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首页> 外文期刊>Journal of Zhejiang University SCIENCE A >Energy management strategy for a parallel hybrid electric vehicle equipped with a battery/ultra-capacitor hybrid energy storage system
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Energy management strategy for a parallel hybrid electric vehicle equipped with a battery/ultra-capacitor hybrid energy storage system

机译:配备电池/超级电容器混合储能系统的并联混合动力电动汽车的能源管理策略

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To solve the low power density issue of hybrid electric vehicular batteries, a combination of batteries and ultra-capacitors (UCs) could be a solution. The high power density feature of UCs can improve the performance of battery/UC hybrid energy storage systems (HESSs). This paper presents a parallel hybrid electric vehicle (HEV) equipped with an internal combustion engine and an HESS. An advanced energy management strategy (EMS), mainly based on fuzzy logic, is proposed to improve the fuel economy of the HEV and the endurance of the HESS. The EMS is capable of determining the ideal distribution of output power among the internal combustion engine, battery, and UC according to the propelling power or regenerative braking power of the vehicle. To validate the effectiveness of the EMS, numerical simulation and experimental validations are carried out. The results indicate that EMS can effectively control the power sources to work within their respective efficient areas. The battery load can be mitigated and prolonged battery life can be expected. The electrical energy consumption in the HESS is reduced by 3.91% compared with that in the battery only system. Fuel consumption of the HEV is reduced by 24.3% compared with that of the same class conventional vehicles under Economic Commission of Europe driving cycle.
机译:为了解决混合动力汽车电池的低功率密度问题,电池和超级电容器(UC)的组合可能是一种解决方案。 UC的高功率密度功能可以提高电池/ UC混合储能系统(HESS)的性能。本文提出了一种配备有内燃发动机和HESS的并联混合动力电动汽车(HEV)。提出了一种主要基于模糊逻辑的先进能源管理策略,以提高混合动力汽车的燃油经济性和耐用性。 EMS能够根据车辆的推进力或再生制动力确定内燃机,电池和UC之间的输出功率的理想分配。为了验证EMS的有效性,进行了数值模拟和实验验证。结果表明,EMS可以有效地控制电源在各自的有效区域内工作。可以减轻电池负载,并可以延长电池寿命。与仅使用电池的系统相比,HESS中的电能消耗降低了3.91%。与欧洲经济委员会驾驶周期内的同类常规车辆相比,HEV的燃油消耗降低了24.3%。

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  • 来源
    《Journal of Zhejiang University SCIENCE A》 |2013年第8期|535-553|共19页
  • 作者单位

    National Engineering Laboratory for Automotive Electronic Control Technology Shanghai Jiao Tong University">(1);

    National Engineering Laboratory for Automotive Electronic Control Technology Shanghai Jiao Tong University">(1);

    National Engineering Laboratory for Automotive Electronic Control Technology Shanghai Jiao Tong University">(1);

    National Engineering Laboratory for Automotive Electronic Control Technology Shanghai Jiao Tong University">(1);

    National Engineering Laboratory for Automotive Electronic Control Technology Shanghai Jiao Tong University">(1);

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