论文标题
计算机鼠标的最佳传感器位置
Optimal Sensor Position for a Computer Mouse
论文作者
论文摘要
计算机小鼠在各个位置(中心,前后)具有其位移传感器。但是,几乎没有研究传感器位置或对利用它的工程方法的影响。本文首先讨论了传感器位置影响小鼠运动的机制,并报告了对指向任务的研究结果,其中传感器位置系统地变化。将传感器放置在中间是最好的妥协:前后的改进在11--14%的吞吐量范围内,路径偏差为20--23%。但是,用户的个人最佳选择不同。因此,然后呈现可变传感器位置小鼠,并证明可以使用两个静态光学传感器实现高精度。描述了一个虚拟传感器模型,该模型允许软件侧重新定位传感器。个人特定的校准应在默认中心位置上增加4%的吞吐量。
Computer mice have their displacement sensors in various locations (center, front, and rear). However, there has been little research into the effects of sensor position or on engineering approaches to exploit it. This paper first discusses the mechanisms via which sensor position affects mouse movement and reports the results from a study of a pointing task in which the sensor position was systematically varied. Placing the sensor in the center turned out to be the best compromise: improvements over front and rear were in the 11--14% range for throughput and 20--23% for path deviation. However, users varied in their personal optima. Accordingly, variable-sensor-position mice are then presented, with a demonstration that high accuracy can be achieved with two static optical sensors. A virtual sensor model is described that allows software-side repositioning of the sensor. Individual-specific calibration should yield an added 4% improvement in throughput over the default center position.