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    • 6. 发明授权
    • Intake-air control system for engine
    • 发动机进气控制系统
    • US07100547B2
    • 2006-09-05
    • US10715371
    • 2003-11-19
    • Kensuke OsamuraHiroshi IwanoKenji Oota
    • Kensuke OsamuraHiroshi IwanoKenji Oota
    • F02B75/04
    • F02B75/048F02D11/10F02D13/0253F02D15/02F02D41/0002F02D2041/001Y02T10/18Y02T10/42
    • An intake-air control system for an engine enabling an intake-air quantity and a compression ratio to be variably controlled, includes sensors detecting engine operating conditions and the compression ratio, and a control unit electronically connected to the sensors for feedback-controlling the intake-air quantity based on the compression ratio as well as the engine operating conditions, while feedback-controlling the compression ratio based on the engine operating conditions. The control unit executes phase-matching between an intake-air quantity change occurring based on intake-air quantity control and a compression ratio change occurring based on compression ratio control, considering a relatively slower response in the compression ratio change than a response in the intake-air quantity change.
    • 能够使进气量和压缩比可变地控制的用于发动机的进气控制系统包括检测发动机工作条件和压缩比的传感器,以及电连接到传感器的控制单元,用于反馈控制进气口 基于压缩比和发动机工作条件的空气量,同时基于发动机工作条件反馈控制压缩比。 考虑到在压缩比变化中的反应相对较慢,在进气压力比的变化中,控制单元执行基于进气量控制而发生的进气量变化和基于压缩比控制的压缩比变化之间的相位匹配 - 空气量变化。
    • 7. 发明授权
    • Fuel injection control system for diesel engine
    • 柴油机燃油喷射控制系统
    • US06412469B1
    • 2002-07-02
    • US09620973
    • 2000-07-20
    • Hiroyuki ItoyamaKensuke OsamuraTakashi ShirakawaManabu Miura
    • Hiroyuki ItoyamaKensuke OsamuraTakashi ShirakawaManabu Miura
    • F02D4104
    • F02D41/008F02D41/1497F02D41/403F02D2041/288Y02T10/44
    • A fuel injection control system is arranged to decide the execution of a pilot fuel injection based on evaluation functions indicative of degree of a pilot fuel injection demand, to decide an engine operating condition, to calculate a fuel injection quantity for each cylinder when the engine operating condition is in the predetermined low-load operating region, to calculate a pilot fuel injection quantity for each cylinder by multiplying a predetermined ratio to the fuel injection quantity in the predetermined low-load operating region and when the pilot fuel injection is executed, and to calculate a main fuel injection quantity by subtracting the pilot fuel injection quantity from the fuel injection quantity. Therefore, this arrangement enables accurate decision as to the execution of the pilot fuel injection and proper control of pilot and main fuel injection quantities.
    • 燃料喷射控制系统被布置成基于指示引燃燃料喷射需求程度的评估功能来决定执行先导燃料喷射的执行,以决定发动机工作状态,以在发动机运行时计算每个气缸的燃料喷射量 条件在预定的低负荷运行区域中,通过将预定比率与预定的低负荷运行区域中的燃料喷射量相乘并且执行先导燃料喷射时,计算每个气缸的先导燃料喷射量,并且 通过从燃料喷射量减去先导燃料喷射量来计算主燃料喷射量。 因此,这种布置使得能够准确地确定先导燃料喷射的执行和飞行员和主燃料喷射量的适当控制。