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Control of Hybrid Energy Storage System for an Electric Vehicle

机译:控制电动汽车混合储能系统

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This paper presents the control of a hybrid energy storage system performance for electric vehicle application. The hybrid energystorage system helps to enhance the life of battery by reducing the peak power demand using an auxiliary energy storage system (AES) based on super capacitor and a bidirectional buck-boost converter. Further, the performance of an electric vehicle in various environments like acceleration, regenerative braking and normal speed of operation are simulated using the Saber RD software. The LabVIEW interfaced with Arduino controller is used to analyze the prototype hybrid energy storage system. The simulation results showed that the proposed hybrid energy storage system helps to decrease the peak power demand up to 54% from the battery system. The experimental results are presented, validating the simulation results.
机译:本文介绍了对电动汽车应用的混合储能系统性能的控制。混合能源系统有助于通过基于超级电容器和双向降压 - 升压转换器降低使用辅助能量存储系统(AES)来增强电池的寿命。此外,使用SABER RD软件模拟了加速,再生制动和正常操作等各种环境中的电动车辆的性能。使用Arduino控制器接口的LabVIEW用于分析原型混合能量存储系统。仿真结果表明,所提出的混合能量存储系统有助于将峰值功率需求从电池系统降低54%。提出了实验结果,验证了仿真结果。

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