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Multi-objective optimisation methodology for self-sensing piezoelectric monomorph benders

机译:自感应压电单晶片弯曲机的多目标优化方法

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Charge-based self-sensing actuation (SSA) with piezoelectric actuators has achieved great strides of progress since their inception in 1992, with multiple proposals improving the estimation method through the use of efficient non-linearity and error compensations. The aim of this study is to provide a framework for the optimisation of a piezoelectric actuator's design based on an accurate model of the actuator, allowing to make better use of these self-sensing methodologies. An actuator morphology and its corresponding design space are first presented, a set of objective functions to optimise is then presented, after which a first pass of analytical optimisation is performed. It is found that, in order to proceed with the study, a numerical approach is required. An algorithm providing a set of optimal solutions is proposed, and is then shown to provide points from the Pareto frontier of the optimisation problem. A single optimal solution is chosen based on a tradeoff on the Pareto frontier. The resulting actuator has a sensitivity of |ß| = 3.54 nC mN-1, presenting an approximate ×20 increase in sensitivity over the CMBP03 bender designed by Noliac as well as a decrease in estimation error by a factor of 50.
机译:自1992年问世以来,带压电执行器的基于电荷的自感应执行器(SSA)取得了长足进步,提出了许多建议,通过使用有效的非线性和误差补偿来改进估算方法。这项研究的目的是为基于致动器的精确模型优化压电致动器的设计提供一个框架,从而可以更好地利用这些自感测方法。首先介绍了执行机构的形态及其相应的设计空间,然后给出了一组要优化的目标函数,然后进行了分析优化的第一遍。已经发现,为了进行研究,需要一种数值方法。提出了一种提供一组最佳解决方案的算法,然后将其显示为提供来自优化问题的帕累托边界的点。基于帕累托边界的折衷选择单个最佳解决方案。最终的执行器的灵敏度为|ß|。 = 3.54 nC毫安 -1 ,与Noliac设计的CMBP03折弯机相比,灵敏度提高了约20倍,并且估计误差降低了50倍。

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