脑机接口虚拟键盘设计

Suneth Pathirana, D. Asirvatham, M. Johar
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引用次数: 2

摘要

脑机接口(BCI)是人机交互(HCI)的一个特殊方面。脑机接口使残疾人能够通过“精神指令”与电脑或其他电子设备进行免提互动。典型的BCI系统通过识别用户的意图来模拟典型输入设备(如鼠标)的基本功能。意图检测通常通过脑电图(EEG)技术来实现。在脑机接口(BCI)中,通常采用虚拟键盘来模拟物理键盘的功能。研究了计算机操作系统支持的屏幕键盘对脑机接口用户不方便的问题。与使用物理指向设备不同,BCI用户必须花费额外的精力来移动光标,然后将其停在正确的键上。因此,实现了设计一种专门用于BCI的优化虚拟键盘的要求。事实上,可用的键盘布局不适合bci。另外,一些研究人员提出了一个关键矩阵。我们推出了一个更好的屏幕键盘,与现有的设计相比,它的打字速度提高了11%。此外,还集成了键盘快捷键等扩展功能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Designing Virtual Keyboards for Brain-Computer Interfaces
Brain-Machine interfacing (BCI) is an exceptional aspect of Human-Computer Interaction (HCI). BCI enables people with disabilities to interact hands-free with computers or other electronic devices using 'mental commands.' A typical BCI system emulates the basic functions of a typical input device such as a mouse by recognizing the user's intentions. Intention detection is usually achieved through the Electroencephalography (EEG) technology. In the context of BCI, virtual keyboards are often employed to simulate the physical keyboard functions. It was studied that the on-screen keyboards facilitated by the operating system of the computer are inconvenient for the BCI users. Unlike using a physical pointing device, the BCI user has to apply extra mental energy to move the cursor then to stop it on the exact key. Therefore, the requirement of designing an optimized virtual keyboard especially for BCI purpose is realized. In fact, the available keyboard layouts are inappropriate for BCIs. Alternatively, a key matrix has been suggested by some researchers. We introduce a better on-screen keyboard which has exhibited an enhancement of 11% in efficiency, by the meaning of typing speed compared to the existing designs. In addition, extended functionalities such as keyboard shortcuts are also integrated.
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