首页> 外文会议>ASME international mechanical engineering congress and exposition >STUDY ON HIGH EFFICIENCY ENERGY HARVESTING USING PIEZOELECTRIC COUPLED BEAM WITH SELF-TUNING PROCESS
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STUDY ON HIGH EFFICIENCY ENERGY HARVESTING USING PIEZOELECTRIC COUPLED BEAM WITH SELF-TUNING PROCESS

机译:自调谐过程中压电耦合梁高效节能的研究

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Studies on renewable energy harvesting have experienced significant growth due to the increasing demand of portable electronic devices and wireless sensor networks. We introduce the first time a beam energy harvester coupled with piezoelectric layers and stack actuators subjected to harmonic base excitation for achieving efficiency energy harvesting with a new developed self-frequency-tuning process. The self-frequency-tuning process of the harvester is realized by an adjustable axial force, which is generated by a piezoelectric stack actuator, through a feedback filtering electrical circuit. By the feedback filtering circuit, the value of axial force is determined by the amplitude of the output voltage generated on piezoelectric layers to tune the first natural frequency of the beam harvester close to the excitation frequency leading to a resonance of the harvester system. To describe and simulate the energy harvesting and the self-tuning process, a mathematical model is presented to calculate the dynamic response of the harvester as well as the output electric charge and voltage from piezoelectric layers for adjusting the axial force. It is noted that an iteration process is indispensable for the tuning process because of the transient nature of the vibrating system. A novel iteration numerical model is hence developed, and the whole energy harvesting process is divided into many short periods to represent the iteration steps and the self-tuning process. From numerical simulations, it shows that the self-tuning process helps increase the efficiency of the harvester, especially when the harvester is tuned close to its resonant state.
机译:由于便携式电子设备和无线传感器网络的需求不断增长,可再生能源收集的研究经历了显着增长。我们首次介绍了结合了压电层和叠层执行器的束能量采集器,该束能量采集器经过谐波基极激励,以通过新开发的自变频技术实现高效的能量采集。收割机的自调频过程是通过可调节的轴向力实现的,该轴向力是由压电堆栈致动器通过反馈滤波电路产生的。通过反馈滤波电路,轴向力的值由在压电层上产生的输出电压的幅度确定,以将射束收集器的第一固有频率调整为接近激发频率,从而导致收集器系统发生共振。为了描述和模拟能量收集和自整定过程,提出了一个数学模型来计算收集器的动态响应以及压电层的输出电荷和电压,以调节轴向力。注意,由于振动系统的瞬态特性,迭代过程对于调谐过程是必不可少的。因此,开发了一种新颖的迭代数值模型,并将整个能量收集过程分为许多短周期来表示迭代步骤和自整定过程。从数值模拟可以看出,自整定过程有助于提高收割机的效率,尤其是在收割机的调谐状态接近其共振状态时。

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