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Design of fuzzy robust control strategies for a distributed solar collector field

机译:分布式太阳能收集器场模糊鲁棒控制策略设计

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This paper presents novel control strategies using Takagi-Sugeno fuzzy models combined with a parametric uncertainty robust control approach to address both the nonlinearities of a process and the disturbances that act on it. In contrast to other robust control approaches, such as the H-infinity norm optimization-based approach, the proposed techniques allow the uncertainty information provided by fuzzy confidence intervals to be used to derive controllers that take into account performance specifications, such as overshoot or disturbance rejection, and to ensure the robust stability of the system due to a study based on applying the generalized Kharitonov's theorem and Lyapunov's analysis from the solution of a linear matrix inequality (LMI). To test these novel strategies, a solar collector field, which is a nonlinear plant with several disturbances affecting its operation, is used. For this plant, fuzzy confidence intervals are derived that allow representing the uncertainties associated with these disturbances, different performance objectives are tested, and a methodology for deriving these controllers is developed. The effectiveness of this approach is demonstrated on the solar collector field under different solar radiation conditions, and promising results are obtained. (C) 2017 Elsevier B.V. All rights reserved.
机译:本文介绍了使用Takagi-Sugeno模糊模型的新型控制策略与参数不确定的鲁棒控制方法相结合,以解决过程的非线性和对其行为的干扰。与其他强大的控制方法相比,例如基于H-Infinity规范优化的方法,所提出的技术允许使用模糊置信区间提供的不确定性信息来用于导出考虑性能规范的控制器,例如过冲或干扰拒绝,并确保系统的稳健稳定性因基于应用广义的Kharitonov的定理和Lyapunov从线性矩阵不等式(LMI)的溶液分析的研究。为了测试这些新颖的策略,使用太阳能集电极领域,该领域是具有影响其操作的几个干扰的非线性植物。对于该植物,导出模糊置信区间,允许代表与这些干扰相关的不确定性,测试不同的性能目标,并且开发了用于导出这些控制器的方法。在不同的太阳辐射条件下的太阳能集电极场上证明了这种方法的有效性,并且获得了有希望的结果。 (c)2017 Elsevier B.v.保留所有权利。

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