首页> 外文期刊>ACM Transactions on Computer-Human Interaction >Disambiguation of Imprecise Input with One-Dimensional Rotational Text Entry
【24h】

Disambiguation of Imprecise Input with One-Dimensional Rotational Text Entry

机译:一维旋转文本输入消除不精确输入的歧义

获取原文
获取原文并翻译 | 示例

摘要

We introduce a distinction between disambiguation supporting continuous versus discrete ambiguous text entry. With continuous ambiguous text entry methods, letter selections are treated as ambiguous due to expected imprecision rather than due to discretized letter groupings. We investigate the simple case of a one-dimensional character layout to demonstrate the potential of techniques designed for imprecise entry. Our rotation-based sight-free technique, Rotext, maps device orientation to a layout optimized for disambiguation, motor efficiency, and learnability. We also present an audio feedback system for efficient selection of disambiguated word candidates and explore the role that time spent acknowledging word-level feedback plays in text entry performance. Through a user study, we show that despite missing on average by 2.46-2.92 character positions, with the aid of a maximum a posteriori (MAP) disambiguation algorithm, users can average a sight-free entry speed of 12.6wpm with 98.9% accuracy within 13 sessions (4.3 hours). In a second study, expert users are found to reach 21wpm with 99.6% accuracy after session 20 (6.7 hours) and continue to grow in performance, with individual phrases entered at up to 37wpm. A final study revisits the learnability of the optimized layout. Our modeling of ultimate performance indicates maximum overall sight-free entry speeds of 29.0wpm with audio feedback, or 40.7wpm if an expert user could operate without relying on audio feedback.
机译:我们在支持连续和离散歧义文本输入的歧义消除之间进行了区分。使用连续的模棱两可的文本输入方法,由于预期的不精确性而不是离散的字母分组,因此字母选择被视为模棱两可。我们研究了一维字符布局的简单情况,以证明设计用于不精确输入的技术的潜力。我们基于旋转的无视技术Rotext将设备方向映射到针对歧义消除,电机效率和可学习性进行了优化的布局。我们还提出了一种音频反馈系统,用于有效选择歧义词候选者,并探索花费时间确认词级反馈在文本输入性能中的作用。通过用户研究,我们显示,尽管平均丢失了2.46-2.92个字符位置,但借助最大后验(MAP)消歧算法,用户可以平均以18.9wpm的无视进入速度,在98.9%的精度范围内13节(4.3小时)。在第二项研究中,发现专家用户在第20课(6.7小时)后达到21wpm的准确率达到99.6%,并继续提高性能,输入单个词组的最高时速为37wpm。最后的研究重新审视了优化布局的易学性。我们对最终性能的建模表明,带音频反馈的最大总无视进入速度为29.0wpm,如果专家用户无需依靠音频反馈即可进行操作,则最大无视进入速度为40.7wpm。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号