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首页> 外文期刊>IEEE Transactions on Control Systems Technology >Reducing Cyclic Variability While Regulating Combustion Phasing in a Four-Cylinder HCCI Engine
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Reducing Cyclic Variability While Regulating Combustion Phasing in a Four-Cylinder HCCI Engine

机译:在调节四缸HCCI发动机的燃烧阶段时减少循环变异性

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The cyclic variability (CV) at late phasing conditions in autoignition engines with high residuals limits the operating range of such advanced combustion strategies. A model has been recently proposed by the authors that captures the experimental observations of CV in lean autoignition combustion in a single-cylinder engine. The model is here tuned to multicylinder engine data and is used to design controllers that reduce the CV. The dynamics are only stable for certain amounts of residual gas. At late phasing, with low amounts of residual gas, a cascade of period-doubling bifurcations occur leading to seemingly chaotic behavior. The deterministic dynamics are also mixed with significant levels of noise in the residual gas fraction. The approach to reduce CV is to control the fuel injection timing, which is an effective way of influencing the combustion phasing in the individual cylinders, with feedback from the combustion phasing. A PI controller and a reduced-order linear quadratic Gaussian (LQG) controller are designed and evaluated in experiments. Integral action is utilized for maintaining the average combustion phasing between open loop and closed loop, which is shown to be essential for a proper evaluation because of the high sensitivity of CV on the combustion phasing close to unstable operation. A quantitative analysis of the experimental results show that CV is notably reduced for various levels of residual gas fraction at one speed and load. The standard deviation of the combustion phasing is reduced by 17% on average over the open-loop behavior, which results in a 15% smaller coefficient of variation of the indicated work.
机译:具有高残留物的自燃发动机在后期定相条件下的循环可变性(CV)限制了这种先进燃烧策略的工作范围。作者最近提出了一个模型,该模型可以捕获单缸发动机稀薄自动点火燃烧中CV的实验观察结果。该模型在此调整为多缸发动机数据,并用于设计降低CV的控制器。动态仅对一定量的残留气体稳定。在分相后期,残留气体量少,会发生一系列倍增的分叉,从而导致看似混乱的行为。确定性动力学还与残余气体馏分中的大量噪声混合在一起。降低CV的方法是控制燃料喷射正时,这是通过燃烧定相的反馈影响各个气缸中燃烧定相的有效方法。实验中设计并评估了PI控制器和降阶线性二次高斯(LQG)控制器。利用积分作用来维持开环和闭环之间的平均燃烧相位,这对于正确评估至关重要,因为CV对接近不稳定运行的燃烧相位具有很高的敏感性。实验结果的定量分析表明,在一速度和负载下,各种残留气体分数水平下的CV均显着降低。在开环状态下,燃烧定相的标准偏差平均降低了17%,这使所示功的变化系数减小了15%。

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