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Analysis of generalized hybrid parameters based on macro-micro bilateral control for avoiding destruction of micro object

机译:基于宏观-微观双边控制的广义混合参数分析避免微观对象破坏

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摘要

This paper presents a novel concept of performance index for evaluating the scaled haptic transmission in a micro space. Bilateral control based on acceleration control enables human to acquire and render a tactile sensation. In order to realize the applications of a tactile sensation as well as audio and visual information, editing tactile information will be considered. However, the signal which is measured by a digital sensor is remarkably affected by a high-frequency domain disturbance or quantization error. The purpose of this paper is to expand the previous performance index with the interference of a high-frequency domain disturbance and quantization error. Considering the novel performance index, a modal space filter to extract expectation value is conducted by employing a Kalman filter for avoiding destruction of a micro object. In the experiments, the trade-off between a disturbance matrix and a quantization error matrix is confirmed, and 1000 times scaled haptic transmission that contacts with water fleas is achieved.
机译:本文提出了一种新的性能指标概念,用于评估微空间中缩放的触觉传递。基于加速度控制的双边控制使人能够获得并产生触感。为了实现触感以及音频和视觉信息的应用,将考虑编辑触觉信息。但是,由数字传感器测量的信号明显受到高频域干扰或量化误差的影响。本文的目的是通过高频域干扰和量化误差的干扰来扩展先前的性能指标。考虑到新颖的性能指标,采用卡尔曼滤波器进行模态空间滤波器提取期望值,以避免破坏微物体。在实验中,确定了扰动矩阵和量化误差矩阵之间的权衡,并实现了与水蚤接触的1000倍缩放的触觉传递。

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