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Closed-Loop Combustion Control Using Ion-Current Signals in a 6-Cylinder Port-Injected Natural-gas Engine

机译:在6缸端口注入的天然气发动机中使用离子电流信号的闭环燃烧控制

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摘要

High EGR rates combined with turbocharging has been identified as a promising way to increase the maximum load and efficiency of heavy-duty spark ignition engines. With stoichiometric conditions a three-way catalyst can be used which means that regulated emissions can be kept at very low levels. Obtaining reliable spark ignition is difficult however with high pressure and dilution. There will be a limit to the amount of EGR that can be tolerated for each operating point. Open-loop operation based on steady state maps is difficult since there is substantial dynamics both from the turbocharger and from the wall heat interaction. The proposed approach applies standard closed-loop lambda control for controlling the overall air/fuel ratio. Furthermore, ion-current-based dilution limit control is applied on the EGR in order to maximize EGR rate as long as combustion stability is preserved. The proposed control strategy has been successfully tested on a heavy-duty, 6-cylinder, port-injected natural gas engine and our findings show that 1.5-2.5% units (depending on the operating points) improvement in Brake Efficiency can be achieved.
机译:高EGR率与涡轮增压相结合已被认为是增加重型火花点火发动机最大负载和效率的有前途的方法。在化学计量条件下,可以使用三效催化剂,这意味着可以将调节后的排放量保持在非常低的水平。然而,在高压和稀释的情况下,难以获得可靠的火花点火。每个工作点可容忍的EGR量将受到限制。基于稳态图的开环操作非常困难,因为涡轮增压器和壁热相互作用都具有很大的动力学特性。所提出的方法采用标准的闭环λ控制来控制总的空燃比。此外,基于离子电流的稀释极限控制应用于EGR,以便在保持燃烧稳定性的前提下最大化EGR率。所提出的控制策略已在重型6缸,端口注入式天然气发动机上成功进行了测试,我们的发现表明,制动效率可提高1.5-2.5%单位(取决于工作点)。

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