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A Review of Proper Modeling Techniques

机译:正确建模技术的回顾

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摘要

A dynamic system model is proper for a particular application if it achieves the accuracy required by the application with minimal complexity. Because model complexity often- but not always-correlates inversely with simulation speed, a proper model is often alternatively defined as one balancing accuracy and speed. Such balancing is crucial for applications requiring both model accuracy and speed, such as system optimization and hardware-in-the-loop simulation. Furthermore, the simplicity of proper models conduces to control system analysis and design, particularly given the ease with which lower-order controllers can be implemented compared to higher-order ones. The literature presents many algorithms for deducing proper models from simpler ones or reducing complex models until they become proper. This paper presents a broad survey of the proper modeling literature. To simplify the presentation, the algorithms are classified into frequency, projection, optimization, and energy based, based on the metrics they use for obtaining proper models. The basic mechanics, properties, advantages, and limitations of the methods are discussed, along with the relationships between different techniques, with the intention of helping the modeler to identify the most suitable proper modeling method for a given application.
机译:如果动态系统模型以最小的复杂度达到应用程序所需的精度,则它适合于特定的应用程序。由于模型复杂度通常(但并非总是)与仿真速度成反比,因此通常将合适的模型定义为一种平衡精度和速度。这种平衡对于同时需要模型准确性和速度的应用至关重要,例如系统优化和硬件在环仿真。此外,适当模型的简单性有助于控制系统的分析和设计,特别是考虑到与高阶控制器相比,低阶控制器的实现容易。文献提出了许多算法,用于从较简单的模型推导适当的模型或简化复杂的模型直到它们变为正确的模型。本文对适当的建模文献进行了广泛的概述。为了简化表示,基于算法用于获取适当模型的指标,将算法分为频率,投影,优化和能量。讨论了这些方法的基本原理,特性,优点和局限性,以及不同技术之间的关系,目的是帮助建模者为给定的应用识别最合适的正确建模方法。

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