通过几何图案匹配放松触控笔输入精度

P. Kristensson, Shumin Zhai
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引用次数: 94

摘要

菲茨定律模拟了手写笔打字中固有的速度-精度权衡约束。试图超过Fitts法定速度上限的用户往往会将触控笔落在目标键之外,导致错误的单词,增加用户的挫败感。我们提出了一种几何模式匹配技术来克服这个问题。我们的解决方案既可以用作增强的拼写检查器,也可以作为使用户摆脱触控笔输入时的Fitts定律约束的一种方式,这可能会导致比目前理论模型更高的文本输入速度。我们将触控键盘上的命中值视为高分辨率几何图形。这种模式可以与词典中合法单词的字母键中心位置形成的模式相匹配。我们展示了一种“弹性”触控笔键盘的开发和评估,即使用户错过了所有预定的键,只要用户的敲击模式足够接近预定的单词,它也能纠正单词。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Relaxing stylus typing precision by geometric pattern matching
Fitts' law models the inherent speed-accuracy trade-off constraint in stylus typing. Users attempting to go beyond the Fitts' law speed ceiling will tend to land the stylus outside the targeted key, resulting in erroneous words and increasing users' frustration. We propose a geometric pattern matching technique to overcome this problem. Our solution can be used either as an enhanced spell checker or as a way to enable users to escape the Fitts' law constraint in stylus typing, potentially resulting in higher text entry speeds than what is currently theoretically modeled. We view the hit points on a stylus keyboard as a high resolution geometric pattern. This pattern can be matched against patterns formed by the letter key center positions of legitimate words in a lexicon. We present the development and evaluation of an "elastic" stylus keyboard capable of correcting words even if the user misses all the intended keys, as long as the user's tapping pattern is close enough to the intended word.
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