DocumentCode :
1795121
Title :
Design of energy balance analysis system for space station
Author :
An-yi Huang ; Wen Cui ; Heng-nian Li
Author_Institution :
State Key Lab. of Astronaut. Dynamics, Xi´an, China
fYear :
2014
fDate :
8-10 Aug. 2014
Firstpage :
1390
Lastpage :
1396
Abstract :
Combination is the development tendency of large spacecraft such as space station or space telescope system, of which the structure comes more and more complicated along with the expanding of functions. For power analysis of these complex combinations, firstly the working model of power system is founded. Then a special algorithm to calculate the power generated by solar arrays is proposed. Virtual vision method and spacecraft´s 3-D geometrical model are used here to solve the occlusion of sunlight between each spacecraft body and solar array. The other factors which influence the power of solar arrays are also list. Based on the models above, an energy balance system to calculate the states of power system is then set up. Finally, identification method of parameters in the model by spacecraft´s actual data in orbit is discussed. The simulation examples showed that the system´s precision is high enough and could dope out the trend of states in power system. The model and algorithm proposed in this paper have well engineering and researching value, which can be applied in general planning of combined spacecraft´s power system, as well as state monitoring and fault diagnosing during the spacecraft´s operation period.
Keywords :
power system parameter estimation; solar cell arrays; solar power satellites; space power generation; combined spacecraft power system general planning; energy balance analysis system design; fault diagnosis; large spacecraft development tendency; parameter identification method; power analysis; power system working model; solar arrays; space station; space telescope system; spacecraft 3D geometrical model; spacecraft body; state monitoring; sunlight occlusion; virtual vision method; Batteries; Orbits; Power system dynamics; Space stations; Space vehicles; Sun;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Guidance, Navigation and Control Conference (CGNCC), 2014 IEEE Chinese
Conference_Location :
Yantai
Print_ISBN :
978-1-4799-4700-3
Type :
conf
DOI :
10.1109/CGNCC.2014.7007400
Filename :
7007400
Link To Document :
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