Title :
A redundant parallel control strategy of multiple PCS (power conversion system) for microgrid in islanded operation
Author :
Chao Gao ; Dianguo Xu ; Lijie Miao ; Xiaohui Yu
Abstract :
For multiple PCS parallel operation in microgrid, since the output voltage of multiple PCS has differences in phase and amplitude, a big circulating current and the uneven distribution of power comes into being among PCS. the characteristics of circulating current and the uneven distribution of power are analyzed in detail when multiple PCS in direct parallel operation, and a peer-to-peer P / Q droop control strategy based on V / F is proposed for microgrid in islanded operation. In the strategy, all of the PCS share a coordinating controller to distribute power and sending synchronous signal, and a P/Q droop control strategy based on V/F for single PCS is adopted. The strategy can restrain circulating current effectively, and realize current-sharing control of multiple PCS. And it can ensure that each PCS has the same status, and realize the redundant parallel operation of multiple PCS. Both the simulation and experimental results show that the control strategy is correct and effective.
Keywords :
distributed power generation; electric current control; power conversion; power distribution faults; power generation control; redundancy; V/F control strategy; big circulating current; coordinating controller; direct parallel operation; islanded operation; microgrid; multiple PCS current-sharing control; multiple PCS redundant parallel control strategy; peer-to-peer PQ droop control strategy; power distribution; synchronous signal sending; Inverters; Master-slave; Microgrids; Peer-to-peer computing; Reactive power; Voltage control; islanded operation; peer-to-peer P/Q droop; power conversion system (PCS); redundant parallel;
Conference_Titel :
Power System Technology (POWERCON), 2014 International Conference on
Conference_Location :
Chengdu
DOI :
10.1109/POWERCON.2014.6993634