论文标题
用毛发元件的热电固体系统对受约束控制的时间优化
Time Optimization of Constrained Control for a Thermoelectric Solid System with a Peltier Element
论文作者
论文摘要
考虑了一个由两个热电缸组成的实心系统,它们之间有一个带有热电转换器(Peltier元件)的固体系统。以前已由作者验证的非线性模型用于设计受约束的控制定律,该法律使我们能够在一个圆柱体中的温度稳态分布少于瞬时过程的特征时间。通过反馈线性化,初始有限的值问题在温度上完全线性化。尽管所得系统在控制函数中是非线性的,但可以基于基于恒定控制信号的相应本本特征问题的分析解决方案构建有限维近似。通过使用此特征功能分解,对时间优势控制问题进行了数值研究。为了构建可允许的控制定律,引入了辅助无约束的优化问题。它的成本功能代表了与所需的零分布的加权偏差和违反电力约束的罚款。控制时间间隔分为几个部分,在每个子间隙上,控制信号的恒定。通过应用梯度下降方法,可以从数值上找到最佳的分段恒定前馈控制。我们分析了拟议的控制法,相对于该过程的最短时间。
A solid system consisting of two heat conducting cylinders with a thermoelectric converter (Peltier element) between them is considered. A nonlinear model, which was previously verified by authors, is used to design a constrained control law that allows us to achieve a steady-state distribution of the temperature in one of the cylinders in much less time than the characteristic time of transient processes. The initial-boundary value problem is exactly linearized over temperature by means of feedback linearization. Although the resulting system is nonlinear in a control function, it is possible to construct a finite-dimensional approximation based on analytical solution of the corresponding eigenproblem for a constant control signal. The time-optimal control problem is studied numerically by using this eigenfunction decomposition. To construct admissible control laws, an auxiliary unconstrained optimization problem is introduced. Its cost functional represents a weighted sum of temperature deviation from the desired zero distribution and a penalty for violating an electric power constraint. The control time interval is split into several parts, and on each subinterval the control signal is taken constant. The optimal piecewise constant feedforward control is found numerically by applying the gradient descent method. We analyze the proposed control law with respect to the shortest admissible time of the process.