...
首页> 外文期刊>Journal of nanoscience and nanotechnology >Contact Force Compensated Thermal Stimulators for Holistic Haptic Interfaces
【24h】

Contact Force Compensated Thermal Stimulators for Holistic Haptic Interfaces

机译:用于整体触觉界面的接触力补偿式热刺激器

获取原文
获取原文并翻译 | 示例

摘要

We present a contact force compensated thermal stimulator that can provide a consistent temperature sensation on the human skin independent of the contact force between the thermal stimulator and the skin. Previous passive thermal stimulators were not capable of providing a consistent temperature on the human skin even when using identical heat source voltage due to an inconsistency of the heat conduction, which changes due to the force-dependent thermal contact resistance. We propose a force-based feedback method that monitors the contact force and controls the heat source voltage according to this contact force, thus providing consistent temperature on the skin. We composed a heat circuit model equivalent to the skin heat-transfer rate as it is changed by the contact forces; we obtained the optimal voltage condition for the constant skin heat-transfer rate independent of the contact force using a numerical estimation simulation tool. Then, in the experiment, we heated real human skin at the obtained heat source voltage condition, and investigated the skin heat transfer-rate by measuring the skin temperature at various times at different levels of contact force. In the numerical estimation results, the skin heat-transfer rate for the contact forces showed a linear profile in the contact force range of 1 similar to 3 N; from this profile we obtained the voltage equation for heat source control. In the experimental study, we adjusted the heat source voltage according to the contact force based on the obtained equation. As a result, without the heat source voltage control for the contact forces, the coefficients of variation (CV) of the skin heat-transfer rate in the contact force range of 1 similar to 3 N was found to be 11.9%. On the other hand, with the heat source voltage control for the contact forces, the CV of the skin heat-transfer rate in the contact force range of 1 similar to 3 N was found to be barely 2.0%, which indicate an 83.2% improvement in consistency compared to the skin heat-transfer rate without the heat source voltage control. The present technique provides a consistent temperature sensation on the human skin independent of the body movement environment; therefore, it has high potential for use in holistic haptic interfaces that have thermal displays.
机译:我们提出了一种接触力补偿的热刺激器,其可以在人的皮肤上提供一致的温度感,而与热刺激器和皮肤之间的接触力无关。以前的被动式热刺激器即使在使用相同的热源电压时也不能在人的皮肤上提供一致的温度,这是由于热传导的不一致性所致,而热传导的不一致性则取决于与力有关的热接触电阻。我们提出了一种基于力的反馈方法,该方法可监视接触力并根据该接触力控制热源电压,从而在皮肤上提供一致的温度。我们建立了一个热回路模型,该模型等效于皮肤的传热率,因为它会因接触力而改变;我们使用数值估计仿真工具获得了恒定的皮肤传热速率的最佳电压条件,该速率不受接触力的影响。然后,在实验中,我们在获得的热源电压条件下加热了真实的人类皮肤,并通过在不同接触力水平下的不同时间测量皮肤温度来研究皮肤的传热速率。在数值估算结果中,接触力的皮肤传热率在1的接触力范围内呈线性分布,与3 N相似;对于接触力,皮肤的传热速率呈现线性分布。从该曲线中,我们获得了用于热源控制的电压方程。在实验研究中,我们根据获得的方程式根据接触力调整了热源电压。结果,在没有用于接触力的热源电压控制的情况下,发现在类似于3 N的接触力范围内的皮肤传热率的变化系数(CV)为11.9%。另一方面,通过控制接触力的热源电压,发现在1的接触力范围内,类似于3 N的皮肤传热率的CV仅为2.0%,这表明改善了83.2%与没有热源电压控制的皮肤传热率相比,其一致性好。本技术在人体皮肤上提供了与身体运动环境无关的一致的温度感。因此,它具有用于具有热显示的整体触觉界面的潜力。

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