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Optimal control of a broadband vortex-induced vibration energy harvester

机译:宽带涡激振动能量采集器的最优控制

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A vortex-induced vibration energy harvester consists of a relatively long cylinder mounted on a flexible structure. In a flow field, the periodically shedding vortices induce transverse vibrations in the cylinder that is converted to electricity by means of piezoelectric generators. In most vortex-induced vibration harvesters, the output power is considerable only in a narrow band around the wind speed where the vortex shedding frequency matches the natural frequency of the structure. To overcome this limitation, a tuned mass mechanism is employed in the proposed vortex-induced vibration energy harvester that can change the natural frequency of the turbine to match the vortex shedding frequency in a broad band of wind speeds. The tuned mass mechanism should work in close cooperation with the piezoelectric generators to maximize the electric power of the turbine. To this end, a nonlinear piezoaeroelastic model of the system is derived, and a model predictive control technique is formulated to find the optimal control inputs for the tuned mass actuator and the piezoelectric generators. Results of numeric simulations confirmed that the tuned mass mechanism not only increases the velocity band over which the turbine is effective but also increases the peak power output of the turbine by 294%.
机译:涡流诱发的振动能量收集器由安装在柔性结构上的相对较长的圆柱体组成。在流场中,周期性脱落的涡流会引起圆柱体内的横向振动,并通过压电发电机将其转换为电能。在大多数涡流诱发的振动收集器中,仅在风速附近的窄带中,涡流的脱落频率与结构的固有频率匹配,输出功率才是可观的。为了克服此限制,在提出的涡流诱发的振动能量收集器中采用了调谐质量机制,该机制可以改变涡轮的固有频率,以使其在较宽的风速范围内与涡流脱落频率相匹配。调谐质量机构应与压电发电机紧密协作,以使涡轮机的电力最大化。为此,推导了系统的非线性压电气动弹性模型,并制定了模型预测控制技术,以找到调谐质量执行器和压电发电机的最佳控制输入。数值模拟结果证实,调谐质量机制不仅增加了涡轮有效的速度范围,而且还将涡轮的峰值功率输出提高了294%。

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