Orthogonal relations coupling renewable energy and sustainable plant systems

J. Furze, Quanmin Zhu
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引用次数: 1

Abstract

In order to distribute the rudiments of plant systems and renewable energy systems, a T-S-K fuzzy logic approach is taken in combination with multiple objective genetic algorithm approach. These approaches overcame non linearity in the water-energy dynamic and in the dynamic of easterly wind and shortwave solar flux present on a global scale. Hence system blocks for plant and renewable systems are presented. Increased rationality of the MOGA is shown with use of increased orders of differentiation. Consequently algorithms for plant systems and renewable systems presented orthogonal distribution with use of a domain flipping function. Furthermore, convergence between the two system blocks is identified with use of Lyapunov stability and sliding mode combinatorial technique effectively coupling the elements of each system block.
耦合可再生能源和可持续植物系统的正交关系
为了将植物系统和可再生能源系统的基本原理进行分布,将T-S-K模糊逻辑方法与多目标遗传算法相结合。这些方法克服了全球尺度上水能动态、东风动态和短波太阳通量的非线性。因此,提出了植物和可再生系统的系统块。随着微分阶数的增加,MOGA的合理性得到了提高。因此,植物系统和可再生系统的算法利用域翻转函数呈现正交分布。此外,利用李雅普诺夫稳定性和滑模组合技术有效地耦合了两个系统块之间的收敛性。
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