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首页> 外文期刊>IEEE Transactions on Control Systems Technology >Nonlinear Observer-Based Control of Load Transitions in Homogeneous Charge Compression Ignition Engines
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Nonlinear Observer-Based Control of Load Transitions in Homogeneous Charge Compression Ignition Engines

机译:基于非线性观测器的均质充气压缩点火发动机负荷转移控制

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摘要

This paper presents a model-based nonlinear feedback controller designed to regulate the crank angle at 50% fuel burned (thetasCA50) for a gasoline homogeneous charge compression ignition engine model during load transitions. The regulation of the combustion timing is based on manipulating the charge temperature through internal dilution, which is achieved by controlling the lift of a secondary opening of the exhaust valve, also known as the rebreathing lift. The nonlinear feedback controller developed is based on a positive semidefinite Lyapunov function using a simplified control model which contains only the cycle-to-cycle temperature dynamics. The nonlinear feedback controller depends on measurement of the combustion timing thetasCA50 and estimation of the temperature at intake valve closing. Closed-loop simulation of the full-order engine model shows that the nonlinear feedback controller, along with a nonlinear observer, is able to regulate the combustion timing thetasCA50 by stabilizing the temperature dynamics during load transitions. The closed-loop system with the observer-based feedback controller is shown to be robust to some classes of model uncertainty and measurement noise through simulation and an estimate of the region of attraction
机译:本文提出了一种基于模型的非线性反馈控制器,该控制器设计用于在负载过渡期间将汽油均质充量压缩式点火发动机模型调节为燃烧50%燃料时的曲柄角(thetasCA50)。燃烧正时的调节是基于通过内部稀释来控制充气温度的,该内部稀释是通过控制排气门的次级开口的升程(也称为再呼吸升程)来实现的。开发的非线性反馈控制器基于正半定Lyapunov函数,并使用简化的控制模型,该模型仅包含逐周期温度动态特性。非线性反馈控制器取决于燃烧正时thetasCA50的测量以及进气门关闭时的温度估算。全阶发动机模型的闭环仿真表明,非线性反馈控制器和非线性观测器能够通过稳定负载过渡期间的温度动态来调节燃烧正时thetasCA50。通过模拟和吸引区域的估计,具有基于观察者的反馈控制器的闭环系统对于某些类型的模型不确定性和测量噪声具有鲁棒性

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