SAE Technical Paper Series 2017
DOI: 10.4271/2017-01-0606
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Modelling and Control of Engine Torque for Short-Circuit Flow and EGR Evacuation

Abstract: Low-Pressure Exhaust Gas Recirculation (LP-EGR) has been shown to be an effective means of improving fuel economy and suppressing knock in downsized, boosted, spark ignition engines. LP-EGR is particularly beneficial at low-speed, high-load conditions, but can lead to combustion instability at lower loads. The transport delays inherent in LP-EGR systems slow the reduction of intake manifold EGR concentrations during tip-out events, which may lead to excessive EGR concentrations at low load. This paper explores… Show more

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Cited by 6 publications
(2 citation statements)
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References 12 publications
(21 reference statements)
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“…Misfire prevention during torque tip-outs. Different solutions such as EGR scavenging by increasing the exhaust and intake valves overlap 32 and using dual EGR loops 33 are investigated in literature to prevent combustion misfire with low pressure EGR. In this work, the engine load is increased to mitigate misfires due to the impact of EGR on flammability.…”
Section: Controller Modifications For Improved Tip-out Responsementioning
confidence: 99%
“…Misfire prevention during torque tip-outs. Different solutions such as EGR scavenging by increasing the exhaust and intake valves overlap 32 and using dual EGR loops 33 are investigated in literature to prevent combustion misfire with low pressure EGR. In this work, the engine load is increased to mitigate misfires due to the impact of EGR on flammability.…”
Section: Controller Modifications For Improved Tip-out Responsementioning
confidence: 99%
“…However, the research on turbocharged SI engines with an additional EGR path is scarce. In Wiese et al, 8 the LP EGR evacuation time that can be achieved during a constant torque preview period is quantified numerically. Thereto, a feed-forward throttle control has been developed.…”
Section: Motivation and Introductionmentioning
confidence: 99%