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Vehicle Touchscreen Shelf Study

机译:车辆触摸屏架书架

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Researchers report an estimated 35.7 million of vehicles with touchscreens will be sold in 2019 worldwide [1]. As the use of touchscreens grows in the automotive industry, there is a need to study how driver's arm and hand moves to access the touchscreen as well as how the driver utilizes the hardware around the touchscreen. In order to aid drivers while using the touchscreen and to minimize distractions, the drivers' hand must be able to freely move to perform a task on the touchscreen without the trim interfering with the task. At the same time some trim may be used to support the hand and fingers while accessing the touchscreen particularly during tasks that take a longer period of time to complete. A study was performed to understand the effect of the size and the angle of a shelf placed under a touchscreen. Motion capture (Mocap) data of the hand of subjects performing two different tasks on the touchscreen was collected in the Human Occupant Package Simulator (HOPS). The HOPS was set as a medium-sized vehicle. One group of subjects was asked to practice the tasks outside of the mockup prior to the test, while another group of subjects did not practice prior to the test. Subjective responses to questions about usage and discomfort were recorded. Subjects' objective and subjective feedback was analyzed. This paper documents the methods used to test the use of different shelf configurations. Analysis of objective and subjective feedback is presented and design recommendations are discussed.
机译:研究人员报告估计有3570万辆的触摸屏幕将于2019年全球销售[1]。随着触摸屏的使用在汽车行业中生长,需要研究驾驶员手臂和手如何移动以访问触摸屏以及驾驶员如何利用触摸屏周围的硬件。为了帮助驱动程序在使用触摸屏时且最小化分类,驱动程序的手必须能够自由移动,以在触摸屏上执行任务,而无需修剪干扰任务。同时,一些装饰可以用于支持手指,同时在接触触摸屏时,特别是在需要更长的时间才能完成的任务中。进行研究以了解触摸屏下放置的架子的尺寸和角度的效果。在人类乘员包模拟器(跳跃)中收集了在触摸屏上执行两个不同任务的受试者手的动作捕获(Mocap)数据。跳跃被设置为中型车辆。要求一组受试者在测试之前练习样机之外的任务,而另一组受试者在测试之前没有做法。记录了对使用和不适提问的主观回应。对象的客观和主观反馈进行了分析。本文记录了用于测试不同货架配置的方法。提出了目标和主观反馈的分析,并讨论了设计建议。

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