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Maximising power conversion for heaving point absorbers using a reference-based control technique

机译:使用基于参考的控制技术最大化升沉点吸收器的功率转换

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This study considers maximising conversion between the mechanical and electrical powers for heaving point absorbers (HPAs). The objective is implemented by generating the buoy's velocity reference by designing the intrinsic resistance. The authors designed the intrinsic resistance using a rapid procedure involving the mechanical and electrical models of HPAs. The electrical power conversion can be improved by tuning a weighting constant with the constraints on the maximum value of the control force and the power take-off utilisation index. The value of the intrinsic resistance is varied based on irregular sea states, which are characterised by their significant heights and peak angular frequencies. A simple robust proportional-integral-derivative (PID) controller is utilised in the servo feedback control system to follow the velocity reference. The PID controller is designed using the complex polynomial stabilisation to convert the robust performance into a set of linear programming problems. A set of admissible PID controller is obtained to satisfy the robust performance specifications. The authors tested the proposed method in various nominal and perturbation scenarios, and its performance was compared with existing reference and non-reference based HPA control strategies.
机译:这项研究考虑使升沉点吸收器(HPA)的机械和电力之间的转换最大化。该目标是通过设计固有阻力来生成浮标的速度参考值来实现的。作者使用涉及HPA机械和电气模型的快速程序设计了固有电阻。通过在控制力的最大值和取力利用指数的约束下调整加权常数,可以改善电力转换。本征电阻的值根据不规则的海况而变化,海况的特征在于其明显的高度和峰值角频率。在伺服反馈控制系统中使用了简单的鲁棒比例积分微分(PID)控制器来跟踪速度参考值。 PID控制器使用复杂的多项式稳定度进行设计,以将鲁棒的性能转换为一组线性编程问题。获得了一组允许的PID控制器以满足鲁棒的性能规格。作者测试了该方法在各种名义和扰动情况下的性能,并将其性能与基于参考和非参考的HPA控制策略进行了比较。

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