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Parameter Optimization of Control with Feedback Linearization for a Model of Thermoelectric Processes in Cylindrical Bodies

机译:圆柱体热电过程模型的反馈线性化控制参数优化

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In this paper, mathematical modeling of transient processes and parameter optimization of control laws for heat transfer in a conductive solid structure are considered. In accordance with an implementation of an experimental setup, a nonlinear model is proposed for the thermoelectric process in a Peltier element arranged in between of two metal cylinders. The method of separation of variables is applied to reduce the spatially three-dimensional system to a finite set of ordinary differential equations. The nonlinearity of the resulting equations with respect to the temperature state is eliminated by introducing feedback control in the form of a voltage proportional to the temperature drop on the Peltier element. Additionally, a feedforward control law defined by a piecewise constant function of time is optimized to bring the system, which is still nonlinear w.r.t. this voltage input, as closely as possible to a prescribed terminal steady state.
机译:在本文中,考虑了瞬态过程的数学建模和导热固体结构中传热控制规律的参数优化。根据实验装置的实现,提出了在两个金属圆柱体之间布置的珀耳帖元件中进行热电过程的非线性模型。应用变量分离方法将空间三维系统简化为一组有限的常微分方程组。通过以与珀尔帖元件上的温度降成比例的电压形式引入反馈控制,可以消除相对于温度状态的所得方程式的非线性。另外,优化了由分段时间常数函数定义的前馈控制律,以使系统仍然是非线性的。该电压输入应尽可能接近规定的端子稳态。

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