Hu Siyang, Fitzer Ulrike, Nguyen Khai Chau, Hohlfeld Dennis, Korvink Jan G, Bechtold Tamara
Department of Engineering, Jade University of Applied Sciences, Friedrich-Paffrath-Str. 101, 26389 Wilhelmshaven, Germany.
Institute for Electronic Appliances and Circuits, Faculty of Computer Science and Electrical Engineering, University of Rostock, Albert-Einstein-Str. 2, 18059 Rostock, Germany.
Micromachines (Basel). 2023 Jan 27;14(2):332. doi: 10.3390/mi14020332.
In recent years, topology optimization has proved itself to be state of the art in the design of mechanical structures. At the same time, energy harvesting has gained a lot of attention in research and industry. In this work, we present a novel topology optimization of a multi-resonant piezoelectric energy-harvester device. The goal is to develop a broadband design that can generate constant power output over a range of frequencies, thus enabling reliable operation under changing environmental conditions. To achieve this goal, topology optimization is implemented with a combined-objective function, which tackles both the frequency requirement and the power-output characteristic. The optimization suggests a promising design, with satisfactory frequency characteristics.
近年来,拓扑优化已证明自身是机械结构设计中的先进技术。与此同时,能量收集在研究和工业领域受到了广泛关注。在这项工作中,我们提出了一种多谐振压电能量收集器装置的新型拓扑优化方法。目标是开发一种宽带设计,使其能够在一系列频率上产生恒定的功率输出,从而在不断变化的环境条件下实现可靠运行。为实现这一目标,采用组合目标函数进行拓扑优化,该函数兼顾了频率要求和功率输出特性。优化结果表明了一种有前景的设计,其频率特性令人满意。