| 电气工程 | 
									
										
		  							 | 
          							
		  									  								 
		  									  							    
		  									  								 
		  									  							 | 
        						 
      						 
      					 | 
  					 
  					
    					 | 
   					 
   										
    					| 应用于脉冲电流负载的复合电源设计 | 
  					 
  					  										
						| 王琪1, 孙玉坤2, 黄永红1 | 
					 
															
					| 1.江苏大学 电气信息工程学院,江苏 镇江212013; 2.南京工程学院 电力工程系,江苏 南京 211167 | 
					 
										
						 | 
					 
   										
    					| Design of battery-ultracapacitor hybrid energy source applied to pulse current load | 
  					 
  					  					  					
						| WANG Qi1, SUN Yu-kun2, HUANG Yong-hong1 | 
					 
															
						| 1. School of Electrical and Information Engineering, Jiangsu University, Zhenjiang, 212013, China; 2. School of Electrical Power Engineering, Nanjing Institute of Technology, Nanjing, 211167, China | 
					   
									 
				
				
					
						
							
								
									
									
									
									
									 
          
          
            
                         
            
									            
									                
																														  
																|   [1] 唐西胜.超级电容器储能应用于分布式发电系统的能量管理及稳定性研究[D].北京:中国科学院电工研究所, 2006: 1-12. 
TANG Xi-sheng. Research on energy management and stability of distributed generation system with EDLC as energy storage [D]. Beijing: Institute of electrical engineering, Chinese academy of science, 2006: 1-12. 
[2] LAM L T, LOUEY R, HAIGH N P, et al. VRLA Ultrabattery for high-rate partial-state-of-charge operation [J]. Journal of Power Sources, 2007(174): 16-29. 
[3] AEWATERT B, CYGAN P J, LEUNG F C. Man portable power needs of the 21st century[J]. Power Sources, 2000, 91: 27-36. 
[4] 唐西胜,齐智平.超级电容器蓄电池混合电源[J].电源技术,2006, 11(30): 933-936. 
TANG Xi-sheng, QI Zhi-ping. Study on the ultracapacitor/battery hybrid system [J]. Chinese Journal of Power sources, 2006, 11(30): 933-936. 
[5] KUPERMAN A, AHARON I. Battery and ultracapacitor hybrids for pulsed current loads: A review, Renew. Sust [J]. Energy Reviews, 2011, 15: 981-992. 
[6] LIU H, WANG Z, CHENG J, et al. Improvement on the cold cranking capacity of commercial vehicle by using supercapacitor and lead-acid battery hybrid [J], IEEE Transactions on Vehicular Technology, 2009, 58(3): 1097-1105. 
[7] CARICCHI F, CRESCIMBINI F, GIULII CAPPONI F, et al. Study of bidirectional buck-boost converter topologies for application in electrical vehicle motor drivers [C]∥ IEEE APEC Proceeding. \[S.l.\][s. n.]: 1998: 287-293. 
[8] LUKIC S M, WIRASINGHA S G, RODRIGUEZ F, CAO J et al. Power management of an ultr acapacitor/battery hybrid energy storage system in an HEV [C]∥ Vehicle Power and Propulsion Conference. Windsor: [s. n.]: 2006: 1-6. 
[9] CHAIM LERMAN, AMIAD HOROSOV, ALON KUPERMAN. Capacitor semi-active battery-ultracapacitor hybrid energy source [C]∥ IEEE 27th Convention of Electrical and Electronics Engineers. Israel: [s. n.], 2012: 1-4. 
[10] CAMARA M B, DAKYO B, GUALOUS H. Polynomial control method of DC/DC converters for DC-bus voltage and currents management-Battery and supercapacitors [J]. IEEE Transaction power electron, 2012, 27(3): 1455-1467. 
[11] KUPERMAN A, AHARON I, MALKI S et al. Design of a semi-active Battery-Ultracapacitor Hybrid Energy Source [J]. IEEE Transactions on Power Electronics, 2013: 28(2): 806-815. 
[12] WANG Tie-cheng, YU Hai-fang. Hybrid energy sources for hybrid electric vehicle propulsion [C]∥ IEEE Vehicle Power and Propulsion Conferenc. Harbin: [s.n.], 2008. 
[13] DOUGAL R A, LIU Sheng-yi, WHITE R E. Power and life extension of battery-ultracapacitor hybrid [J]. IEEE Trans on Components and Packaging Technologies, 2002, 25(1): 120-131. 
[14] WU CHIRN-HSUN, CHEN PIN-YUNG, CHU KOU-CHENG. On the study of energy-based control strategy for a Lithium battery/Supercapacitor hybrid energy storage system [C]∥ 2nd Conference on Environmental Science and Information Application Technology. Wuhan:[s.n.], 2010, 395-398. 
[15] KUPERMAN A, AHARON I, MALKI S et al. Design of a semiactive battery-ultracapacitor hybrid energy source [J]. IEEE Transaction on Power Electronics, 2012, 28(2): 806-815.  | 
															   
																													 
									             
									           
             
			            			 
			 
             
												
											    	
											        	 | 
											        	Viewed | 
											         
													
											        	 | 
											        	 | 
											         
											      	
												         | 
												        
												        	Full text 
												          	
												         | 
											        	
												        	
												        	 
												        	
												          	 
												          	
												          	
														 | 
													 
													
												         | 
												         | 
													 
													
												         | 
												        
												        	Abstract 
												          	
														 | 
												        
															
															 
															
															
												         | 
													 
													
												         | 
												         | 
													 
													
												         | 
												        Cited  | 
												        
												        	
												         | 
													 
													
												         | 
												         | 
												         | 
													 
													
													    |   | 
													    Shared | 
													       | 
												  	 
												  	
													     | 
													     | 
													     | 
											  		 
											  		
													    |   | 
													    Discussed | 
													       | 
												  	 
											 
											 
             
           
      
									
									
		
									
									
									
									
									
									 | 
								 
							 
						 | 
					 
				 
			
		 |