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A Novice Method for Calibrating the Transient Model of an Automotive HVAC System

机译:一种校准汽车HVAC系统瞬态模型的新手方法

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A novice method for calibrating the transient model of an automotive HVAC system is presented in this paper. Transient models can be of great importance in the development process of automotive HVAC control algorithms, especially model based ones, as it saves both time and effort. However, the calibration process is usually difficult and relies heavily on experience due to the complexity of the model. A set of customized measurement tools, which consists of several wireless temperature and humidity sensors and an OBD dongle, is used to capture time series data related to the HVAC system during normal driving. Parts of the time series data are then fed into an optimization algorithm to generate a cost function, which can be minimized when the measured data correspond to the simulation data generated by the transient model. A sensitivity analysis is also performed to find out which parameters in the HVAC transient model need to be optimized to calibrate the model. As the transient model is a physical network model which can be generally considered as a set of differential and algebraic equations, this presented method reduces the calibration process of a complex physical model into solving a common optimization problem. Therefore, various optimization algorithms and tools can be applied. The method is developed and tested during the modeling process of an automotive HVAC system. The efficiency of the modelling process is improved while the calibration results fit better with the measured data.
机译:本文提出了一种用于校准汽车HVAC系统瞬态模型的新手方法。瞬态模型可能在汽车HVAC控制算法的开发过程中非常重要,特别是基于模型的模型,因为它节省了时间和精力。然而,校准过程通常是困难的并且由于模型的复杂性而严重依赖于经验。一组定制的测量工具包括多个无线温度和湿度传感器和OBD加密狗,用于在正常驾驶期间捕获与HVAC系统相关的时间序列数据。然后将时间序列数据馈入优化算法以生成成本函数,当测量数据对应于由瞬态模型生成的模拟数据时,可以最小化。还执行灵敏度分析,以了解HVAC瞬态模型中的哪个参数需要优化以校准模型。由于瞬态模型是一种物理网络模型,其通常被认为是一组差分和代数方程,因此该方法减少了复杂物理模型的校准过程来解决常见的优化问题。因此,可以应用各种优化算法和工具。在汽车HVAC系统的建模过程中开发和测试该方法。提高了建模过程的效率,而校准结果与测量数据更好地适合。

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