Using fuzzy logic in low cost microcontroller to increase accelerometer performances

J. Gaysse
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引用次数: 5

Abstract

In recent years, navigation systems have appeared in a wide range of applications (automotive, aviation, robots...). Most of them embed the Global Positioning System (GPS), which is still expensive, sensitive to electronic interference and not efficient for indoor areas. An absolute positioning system (Dead-Reckoning) is preferable in these situations. On the other hand, low cost inertial sensors (MEMS) are now available. They provide kinetic information (acceleration, rotation speed...) but are not accurate enough for direct use in navigation applications. This paper explains how to use smart processing, fuzzy-logic based, in order to accurately estimate a linear position with an accelerometer. Experimental results show the efficiency of this algorithm computed in real time in an AT91SAM7S64 microcontroller.
在低成本微控制器中应用模糊逻辑提高加速度计性能
近年来,导航系统已经出现在广泛的应用(汽车,航空,机器人…)。它们中的大多数都嵌入了全球定位系统(GPS),但GPS仍然昂贵,对电子干扰敏感,而且在室内区域效率不高。在这些情况下,绝对定位系统(航位推算)更可取。另一方面,低成本的惯性传感器(MEMS)现在是可用的。它们提供动力学信息(加速度、旋转速度……),但不够精确,无法直接用于导航应用。本文阐述了如何利用基于模糊逻辑的智能处理,以精确估计加速度计的线性位置。实验结果表明,该算法在AT91SAM7S64单片机上的实时计算是有效的。
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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