Examination of cross current suppression method using control of parallel operation system constructed by two electric power converters

Author(s):  
Mitsuki Nakai ◽  
Hiromi Inaba ◽  
Keiji Kishine ◽  
Keisuke Ishikura ◽  
Takuma Ito
2018 ◽  
Vol 33 (11) ◽  
pp. 9318-9330 ◽  
Author(s):  
Boli Chen ◽  
Gilberto Pin ◽  
Wai Man Ng ◽  
Peng Li ◽  
Thomas Parisini ◽  
...  

After evaluation of reliability in the previous chapters and its consideration as a converter figure of merit, in this and the next chapters, guidelines for improvement of reliability are presented. These methods are used in both design and operation process of the converter. The focus of this chapter is on the component stress reduction in the design process. Based on background of chapter two, reliability of a converter increases if it operates at a set point with low stress. It is assumed that the converter is under design process or operates without fault. The methods for reliability improvement in faulty converters are discussed in the next chapters. In this chapter, methods for reducing electric field are described at both system and printed circuit board level. Low temperature operating conditions for an electric power converter are described and tools for this goal are presented. Series connection for voltage sharing and parallel connection for current sharing is explained. Novel control methods of power converters for reducing the complexity and reliable operation are presented. Control of inrush current as a typical transient problem in electric power converters is presented. Methods for preventing the over stress condition on the components in faulty cases are described. Techniques for reducing mechanical and environmental stress are expressed. Mechanical dampers for preventing the high amplitude vibration and insulating colors against humidity are presented. Industrial and real samples are presented to demonstrate application of the proposed methods.


2014 ◽  
Vol 599-601 ◽  
pp. 1657-1660
Author(s):  
Shu Zhen Liu

Switch power module parallel operation system is one of the technological developing directions of power with high-power output and uninterruptible supply. The paper puts forward a concept to design switch power module parallel operation system, which adopts two TPS5430 chips to compose DC-DC cell parallel and through their load sharing to control chip UCC39002 to implement DC-DC unit outputting equalized current. It succeeds in building experimental prototype.


Author(s):  
Tetsuya Wakui ◽  
Takumi Hashizume ◽  
Toshio Nagao ◽  
Hisao Saito

This paper discusses the dynamic behavior of the stand-alone parallel operation system using two wind turbine-generators by our dynamic simulation model. The stand-alone parallel operation system is composed of two Darrieus-Savonius hybrid turbines, two load induction generators, one inverter, batteries, and one controller. This system is mainly operated at the maximum power coefficient points of two parallel turbines by the inverter frequency control for a simple system composition and high power extraction. The computed results of the dynamic behavior of the system to various wind speed changes shows that our control scheme of the parallel operation system is effective.


Sign in / Sign up

Export Citation Format

Share Document