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An Active Sensing Principle for Haptic Interaction With Dynamical Systems

机译:触觉与动力系统相互作用的主动传感原理

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What is it inside the colorfully wrapped present? You pick it up to ear level and listen, shake it, and then listen again. To you, the basic principle of active sensing is quite clear - first absorb, then, if there is no movement or sound, shake it, and then reabsorb. We propose an extremely basic hypothesis for the active sensing of haptic interaction with dynamical systems. Our hypothesis asserts that in order to improve the efficiency of extracting information from a probed system, the sensor should act according to the following basic principle: if the probed system is passive, the sensor should be active; conversely, when the probed system is active, the sensor should be passive. We proved the proposed principle for interaction with a second-order mechanical system with the goal to enhance classification performance between two possible sine power sources. We showed that the addition of an active power source to a passive testing sensor leads to decreased sensitivity in the amplitude and frequency of the tested power source. Further, an extension of this principle is provided, presenting the conditions for reduced sensitivity to spring and damper parameters. To test its applicability for a linear system in a noisy environment, a computer simulation was performed demonstrating that classification performance improved by following the proposed principle. At last, ten subjects probed an active virtual system under either active or passive conditions. A comparison of the mean just-noticeable difference of both conditions indicated significantly better sensitivity was obtained by following the principle.
机译:五颜六色包装的礼物里面是什么?您将其拾起至耳边,然后聆听,摇动它,然后再次聆听。对您来说,主动感应的基本原理非常清楚-首先吸收,然后,如果没有运动或声音,则将其摇晃,然后重新吸收。我们提出了一个非常基本的假设,用于主动感应与动力学系统的触觉交互。我们的假设认为,为了提高从被探测系统中提取信息的效率,传感器应根据以下基本原理起作用:如果被探测系统是被动的,则传感器应为主动;相反,当探测的系统为有源时,传感器应为无源。我们证明了与二阶机械系统相互作用的建议原理,旨在增强两个可能的正弦电源之间的分类性能。我们表明,将有源电源添加到无源测试传感器会导致被测电源的幅度和频率灵敏度降低。此外,提供了该原理的扩展,提出了降低对弹簧和阻尼器参数敏感性的条件。为了测试其在嘈杂环境中对线性系统的适用性,进行了计算机仿真,证明了通过遵循提出的原理可以提高分类性能。最后,十名受试者在主动或被动条件下探测了一个主动虚拟系统。通过比较两个条件的平均刚注意到的差异,表明通过遵循原理可获得明显更好的灵敏度。

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