Information and Measurement System for Monitoring Beams in Building Structures

A. P. Loktionov
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引用次数: 0

Abstract

Purpose of research. The development of a method and algorithm for reducing measurements of beam identification parameters in an information and measurement system for monitoring building structures with measurement of deflections and recovery of actual values of beam initial parameters and external load when solving the inverse Cauchy problem.Methods. The solution of the problem is carried out through formulating the transverse bending of the beam according to the Euler – Bernoulli theory using the method of regularization and reduction of measurements by solving the inverse Cauchy problem by means of linear Lagrangian approximation in the procedure of numerical differentiation of the beam deflection function. A methodology is formulated for identifying insignificant beam identification parameters by comparing the deflection of the beam caused by the parameter under study with the sensitivity threshold of measuring instruments. In this case, the modification of the state space of identification parameters with a decrease in its dimension is simulated.Results. The working capability of the formulated experimental calculation method is confirmed by numerical experiment with a load on the beam in the form of a bending moment, concentrated and (or) constant distributed load. It has been established that when identifying insignificant initial parameters and loads acting on the beam, the reduction of measurements increases the accuracy of restoring the beam identification parameters.Conclusion. The developed methodology can be used to improve the accuracy of inspection methods of construction facilities at the stage of experimental and theoretical research.
建筑结构梁监测信息与测量系统
研究目的。在求解反柯西问题时,通过测量挠度和恢复梁初始参数和外荷载的实际值来监测建筑结构的信息测量系统中,提出了一种减少梁识别参数测量的方法和算法。根据欧拉-伯努利理论,采用正则化和测量约简的方法,通过求解梁挠度函数数值微分过程中的线性拉格朗日近似的反柯西问题,求解梁的横向弯曲。通过将研究参数引起的梁的挠度与测量仪器的灵敏度阈值进行比较,提出了一种识别无关紧要的梁识别参数的方法。在这种情况下,模拟了识别参数状态空间随维数降低而变化的过程。通过在梁上以弯矩、集中和(或)恒定分布荷载形式作用的数值试验,验证了所建立的试验计算方法的工作能力。结果表明,在识别无关紧要的初始参数和作用在梁上的荷载时,减小测量量可以提高恢复梁识别参数的精度。该方法可用于提高施工设施检测方法在实验和理论研究阶段的准确性。
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