Theoretical approach on a galvanometric scanner with an enhanced duty cycle

V. Duma, A. Podoleanu
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引用次数: 14

Abstract

The paper explores the possibilities of achieving a galvanometric scanner with an enhanced, as close as possible to 100%, duty cycle (η) even for high scan, i.e. high oscillation, frequencies. Nowadays solutions provide high η, but up to certain frequencies. The study of this limit frequency, of its relationship with the duty cycle, and the ascertainment of the scanning and command functions that may produce better results, is the final scope of this work. The scanning device is considered in a setup characteristic to the dimensional, usually on-line, industrial measurements. A detailed theoretical study is performed, starting with the equation of the mobile element of the galvoscanner. The expressions of the active torque and of the necessary command function that has to be used are obtained, with regard to the desired scanning function. This is considered linear and symmetrical on its active portions and with non-linear returning portions that have to be performed as fast as possible. Two such functions for the returning portions are considered and studied: parabolic and sinusoidal. The best scanning function, with regard to achieving the objectives of the device (high duty cycle for high frequencies), is obtained and the way the necessary command function has to be deduced is discussed.
增强占空比电流扫描仪的理论研究
本文探讨了实现高扫描,即高振荡频率,具有增强的,尽可能接近100%的占空比(η)的振镜扫描仪的可能性。现在的解决方案提供高η,但高达某些频率。研究这个极限频率,研究它与占空比的关系,以及确定可能产生更好结果的扫描和命令功能,是这项工作的最终范围。扫描装置被认为是尺寸的设置特性,通常是在线的,工业测量。从电激扫描仪的移动元件方程出发,进行了详细的理论研究。得到了所期望的扫描函数的主动转矩和必须使用的必要命令函数的表达式。这在其活动部分被认为是线性和对称的,而非线性返回部分必须尽可能快地执行。考虑并研究了返回部分的两种函数:抛物线函数和正弦函数。获得了实现器件目标(高频高占空比)的最佳扫描函数,并讨论了推导必要的命令函数的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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