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Luenberger-Sliding Mode Observer Based Backstepping Control for the SCR System in a Diesel Engine

机译:柴油发动机SCR系统的基于Luenberger-Slidd模式观察者的支持模式控制器

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摘要

In order to keep the ammonia (NH3) slip of the downstream selective catalytic reduction (SCR) system at a low level and simultaneously achieve a high nitrogen oxide (NOX) conversion rate, a Luenberger-sliding mode observer based backstepping control method is proposed. Considering that the internal working condition of the catalyst cannot be measured by commercial sensors directly, a Luenberger-sliding mode observer is designed to estimate the ammonia concentration at the middle of the catalyst. In addition, based on the stepped distributed characteristic of the surface ammonia coverage ratio along the SCR axial direction, a backstepping control method is utilized for the SCR system, in which the SCR system is decomposed into two subsystems. Firstly, the Lyapunov function is designed to ensure the convergence of the downstream subsystem, and then the virtual control law is obtained. After that, taking the virtual control law as the tracking target of the upstream subsystem, the Lyapunov function of virtual control law is given. Finally, the actual control law of the whole closed loop system is acquired. Simulations under different conditions are conducted to investigate the effect of the proposed control method. In addition, comparisons with the traditional PID (Proportion Integration Differentiation) control are presented. Results show that the proposed method is much better than the PID control method in overshoot, setting time, and tracking error.
机译:为了保持下游的选择性催化还原(SCR)系统中的氨(NH 3)滑移在低水平,同时实现高的氮氧化物(NOX)的转化率,一个的Luenberger-滑模观测基于反演控制方法,提出了考虑到催化剂的内部的工作状态不能由商业传感器直接测量,一个的Luenberger-滑模观测被设计为在催化剂的中间以估计氨浓度。此外,基于沿着SCR轴向方向,反推控制方法被用于SCR系统,其中所述SCR系统分解为两个子系统的表面氨覆盖率的阶梯分布特性。首先,Lyapunov函数被设计成确保下游子系统的收敛,然后获得的虚拟控制律。在此之后,以所述虚拟控制法作为上游子系统的追踪对象,虚拟控制法的Lyapunov函数给出。最后,整个闭环系统的实际控制律收购。不同的条件下仿真以调查所提出的控制方法的效果。此外,与传统的PID(比例积分微分)控制的比较被呈现。结果表明,该方法比超调的PID控制方法要好得多,凝结时间,和跟踪误差。

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