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Transient combustion timing management in controlled auto-ignition engine based on ion current signal

机译:基于离子电流信号的受控自燃发动机瞬态燃烧正时管理

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This study investigates the effects of mixture stratification on ion current signal from combustion chamber of controlled auto-ignition (CAI) engine fueled with gasoline. The CAI combustion mode was achieved by application of exhaust gas retention obtained via negative valve overlap. Split direct fuel injection technique was applied to achieve different degrees of fuel stratification, maintaining constant global mixture composition. As expected, mixture distribution within combustion chamber had strong effect on levels of recorded ion current. The aim of the study was verification of possibilities of using ion current measurements for transient control of combustion timing. It was yielded by analysis of characteristic phases of heat release rate and ion current signal. Correlations of combustion timing derived from in-cylinder pressure analysis and ion-current proved applicability of this measurement technique for CAI combustion control.
机译:本研究研究了混合分层对来自汽油燃烧的控制自动点火(CAI)发动机燃烧室离子电流信号的影响。通过施加通过负阀重叠获得的废气保持来实现CAI燃烧模式。施加分体式直接燃料喷射技术以实现不同程度的燃料分层,维持恒定的全局混合物组合物。如预期的那样,燃烧室内的混合物分布对记录离子电流水平具有很强的影响。该研究的目的是验证使用离子电流测量的可能性,以便燃烧正时的瞬态控制。通过分析热释放速率和离子电流信号的特征相产生。汽缸压力分析和离子电流燃烧正时的相关性证明了这种测量技术对CAI燃烧控制的适用性。

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