Advanced smart grid power distribution system for More Electric Aircraft application

Author(s):  
Cosimo Spagnolo ◽  
Sharmila Sumsurooah ◽  
Serhiy Bozkho
2015 ◽  
Vol 2015 ◽  
pp. 1-7 ◽  
Author(s):  
Zhangang Yang ◽  
Junchao Qu ◽  
Yingchuan Ma ◽  
Xudong Shi

The More Electric Aircraft concept is a fast-developing trend in modern aircraft industry. With this new concept, the performance of the aircraft can be further optimized and meanwhile the operating and maintenance cost will be decreased effectively. In order to optimize the power system integrity and have the ability to investigate the performance of the overall system in any possible situations, one accurate simulation model of the aircraft power system will be very helpful and necessary. This paper mainly introduces a method to build a simulation model for the power distribution system, which is based on detailed component models. The power distribution system model consists of power generation unit, transformer rectifier unit, DC-DC converter unit, and DC-AC inverter unit. In order to optimize the performance of the power distribution system and improve the quality of the distributed power, a feedback control network is designed based on the characteristics of the power distribution system. The simulation result indicates that this new simulation model is well designed and it works accurately. Moreover, steady state performance and transient state performance of the model can fulfill the requirements of aircraft power distribution system in the realistic application.


2019 ◽  
Vol 34 (4) ◽  
pp. 3937-3947 ◽  
Author(s):  
Sandro Gunter ◽  
Giampaolo Buticchi ◽  
Giovanni De Carne ◽  
Chunyang Gu ◽  
Marco Liserre ◽  
...  

2013 ◽  
Vol 712-715 ◽  
pp. 1787-1791
Author(s):  
Qin Ling Zhang ◽  
Lei Liu ◽  
Xu Jiang

In complex and severe electromagnetic environment with more electric aircraft (MEA) and aircraft missions diversity, the power supply quality analysis and its corresponding circuit design is a key technology for the design of automatic power distribution system on airborne platform. By analyzing the structure and the characteristics of automatic power distribution system and its executive component – SSPC, this paper improves the power supply quality through paralleling RC circuit to MOSFET to absorb current shock and voltage fluctuation,and gives the calculating method of the RC components. By experiments with principle prototype, it is verified that the method can reduce the dynamic voltage fluctuation of the power supply system.


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