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Deformation of piecewise differentiable curves in constrained variational calculus

机译:受约束变分微积分中分段可分辨率曲线的变形

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摘要

A survey of the geometric tools involved in the study of constrained variational calculus is presented. The central issue is the characterization of the admissible deformations of piecewise differentiable sections of a fibre bundle nu(n+1) -> R, in the presence of arbitrary non-holonomic constraints. Asynchronous displacements of the corners are explicitly considered. The coordinate-independent representation of the variational equation and the associated concepts of infinitesimal control and absolute time derivative are reviewed. In the resulting algebraic environment, every admissible section is assigned a corresponding abnormality index, identified with the co-rank of a suitable linear map. Sections with vanishing index are called normal. A section is called ordinary if every solution of the variational equation vanishing at the endpoints is tangent to some finite deformation with fixed endpoints. The interplay between abnormality index and ordinariness - in particular the fact that every normal evolution is automatically an ordinary one - is discussed. (C) 2017 Elsevier B.V. All rights reserved.
机译:介绍了对受约束变分数研究的几何工具进行了调查。中央问题是在任意非完全约束存在下表征纤维束NU(N + 1) - > R的分段微分部分的可允许变形。明确地考虑了角落的异步位移。综述了变分方程的独立关系和无限控制和绝对时间衍生的相关概念。在由此产生的代数环境中,每个可允许的部分被分配相应的异常指数,用合适的线性图的共级识别。消失指数的部分称为正常。如果在端点上消失的各个变分方程的解决方案的解决方案与固定端点的某些有限变形相切,则普通调用普通部分。讨论了异常指数与统一性之间的相互作用 - 特别是,讨论了每一个正常演化都是自动普通的一个 - 是普通的一个。 (c)2017 Elsevier B.v.保留所有权利。

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