Research on Hybrid Energy Storage System of Super-capacitor and Battery Optimal Allocation

Author(s):  
Yang Xiu ◽  
Li Cheng ◽  
Liu Chunyan
2015 ◽  
Vol 2015 ◽  
pp. 1-14 ◽  
Author(s):  
Cong Zhang ◽  
Haitao Min ◽  
Yuanbin Yu ◽  
Qingnian Wang ◽  
Huanli Sun

Although both battery and super-capacitor are important power sources for hybrid electric vehicles, there is no accurate configuration theory to match the above two kinds of power sources which have significantly different characteristics on energy and power storage for the goal of making good use of their individual features without size wasting. In this paper, a new performance is presented that is used for analysis and optimal design method of battery and super-capacitor for hybrid energy storage system of a parallel hybrid electrical vehicle. In order to achieve optimal design with less consumption, the power-energy function is applied to establish direct mathematical relationship between demand power and the performance. During matching process, firstly, three typical operating conditions are chosen as the basis of design; secondly, the energy and power capacity evaluation methods for the parameters of battery and super-capacitor in hybrid energy storage system are proposed; thirdly, the mass, volume, and cost of the system are optimized simultaneously by using power-energy function. As a result, there are significant advantages on mass, volume, and cost for the hybrid energy storage system with the matching method. Simulation results fit well with the results of analysis, which confirms that the optimized design can meet the demand of hybrid electric vehicle well.


2021 ◽  
Vol 231 ◽  
pp. 01001
Author(s):  
Xiaokun Zheng ◽  
Wei Jiang ◽  
Lu Yin ◽  
Yanan Fu

The establishment of an integrated fast charging station for photovoltaic storage and charging is an effective solution to fast charging of electric vehicles. For the li-battery/Super capacitor hybrid energy storage system, it is an effective method to reduce the cost of the system by extending the life of the li-batteries. This paper establishes the li-battery cycle life estimation model with irregular discharge and proposes an optimal energy allocation algorithm of li-battery/super capacitor hybrid energy storage system is proposed based on dynamic programming algorithm. Simulation results are presented to validate the theoretical analysis.


2013 ◽  
Vol 765-767 ◽  
pp. 2435-2438
Author(s):  
Jian Ye Liu ◽  
Shan Shan Jiang ◽  
Chang Ge Tian ◽  
Meng Zhang

Designed based on bi-directional DC / DC converter of the super-capacitor and battery hybrid energy storage system, using both on the technical performance have strong complementary features that can improve the battery charge and discharge process, so that the battery charge and discharge cycles decrease, prolong the service life of battery. In matlab/simulink environment, established a system simulation model, the result showed that the hybrid energy storage system can effectively restrain the DC bus voltage fluctuations, make the output voltage relatively stable.


2014 ◽  
Vol 614 ◽  
pp. 155-159
Author(s):  
Li Wei Zhang ◽  
Wei Bo Huang ◽  
Xian Jin Huang

Super capacitor bank operating characteristics have an important impact on the energy conversion efficiency and the construction cost of the hybrid energy storage system. To research the parameters and control properties of super capacitor in energy storage system, to establish a practical mathematical model and to propose the optimal design is important to improve the overall performance of the hybrid energy storage system. This paper presents the mathematical modeling of battery super capacitor hybrid energy storage system, studies the target parameters setting of hybrid energy storage system and the capacity configurations of super capacitor, and proposes an optimized design of the super capacitor bank. Finally, based on EMR verifies the theory.


Author(s):  
Bheemireddy Thanusha ◽  
G. Sujatha

Generally, battery running vehicles are there in public but those are limited to small ranges and life of battery also less. So in order to overcome those limitations, we aimed at hybrid energy storage systems which are combination of battery and Super capacitor. Dual drives using in this model are switched reluctance motor and Induction motor separately for front and rear wheels respectively. So that whenever one of the motor fails, the other motor should run the vehicle. To maintain supply at the motor input, two bi-directional converters exists for the motoring and braking operations. This whole model executed in MATLAB/SIMULINK model. Battery and super capacitor gives supply agreeing to the power demand. The controllers used for the SRM and IM are hysteresis current controller and FOC controller respectively.


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