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Combining LMS With PID Control For H-Bridge Controlled Thermal Electric Cooler (TEC)

机译:LMS与PID控制相结合,用于H桥控制的热电冷却器(TEC)

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In the field of IR technology, careful regulation of temperature elements such as blackbodies or temperature targets is important, particularly for calibration. Feedback based controllers, independent of state space, such as Proportional Integral Derivative (PID) controllers, are a popular and effective way to control these temperature systems. In this paper we explore different types of control for a prototype heated reference target. We show that we can use a combination of PID and Least Means Square (LMS) closed loop adaptive control to determine both the optimal weight proportion and the magnitude of the weights for optimal power draw. This enables us to develop a faster, more optimal controller than by manually tuning the weights by hand.
机译:在红外技术领域,对黑体或温度目标等温度元素的仔细调节非常重要,特别是对于校准而言。与状态空间无关的基于反馈的控制器,例如比例积分微分(PID)控制器,是控制这些温度系统的一种流行且有效的方法。在本文中,我们探索了原型加热参考目标的不同类型的控制。我们表明,可以结合使用PID和最小均方(LMS)闭环自适应控制来确定最佳权重比例和最佳功率消耗的权重大小。与通过手动调整权重相比,这使我们能够开发出更快,更优化的控制器。

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