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A Comparison of Dithers for Hysteresis Alleviation in Dahl Model Based Piezoelectric Actuator

机译:基于DAHL模型压电执行器的滞后减少的比较

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Hysteresis is a major impediment in achieving precise position tracking through piezo actuated micro nano manipulator. In our study it has been shown that the effect of hysteresis can be mitigated by the proper application of a suitably selected dither sequence. The objective of the paper is to compare the various types of dither viz, Sinusoidal, Gaussian, Rayleigh and Rician, as to which gives the optimal system performance in terms of two tests-tracking error and area under the hysteresis curve. This paper starts with the analysis of a piezoelectric actuator based on the Dahl model. An inverse Dahl model based feed-forward mechanism in conjunction with a feedback control is used for the study of the actuator's performance. Dither injection is applied at three different places in the system and accordingly three different schemes namely displacement dither, voltage dither and combined dither have been developed and compared. Based on the simulations, the best type of dither and its corresponding intensity for a given place of dither injection has been established. Results ascertain dither based control as a simple and an efficient algorithm capable of providing very accurate micro-nano positioning.
机译:滞后是通过压电驱动的微纳米机械手实现精确位置跟踪的主要障碍。 In our study it has been shown that the effect of hysteresis can be mitigated by the proper application of a suitably selected dither sequence.本文的目的是比较各种类型的抖动,正弦,高斯,瑞利和瑞典,以及它在滞后曲线下的两个测试跟踪误差和面积方面给出了最佳系统性能。本文以基于DAHL模型的压电执行器的分析开始。基于反向DAHL模型的逆DAHL模型结合反馈控制的前馈机制用于研究执行器的性能。抖动喷射在系统中的三个不同的地方施加,并因此进行了三个不同的方案,即位移抖动,电压抖动和组合抖动已经开发并比较。基于模拟,已经建立了最佳类型的抖动及其对给定抖动喷射地点的相应强度。结果确定基于抖动控制作为一种能够提供非常精确的微纳米定位的简单且有效的算法。

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