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TRANSIENT PERFORMANCE OF AN SI ENGINE BY TRANSIENT RESPONSE SPECIFICATIONS

机译:通过瞬态响应规范得出的SI引擎的瞬态性能

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摘要

The analysis and evaluation of the transient performance by the transient response specifications under various acceleration speeds and types based on driver's typical acceleration habit are implemented by the experimental study to provide the appropriate direction for the transient control in a gasoline engine. The concept of the transient response specifications which consist of delay time, rising time, maximum overshoot and settling time, and the analysis method using them are introduced to evaluate the characteristics of the transient performance quantitatively. Furthermore four acceleration speeds and four acceleration types are set respectively to realize the various transient states which are similar to the real drive. Several performance parameters in terms of engine speed, manifold absolute pressure, fuel injection duration and air excess ratio are measured simultaneously during the various acceleration using a throttle actuator controlled by a PC. The transient response specifications characterized well the transient performance for the various acceleration speed and types quantitatively. Delay and rising time with increment of the acceleration speed became shorter, but settling time did longer. Intensified acceleration type appeared to be the most economical in view of fuel consumption, and linear acceleration type was found to have the least harmful emission concentration.
机译:通过实验研究,根据驾驶员的典型加速习惯,通过瞬态响应规范对瞬态响应性能进行分析和评估,以为汽油机的瞬态控制提供合适的方向。介绍了由延迟时间,上升时间,最大过冲和建立时间组成的瞬态响应规范的概念以及使用它们的分析方法,以定量地评估瞬态性能的特性。此外,分别设置四个加速速度和四个加速类型,以实现类似于实际驱动的各种瞬态。使用PC控制的节气门执行器,可以在各种加速过程中同时测量发动机性能,歧管绝对压力,燃油喷射持续时间和空气过量比等几个性能参数。瞬态响应规范很好地描述了各种加速速度和类型的瞬态性能。随着加速速度的增加,延迟和上升时间变短,但稳定时间变长。考虑到燃料消耗,强化加速型似乎是最经济的,而线性加速型的有害排放浓度最小。

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