首页> 外文会议>ASME annual dynamic systems and control conference >ADAPTATION FOR AIR-INTAKE SYSTEM THROTTLE CONTROL IN A GASOLINE ENGINE WITH LOW-PRESSURE EXHAUST-GAS RECIRCULATION
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ADAPTATION FOR AIR-INTAKE SYSTEM THROTTLE CONTROL IN A GASOLINE ENGINE WITH LOW-PRESSURE EXHAUST-GAS RECIRCULATION

机译:低压排气-气体再循环的汽油机进气系统节气门控制的自适应

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We investigate control strategies for traditional throttle-in-bore as well as low-cost cartridge-style throttle bodies for the air-intake system (AIS) throttle used in low-pressure exhaust-gas recirculation (LPEGR) on a turbocharged gasoline engine. Pressure sensors placed upstream and downstream of the AIS throttle are available as signals from the vehicle's engine control unit, however, we do not use high-bandwidth feedback control of the AIS throttle in order to maintain frequency separation from the higher-rate EGR loop, which uses the downstream pressure sensor for feedback control. A design-of-experiments conducted using a feed-forward lookup table-based AIS throttle control strategy exposes controller sensitivity to part-to-part variations. For accurate tracking in the presence of these variations, we explore the use of adaptive feedback control. In particular, we use an algebraic model representing the throttle plate effective opening area to develop a recursive least-squares (RLS)-based estimation routine. A low-pass filtered version of the estimated model parameters is subsequently used in the forward-path AIS throttle controller. Results are presented comparing the RLS-based feedback algorithm with the feed-forward lookup table-based control strategy. RLS is able to adapt for part-to-part and change-overtime variabilities and exhibits an improved steady-state tracking response compared to the feed-forward control strategy.
机译:我们研究了用于涡轮增压汽油发动机的低压排气再循环(LPEGR)的进气系统(AIS)节气门的传统孔内节气门以及低成本插装式节气门体的控制策略。可将AIS节气门上游和下游的压力传感器作为信号从车辆的发动机控制单元获得,但是,我们不使用AIS节气门的高带宽反馈控制来保持与较高速率EGR回路的频率分离,它使用下游压力传感器进行反馈控制。使用基于前馈查找表的AIS节气门控制策略进行的实验设计使控制器对零件之间的变化敏感。为了在存在这些变化的情况下进行精确跟踪,我们探索了自适应反馈控制的使用。特别是,我们使用表示节流阀板有效开口面积的代数模型来开发基于递归最小二乘(RLS)的估算程序。估计模型参数的低通滤波版本随后在前向AIS节气门控制器中使用。给出了将基于RLS的反馈算法与基于前馈查找表的控制策略进行比较的结果。与前馈控制策略相比,RLS能够适应零件间和随时间变化的变化,并表现出改进的稳态跟踪响应。

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