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A Control-Oriented Simplified Transient Torque Model of Turbocharged Diesel Engines

机译:涡轮增压柴油发动机的面向控制的简化瞬态扭矩模型

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Due to the high cost of torque sensors, a calculation model of transient torque is required for real-time coordinating control purpose, especially in hybrid electric powertrains. This paper presents a feedforward calculation method based on mean value model of turbocharged non-EGR diesel engines. A fitting variable called fuel coefficient is defined in an affine relation between brake torque and fuel mass. The fitting of fuel coefficient is simplified to depend only on three variables (engine speed, boost pressure, injected fuel mass). And a two-layer feedforward neural network is utilized to fit the experimental data. The model is validated by load response test and ETC (European Transient Cycle) transient test. The RMSE (root mean square error) of the brake torque is less than 3%.
机译:由于扭矩传感器的高成本,实时配位控制目的需要瞬态扭矩的计算模型,尤其是在混合动力动力传递中。本文介绍了基于涡轮增压非EGR柴油发动机平均值模型的前馈计算方法。称为燃料系数的拟合变量在制动扭矩和燃料质量之间的仿射关系中限定。简化了燃料系数的拟合仅取决于三个变量(发动机速度,升压压力,注入燃料质量)。和双层前馈神经网络用于符合实验数据。该模型通过负载响应测试和等验证(欧洲瞬态循环)瞬态测试验证。制动扭矩的RMSE(均方误差)小于3%。

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