Robust Frequency Regulation for Islanded Scenic Spot Considering Flexible Loads

Wenting Huang, Jiaye Tuo, Xinyu Luo, H. Hua, Xingying Chen
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引用次数: 1

Abstract

In order to promote economic development, according to the relevant urban and rural coordinated development policies, remote countryside which is distant from the metropolis, has been chosen as an ideal place for scenic spot. In this paper, the research focus is on the scenic spot which is considered as an islanded microgrid in which the renewable energy resources offer the main energy supply. Considering the uncertainty of renewable power generation as well as the stochasticity of diverse load access, the considered microgrid system can face serious frequency deviation, thereby an appropriate power regulation is in need. Therefore, a robust control method is proposed to cope with the frequency regulation problem. A pioneering analysis of the frequency regulation via both supply side and demand side is provided, in the sense that control laws are designed on both controllable power generation devices and flexible loads. Besides, in order to profile the stochasticity of the system, we formulate the power dynamics as stochastic differential equations. Mathematically, the frequency regulation problem is formulated as an H∞ control issue. The linear matrix inequality approach is utilized to obtain the desired controller. Finally, numerical simulation is implemented to illustrate the effectiveness and feasibility of the proposed method.
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考虑柔性载荷的海岛景区鲁棒频率调节
为了促进经济发展,根据相关的城乡协调发展政策,远离大都市的偏远农村被选为理想的景区。本文的研究重点是将景区视为一个以可再生能源为主要能源供应的孤岛微电网。考虑到可再生能源发电的不确定性以及不同负荷接入的随机性,所考虑的微电网系统可能面临严重的频率偏差,因此需要进行适当的功率调节。因此,提出了一种鲁棒控制方法来解决频率调节问题。从可控发电设备和柔性负荷两方面设计控制规律的意义上讲,对从供给侧和需求侧进行的频率调节进行了开创性的分析。此外,为了描述系统的随机性,我们将功率动力学描述为随机微分方程。在数学上,频率调节问题被表述为一个H∞控制问题。利用线性矩阵不等式的方法得到理想的控制器。最后,通过数值仿真验证了所提方法的有效性和可行性。
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