Modeling of wind-induced vibration control and energy harvesting of traffic signal structures

Feng Qian, Ihab Ragai, Xiaochun Nie, Yabin Liao
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Abstract

Traffic signal support structures are slender, highly flexible, and lightly damped. Therefore, they are particularly susceptible to wind-induced vibrations, which result in repeated load stresses and fatigue failures. A tuned energy harvesting inerter damper (TEHID)is proposed to reduce wind-induced vibrations of traffic signal support structures and convert the wasted vibration energy into electricity. The TEHID creates a large inertia mass by converting the low-frequency vibration motion of the light head to a high-speed rotation thereby eliminating the need for a large physical mass and accommodation space required by the conventional tuned mass damper (TMD). This paper focuses on the nonlinear dynamics modeling of the wind-induced vibration control and energy harvesting system for traffic signal support structures. The traffic signal structure is modeled as an L-shaped beam with multi-segments and the TEHID is simplified as a three-element device consisting of a spring, a damper, and an inerter. The nonlinear equations and the boundary conditions governing the motion of the integrated vibration control and energy harvesting system are derived from the energy method and presented herein. Modal analysis is conducted and the derived natural frequencies and mode shapes are compared with the finite element simulation results to validate the analytical model.
交通信号结构风致振动控制与能量收集建模
交通信号支撑结构细长、柔韧性强、阻尼小。因此,它们特别容易受到风振的影响,从而导致反复的负载应力和疲劳失效。提出了一种可调谐能量收集干涉阻尼器(TEHID),以减少交通信号支撑结构的风致振动,并将浪费的振动能量转化为电能。TEHID通过将灯头的低频振动运动转换为高速旋转来产生大的惯性质量,从而消除了传统调谐质量阻尼器(TMD)所需的大物理质量和容纳空间。研究了交通信号支撑结构风致振动控制与能量收集系统的非线性动力学建模。将交通信号结构建模为多段l型光束,将TEHID简化为由弹簧、阻尼器和干涉器组成的三元装置。利用能量法推导了振动控制与能量收集一体化系统运动的非线性方程和边界条件。进行了模态分析,并将导出的固有频率和模态振型与有限元仿真结果进行了比较,验证了解析模型的正确性。
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