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首页> 外文期刊>International Journal of Automotive Technology >PID Controller Modelling and Optimization in Cr Systems with Standard and Reduced Accumulators
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PID Controller Modelling and Optimization in Cr Systems with Standard and Reduced Accumulators

机译:具有标准和蓄能器CR系统的PID控制器建模与优化

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The proportional-integrative-derivative (PID) controller and the pressure control valve of a Common Rail system are modelled by taking into account electronic, electrical, hydraulic and mechanical aspects. A fully predictive model of the injection apparatus is realized and validated by means of comparison with experimental data. The effects of the PID parameters on the injection system dynamics are illustrated and discussed on the basis of model results, which refer to steadystate and transient working conditions. The influence of the accumulator size on the rail pressure time history is investigated when the rail volume is dramatically reduced (up to 2.5 cm_(3)). In particular, the effect of the large rail pressure drop that occurs at the end of the main injection for Minirail layout solutions is examined when after injections are implemented. An objective is to try to determine possible suitable values of the PID controller parameters and of the pressure-sensor sampling-frequency for rails of reduced size.
机译:通过考虑电子,电气,液压和机械方面,建模了一流的衍生衍生物(PID)控制器和公共轨道系统的压力控制阀。通过与实验数据的比较实现并验证了注射装置的完全预测模型。在模型结果的基础上说明和讨论了PID参数对注射系统动态的影响,这是指稳定的稳定和瞬态工作条件。当轨道体积显着降低时,研究了蓄能器尺寸对轨道压力时间历史的影响(高达2.5cm_(3))。特别地,在实施后,在进行后,检查发生在主要喷射溶液的主要喷射溶液的末端的大型轨道压降的效果。目标是尝试确定PID控制器参数的可能合适的值和减小尺寸的轨道的压力传感器采样频率。

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