种用于确定废气再循环(EGR)装置的故障的方法,其中,通过确定在EGR阀打开时产生的进气歧管压力与EGR阀为开路时所形成的进气歧管压力之间的差异是否确定EGR装置的故障 关闭落在指定范围内,在执行故障确定的同时,EGR阀暂时打开和关闭。 故障确定中止,以防止在故障确定期间发动机转速的变化超过规定值,或者设置在旁路中的空转速度控制(ISC)阀的开度的变化时的错误判定 在故障判定期间,以旁路节气门的方式安装在发动机的进气通路中的通道超过规定值,或者在故障判定期间燃料控制模式发生变化。 或者,为了防止错误判定,根据发动机转速的变化或故障判定时的ISC阀开度的变化,或者在故障判定期间ISC阀开度固定,校正进气歧管压差。
    • 6. 发明授权
    • Misfire detection method based on fluctuation in crankshaft rotation
    • 基于曲轴旋转波动的失火检测方法
    • US5452604A
    • 1995-09-26
    • US190541
    • 1994-02-02
    • Koichi NamikiTakuya MatsumotoToru HashimotoYasuhisa Yoshida
    • Koichi NamikiTakuya MatsumotoToru HashimotoYasuhisa Yoshida
    • F02D45/00F02P17/12G01M15/11G01M15/00G01P15/00
    • G01M15/11
    • A misfire detection method based on fluctuation in crankshaft rotation, in which a time interval required for the crankshaft to rotate over an angle region associated with a cylinder checked for misfire is detected in response to pulses supplied from a crank angle sensor having vanes. Next, a deviation of the crankshaft angular acceleration D .omega..sub.n, calculated based on the thus detected time interval and corresponding to the cylinder checked for misfire, from the angular acceleration D .omega..sub.n-3, corresponding to a cylinder belonging to the cylinder group to which the cylinder checked for misfire belongs, is compared with a determination value, and an occurrence/absence of misfire is detected in accordance with a result of the comparison. By using the deviation between the angular acceleration values calculated based on the time intervals detected through the use of the same vane, the bad effect of structural errors of the vanes is canceled, to thereby prevent erroneous misfire detection caused by the vane errors.
    • 响应于从具有叶片的曲柄角传感器提供的脉冲,检测基于曲轴旋转波动的失火检测方法,其中曲轴在与检查失火的气缸相关联的角度区域中旋转所需的时间间隔。 接下来,将基于由此检测到的时间间隔计算出的曲轴角加速度D omega n与对应于检查失火的气缸相对应于属于气缸组的气缸的角加速度Dωn-3的偏差相对于 将检查失火的气缸所属的位置与确定值进行比较,并且根据比较结果检测是否发生失火。 通过使用基于通过使用同一叶片检测的时间间隔计算的角加速度值之间的偏差,叶片的结构误差的不良影响被消除,从而防止由叶片误差引起的错误失火检测。
    • 7. 发明授权
    • Method and apparatus of detecting faults for fuels evaporative emission
treatment system
    • 燃料蒸发排放处理系统故障检测方法与装置
    • US5445015A
    • 1995-08-29
    • US80718
    • 1993-06-24
    • Koichi NamikiTakuya MatsumotoToru HashimotoYasuhisa Yoshida
    • Koichi NamikiTakuya MatsumotoToru HashimotoYasuhisa Yoshida
    • F02M25/08G01M19/00
    • F02M25/0809F02M2025/0845
    • A method and apparatus of detecting faults for a fuel evaporative emission treatment system, in which the fuel evaporative emission which is admitted from a fuel tank and absorbed once by a canister is separated from the canister by purge air and sucked in a suction pipe of an engine. Under the control of an electronic control unit, a vent port of the canister is closed by closing a vent solenoid valve, and a purge control valve installed in a pipe connecting an outlet port of the canister to the suction pipe is opened. Thereby, a negative pressure of suction air is applied to the fuel tank via another pipe connecting the above-mentioned pipe and the inlet port of canister to the fuel tank to reduce the internal pressure of the fuel tank. Then, the reduction of the internal pressure of the fuel tank is completed by closing the control valve. Afterward, the pressure rise generated in the fuel tank from the time when the exhaust is completed is detected on the basis of the output of a pressure sensor. If the degree of pressure rise is high, it is judged that the fuel evaporative emission system has a fault such as poor airtightness.
    • 一种用于检测燃料蒸发排放处理系统的故障的方法和装置,其中从燃料箱进入并被罐吸收一次的燃料蒸发排放物通过吹扫空气与罐分离,并被吸入吸入管 发动机。 在电子控制单元的控制下,通过关闭通风电磁阀关闭罐的通气口,并且打开安装在将罐的出口连接到吸入管的管道中的清洗控制阀。 因此,吸入空气的负压通过将上述管道和罐的入口连接到燃料箱的另一管道施加到燃料箱,以降低燃料箱的内部压力。 然后,通过关闭控制阀来完成燃料箱的内部压力的降低。 之后,基于压力传感器的输出来检测从排气完成时在燃料箱中产生的压力上升。 如果压力升高程度高,则认为燃料蒸发排放系统具有气密性差的缺点。
    • 9. 发明授权
    • Fault diagnosis apparatus for a fuel evaporative emission supressing
system
    • 用于燃料蒸发排放抑制系统的故障诊断装置
    • US5651351A
    • 1997-07-29
    • US647966
    • 1996-08-01
    • Takuya MatsumotoToru HashimotoMitsuhiro MiyakeHitoshi KamuraYasuhisa Yoshida
    • Takuya MatsumotoToru HashimotoMitsuhiro MiyakeHitoshi KamuraYasuhisa Yoshida
    • F02M25/08
    • F02M25/0809
    • A fault diagnosis apparatus for detecting a fault in a fuel evaporative emission suppressing system, if it is concluded that an engine (1) is being operated in an operating state fulfilling fault diagnosis execution conditions, detects the current valve opening position of an idling speed control (ISC) valve (8) and then drives a purge control valve (46) to open the same. If a relatively high load is applied to the engine at this time, the threshold value determining the operating sensitivity of the ISC valve is so corrected as to be decreased. When a predetermined period of time has elapsed from the moment when the valve opening position of the ISC valve is detected, the valve opening position of the ISC valve is detected again. If the deviation between these valve opening positions is not larger than the threshold value, it is concluded that the purge air introduction by the drive of the purge control valve is not performed, that is, it is concluded that the valve is faulty. Since the operating sensitivity of the ISC valve increases as an engine load increases, erroneous diagnosis is prevented.
    • PCT No.PCT / JP95 / 01972 Sec。 371日期:1996年8月1日 102(e)日期1996年8月1日PCT 1995年9月28日PCT公布。 公开号WO96 / 10691 日期1996年4月11日用于检测燃料蒸发排放抑制系统中的故障的故障诊断装置,如果判断为在满足故障诊断执行条件的运行状态下运转发动机(1),则检测当前阀开度位置 的空转速度控制(ISC)阀(8),然后驱动清洗控制阀(46)打开它。 如果此时对发动机施加相当高的负荷,则确定ISC阀的操作灵敏度的阈值被校正为减少。 当从检测到ISC阀的开阀位置开始经过预定的时间段时,再次检测ISC阀的开阀位置。 如果这些阀打开位置之间的偏差不大于阈值,则得出结论,不执行通过清洗控制阀的驱动的吹扫空气引入,即判断为阀故障。 由于ISC阀的运行灵敏度随着发动机负荷的增加而增加,因此可以防止误诊。