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首页> 外文期刊>Journal of Energy Storage >Robust integral backstepping controller for energy management in plugin hybrid electric vehicles
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Robust integral backstepping controller for energy management in plugin hybrid electric vehicles

机译:插件混合动力电动汽车能源管理的强大积分BackStepping控制器

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Plugin hybrid electric vehicles (PHEVs) are a suitable choice to achieve enhanced performance and reduced toxic gases. The considered PHEV consists of an integrated charging unit and a hybrid energy storage system (HESS). The proposed HESS comprises of a battery with high energy density and a supercapacitor with high power density coupled together to fulfill the load demands of the vehicle. A DC-DC buck converter with an uncontrolled rectifier has been used for an on-board and balanced charging and two bi-directional DC-DC buck-boost converters have been incorporated to ensure a smooth transition of energy. A rule-based algorithm has been employed as a supervisory controller by incorporating total power inflow and state of charge of the power sources to fulfill the load demands. Moreover, a robust integral backstepping-based nonlinear controller has been designed for the smooth execution and energy management of PHEV in terms of output voltage regulation, reference generation, and smooth tracking of current. Lyapunov stability theory has been used to ensure asymptotic stability of the PHEV. The performance of the proposed controller has been validated using simulations on MATLAB/Simulink by comparing it with the Lyapunov redesign and backstepping controllers already proposed in the literature. The robustness of the proposed controller has been verified by introducing uncertainty in the state model. Finally, the real-time applicability and effectiveness of the proposed work have been ensured using controller hardware in loop (C-HIL) test bench.
机译:插件混合电动汽车(PHEV)是实现增强性能和减少毒性气体的合适选择。所考虑的PHEV包括集成的充电单元和混合能量存储系统(HESS)。所提出的HESS包括具有高能量密度的电池和具有高功率密度的超级电容器,耦合在一起以满足车辆的负载需求。具有不受控制的整流器的DC-DC降压转换器已用于载车载,并结合了两个双向DC-DC降压转换器,以确保能量平滑过渡。通过结合总功率流入和电源的充电状态来满足基于规则的算法作为监控控制器以满足负载需求。此外,在输出电压调节,参考生成和电流平滑跟踪方面,设计了一种基于鲁棒的基于积分的基于B基的非线性控制器。 Lyapunov稳定性理论已被用于确保PHEV的渐近稳定性。通过将Lyapunov重新设计和BackStepping控制器与Lyapunov重新设计和BackStepping控制器进行比较,已经使用Matlab / Simulink的模拟验证了所提出的控制器的性能。通过在状态模型中引入不确定性来验证所提出的控制器的稳健性。最后,使用Loop(C-HIL)测试台中的控制器硬件确保了所提出的工作的实时适用性和有效性。

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