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Modeling and Nonlinear Control of Fuel Cell / Supercapacitor Hybrid Energy Storage System for Electric Vehicles

机译:电动汽车燃料电池/超级电容器混合储能系统的建模与非线性控制

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摘要

This paper deals with the problem of controlling hybrid energy storage system (HESS) for electric vehicle. The storage system consists of a fuel cell (FC), serving as the main power source, and a supercapacitor (SC), serving as an auxiliary power source. It also contains a power block for energy conversion consisting of a boost converter connected with the main source and a boost-buck converter connected with the auxiliary source. The converters share the same dc bus which is connected to the traction motor through an inverter. These power converters must be controlled in order to meet the following requirements: i) tight dc bus voltage regulation; ii) perfect tracking of SC current to its reference; iii) and asymptotic stability of the closed loop system. A nonlinear controller is developed, on the basis of the system nonlinear model, making use of Lyapunov stability design techniques. The latter accounts for the power converters large-signal dynamics as well as for the fuel-cell nonlinear characteristics. It is demonstrated using both a formal analysis and simulations that the developed controller meets all desired objectives.
机译:本文研究了电动汽车混合动力储能系统(HESS)的控制问题。该存储系统由用作主电源的燃料电池(FC)和用作辅助电源的超级电容器(SC)组成。它还包含一个用于能量转换的电源块,该电源块由与主电源连接的升压转换器和与辅助电源连接的升压/降压转换器组成。转换器共享同一直流母线,该直流母线通过逆变器连接到牵引电动机。必须对这些功率转换器进行控制以满足以下要求:i)严格的直流总线电压调节; ii)完美跟踪SC电流以供参考; iii)闭环系统的渐近稳定性。在系统非线性模型的基础上,利用Lyapunov稳定性设计技术开发了一种非线性控制器。后者考虑了功率转换器的大信号动态以及燃料电池的非线性特性。通过形式分析和仿真都表明,开发的控制器可以满足所有期望的目标。

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