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An engine control system for a method of optimizing a tradeoff between turbocharger lag and production of exhaust emissions

机译:用于优化涡轮增压器滞后与废气排放产生之间折衷的方法的发动机控制系统

摘要

An engine control system for optimizing a tradeoff between turbocharger lag and production of exhaust emissions including altitude and intake manifold air temperature compensation includes a turbocharger boost sensor, an engine speed sensor, an ambient pressure sensor and an intake manifold air temperature sensor, each providing appropriate sensor signals to a control computer. The control computer is operable to limit fueling signals supplied to the engine fuel system based on turbocharger boost, engine speed, ambient pressure and intake manifold air temperature to thereby optimize a tradeoff between turbocharger lag and production of black smoke and other exhaust emissions while compensating for changes in altitude and intake manifold air temperature. In one preferred embodiment, the control computer includes a fueling table stored therein which maps boost pressure and engine speed values to appropriate fueling values, an altitude correction table stored therein which maps boost pressure and ambient pressure to appropriate fueling correction values and an intake air temperature correction table store therein which maps intake manifold air temperature values to appropriate intake air temperature correction values. The control computer is operable to limit the fueling signals based on the fueling values from the fueling table, the fueling correction values from the altitude correction table and the fueling correction values from the intake air temperature correction table, to thereby maintain a desired tradeoff between turbocharger lag and production of black smoke and other exhaust emissions while compensating for changes in ambient pressure and intake manifold air temperature.
机译:一种用于优化涡轮增压器滞后与废气排放之间的权衡的发动机控制系统,包括高度和进气歧管空气温度补偿,包括涡轮增压器增压传感器,发动机转速传感器,环境压力传感器和进气歧管空气温度传感器,每一个都提供适当的功能。传感器信号发送到控制计算机。控制计算机可操作以基于涡轮增压器增压,发动机转速,环境压力和进气歧管空气温度来限制提供给发动机燃料系统的燃料信号,从而在补偿涡轮增压器滞后与黑烟和其他废气排放的产生之间优化折衷。高度和进气歧管空气温度的变化。在一个优选实施例中,控制计算机包括存储在其中的加油表,其将增压压力和发动机速度值映射到适当的燃料值;存储在其中的高度校正表,其将升压和环境压力映射到适当的燃料校正值和进气温度。校正表存储在其中,其将进气歧管空气温度值映射到适当的进气温度校正值。控制计算机可操作以基于来自加油表的加油值,来自高度校正表的加油校正值和来自进气温度校正表的加油校正值来限制加油信号,从而维持涡轮增压器之间的期望折衷滞后,产生黑烟和其他废气,同时补偿环境压力和进气歧管空气温度的变化。

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