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首页> 外文期刊>Journal of Energy Storage >Energy Management on Battery/Ultracapacitor Hybrid Energy Storage System based on Adjustable Bandwidth Filter and Sliding-mode Control
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Energy Management on Battery/Ultracapacitor Hybrid Energy Storage System based on Adjustable Bandwidth Filter and Sliding-mode Control

机译:基于可调带宽滤波器和滑模控制的电池/超容量混合能储能系统的能源管理

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摘要

A real-time power-split control strategy for a hybrid energy storage system (HESS) used in electric vehicles is proposed in this work. The HESS topology corresponds to a semi-active ultracapacitor (UC) configuration.The HESS goals are to prevent battery degradation and to preserve its lifetime while improving the system efficiency by supplying the fast dynamics power demands through the UC pack. In order to generate the UC power reference, a digital low-pass filter whose bandwidth is adjusted according to the UC SOC is proposed. This allows a better usage of the UC available energy, while reducing frequent activation of controller protections and avoiding the calculation of the filter cut-off frequency for a certain driving cycle. The low-level control strategy is based on a sliding mode controller combined with a closed-loop current observer, which allows to improve the implementation performance while maintaining the current ripple bounded.Simulation and experimental results were presented showing that the proposed strategy preserves battery health in a more effective way than filter-based strategies with fixed bandwidth, for cases where no future information about the required power is available.
机译:在这项工作中提出了一种用于电动车辆的混合能储能系统(HESS)的实时功率分流控制策略。 HESS拓扑对应于半主动超容器(UC)配置。Hess目标是防止电池劣化并通过提供通过UC包来提高系统效率的同时,保持其寿命。为了产生UC功率参考,提出了根据UC SOC调整带宽的数字低通滤波器。这允许更好地使用UC可用能量,同时减少了控制器保护的频繁激活,并避免计算某个驾驶循环的滤波器截止频率。低电平控制策略基于滑动模式控制器与闭环电流观测器组合,其允许提高实现性能,同时保持电流纹波界限。提出了拟议策略保留电池健康的实验结果对于具有固定带宽的基于过滤器的策略,以更有效的方式,对于没有有关所需功率的未来信息,可以使用。

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