首页> 外文会议>Proceedings of the ASME dynamic systems and control conference 2009 >BACKSTEPPING BASED NONLINEAR AMMONIA SURFACE COVERAGE RATIO CONTROL FOR DIESEL ENGINE SELECTIVE CATALYTIC REDUCTION SYSTEMS
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BACKSTEPPING BASED NONLINEAR AMMONIA SURFACE COVERAGE RATIO CONTROL FOR DIESEL ENGINE SELECTIVE CATALYTIC REDUCTION SYSTEMS

机译:柴油机选择性催化还原系统的基于反演的非线性氨表面覆盖率控制

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This paper presents an ammonia surface coverage ratio control approach based on the backstepping concept for diesel engine selective catalytic reduction (SCR) systems. SCR models with multiple cells connected in cascade provide more accurate representations of the actual SCR system dynamics by considering the spatial distribution. Control of SCR system ammonia coverage ratio is critically important and effective in terms of ensuring low tailpipe NOx and ammonia emissions. However, such a task is also very challenging primarily due to the nonlinearities of the SCR dynamics and limited ammonia injection control authority. Grounded in the understanding of the SCR nonlinear dynamic characteristics, a backstepping-based nonlinear control law is then proposed to regulate the ammonia surface coverage ratio of the last SCR cell in order to tightly control the tailpipe NOx and ammonia emissions. Lyapunov-based analyses show the stability of the designed control law. FTP75 test cycle simulation results based on a full-vehicle (including engine, chassis, and aftertreatment systems) model illustrated that, compared with a conventional PID controller, the nonlinear backstepping control law can more appropriately handle the SCR system dynamics and exhibits superior ammonia coverage ratio control capability.
机译:本文提出了一种基于反推概念的柴油机选择性催化还原(SCR)系统氨表面覆盖率控制方法。通过考虑空间分布,具有串联连接的多个单元的SCR模型可以更准确地表示实际SCR系统动力学。就确保低尾气管NOx和氨气排放而言,控制SCR系统氨气覆盖率至关重要且有效。然而,主要由于SCR动力学的非线性和有限的氨注入控制权限,这样的任务也非常具有挑战性。基于对SCR非线性动力学特性的理解,提出了一种基于反推的非线性控制律,以调节最后一个SCR电池的氨表面覆盖率,从而严格控制排气管的NOx和氨气排放。基于李雅普诺夫的分析证明了所设计控制律的稳定性。基于全车(包括发动机,底盘和后处理系统)模型的FTP75测试周期模拟结果表明,与常规PID控制器相比,非线性反步控制律可以更适当地处理SCR系统动力学并展现出卓越的氨气覆盖率比率控制能力。

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