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作 者:吴家荣 杨林 WU Jiarong;YANG Lin(College of Electronic Information,Guangxi Minzu University,Nanning 530006,China)
出 处:《电力系统及其自动化学报》2024年第9期135-141,共7页Proceedings of the CSU-EPSA
基 金:广西高校中青年教师科研基础能力提升项目(2021KY0164);广西民族大学人才引进科研启动项目(2020KJQD25)。
摘 要:为提高分数阶双输入Buck变换器的动静态性能,提出一种逆向解耦PIλ控制。首先,基于状态空间平均法建立双输入Buck变换器的分数阶数学模型,推导其分数阶小信号等效模型。随后,分析能量间的耦合关系。基于逆向解耦方法实现变量间的解耦,并推导实现分数阶逆向解耦的必要条件。最后,对解耦系统分别设计分数阶PI控制器,并结合分数阶系统的Nyquist判据证明控制系统的稳定性。仿真结果表明,所提控制策略具有良好的抗干扰性能和动静态调节特性。To improve the dynamic and static performance of a fractional-order dual-input Buck converter,an inverted decoupling PIλcontrol is proposed.First,a fractional-order mathematical model of the dual-input Buck converter is es-tablished based on the state space averaging method,and its fractional-order small-signal equivalent model is derived.Then,the coupling relationship between energies is analyzed.Based on the inverted decoupling method,the decou-pling between variables is realized,and the necessary conditions for implementing fractional-order inverted decoupling are derived.Finally,fractional-order PI controllers are designed for the decoupled system,and the stability of the con-trol system is demonstrated by combing the Nyquist criterion for fractional-order systems.Simulation results show that under the proposed control strategy,the system has a good anti-interference performance,as well as satisfying dynamic and static regulation characteristics.
关 键 词:双输入Buck变换器 分数阶模型 逆向解耦 分数阶控制
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