Transient control of low-temperature premixed combustion using ISG motor dynamic torque compensation

Guojing Gao, Fuyuan Yang, Lin Chen, Yuping Yang, M. Ouyang
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引用次数: 2

Abstract

The use of low-temperature premixed combustion can significantly reduce NOx and soot emission of diesel engines. However, due to application of high EGR rate, the combustion process is sensitive to the variation of the intake fresh air amount. In engine transient operating conditions, the reduction of oxygen concentration of the fuel-air mixture will lead to deterioration of soot emission and the thermal efficiency. Limiting the transient air-fuel ratio by reducing the fuel injection amount is a feasible solution to eliminate the soot emission peak. However it will result in insufficient power output of the engine. In order to solve this problem, an ISG motor, which has the advantage of fast torque response, is integrated on the diesel engine. An in-cylinder pressure based engine torque on-board estimation method is designed and verified. Through calculating the difference between the desired engine torque and the actual engine output torque, a strategy using ISG motor dynamic torque compensation to improve transient power performance is designed. Experiments with different transient control strategies are carried out. The result shows that, by using air-fuel ratio limitation and ISG motor dynamic torque compensation in transient operation conditions of low-temperature premixed combustion, the soot emission can be reduced substantially, while the engine keeps good power performance.
基于ISG电机动态转矩补偿的低温预混燃烧瞬态控制
采用低温预混燃烧可以显著降低柴油机的NOx排放和烟尘排放。但由于采用高EGR,燃烧过程对进气新风量的变化较为敏感。在发动机瞬态工况下,燃料-空气混合气中氧浓度的降低会导致烟尘排放和热效率的恶化。通过降低喷油量来限制瞬态空燃比是消除油烟排放峰值的可行方案。然而,这将导致发动机输出功率不足。为了解决这一问题,在柴油机上集成了扭矩响应快的ISG电机。设计并验证了一种基于缸内压力的发动机扭矩估算方法。通过计算发动机期望转矩与发动机实际输出转矩的差值,设计了采用ISG电机动态转矩补偿改善瞬态动力性能的策略。采用不同的暂态控制策略进行了实验。结果表明,在低温预混燃烧瞬态工况下,采用空燃比限制和ISG电机动态转矩补偿,可大幅度降低烟尘排放,同时保持发动机良好的动力性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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