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PERFORMANCE OF A WAVE-ENERGY-CONVERTER ARRAY OPERATING UNDER MODEL-PREDICTIVE CONTROL BASED ON A CONVEX FORMULATION

机译:基于凸公式的模型预测控制下的波能转换器的性能

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Economics decision drives the operation of ocean-wave energy converters (WEC) to be in a "farm mode". Control strategy developed for a WEC array will be of high importance for improving the aggregate energy extraction efficiency of the whole system. Model-predictive control (MPC) has shown its strong potential in maximizing the energy output in devices with hard constraints on operation states and machinery inputs ( See Ref. [1-3] ). Computational demands for using MPC to control an array in real time can be prohibitive. In this paper, we formulate the MPC to control an array of heaving point absorbers, by recasting the optimization problem for energy extraction into a convex Quadratic Programming (QP) problem, the solution of which can be carried out very efficiently. Large slew rates are to be penalized, which can also guarantee the convexity of the QP and improve the computational efficiency for achieving the optimal solution. Constraints on both the states and the control input can be accommodated in this MPC method. Full hydro-dynamic interference effects among the WEC array components are taken into account using the theory developed in [4]. Demonstrative results of the application are presented for arrays of two, three, and four point absorbers operating at different incident-wave angles. Effects of the interacting waves on power performance of the array under the new MPC control are investigated, with simulations conducted in both regular and irregular seas. Heaving motions of individual devices at their optimal condi- tions are shown. Also presented is the reactive power required by the power takeoff (PTO) system of the array to achieve optimality. We are pleased to contribute this article in celebration of our collegiality with Professor Bernard Molin on the occasion of his honoring symposium.
机译:经济决策促使海浪能量转换器(WEC)进入“农场模式”。为WEC阵列开发的控制策略对于提高整个系统的总能量提取效率将非常重要。模型预测控制(MPC)在最大化设备的能量输出方面显示出了强大的潜力,该设备对操作状态和机械输入有严格的限制(请参见参考文献1-3)。使用MPC实时控制阵列的计算需求可能会令人望而却步。在本文中,我们通过将能量提取的优化问题重铸为凸二次规划(QP)问题,从而制定了MPC来控制一系列沉点吸收器。大的摆率将受到惩罚,这也可以保证QP的凸性,并提高计算效率以实现最佳解。在这种MPC方法中,可以同时容纳状态和控制输入的约束。使用[4]中开发的理论考虑了WEC阵列组件之间的完全水动力干扰效应。给出了在不同入射波角下工作的两点,三点和四点吸收器阵列的应用示范结果。研究了相互作用波对新型MPC控制下阵列功率性能的影响,并在规则和不规则海域进行了仿真。显示了各个设备在其最佳条件下的起伏运动。还介绍了阵列的取力器(PTO)系统实现最佳化所需的无功功率。我们很高兴在伯纳德·莫林教授举行的荣誉座谈会上为庆祝与我们的合作贡献这篇文章。

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