课题基金 / 基金详情

Design and control of multibody mechanical systems

Design and control of multibody mechanical systems
多体机械系统的设计与控制
批准号:
4532-2008
负责人:
Angeles, Jorge
金额:
$4.37万
依托单位:
依托单位国家:
加拿大
项目类别:
Discovery Grants Program - Individual
财政年份:
2008
资助国家:
加拿大
项目状态:
已结题
起止时间:
2008-01-01 至 2009-12-31

项目摘要

项目成果

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中文摘要
翻译
生产率的提高需要快速、高效的机器人机械系统,能够通过一种特殊的运动来移动有效载荷,这种运动排除了一些刚体运动,这就产生了所谓的低机动性机器人或机构。这些都需要运动学回路,因为它们承载着一个平行的结构。因此,这些系统本质上是过度约束的,因为任何制造和组装错误要么使环路关闭变得不可能,要么限制了它们的自由度。专业设计人员使用额外的接头来处理这一特性,缺点是刚度和精度都会受到影响。在这里提出的未来五年的研究计划中,我们将研究低流动性机器人的设计和控制。在设计方面,我们将引入复杂性作为主要的设计准则,因为它可以处理设计过程概念阶段可获得的有限信息量。通过为机器性能、精度、刚性和可装配性的每一个方面指定一个复杂性度量,我们将能够面对当前的工业挑战。这里的主要思想是在所有执行器之间尽可能均匀地分配载荷,同时针对具有几何、运动学和机械对称性的机械结构。结果应该是一个机械系统,在任何运动方向上都具有相同的精度和刚度特性,并且具有相同的自然频率。然而,功能要求可能使其无法满足上述理想条件。在这种情况下,应该在瞄准其性能尽可能接近上述理想的机器时达成妥协。在控制方面,我们还将使用复杂性作为主要设计标准,这将使我们能够产生最简单的控制系统体系结构,一个接近于相同的单输入单输出控制子系统的并行阵列,一个对应于有效载荷的每个运动方向。
英文摘要
Productivity-enhancement has called for fast, efficient robotic mechanical systems capable of moving a payload with motions of a special kind, that exclude some rigid-body motions, which has given rise to what is known as lower-mobility robots or mechanisms. These entail kinematic loops, as they bear a parallel architecture. As a consequence, these systems are inherently overconstrained, in that any manufacturing and assembly errors either make loop-closure impossible or limit their degree of freedom. Expert designers use extra joints to cope with this feature, the downside being that stiffness, and hence, precision, are compromised. In the research program proposed here for the next five years we will investigate the design and control of lower-mobility robots. On the design side, we will introduce complexity as a main design criterion, for it can handle the limited amount of information available at the conceptual stage of the design process. By assigning a complexity measure to each of the machine performance aspects, precision, stiffness and assemblability, we will be able to face the current challenges of industry. The main idea here is to distribute the load as uniformly as possible among all actuators, while aiming at a mechanical structure with geometric, kinematic and mechanical symmetries. The outcome should be a mechanical system with the same precision and stiffness properties in any direction of motion, and the same natural frequencies. However, functional requirements may make it impossible to meet the foregoing ideal conditions. In this case, a compromise should be reached in aiming at machines whose performance lies as closely as possible to the foregoing ideal. On the control side, we will also use complexity as a major design criterion, which will allow us to produce the simplest control-system architecture, one approaching a parallel array of identical single-input, single-output control subsystems, one for each motion direction of the payload.
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Robust Design and Effective Control of Mechanical Systems
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  • 负责人:
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  • 依托单位:
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  • 项目类别:
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  • 项目类别:
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  • 资助金额:
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  • 项目类别:
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  • 财政年份:
    2019
  • 负责人:
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