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Quasi-online parametric identification of moving heating devices in a 2D geometry

机译:2D几何中移动加热装置的准在线参数识别

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摘要

This work is devoted to an adaptation of the conjugate gradient method for the identification of heat flux densities provided by two mobile sources on a two-dimensional geometry. This adaptation is based on a sliding-time window in order to achieve quasi-online identification of unknown time-dependent parameters. The proposed method ensures sequential in time iterative regularization in order to deal with the ill-posed nature of inverse heat conduction problem (IHCP). The studied configuration is issued from experimental reflections in order to investigate a practical case. A set of fixed sensors is considered while heating sources trajectories are accurately known. Measurements provided by sensors are disturbed according to a realistic Gaussian noise. Several strategies are detailed in this communication (adaptive integration interval, sliding time window, initialization improvement, choice of the sliding window size). In each situation, the benefit in terms of delay reduction is discussed in regards with the identification accuracy. It is shown that such methodology provides an attractive procedure consistent with adaptive control aims and real time signal processing.
机译:这项工作致力于对共轭梯度法进行改进,以识别二维几何结构上两个移动源提供的热通量密度。这种调整基于滑动时间窗口,以便实现未知时间相关参数的准在线识别。所提出的方法确保按时间顺序进行迭代正则化,以处理逆导热问题(IHCP)的不适定性质。为了研究实际情况,从实验反射中发出了所研究的配置。在准确知道热源轨迹的同时,考虑使用一组固定传感器。传感器提供的测量会根据实际的高斯噪声而受到干扰。此通信中详细介绍了几种策略(自适应积分间隔,​​滑动时间窗口,初始化改进,滑动窗口大小的选择)。在每种情况下,都针对识别精度讨论了减少延迟方面的好处。结果表明,这种方法提供了一种与自适应控制目标和实时信号处理相一致的有吸引力的过程。

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