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Energy Dissipation in Dynamical Systems Through Sequential Application and Removal of Constraints

机译:通过顺序应用和消除约束来消耗动力系统中的能量

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A strategy to remove energy from finite-dimensional elastic systems is presented. The strategy is based on the cyclic application and removal of constraints that effectively remove and restore degrees of freedom of the system. In general, application of a constraint removes kinetic energy from the system, while removal of the constraint resets the system for a new cycle of constraint application. Conditions that lead to a net loss in kinetic energy per cycle and bounds on the amount of energy removed are presented. In linear systems, these bounds are related to the modes of the system in its two states, namely, with and without constraints. It is shown that energy removal is always possible, even using a random switching schedule, except in one scenario, when energy is trapped in modes that span an invariant subspace with special orthogonality properties. Applications to nonlinear systems are discussed. Examples illustrate the process of energy removal in both linear and nonlinear systems.
机译:提出了从有限维弹性系统中去除能量的策略。该策略基于周期性的应用和约束的删除,这些约束有效地删除和恢复了系统的自由度。通常,约束的应用会从系统中移除动能,而约束的移除则会使系统重置以应用新的约束周期。提出了导致每个周期动能净损失以及所去除的能量的界限的条件。在线性系统中,这些界限与处于其两种状态(即有约束和无约束)的系统模式有关。结果表明,即使在使用随机切换计划的情况下,能量去除始终是可能的,除了在一种情况下,当能量被捕获在具有特殊正交性的,跨越不变子空间的模式中时。讨论了在非线性系统中的应用。实例说明了线性和非线性系统中的能量去除过程。

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