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An optimal control procedure for bone adaptation under mechanical stimulus

机译:机械刺激下骨骼适应的最佳控制程序

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摘要

The process of adaptive bone remodeling can be described mathematically and simulated in a computer model, integrated with the finite element method. In the model discussed here, cortical and trabecular bone are described as a continuous material with variable mass density and hence elastic modulus. The remodeling rule applied to simulate the adaptation process in each cell individually is, in fact, an evolution law for an optimization process, relative to the external load. Its purpose is to obtain a uniform value for the strain energy per unit bone mass, by adapting the mass density. The feedback mechanism in the process is self-enhancing; denser bone attracts more strain energy, whereby the bone becomes even denser. In addition, the process ensures that the discontinuous end configuration is a structure with a relatively low mass and high stiffness, inasmuch as this is an explicit objective in the optimization process. Thus, an integrated procedure of control and optimization is proposed herein in order to solve a constrained optimization problem of lightweight stiffened structures; two alternative objective functions were considered. The selection of the parameters to be optimized in the evolution rule was not yet studied in an in-depth study. The set of such parameters included the control gains, the target of the error signal and the weight of one of the two proposed cost indices. A two-dimensional bone sample, subjected to an in-plane loading condition, was analyzed. The adopted values of material characteristics were typical of bone-like tissues.
机译:自适应骨重建的过程可以用数学方法描述,并在计算机模型中与有限元方法集成在一起进行仿真。在这里讨论的模型中,皮层和小梁骨被描述为具有可变质量密度并因此具有弹性模量的连续材料。实际上,用于模拟每个单元中的适应过程的重塑规则实际上是相对于外部负载的优化过程的发展规律。其目的是通过调整质量密度来获得单位骨质量的应变能的统一值。过程中的反馈机制是自我增强的;较密的骨头会吸引更多的应变能,从而使骨头变得更密。另外,该过程确保了不连续的端部构造是具有相对较低的质量和较高的刚度的结构,因为这是优化过程中的明确目标。因此,本文提出了控制与优化的集成过程,以解决轻质加劲结构的约束优化问题。考虑了两个备选目标函数。在深入研究中尚未研究在进化规则中要优化的参数的选择。这些参数的集合包括控制增益,误差信号的目标以及两个建议的成本指标之一的权重。分析了平面内加载条件下的二维骨样品。所采用的材料特性值是骨样组织的典型值。

著录项

  • 来源
    《Control Engineering Practice》 |2012年第6期|p.575-583|共9页
  • 作者单位

    Dipartimenro di Ingegneria Strutturale e Ceotecnica, Facolta di Ingegneria Civile e lndustriale, Sapienza Universita di Roma, Via Eudossiana 18, 00184 Roma, Italia;

    Department of Mechanical and Aerospace Engineering, Polytechnic Institute of New York University, Six MetroTech Center, Brooklyn, NY 11201, USA;

    Dipartimento di Ingegneria Informatica, Automatica e Cestionale Antonio Ruberti, Facolta di Ingegneria dell'lnformazione, Informatica e Statistica. Sapienza Universita di Roma, Via Ariosto 25, 00185 Roma, Italia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    optimal control; PID control; finite element method; bone functional adaptation; minimum mass; maximum stiffness;

    机译:最佳控制;PID控制有限元法骨骼功能适应;最小质量最大刚度;
  • 入库时间 2022-08-18 02:04:27

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