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Fixed-boundary-layer Sliding-mode and Variable Switching Frequency Control for a Bidirectional DC-DC Converter in Hybrid Energy Storage System

机译:混合储能系统中双向DC-DC转换器的固定边界层滑模和可变开关频率控制

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摘要

In this paper, a soft switching DC-DC converter is presented for a hybrid energy storage system (HESS) in an electric vehicle (EV), using fixed boundary layer sliding mode control (FBLSMC) and variable switching frequency modulation. This strategy is aimed at improvement of the transient performance, energy transfer efficiency and system robustness for the HESS which is composed of a battery, an ultracapacitor (UC) and a bidirectional DC-DC converter. The state-space model of such DC-DC converter is firstly established involving all operating modes and system uncertainties. The FBLSMC scheme is proposed for the satisfactory voltage/current tracking despite system uncertainties. It can guarantee the system robustness and avoid the chattering existing in conventional sliding mode control (CSMC). In order to ensure the soft switching under transient load variations, a variable switching frequency modulation method is introduced into the controller. Finally, experimental results confirm that (1) within the full-load range the efficiency of the DC-DC converter with variable switching frequency is ~96% in contrast to 90% efficiency at hard switching, and (2) the energy delivered by the UC follows the reference closely for EVs.
机译:在本文中,提出了一种使用固定边界层滑模控制(FBLSMC)和可变开关频率调制的电动汽车(EV)混合动力储能系统(HESS)的软开关DC-DC转换器。该策略旨在提高HESS的瞬态性能,能量传输效率和系统鲁棒性,HESS由电池,超级电容器(UC)和双向DC-DC转换器组成。首先建立涉及所有工作模式和系统不确定性的这种DC-DC转换器的状态空间模型。提出了FBLSMC方案,尽管系统存在不确定性,但仍可实现令人满意的电压/电流跟踪。它可以保证系统的鲁棒性,并且避免了传统滑模控制(CSMC)中存在的抖动。为了确保瞬态负载变化下的软开关,将可变开关频率调制方法引入控制器。最后,实验结果证实:(1)在满载范围内,可变开关频率的DC-DC转换器的效率为〜96%,而硬开关效率为90%,(2)开关提供的能量UC紧随电动汽车的参考。

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