DocumentCode :
113569
Title :
Control system based on optical fiber communications for the high-frequency high-voltage charging power supplies´ parallel operation
Author :
Kun Liu ; Yinghui Gao ; Jiong Wang ; Yaohong Sun ; Dongdong Zhang ; Ping Yan ; Weiqun Yuan ; Rong Xu
Author_Institution :
Inst. of Electr. Eng., Beijing, China
fYear :
2014
fDate :
7-11 July 2014
Firstpage :
1
Lastpage :
5
Abstract :
High-frequency high-voltage charging power supply (HFHVCPS) is widely used in electromagnetic lunch, laser and other high current discharge situations. The high reliability of HFHVCPS is required due to the harsh application environment. The reliability of the control system is the key factor for the reliability of power supply, in order to improve the reliability of the control system, the optical fiber communication system was designed, which includes optical fiber communication system for the upper computer and lower computer and optical feedback system for the load voltage. Optical fiber communication system can be used for remote control of charging power supply and improve the anti-jamming performance of the control signal and the feedback signal, thus the reliability of the control system was enhanced. According to the control program and corresponding communication protocol, a control system can be implemented for the parallel control of two or even more than one charging power supplies. The time difference of different power supplies response to the control commands can be reduced by the optical fiber communication system, so that the accuracy of the system was improved. The protection circuits for over-voltage, over-current, over-time over-temperature and other situations were designed, in order to ensure the power supply can run reliably when the system is charging. Once a fault is occurred, the power supply can stop the work immediately and feedback the fault information by the optical fiber communication system, so that the safety of equipment and the operators are ensured by the optical fiber communication system.
Keywords :
electromagnetic launchers; optical feedback; optical fibre communication; overcurrent protection; overvoltage protection; pulsed power supplies; reliability; weapons; HFHVCPS reliability; anti-jamming performance; control signal; control system; electromagnetic lunch; fault information; feedback signal; harsh application environment; high current discharge situations; high-frequency high-voltage charging power supply parallel operation; lower computer; optical feedback system; optical fiber communication system; over-time over-temperature protection; overcurrent protection; overvoltage protection; parallel control; protection circuits; remote control; upper computer; Computers; Control systems; Digital signal processing; Optical coupling; Optical fiber communication; Power supplies; Voltage control; Control System; High-Frequency High-Voltage Charging Power Supply; Optical Fiber Communication; Parallel Operation; electromagnetic compatibility;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electromagnetic Launch Technology (EML), 2014 17th International Symposium on
Conference_Location :
La Jolla, CA
Type :
conf
DOI :
10.1109/EML.2014.6920178
Filename :
6920178
Link To Document :
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