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首页> 外文期刊>International Journal of Electrical Power & Energy Systems >Fractional-order modeling and sliding mode control of energy-saving and emission-reduction dynamic evolution system
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Fractional-order modeling and sliding mode control of energy-saving and emission-reduction dynamic evolution system

机译:节能减排动态演化系统的分数阶建模和滑模控制

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摘要

This paper proposes the fractional-order modeling for sliding mode control of a complex four-dimensional energy-saving and emission-reduction system (ESERS). In the proposed methodology, the fractional calculus techniques are employed to accurately model the dynamics of the ESERS, and the fractional-order model of the energy-saving and emission-reduction system (FOESERS) is formulated. With the proposed FOESERS, all of the equilibrium points and the corresponding eigenvalues are obtained, and the instability region and the state trajectories of FOESERS are also given. The FOESERS can represent complex dynamic behaviours with chaotic and unstable states on the energy conservation, carbon emissions, economic growth, and renewable energy development, and have a great impact on the formulation of government energy policies. Furthermore, based on the fractional Lyapunov stability and robust control theory, a sliding-mode controller is designed to control the FOESERS with model uncertainties and external disturbances to the equilibrium point in the finite time. Finally, simulation results confirm the effectiveness and robustness of the proposed scheme.
机译:本文提出了分数阶建模,用于复杂的四维节能减排系统(ESERS)的滑模控制。在该方法中,采用分数演算技术对ESERS的动力学进行精确建模,并建立了节能减排系统(FOESERS)的分数阶模型。利用提出的FOESERS,可以获得所有的平衡点和相应的特征值,并给出了FOESERS的不稳定性区域和状态轨迹。 FOESERS可以表示复杂的动态行为,在节能,碳排放,经济增长和可再生能源发展方面具有混乱和不稳定的状态,并且对政府能源政策的制定产生重大影响。此外,基于分数Lyapunov稳定性和鲁棒控制理论,设计了一种滑模控制器来控制具有模型不确定性和外部干扰的FOESERS在有限时间内达到平衡点。最后,仿真结果证实了该方案的有效性和鲁棒性。

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