Rammohan Rao Makineni;Ashish P. Agalgaonkar;Kashem M. Muttaqi;Md. Rabiul Islam;Danny Sutanto
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引用次数: 0
摘要
本文介绍了一种新颖的堆叠交错降压转换器(SIBC)控制算法,用于在有可再生能源的情况下为质子交换膜电解槽(PEMEL)提供能量。它充分利用了 SIBC 的主要优势,包括高电压转换率、低输出电流纹波以及在电路故障情况下的运行能力。新的控制法则基于积分滑动模式控制,在使用可再生能源时能显著改善输入变化的性能。与传统的基于 PI 的控制相比,所提出的控制器还具有更多优点,如动态响应速度更快、对参数不确定性的鲁棒性更高。使用 PEMEL 动态电气等效电路进行了实验验证,以模拟 PEMEL 在不同运行条件下的实际性能。实验结果表明,所提出的控制技术克服了目前 PI 控制器在性能方面的局限性。特别是,对于以可变可再生能源为原料的电解槽来说,使用所提出的控制器可以更快地响应运行条件的变化。
Integral Sliding Mode Control of a Stacked Interleaved Buck Converter for Electrolyzers Supplied With Renewable Energy Sources
This article presents a novel control algorithm for a stacked interleaved buck converter (SIBC) to supply energy to a proton exchange membrane electrolyzer (PEMEL) in the presence of renewable energy sources. It leverages the main advantages of the SIBC including high voltage conversion ratio, low output current ripple, and the ability to operate in case of electrical circuit failures. The new control law, based on integral sliding mode-based control, offers a significant improvement in the performance for input variation when renewable energy sources are used. The proposed controller exhibits further benefits, such as a faster dynamic response and greater robustness against parameter uncertainties, when compared to traditional PI-based control. Experimental verification is carried out using a PEMEL dynamic electrical equivalent circuit to mimic the real PEMEL performance under different operating conditions. The obtained experimental results demonstrate that the proposed control technique overcomes current limitations in terms of performance usually characterized by PI controllers. Particularly, a faster response is obtained using the proposed controller accounting for the changes in operating conditions for electrolyzers fed with variable renewable energy resources.
期刊介绍:
The scope of the IEEE Transactions on Industry Applications includes all scope items of the IEEE Industry Applications Society, that is, the advancement of the theory and practice of electrical and electronic engineering in the development, design, manufacture, and application of electrical systems, apparatus, devices, and controls to the processes and equipment of industry and commerce; the promotion of safe, reliable, and economic installations; industry leadership in energy conservation and environmental, health, and safety issues; the creation of voluntary engineering standards and recommended practices; and the professional development of its membership.