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Nonlinear Model Predictive Control for Disturbance Rejection in Isoenergetic-isochoric Flash Processes ?

机译:等能量等速闪变过程中的干扰抑制的非线性模型预测控制

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We present a nonlinear model predictive control (NMPC) algorithm for semi-explicit index-1 stochastic differential-algebraic equations. It is natural to model isoenergetic-isochoric (constant energy-constant volume) flash processes with such equations. The algorithm uses the continuous-discrete extended Kalman filter (EKF) for state estimation, and it uses a single-shooting method to solve the involved optimal control problems. It computes the gradients with an adjoint method. The isoenergetic-isochoric flash is also called the UV flash, and it is important to rigorous models of phase equilibrium processes because it is a mathematical statement of the second law of thermodynamics. NMPC algorithms for UV flash processes are therefore relevant to both safe and economical operation of phase equilibrium processes such as flash separation, distillation, two-phase flow in pipes, and oil production. We design the NMPC algorithm for disturbance rejection, and we therefore augment the state vector with the unknown disturbance variables in the continuous-discrete EKF. We present a numerical example of economical NMPC of a UV flash separation process. It involves output constraints and the estimation of an unknown and unmeasured disturbance. The computation time of the NMPC algorithm does not exceed 3.14 s in any of the 5 min control intervals. This indicates that real-time NMPC of UV flash separation processes is computationally feasible.
机译:我们提出了一种用于半显式指数1随机微分-代数方程的非线性模型预测控制(NMPC)算法。用这样的方程式来建模等能量-等容(恒定能量-恒定体积)闪蒸过程是很自然的。该算法使用连续离散扩展卡尔曼滤波器(EKF)进行状态估计,并使用单次射击方法来解决所涉及的最优控制问题。它使用伴随方法计算梯度。等能量-等速闪光也称为UV闪光,它对于严格的相平衡过程模型很重要,因为它是热力学第二定律的数学表达。因此,用于UV闪蒸过程的NMPC算法与相平衡过程的安全和经济运行(例如闪蒸分离,蒸馏,管道中的两相流和采油)有关。我们设计了用于抑制干扰的NMPC算法,因此在连续离散EKF中使用未知干扰变量来扩充状态向量。我们提供了一个经济的NMPC的紫外线闪蒸分离过程的数值示例。它涉及输出约束以及未知和无法测量的干扰的估计。在5分钟的控制间隔中,NMPC算法的计算时间不超过3.14 s。这表明紫外线闪蒸分离过程的实时NMPC在计算上是可行的。

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