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Boundary control, quiet boundaries, super-stability and super-instability

机译:边界控制,安静的边界,超稳定性和超稳定性

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This paper deals with the boundary feedback control of a bar undergoing axial vibrations. The feedback force is applied to one end of the bar and it is proportional to its velocity. The problem is of fundamental interest in control theory, structural dynamics, and the development of 'quiet boundaries' in fields like earthquake engineering and computational mechanics. The system is not self-adjoint and exhibits a variety of interesting behaviors which are explained through a combination of several inter-twined strands Of thought using mathematics, physical interpretations, and numerical simulations. Besides providing a rigorous mathematical Solution to the problem, the paper explains the physical origin of super-stable behavior, introduces the new concept of super-unstable behavior, and points Out that these regimes of behavior are intricately connected with the continuum model that is used. It is shown that any finite-dimensional approximation of the system, no matter how finely discretized, can not qualitatively depict superstable behavior. (c) 2004 Elsevier Inc. All rights reserved.
机译:本文研究了受轴向振动的钢筋的边界反馈控制。反馈力施加在杆的一端,并且与杆的速度成比例。该问题在控制理论,结构动力学以及地震工程和计算力学等领域的“安静边界”的发展中具有根本的意义。该系统不是自伴的,并且表现出各种有趣的行为,这些行为通过使用数学,物理解释和数值模拟将多个相互交织在一起的思想链结合起来进行解释。除了为问题提供严格的数学解决方案之外,本文还解释了超稳定行为的物理起源,介绍了超不稳定行为的新概念,并指出这些行为方式与所使用的连续模型错综复杂地联系在一起。结果表明,系统的任何有限维逼近,无论多么精细的离散化,都不能定性地描述超稳定行为。 (c)2004 Elsevier Inc.保留所有权利。

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