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    • 1. 发明授权
    • Method of controlling fuel in an engine
    • 控制发动机燃料的方法
    • US4866619A
    • 1989-09-12
    • US886223
    • 1986-07-16
    • Masato Iwaki
    • Masato Iwaki
    • F02B75/02F02D41/00F02D41/14F02D41/24
    • F02D41/2454F02D41/2493F02B2075/027F02D41/2477
    • A quantity of fuel supplied to an engine so as to allow the air-fuel ratio of a gas mixture to be a target air-fuel ratio is subjected to a feedback correction based on an air-fuel ratio sensor. At the time of the feedback correction, a learning correction is also conducted on the basis of a learning value that is calculated in accordance with a feedback correction value. When the learning value to be used for the learning correction is altered, the feedback correction value is initialized. An initialized feedback correction value is an addition of the feedback correction value before the alteration to a deviation of the respective learning values before and after the alteration of the learning values.
    • 为了使气体混合物的空燃比成为目标空燃比,向发动机供给的燃料量经受基于空燃比传感器的反馈修正。 在反馈校正时,还基于根据反馈校正值计算的学习值进行学习校正。 当用于学习校正的学习值被改变时,反馈校正值被初始化。 初始化的反馈校正值是在改变之前的反馈校正值与在学习值的改变之前和之后的各个学习值的偏差之间的相加。
    • 2. 发明授权
    • Fuel control apparatus for an engine
    • 发动机燃油控制装置
    • US4748956A
    • 1988-06-07
    • US886227
    • 1986-07-16
    • Masato Iwaki
    • Masato Iwaki
    • F02B75/02F02D41/00F02D41/14F02M51/00
    • F02D41/2454F02B2075/027
    • The control of a quantity of supply fuel to allow the air-fuel ratio of a gas mixture to be a target air-fuel ratio is conducted by switching between an open loop control and a feedback control using an air-fuel ratio sensor, in response to an operating state of the engine. At the time of the feedback control, a learning correction is carried out using a learning value calculated on the basis of the feedback correction value. At the time of the open loop control, the quantity of the supply fuel is corrected in accordance with the feedback correction value and the learning value immediately before shifting from the feedback control to the open loop control.
    • 作为响应,通过使用空燃比传感器的开环控制和反馈控制之间的切换来进行供给燃料量的控制,以使气体混合物的空燃比成为目标空燃比 到发动机的运行状态。 在反馈控制时,使用基于反馈校正值计算的学习值来进行学习校正。 在开环控制时,根据反馈校正值和从反馈控制转换到开环控制之前的学习值来校正供给燃料量。
    • 6. 发明授权
    • Fuel injection system for internal combustion engine
    • 内燃机燃油喷射系统
    • US4736725A
    • 1988-04-12
    • US60340
    • 1987-06-10
    • Masato IwakiMasami Nakao
    • Masato IwakiMasami Nakao
    • F02D41/18F02D41/24F02D41/32F02M51/00
    • F02D41/18F02D41/2422F02D41/32
    • A fuel injection system for an internal combustion engine comprises a fuel injecting valve, L-jetronic calculating means for calculating the amount of fuel to be injected based upon the output from an air flow meter under an engine operating condition where the amount of intake air is small, D-jetronic calculating means for calculating the amount of fuel to be injected based upon outputs from engine load detecting means and engine rpm detecting means under an engine operating condition where the amount of intake air is large and correcting means for correcting the amount of fuel to be injected upon switchover between the L-jetronic and D-jetronic calculating means in response to engine operating condition changes. As a result, the difference between successive amounts of fuel to be injected is never large. of fuel injected lastly. According to the present invention, it is possible to control the air-flow ratio to the optimum value when the method for calculating the amount of fuel to be injected changes between the L-jetronic method and the D-jetronic method in response to engine operating condition changes, even during an acceleration or deceleration.
    • 一种用于内燃机的燃料喷射系统包括燃料喷射阀,L-喷气计算装置,用于根据在空气流量为的发动机运行状态下的空气流量计的输出来计算待喷射的燃料量 小型的D型喷射计算装置,用于根据来自发动机负载检测装置和发动机转速检测装置的输出,在进气量大的发动机运转状态下计算要喷射的燃料量;以及校正装置, 响应于发动机操作条件变化,在L型喷气发动机和D型喷射计算装置之间切换时喷射的燃料。 结果,连续喷射的燃料量之间的差异从不大。 最后注入燃油。 根据本发明,当用于计算喷射燃料量的方法响应于发动机操作而在L型喷气式方法和D型喷射式方法之间变化时,可以将空气流量比控制到最佳值 条件变化,即使在加速或减速期间。
    • 7. 发明授权
    • Turbocharger bypass control for internal combustion engines
    • 内燃机涡轮增压器旁路控制
    • US4459809A
    • 1984-07-17
    • US351440
    • 1982-02-23
    • Tomoo TadokoroMasami NakaoHaruo OkimotoMasato Iwaki
    • Tomoo TadokoroMasami NakaoHaruo OkimotoMasato Iwaki
    • F02B37/00F02B37/12F02B37/16F02B37/18
    • F02B37/18F02B37/16F02B37/186F02D41/0007F02D2200/0406Y02T10/144
    • An engine having a turbo-supercharger comprised of a blower in the intake passage and an exhaust gas turbine in the exhaust passage. A charging pressure limiting device includes a pressure relief passage in the intake system or a turbine bypass passage in the exhaust system which is provided with a control valve. A control circuit is provided for limiting the peak charging pressure. The control circuit includes a limit signal generating circuit for providing a limit signal which decreases in response to an increase in the engine speed under a high speed range, a comparator for comparing the limit signal with the actual charging pressure signal and producing a control signal when the charging pressure signal reaches or exceeds the limit signal so that the charging pressure does not exceed the limit value which decreases in response to an increase in the engine speed under a high speed range.
    • 一种具有涡轮增压器的发动机,其包括在进气通道中的鼓风机和排气通道中的废气涡轮机。 充气压力限制装置包括在进气系统中的压力释放通道或设置有控制阀的排气系统中的涡轮机旁通通道。 提供控制电路用于限制峰值充电压力。 该控制电路包括:限制信号发生电路,用于提供响应于高速范围内的发动机转速的增加而减小的极限信号;比较器,用于将极限信号与实际充气压力信号进行比较,并产生控制信号, 充电压力信号达到或超过限制信号,使得充电压力不超过响应于高速范围内的发动机转速的增加而减小的极限值。
    • 9. 发明授权
    • Control apparatus for a vehicle engine electric fuel pump
    • 用于车辆发动机电动燃料泵的控制装置
    • US4791905A
    • 1988-12-20
    • US846076
    • 1986-03-31
    • Kouichi FurutaNaofumi FukueTaku MugurumaMasato Iwaki
    • Kouichi FurutaNaofumi FukueTaku MugurumaMasato Iwaki
    • F02D41/30F02M37/08F02M39/00
    • F02D41/3082F02M37/08F02M2037/085
    • In a dc electric fuel pump control apparatus for controlling the quantity of fuel supplied to a vehicle engine in accordance with an engine operating parameter condition such as an intake air flow condition or engine speed condition, when controlling a voltage applied to a fuel pump operating motor by closing or opening a fixed-resistor short-circuiting switch circuit in accordance with the magnitude of the operating parameter relative to a predetermined value, an increase or decrease of a battery power source voltage from a predetermined value is detected to increase or decrease the predetermined value of the engine operating parameter. Where a variable resistor is used in place of the fixed resistor, its resistance value in a low battery power source voltage condition is controlled lower than that in a high battery power source voltage condition.
    • 在直流电动燃料泵控制装置中,根据诸如进气流条件或发动机转速条件的发动机操作参数条件来控制供应给车辆发动机的燃料量,当控制施加到燃料泵操作电动机 通过根据相对于预定值的操作参数的大小关闭或打开固定电阻器短路开关电路,检测电池电源电压从预定值的增加或减小以增加或减少预定的 发动机工作参数值。 在使用可变电阻器代替固定电阻器的情况下,其在低电池电源电压条件下的电阻值被控制为低于高电池电源电压条件下的电阻值。
    • 10. 发明授权
    • Idling speed control systems for internal combustion engines
    • 内燃机空转速度控制系统
    • US4691675A
    • 1987-09-08
    • US882722
    • 1986-07-07
    • Masato Iwaki
    • Masato Iwaki
    • F02D41/16F02D31/00F02D41/00
    • F02D31/005F02D2011/102
    • An idling speed control system for an internal combustion engine comprises an engine speed sensor, a target idling speed determining unit for setting a target idling speed, an intake air mass flow determining unit for obtaining a difference between an actual idling speed detected by the engine speed sensor and the target idling speed and producing a control signal for determining intake air mass flow supplied to a combustion chamber on the strength of the difference obtained, an intake air mass flow adjusting unit for adjusting intake air mass flow supplied actually to the combustion chamber in response to the control signal, and an extra intake air supplying unit operative to cause the intake air mass flow adjusting unit to start supplying the combustion chamber with extra intake air mass flow when the actual idling speed has gone down to be lower than a first predetermined speed and then to cause the intake air mass flow adjusting unit to cease supplying with the extra intake air mass flow when the actual idling speed has risen to attain a second predetermined speed higher than the first predetermined speed.
    • 用于内燃机的空转速度控制系统包括发动机转速传感器,用于设定目标空转速度的目标怠速转速确定单元,用于获得由发动机转速检测到的实际空转速度之间的差的进气质量流量确定单元 传感器和目标空转速度,并且产生用于根据所获得的差异强度来确定供应到燃烧室的进气质量流量的控制信号;进气空气质量流量调节单元,用于调节实际供应到燃烧室的进气质量流量 响应于所述控制信号,以及额外的进气供给单元,其在所述实际空转速度下降至比第一预定值以下时,使所述进气质量流量调节单元开始向所述燃烧室供给额外的进气质量流量 速度,然后使进气质量流量调节单元停止供应额外的进气 当实际怠速速度上升到达到高于第一预定速度的第二预定速度时的流量。