Closed-loop control framework for optimal startup of cryogenic air separation units
作者:Anthony W.K. Quarshie, José Matias, Christopher L.E. Swartz, Yanan Cao, Yajun Wang, Jesus Flores‐Cerrillo · 发表于:Journal of Process Control · 年份:2025 · DOI:10.1016/j.jprocont.2025.103525 · 被引用次数:2 · 研究领域:Spacecraft and Cryogenic Technologies、Field-Flow Fractionation Techniques、Advanced Thermodynamic Systems and Engines
Current volatile electricity market conditions incentivize the adaptation of the operation, including the startup, of cryogenic air separation units (ASUs) which are large consumers of electricity. Improvement in ASU startups using earlier proposed open-loop control strategies may not be fully realized in the presence of uncertainties and disturbances. This paper assesses the potential benefit of using a proposed closed-loop control framework to address uncertainty and disturbances. A rolling-horizon economic nonlinear model predictive control (ENMPC) approach is considered, for which strategies are proposed to improve computation time. Online parameter estimation is performed using a computationally efficient method that is easy to implement. Through the case studies presented, it is shown that the proposed framework outperforms the use of offline pre-computed optimal inputs in response to the disturbance and uncertainty considered.