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Inverse problem methodology in methematical modeling and experiemntal simulation

机译:数学建模和实验仿真中的逆问题方法

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The paper is concerned with a consideration of common, system approach to mathematical modeling and experimental studies of physical processes and iwth engineering systems design and testing. The approach is based on using the solution of inverse problems. It allows to establish a correct correspondence between mathematical modeling and experiementation as well as to improve their effectiveness. Herein are the following main problems: firstly, the development of a unified methodology both for mathematical model identification and for technical system diagnostics, which is essential int he process of design and testing or in physical process research; secondly, the construction of a hierarchical set of interconnected mathematical models and methods to use them adequately at different stages of research and development while designign and verifying a new enginering object; thirdly, the derivation of a valid procedure for experiments and tests performing and experimental data processing in order to increase the amount of valuable experimental information and, accordingly, reduce the cost. A corresponding combination of mathematical modeling and testing is considered as an example of implementation of this methodology applicable to the design and verification of the thermal protection system for Russian Buran orbiter.
机译:本文涉及对物理过程的数学建模和实验研究以及工程系统设计和测试的通用系统方法的考虑。该方法基于使用反问题的解决方案。它允许在数学建模和实验之间建立正确的对应关系,并提高其有效性。这里存在以下主要问题:首先,开发用于数学模型识别和技术系统诊断的统一方法,这对于设计和测试过程或物理过程研究至关重要。其次,建立一组相互联系的数学模型和方法的层次结构集,以便在设计和验证新的工程对象时,在研究和开发的不同阶段充分利用它们;第三,推导用于实验和测试执行以及实验数据处理的有效程序,以增加有价值的实验信息量,从而降低成本。数学建模和测试的相应组合被视为该方法的实施示例,该方法适用于俄罗斯Buran轨道飞行器热保护系统的设计和验证。

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