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A novel modified analytical method and finite element method for vibration analysis of cable-driven parallel robots

机译:一种新型改进的分析方法和有限元方法,用于电缆驱动并联机器人的振动分析

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摘要

Cable-driven parallel robots (CDPRs) are vulnerable to vibration due to the inevitable flexible properties of the cables. Thus, vibration analysis is critical for CDPR's operation in which highly accurate motion is required. However, most of the current methods related to vibration analysis of CDPRs rely on simple spring models which have limitations in their performance and complexity that are not general to analyze the vibration of various CDPRs. Hence, accurate, simple and general approaches for vibration analysis in CDPRs are need. To solve this problem, this paper presents the finite element method (FEM) and the modified analytical method to analyze the vibration of CDPRs. To validate these methods, free vibration analysis was conducted using the proposed methods for the planar and spatial cable-driven parallel robots. The natural frequencies of these two CDPRs were computed by the proposed two methods and compared with those of the commercial software, SAP2000. The solutions obtained by the FEM and the modified analytical models turned out to be close to SAP2000's results, thereby verifying the validity of the proposed methods.
机译:由于电缆的不可避免的灵活性,电缆驱动的并行机器人(CDPRS)易受振动。因此,振动分析对于CDPR的操作至关重要,其中需要高准确的运动。然而,与CDPR的振动分析有关的大多数方法依赖于简单的弹簧模型,其具有局限性和复杂性,这不将分析各种CDPR的振动。因此,需要精确,简单,简单,常规的CDPR振动分析方法。为了解决这个问题,本文介绍了分析CDPRS振动的有限元方法(FEM)和改进的分析方法。为了验证这些方法,使用所提出的平面和空间电缆驱动的并联机器人进行自由振动分析。这两个CDPRS的自然频率由提议的两种方法计算,并与商业软件,SAP2000进行比较。通过FEM和改进的分析模型获得的解决方案原始靠近SAP2000的结果,从而验证所提出的方法的有效性。

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