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Composite control of fuel quantity actuator system for diesel engines via backstepping control technique and generalised proportional integral observer

机译:基于反步控制技术和广义比例积分观测器的柴油机燃油量执行器系统的复合控制

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摘要

In an electronically controlled VE distributive pump, the fuel quantity actuator (FQA) is a significant component. It is responsible for governing the quantity of fuel being injected into diesel-type engines. There exist non-linearities in the system, and usually, non-linearities are neglected in modelling and control design, which makes the performance of the closed-loop system degrade. Therefore, the authors take the non-linearities of the rotary electromagnet and offsetting spring into consideration and establish the more detailed mathematical model in this study. Besides, the FQA system always confronts disturbances caused by external torque and input voltage variation in the real working condition. Furthermore, to deal with the non-linearities and reject the disturbances, a generalised proportional integral observer (GPIO)-based backstepping control approach is presented. By using a GPIO, the state estimations and disturbances estimation can be obtained at the same time. In addition, a theoretical analysis of the closed-loop system is given, showing its asymptotic stability, even under acting lumped disturbance. The introduced control scheme exhibits satisfactory performance in terms of transient behaviour and disturbance rejection. Finally, a set of simulation and experimental tests are carried out to validate the feasibility as well as efficiency of the proposed control framework.
机译:在电子控制的VE分配泵中,燃油量执行器(FQA)是重要的组成部分。它负责控制喷入柴油发动机的燃油量。系统中存在非线性,通常在建模和控制设计中都忽略了非线性,这使得闭环系统的性能下降。因此,作者考虑了旋转电磁体和补偿弹簧的非线性,并在此研究中建立了更详细的数学模型。此外,FQA系统在实际工作条件下始终会受到外部扭矩和输入电压变化引起的干扰。此外,为了处理非线性并消除干扰,提出了一种基于通用比例积分观测器(GPIO)的后推控制方法。通过使用GPIO,可以同时获得状态估计和干扰估计。此外,给出了闭环系统的理论分析,显示了即使在集总扰动下其渐近稳定性。引入的控制方案在瞬态行为和干扰抑制方面表现出令人满意的性能。最后,进行了一组仿真和实验测试,以验证所提出的控制框架的可行性和效率。

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