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Nonlinear controllers for solar thermal plants: A comparative study

机译:太阳能热电厂的非线性控制器:比较研究

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摘要

Solar plants have nonlinear dynamics which must be taken into account when a control system is applied to them. The main purpose of the control systems is to maintain the outlet temperature in a desired reference value and, at the same time, attenuate the undesirable transients caused by the disturbances. Linear controllers, like PID ones, are not able to obtain good performance over the whole operation range of these kind of plants. To overcome these limitations two nonlinear controllers, a nonlinear model-based predictive controller and a distributed sliding mode controller, are applied to a solar plant in this work. The performance of these controllers is tested through experimental and simulation results, which show the tracking and disturbance rejection capabilities of the proposed controllers.
机译:太阳能发电厂具有非线性动力学特性,在将控制系统应用于太阳能发电厂时必须将其考虑在内。控制系统的主要目的是将出口温度保持在所需的参考值,同时减弱由干扰引起的不良瞬变。像PID控制器一样,线性控制器无法在此类设备的整个运行范围内获得良好的性能。为了克服这些限制,在这项工作中,将两个非线性控制器(基于非线性模型的预测控制器和分布式滑模控制器)应用于太阳能发电厂。通过实验和仿真结果测试了这些控制器的性能,这些结果表明了所提出控制器的跟踪和抗扰能力。

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