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Adaptive fractional order sliding mode control for Boost converter in the Battery/Supercapacitor HESS

机译:电池/超级电容器HESS中Boost转换器的自适应分数阶滑模控制

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摘要

In this paper, an adaptive fractional order sliding mode control (AFSMC) scheme is designed for the current tracking control of the Boost-type converter in a Battery/Supercapacitor hybrid energy storage system (HESS). In order to stabilize the current, the adaptation rules based on state-observer and Lyapunov function are being designed. A fractional order sliding surface function is defined based on the tracking current error and adaptive rules. Furthermore, through fractional order analysis, the stability of the fractional order control system is proven, and the value of the fractional order (λ) is being investigated. In addition, the effectiveness of the proposed AFSMC strategy is being verified by numerical simulations. The advantages of good transient response and robustness to uncertainty are being indicated by this design, when compared with a conventional integer order sliding mode control system.
机译:本文针对电池/超级电容器混合储能系统(HESS)中的Boost型转换器的电流跟踪控制设计了自适应分数阶滑模控制(AFSMC)方案。为了稳定电流,设计了基于状态观测器和李雅普诺夫函数的自适应规则。基于跟踪电流误差和自适应规则定义分数阶滑动表面函数。此外,通过分数阶分析,证明了分数阶控制系统的稳定性,并正在研究分数阶(λ)的值。另外,通过数值模拟验证了所提出的AFSMC策略的有效性。与传统的整数阶滑模控制系统相比,该设计具有良好的瞬态响应和对不确定性的鲁棒性的优点。

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