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Motion control of impedance-type haptic devices

机译:阻抗型触觉设备的运动控制

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摘要

Impedance type devices are frequently used in haptics due to their excellent rendition of free-space, low cost, and convenience. The spring drive, a recently proposed alternative to the traditional current motor driver for such devices, has been shown to improve their stiffness in rigid contact by moving the haptic coupling from the digital domain to analog circuitry. Unlike the current drive, which operates the motor as a force source, the spring drive converts the motor to a motion source. In this paper we construct a motion-based virtual environment to fully leverage the benefits of operating an impedance device with motion control. This quasi-static environment is connected to a mid-level controller which interfaces with the analog motor drive. A full system analysis and experimental demonstration verify the anticipated performance.
机译:阻抗型设备因其出色的自由空间再现性,低成本和便利性而经常用于触觉中。弹簧驱动器是这种设备的传统电流电机驱动器的最新提议替代品,已显示出通过将触觉耦合从数字域移动到模拟电路来提高其刚性接触的刚度。不同于将电机作为力源运行的电流驱动器,弹簧驱动器将电机转换为运动源。在本文中,我们构建了一个基于运动的虚拟环境,以充分利用通过运动控制操作阻抗设备的好处。准静态环境连接到与模拟电机驱动器接口的中级控制器。完整的系统分析和实验演示验证了预期的性能。

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