恒定和混沌输入条件下SEPIC-Boost变换器的稳定性评价

M. N. Mamat, M. N. Abdullah, S. Kaharuddin, D. Ishak
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引用次数: 0

摘要

如果所有利益相关者都为实现目标做出贡献,净零排放是可以实现的。由于能源行业是温室气体产生的主要贡献者之一,从传统的化石燃料转向可持续的清洁能源是措施之一。通过机械、振动和太阳辐射等方法收集能量来发电的能力具有很大的潜力。然而,光源的能谱非常不稳定,这是能量收集的一个缺点。换能器的输出电压可能是混沌的,也可能是稳定的,需要一个DC/DC变换器对其进行滤波和调节。为了完成调节挑战,各种转换器拓扑结构和反馈控制技术已经被设计出来。本研究考察了在其设计中内置开环和负反馈的SEPIC-Boost转换器的稳定性,给出了来自能量收集源的恒定和混沌输入。考虑到PID反馈控制是最有效的整定技术之一,本文选择了基于修正齐格勒-尼科尔斯整定的PID反馈控制。结果表明,在无反馈控制的情况下,系统在混沌和恒输入情况下均表现不佳。观察到大量超调19%和低估8.5%。然而,当这两个输入条件都给定到SEPIC-Boost转换器时,系统在PID反馈控制下完美运行。在不到1%的纹波下,输出达到了所需的稳定性,并且在使用时没有出现任何超调或低估。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of SEPIC-Boost Converter’s Stability Under Constant and Chaotic Input Conditions
Net Zero emissions are achievable if all stakeholders contribute to achieving the objective. As the energy industry is one of the major contributors to the production of greenhouse gases, moving from conventional fossil fuels to sustainable and clean energy is one of the measures. The ability to generate electricity by harvesting energy from methods including mechanical, vibrational, and solar irradiation has a lot of potential. However, the energy spectrum of the source is extremely unstable, which is a drawback to energy collection. The output voltage of the transducer may be chaotic or steady, and a DC/DC converter is required to filter and regulate it. To accomplish the regulation challenge, a variety of converter topologies and feedback control techniques have been devised. This study examines the stability of SEPIC-Boost converters with open loop and negative feedback built in their design, given constant and chaotic input from energy collecting sources. Given that it is one of the most efficient tuning techniques, PID feedback control based on modified Ziegler-Nichols tuning is chosen. The results showed that the proposed system performed poorly under both chaotic and constant input situations when run without feedback control. Massive overshoot of 19% and undervalue of 8.5% were observed. However, when both input conditions were given to the SEPIC-Boost converter, the system operated flawlessly under PID feedback control. With less than 1% of the ripple, the output reached the desired stability and it did not experienced any overshoots or undervalues when it was in use.
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