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Frequency controller design for islanded microgrid by multi-objective LMI based approach

机译:基于多目标LMI的孤岛微电网频率控制器设计

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One of the main problems in the islanded microgrids is the frequency regulation. Moreover, there are several uncertainties and disturbances in the islanded microgrids that may lead to the instability. To solve this problem, this paper proposes the design of a multi-objective Linear Matrix Inequalities (LMIs) based regulator. It considers the LMI conditions in such a way that the design criterion holds. It also considers the disturbances, including solar radiation, wind speed, and load demand variations. With extracting microgrid state space model, it builds a framework to synthesize the controller. Next, it presents the mixed robust design criteria to set up the multi-objective function. The controller design process includes two steps: state feedback and observer designs. With considering weighing functions in the design process, it determines the optimal solution of the objective function. The obtained solution is the state feedback matrix, and it forms the controller by combining the state feedback matrix with a state observer. We have applied the designed controller to the islanded microgrid, and the effect of disturbances is evaluated together with parametric uncertainties. The proposed regulator is compared with the traditional PI method. The results show that the designed regulator has robust performance as well as robust stability.
机译:孤岛微电网中的主要问题之一是频率调节。此外,孤岛微电网中存在一些不确定性和干扰,可能会导致不稳定。为了解决这个问题,本文提出了一种基于多目标线性矩阵不等式(LMI)的调节器的设计。它以符合设计标准的方式考虑LMI条件。它还考虑了干扰,包括太阳辐射,风速和负载需求变化。通过提取微电网状态空间模型,它构建了一个框架来综合控制器。接下来,它提出了混合的稳健设计标准来建立多目标函数。控制器设计过程包括两个步骤:状态反馈和观察者设计。在设计过程中考虑权重函数,即可确定目标函数的最佳解决方案。所获得的解决方案是状态反馈矩阵,它通过将状态反馈矩阵与状态观察器组合在一起来构成控制器。我们已将设计的控制器应用于孤岛微电网,并与参数不确定性一起评估了干扰的影响。提出的调节器与传统的PI方法进行了比较。结果表明,所设计的稳压器具有鲁棒的性能和鲁棒的稳定性。

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