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DYNAMIC OBSERVER METHOD BASED ON MODIFIED GREEN'S FUNCTIONS FOR ROBUST AND MORE STABLE INVERSE ALGORITHMS

机译:基于改进的绿色功能的动态观察方法,用于强大且更稳定的逆算法

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This work presents a modified procedure to use the concept of dynamic observers based on Green's functions to solve inverse problems. The original method can be divided in two distinct steps: ⅰ) obtaining a transfer function model G_H and; ⅱ) obtaining heat transfer functions G_Q and G_N and building an identification algorithm. The transfer function model, G_H, is obtained from the equivalent dynamic systems theory using Green's functions. The modification presented here proposes two different improvements in the original technique: ⅰ) A different method of obtaining the transfer function model, G_H, using analytical functions instead of numerical procedures, and ⅱ) Definition of a new concept of G_H to allow the use of more than one response temperature. Obtaining the heat transfer functions represents an important role in the observer method and is crucial to allow the technique to be directly applied to two or three-dimensional heat conduction problems. The idea of defining the new G_H function is to improve the robustness and stability of the algorithm. A new dynamic equivalent system for the thermal model is then defined in order to allow the use of two or more temperature measurements. Heat transfer function, G_H can be obtained numerically or analytically using Green's function method. The great advantage of deriving G_H analytically is to simplify the procedure and minimize the estimative errors.
机译:这项工作提出了一种修改的过程,以基于绿色的函数来解决逆问题的动态观察者的概念。原始方法可以分为两个不同的步骤:Ⅰ)获得传递函数模型G_H和; Ⅱ)获取传热函数G_Q和G_N和构建识别算法。使用绿色函数从等效动态系统理论获得传递函数模型G_H。此处提出的修改提出了原始技术的两种不同的改进:Ⅰ)使用分析功能而不是数值程序获得传递函数模型,G_H,使用分析功能的不同方法,Ⅱ)G_H新概念的定义,以允许使用不止一个响应温度。获得传热函数表示观察者方法中的重要作用,并且对于允许该技术直接应用于两个或三维导热问题至关重要。定义新G_H函数的想法是提高算法的稳健性和稳定性。然后定义用于热模型的新动态等效系统,以便允许使用两个或更多个温度测量。传热函数,G_H可以在数字或分析使用绿色的功能方法获得。在分析地派生G_H的巨大优势是简化过程并最大限度地减少估计误差。

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