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PRESSURE MODEL BASED COORDINATED CONTROL OF VGT AND DUAL-LOOP EGR IN A DIESEL ENGINE AIR-PATH SYSTEM

机译:基于压力模型的柴油机风路系统VGT和双环EGR的协调控制

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摘要

This paper describes a pressure-model-based coordinated control method of a variable geometry turbine (VGT) and dual-loop exhaust gas recirculation (EGR) in a diesel engine air-path system. Conventionally, air fraction or burnt gas fraction states are controlled for the control of dual-loop EGR systems, but fraction control is not practical since sensors for fractions are not available on production engines. In fact, there is still great controversy over how best to select control outputs for dual-loop EGR systems. In this paper, pressure and mass flow states are chosen as control outputs without fraction states considering the availability and reliability of sensors. A coordinated controller based on the simple control-oriented model is designed with practical aspects, which is applicable for simultaneous operations of high pressure (HP) EGR, low pressure (LP) EGR, and VGT. In addition, the controller adopts the method of input-output linearization using back-stepping to solve the chronic problems of conventional pressure-based controllers such as coupling effects between operations of HP EGR, and VGT. The control performance is verified by simulation based on the proven GT-POWER model of a heavy-duty 6000cc diesel engine air-path.
机译:本文介绍了一种基于压力模型的柴油机风路系统中可变几何涡轮(VGT)和双环废气再循环(EGR)的协调控制方法。通常,为了控制双回路EGR系统而控制空气分数或燃烧气体分数状态,但是分数控制不切实际,因为在生产发动机上没有分数传感器。实际上,关于如何为双回路EGR系统选择最佳控制输出仍有很大争议。在本文中,考虑传感器的可用性和可靠性,选择压力和质量流量状态作为无分数状态的控制输出。设计了基于面向控制的简单模型的协调控制器,并结合实际情况进行了设计,适用于高压(HP)EGR,低压(LP)EGR和VGT的同时运行。此外,该控制器采用使用后退的输入输出线性化方法来解决传统基于压力的控制器的长期问题,例如HP EGR和VGT的运行之间的耦合效应。通过基于经验证的重型6000cc柴油发动机风路的GT-POWER模型进行仿真,可以验证控制性能。

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