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Title: Dynamics and isotropic control of parallel mechanisms for vibration isolation
Authors: Yang, X
Wu, H
Li, Y
Kang, S
Chen, B
Lu, H
Lee, CKM 
Ji, P 
Issue Date: Aug-2020
Source: IEEE/ASME transactions on mechatronics, Aug. 2020, v. 25, no. 4, p. 2027-2034
Abstract: Parallel mechanisms have been employed as architectures of high-precision vibration isolation systems. However, their performances in all degrees of freedom (DOFs) are nonidentical. The conventional solution to this problem is isotropic mechanism design, which is laborious and can hardly be achieved. This article proposes a novel concept; namely, isotropic control, to solve this problem. Dynamic equations of parallel mechanisms with base excitation are established and analyzed. An isotropic control framework is then synthesized in modal space. We derive an explicit relationship between modal control force and actuation force in joint space, enabling implementation of the isotropic controller. The multi-DOF system is transformed into multiidentical single-DOF systems. Under the framework of isotropic control, parallel mechanisms obtain an identical frequency response for all modes. An identical corner frequency, active damping, and rate of low-frequency transmissibility are achieved for all modes using a combining proportional, integral, and double integral compensator as a subcontroller. A 6-UPS parallel mechanism is presented as an example to demonstrate effectiveness of the new approach.
Keywords: Dynamics
Isotropic control
Parallel mechanism
Vibration isolation
Publisher: Institute of Electrical and Electronics Engineers
Journal: IEEE/ASME transactions on mechatronics 
ISSN: 1083-4435
EISSN: 1941-014X
DOI: 10.1109/TMECH.2020.2996641
Rights: © 2020 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for all other uses, in any current or future media, including reprinting/republishing this material for advertising or promotional purposes, creating new collective works, for resale or redistribution to servers or lists, or reuse of any copyrighted component of this work in other works.
The following publication Yang, X., Wu, H., Li, Y., Kang, S., Chen, B., Lu, H., Lee, C. K. M., & Ji, P. (2020). Dynamics and Isotropic Control of Parallel Mechanisms for Vibration Isolation. IEEE/ASME Transactions on Mechatronics, 25(4), 2027–2034 is available at https://doi.org/10.1109/TMECH.2020.2996641.
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