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A unified approach to optimal conditions of power harvesting using electromagnetic and piezoelectric transducers

机译:使用电磁和压电换能器优化功率收集最佳条件的统一方法

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摘要

Power harvesting systems generate electric power from mechanical vibration using electromechanical transducers. To assess the practical performance of these systems, it is important to be able to estimate the maximum power that could be harvested from a specific structure and to derive the optimal conditions for the harvesting. We introduce a two-port network model which can fully describe the electromechanical coupled dynamics of the transducer, including the interaction between the structure and the electrical load in a unified manner. Electromagnetic and piezoelectric transducers are then considered as special cases of this general treatment. The power harvested by both types of transducer on a simply supported beam is derived and the optimal matching conditions and the maximum harvested power are obtained theoretically. In this numerical example, a piezoelectric transducer would have higher potential than an electromagnetic device of equal mass for the harvesting, but only when the transducer parameters are tuned optimally.
机译:功率收集系统使用机电换能器通过机械振动产生电能。为了评估这些系统的实际性能,重要的是能够估计可以从特定结构中收获的最大功率并得出收获的最佳条件。我们介绍了一个两端口网络模型,该模型可以完整描述换能器的机电耦合动力学,包括统一地结构和电负载之间的相互作用。然后将电磁换能器和压电换能器视为这种一般处理的特殊情况。推导了两种类型的换能器在简单支撑梁上收集的功率,并从理论上获得了最佳匹配条件和最大收集功率。在此数值示例中,压电换能器比同等质量的电磁设备具有更高的电势以进行收割,但前提是必须对换能器参数进行最佳调整。

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