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    • 4. 发明授权
    • Air-fuel ratio feedback control system for internal combustion engine
    • 内燃机空燃比反馈控制系统
    • US5531208A
    • 1996-07-02
    • US305162
    • 1994-09-13
    • Yusuke HasegawaIsao KomoriyaShusuke AkazakiEisuke Kimura
    • Yusuke HasegawaIsao KomoriyaShusuke AkazakiEisuke Kimura
    • F02D41/00F02D41/14F02D41/34F02D45/00
    • F02D41/008F02D41/1401F02D41/1473F02D2041/1409F02D2041/1415F02D2041/1416F02D2041/1417F02D2041/1418F02D2041/1431F02D2041/1433F02D41/1456
    • A system for controlling an air-fuel ratio of an air-fuel mixture supplied to each cylinder of a multicylinder internal combustion engine. A first feedback loop is provided for converging a first air-fuel ratio at a location at least either at or downstream of a confluence point of an exhaust system to a first desired air-fuel ratio by multiplying a first feedback gain to a first error therebetween. And a second feedback loop is provided in the first loop for converging a second current air-fuel ratio at each cylinder to a second desired air-fuel ratio by multiplying a second feedback gain to a second error. The first feedback loop and said second feedback loop are connected in series such that the second loop located inside the first loop. With the arrangement. the second loop operates the second air-fuel ratio converges to converge the second air-fuel ratio to the first air-fuel ratio which in turn tends to converge on the first desired air-fuel ratio such that the air-fuel ratios of all cylinders can therefore be converged on the desired air-fuel ratio.
    • 一种用于控制供应到多缸内燃机的每个气缸的空气燃料混合物的空燃比的系统。 提供第一反馈回路,用于通过将第一反馈增益乘以第一反馈增益与其间的第一误差,将排气系统的汇合点的至少一个或下游的位置处的第一空燃比收敛到第一期望的空燃比 。 并且在第一回路中提供第二反馈回路,用于通过将第二反馈增益乘以第二误差来将每个气缸处的第二当前空燃比收敛到第二所需空燃比。 第一反馈回路和所述第二反馈回路串联连接,使得位于第一回路内的第二回路。 随着安排。 所述第二回路操作所述第二空燃比收敛以将所述第二空燃比收敛到所述第一空燃比,所述第一空燃比又趋于收敛于所述第一期望空燃比,使得所有气缸的空燃比 因此可以收敛于期望的空燃比。
    • 8. 发明授权
    • A/F ratio control system for internal combustion engine
    • 内燃机A / F比控制系统
    • US5363648A
    • 1994-11-15
    • US172896
    • 1993-12-27
    • Shusuke AkazakiYusuke HasegawaYoichi NishimuraIsao Komoriya
    • Shusuke AkazakiYusuke HasegawaYoichi NishimuraIsao Komoriya
    • F02D41/04F02D41/00F02D41/14F02D41/34F01N3/22
    • F02D41/008F02D41/1401F02D41/1408F02D41/1443F02D2041/1415F02D2041/1416F02D2041/1433F02D41/1456
    • A system for controlling an air/fuel ratio of a four-cylinder internal combustion engine. In the system, an actual air/fuel ratio, at least at upstream or downstream of a catalytic converter installed at an exhaust system of the engine, is intentionally oscillated at least either in its amplitude or cycle. A characteristic of a desired air/fuel ratio as a periodic function is established with respect to time such that the desired air/fuel ratio varies at least either at a predetermined amplitude or cycle within a predetermined period. The characteristic is sampled by a time interval determined on the basis of a time interval between TDC crank angle positions of the engine. Each cylinder's desired air/fuel ratio is then determined from the sampled data, and a fuel injection amount for each cylinder is determined from the respective cylinder's desired air/fuel ratios. Fuel is then supplied to each cylinder in response to the determined fuel injection amount. The actual air/fuel ratio at each cylinder is detected or estimated and feedback controlled to the desired air/fuel ratio.
    • 一种用于控制四缸内燃机的空燃比的系统。 在该系统中,至少在安装在发动机的排气系统处的催化转化器的上游或下游的实际空气/燃料比有意地以其振幅或循环中的至少一个振荡。 相对于时间建立期望的空气/燃料比作为周期性函数的特性,使得期望的空气/燃料比在预定时间段内至少以预定的幅度或周期变化。 基于发动机的TDC曲柄角位置之间的时间间隔确定的时间间隔对特性进行采样。 然后根据采样数据确定每个气缸所需的空气/燃料比,并且根据相应气缸的期望的空气/燃料比确定每个气缸的燃料喷射量。 响应于所确定的燃料喷射量,燃料被提供给每个气缸。 检测或估计每个气缸处的实际空气/燃料比,并将其反馈控制到所需的空气/燃料比。