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A comparative study on approaches to state and disturbance estimation for a vehicle combustion heating system

机译:汽车燃烧加热系统状态和扰动估计方法的比较研究

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In this paper, a comparison of three alternative estimation approaches for a vehicle combustion heating system is presented: 1) a Luenberger observer, 2) a reduced-order observer, and 3) a discrete-time Kalman filter. The estimated temperatures (representing state variables) and unknown disturbance heat flows are employed within a model-predictive on-off control structure. The observer design as well as the model-predictive on-off control are based on a control-oriented model of a combustion heating system, that is frequently installed in road vehicles like buses, cars, and trucks. To evaluate the alternative estimation strategies, the root-mean-square error between the measured and estimated states, the sensitivity w.r.t. noise, and the computational effort are considered. The advantages and disadvantages of each estimation strategy are discussed based on both simulations and experimental results obtained from a dedicated test rig.
机译:在本文中,比较了三种用于车辆燃烧加热系统的估计方法:1)Luenberger观测器; 2)降阶观测器; 3)离散时间卡尔曼滤波器。在模型预测的开关控制结构中采用了估计的温度(代表状态变量)和未知的干扰热流。观察者的设计以及模型预测的开关控制均基于燃烧加热系统的面向控制的模型,该模型经常安装在公共汽车,汽车和卡车等公路车辆中。为了评估替代估计策略,测量状态和估计状态之间的均方根误差,灵敏度w.r.t.噪声,并考虑了计算量。基于仿真和从专用测试台获得的实验结果,讨论了每种估计策略的优缺点。

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