SBIR Phase I: Adapting Touchscreen Devices for Motion-Disabled Users
SBIR Phase I: Adapting Touchscreen Devices for Motion-Disabled Users
批准号:
1549404
负责人:
Mark Arnold
金额:
$14.99万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2016
资助国家:
美国
项目状态:
已结题
起止时间:
2016-01-01 至 2016-12-31
中文摘要
该项目更广泛的影响/商业潜力不仅包括为目前无法使用触摸屏的严重运动残疾者提供辅助技术,还包括许多未被正式诊断为运动残疾的人。 最初的销售给这个富裕的,通常是老年人,美国观众将支付50美元,帮助基金公司的增长。 第一阶段的实验将为HCI增添新的科学见解。 第一阶段将产生一种低成本的配件,在大规模生产中,最终价格将达到10美元左右,与现有的手写笔和短信手套市场相似,这对行动不便者的好处有限,并且比电子笔等配件更具成本效益。 这种低成本的单芯片配件可以在制造过程中扩大规模,使全球数亿行动不便的人受益。拟议中的设备将是独立于操作系统和设备的,并且将需要比竞争硬件(如电子笔)更低的开发成本。如果这项技术能够以合理的价格成功商业化,美国数百万(以及全球数百万)被触摸屏革命边缘化的人将能够充分参与这些设备为社会带来的创新。这个小型企业创新研究(SBIR)第一阶段项目有可能改善(约3400万美国)与电容式触摸屏斗争的运动残疾用户的人机交互(HCI)。 这些屏幕假设用户的手指充当间歇连接的电容器。行动不便的人无法做出这样的手势。 只有软件的适应和完善的配件(手写笔或短信手套)对运动障碍者没有帮助。该项目结合了廉价的硬件配件,定制芯片和在触摸屏操作系统(OS)上运行的额外软件层。 许多行动不便的人是低收入的人,他们需要低成本的单芯片配件?然而这种芯片具有太多的寄生电容。 该项目旨在1)证明制造触摸屏配件的可行性,该配件将来自运动残疾人的低带宽信息可靠地编码为电容触摸屏接收的信号; 2)开发额外的软件层应用程序,该应用程序将此类配件与人体评估中的运动残疾人接口;以及3)为此类配件设计芯片,克服成本和寄生电容问题。 来自人体和电子测量的反馈可以同时优化三个相互关联的问题:硬件可靠性,附件形状因子和额外的软件层功能。 结果将包括主观和客观的人体评价、附件形状因子、低寄生电容集成电路设计、代码以及此类附件的操作系统/应用程序接口技术。
英文摘要
The broader impact/commercial potential of this project includes not only assistive technology for the severely motion-disabled, who currently find it impossible to use a touchscreen, but also many who are not officially diagnosed with a motion disability. Initial sales to this wealthier, typically elderly, US audience will pay $50, helping to fund company growth. Phase I experiments will add new scientific insights in HCI. Phase I will yield a low-cost accessory that, in large-scale production, will ultimately have a ~$10 price that is similar to the existing market for styli and texting gloves, which are of limited benefit to the motion-disabled, and more cost effective than accessories such as electronic pens. This low-cost, single-chip accessory can be scaled up in manufacturing efforts to enfranchise hundreds of millions of motion-disabled individuals worldwide. The proposed device will be operating-system and device independent, and will require lower development costs than competing hardware such as electric pens. If the proposed technology were to be commercialized successfully at a reasonable price, millions in the US (and many times that worldwide) marginalized by the touchscreen revolution will be able to fully participate in the innovations these devices bring to society. This Small Business Innovation Research (SBIR) Phase I project has the potential to improve Human Computer Interaction (HCI) for (~34 million US) motion-disabled users who struggle with capacitive touchscreens. These screens assume users' fingers act as intermittently connected capacitors. The motion-disabled are unable perform such gestures. Software-only adaptations and the well-established accessories (styli or texting gloves) do not help the motion-disabled. This project combines an inexpensive hardware accessory, a custom chip and an extra-software-layer running on the touchscreen operating system (OS). Many motion-disabled are low-income individuals who require low-cost, single-chip accessories?yet such chips have too much parasitic capacitance. This project is designed to 1) demonstrate the feasibility of fabricating touchscreen accessories that reliably encode low-bandwidth information from the motion-disabled into the signals received by a capacitance touchscreen; 2) develop extra-software-layer applications that interface such accessories for motion disabilities in human-subject evaluation; and 3) design a chip for such accessories that overcomes cost and parasitic-capacitance problems. Feedback from human-subject and electronic measurements allow simultaneously optimization of three interrelated issues: hardware reliability, accessory form-factor, and the extra-software-layer functionality. Results will include subjective and objective human-subject evaluations, accessory form factor, low-parasitic-capacitance integrated-circuit design, code, and OS/application interfacing techniques for such accessories.
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