MagController: A System for Touchless Mobile Devices Control Using the Magnetic Field

Heba Abdelnasser, Ayman Khalafallah, M. Youssef
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引用次数: 3

Abstract

A lot of improvements have been proposed in mobile computing devices, especially the wearable devices, in recent years. However, the input techniques remain a key challenge. One of the main methods for interacting with small screen devices today is the inflexible and error-prone touch-screen. In this paper, we propose MagController: a magnetic-based input technique that offers users wireless, unpowered, and high precision input for computing devices.The core idea is to leverage the triaxial magnetometer embedded in standard devices to accurately recognize a magnet different control actions. MagController also provides a number of modules that allow it to cope with background magnetic noise, heterogeneous devices, different magnet shapes, sizes, and strengths, as well as changes in magnet orientations.Our implementation of MagController on Android phones with extensive evaluation in wide range of environmental conditions scenarios shows that it can detect the magnet orientation with accuracy of more than 98%. In addition, MagController can recognize the magnetic actions with accuracy of 97% in different magnet’s orientations relative to the device. This accuracy is robust with different phones and magnets, highlighting MagController’s promise as an input technique for computing devices.
磁控制器:一种利用磁场控制非接触式移动设备的系统
近年来,人们对移动计算设备,特别是可穿戴设备提出了许多改进。然而,输入技术仍然是一个关键的挑战。当今与小屏幕设备交互的主要方法之一是不灵活且容易出错的触摸屏。在本文中,我们提出了磁控制器:一种基于磁的输入技术,为用户提供无线,无电和高精度的计算设备输入。其核心思想是利用嵌入在标准设备中的三轴磁强计来准确识别磁铁的不同控制动作。MagController还提供了许多模块,使其能够应对背景磁噪声,异构设备,不同的磁铁形状,尺寸和强度,以及磁铁方向的变化。我们在Android手机上实现了MagController,并在广泛的环境条件场景下进行了广泛的评估,结果表明它可以以98%以上的精度检测磁铁的方向。此外,在相对于设备的不同磁体方向上,MagController可以以97%的精度识别磁动作。这种准确性在不同的手机和磁铁上都很强大,突出了MagController作为计算设备输入技术的承诺。
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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