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Performance enhancement of Solar Vehicle by integration of supercapacitors in the energy storage system

机译:通过在储能系统中集成超级电容器来提高太阳能汽车的性能

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To improve the performance of Solar Vehicle (SV), supercapacitor has been used as an auxiliary energy storage system. Indeed, SCs are used as an energy storage device during fast power changes and recovers the braking energy to enhance the SV autonomy. In other hand, the batteries are used to meet the energy requirements for a relatively long duration and to store the excess of energy. This work addresses the modeling, control and power management of the electric traction system of a solar vehicle which uses photovoltaic as an energy source. The storage system is insured by a combination of supercapacitors and batteries. The hybrid storage system improves the efficiency of the overall system. The simulation result has been conducted to verify the effectiveness of the integration of the supercapacitor in the photovoltaic energy storage of solar vehicle in terms of reducing the peak currents in the battery pack and increasing the battery life. The obtained results prove that the electrical stresses on the battery are reduced by introducing supercapacitor.
机译:为了提高太阳能车辆(SV)的性能,超级电容器已被用作辅助储能系统。实际上,SC在快速功率变化期间用作能量存储设备,并回收制动能量以增强SV自治性。另一方面,电池用于在相对较长的时间内满足能量需求并存储多余的能量。这项工作涉及使用光伏作为能源的太阳能汽车电力牵引系统的建模,控制和功率管理。超级电容器和电池的组合可为存储系统提供保险。混合存储系统提高了整个系统的效率。进行仿真结果以验证超级电容器在减少太阳能电池组中的峰值电流和延长电池寿命方面在太阳能车辆的光伏能量存储中集成的有效性。获得的结果证明,通过引入超级电容器可以减小电池上的电应力。

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