首页> 外文会议>International Conference on Materials Technology and Energy >On-off skyhook semi-active control via a magneto-rheological (MR) damper for airfoil-based energy harvesting systems
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On-off skyhook semi-active control via a magneto-rheological (MR) damper for airfoil-based energy harvesting systems

机译:通过磁流变(MR)阻尼器用于基于翼型的能量收集系统的开关Skyhook半主动控制

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An on-off skyhook semi-active control strategy via MR damper is proposed in this study to enhance the performance of a two degree-of-freedom (DOF) airfoil-based energy harvester. For simplicity, only the plunge mode of the airfoil model is examined. NACA0012 airfoil is selected as the vibrating body where energy is harvested and converted into electricity via piezoelectric transduction. Behavioural performance of an actual MR damper is represented numerically with MATLAB/SIMULINK blocks of a conventional Bouc-Wen model. Simulation of the airfoil model is also performed on MATLAB to acquire its dynamic responses. A comparison between passive and semi-actively controlled airfoil systems demonstrates that the proposed strategy is superior in three different aspects — versatility, energy harvesting and sustaining structural integrity.
机译:通过MR DABPER提出了一项开启的Skyhook半主动控制策略,提出了提高了两种自由度(DOF)翼型的能源收割机的性能。为简单起见,仅检查翼型模型的插入模式。选择NaCA0012翼型作为振动体,通过压电转导收获能量并转化为电力。实际MR阻尼器的行为性能与传统BOUC-WE模型的MATLAB / SIMULINK块数值表示。在MATLAB上还执行翼型模型的仿真,以获取其动态响应。被动和半主动控制的翼型系统之间的比较表明,所提出的策略在三种不同方面优越 - 多功能性,能量收集和维持结构完整性。

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