论文标题

具有开环的最佳控制的水力学涡轮机的控制共同设计

Control Co-design of a Hydrokinetic Turbine with Open-loop Optimal Control

论文作者

Jiang, Boxi, Amini, Mohammad Reza, Liao, Yingqian, Martins, Joaquim R. R. A., Sun, Jing

论文摘要

本文介绍了一个控制共同设计(CCD)框架,以同时探索水力机涡轮机(HKT)转子优化的物理参数和控制空间。优化公式结合了一个耦合的动态流动力模型,以最大程度地提高各种时间变化的流动曲线的转子功率效率。开放环的最佳控制用于最大功率跟踪,而刀片元素动量理论(BEMT)用于对流体动力学进行建模。研究了具有不同控制约束的案例研究。对不同的流量谱和初始几何形状进行了灵敏度分析。比较是在CCD和顺序过程之间进行的,在相同条件下进行了物理设计,然后进行控制设计过程。结果证明了CCD的好处,并表明,与从顺序设计过程中获得的设计相比,CCD的CCD导致能量产生增加。

This paper introduces a control co-design (CCD) framework to simultaneously explore the physical parameters and control spaces for a hydro-kinetic turbine (HKT) rotor optimization. The optimization formulation incorporates a coupled dynamic-hydrodynamic model to maximize the rotor power efficiency for various time-variant flow profiles. The open-loop optimal control is applied for maximum power tracking, and the blade element momentum theory (BEMT) is used to model the hydrodynamics. Case studies with different control constraints are investigated for CCD. Sensitivity analyses were conducted with respect to different flow profiles and initial geometries. Comparisons are made between CCD and the sequential process, with physical design followed by a control design process under the same conditions. The results demonstrate the benefits of CCD and reveal that, with control constraints, CCD leads to increased energy production compared to the design obtained from the sequential design process.

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